Fungal Genomics

at Utrecht University

General Properties

Protein IDAgabi119p4|110000
Gene name
Locationscaffold_08:889218..898252
Strand+
Gene length (bp)9034
Transcript length (bp)8022
Coding sequence length (bp)8022
Protein length (aa) 2674

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00109 ketoacyl-synt Beta-ketoacyl synthase, N-terminal domain 3.7E-46 4 241
PF00698 Acyl_transf_1 Acyl transferase domain 1.8E-37 507 805
PF08659 KR KR domain 1.4E-33 1859 2023
PF02801 Ketoacyl-synt_C Beta-ketoacyl synthase, C-terminal domain 1.9E-28 249 363
PF14765 PS-DH Polyketide synthase dehydratase 3.0E-27 908 1153
PF00550 PP-binding Phosphopantetheine attachment site 5.6E-05 2133 2183
PF00550 PP-binding Phosphopantetheine attachment site 2.5E-04 2215 2253
PF00550 PP-binding Phosphopantetheine attachment site 8.2E-05 2301 2340
PF16197 KAsynt_C_assoc Ketoacyl-synthetase C-terminal extension 5.5E-13 366 481
PF08242 Methyltransf_12 Methyltransferase domain 1.9E-09 1324 1425
PF13489 Methyltransf_23 Methyltransferase domain 3.4E-07 1316 1485
PF08241 Methyltransf_11 Methyltransferase domain 2.5E-04 1324 1427

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|Q54KU3|PKS25_DICDI Probable polyketide synthase 25 OS=Dictyostelium discoideum GN=pks25 PE=3 SV=1 2 1144 1.0E-86
sp|P9WQE6|PPSA_MYCTO Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsA PE=3 SV=1 50 805 1.0E-86
sp|Q7TXM0|PPSA_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsA PE=1 SV=1 50 805 5.0E-86
sp|P9WQE7|PPSA_MYCTU Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsA PE=1 SV=1 50 805 2.0E-85
sp|P9WQE3|PPSD_MYCTU Phthiocerol synthesis polyketide synthase type I PpsD OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsD PE=1 SV=1 3 1076 3.0E-85
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|Q54KU3|PKS25_DICDI Probable polyketide synthase 25 OS=Dictyostelium discoideum GN=pks25 PE=3 SV=1 2 1144 1.0E-86
sp|P9WQE6|PPSA_MYCTO Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsA PE=3 SV=1 50 805 1.0E-86
sp|Q7TXM0|PPSA_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsA PE=1 SV=1 50 805 5.0E-86
sp|P9WQE7|PPSA_MYCTU Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsA PE=1 SV=1 50 805 2.0E-85
sp|P9WQE3|PPSD_MYCTU Phthiocerol synthesis polyketide synthase type I PpsD OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsD PE=1 SV=1 3 1076 3.0E-85
sp|P9WQE2|PPSD_MYCTO Phthiocerol synthesis polyketide synthase type I PpsD OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsD PE=3 SV=1 3 1076 3.0E-85
sp|Q7TXL7|PPSD_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsD OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsD PE=3 SV=1 3 1076 6.0E-85
sp|Q869X2|PKS17_DICDI Probable polyketide synthase 17 OS=Dictyostelium discoideum GN=pks17 PE=3 SV=1 72 1209 3.0E-83
sp|Q869W9|PKS16_DICDI Probable polyketide synthase 16 OS=Dictyostelium discoideum GN=pks16 PE=2 SV=1 72 970 4.0E-82
sp|B0G100|PKS7_DICDI Probable polyketide synthase 7 OS=Dictyostelium discoideum GN=pks7 PE=3 SV=1 4 802 2.0E-81
sp|Q54QD3|PKS22_DICDI Probable polyketide synthase 22 OS=Dictyostelium discoideum GN=pks22 PE=3 SV=1 4 1014 5.0E-81
sp|Q54QD1|PKS23_DICDI Probable polyketide synthase 23 OS=Dictyostelium discoideum GN=pks23 PE=3 SV=1 77 1014 1.0E-80
sp|Q54T36|PKS19_DICDI Probable polyketide synthase 19 OS=Dictyostelium discoideum GN=pks19 PE=3 SV=1 4 849 2.0E-80
sp|B0G0Z9|PKS6_DICDI Probable polyketide synthase 6 OS=Dictyostelium discoideum GN=pks6 PE=3 SV=1 4 813 2.0E-80
sp|Q55DM7|PKS2_DICDI Probable polyketide synthase 2 OS=Dictyostelium discoideum GN=pks2 PE=3 SV=1 4 805 6.0E-80
sp|Q86JI5|PKS5_DICDI Probable polyketide synthase 5 OS=Dictyostelium discoideum GN=pks5 PE=2 SV=1 4 802 6.0E-80
sp|B0G101|PKS8_DICDI Probable polyketide synthase 8/35 OS=Dictyostelium discoideum GN=pks8 PE=3 SV=1 4 802 3.0E-79
sp|P12276|FAS_CHICK Fatty acid synthase OS=Gallus gallus GN=FASN PE=1 SV=5 5 849 9.0E-79
sp|B0G138|PKS21_DICDI Probable polyketide synthase 21 OS=Dictyostelium discoideum GN=pks21 PE=3 SV=1 4 849 1.0E-78
sp|Q86AE3|PKS9_DICDI Probable polyketide synthase 9/36 OS=Dictyostelium discoideum GN=pks9 PE=2 SV=1 4 801 2.0E-78
sp|B0G103|PKS10_DICDI Probable polyketide synthase 10 OS=Dictyostelium discoideum GN=pks10 PE=3 SV=1 66 832 2.0E-78
sp|Q559A9|PKS13_DICDI Probable polyketide synthase 13 OS=Dictyostelium discoideum GN=pks13 PE=3 SV=1 69 801 2.0E-77
sp|Q54B51|PKS44_DICDI Probable polyketide synthase 44 OS=Dictyostelium discoideum GN=pks44 PE=3 SV=1 4 1017 3.0E-77
sp|Q7TXL9|PPSB_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsB OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsB PE=1 SV=1 4 806 8.0E-77
sp|P9WQE5|PPSB_MYCTU Phthiocerol synthesis polyketide synthase type I PpsB OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsB PE=1 SV=1 4 806 8.0E-77
sp|P9WQE4|PPSB_MYCTO Phthiocerol synthesis polyketide synthase type I PpsB OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsB PE=3 SV=1 4 806 8.0E-77
sp|Q54B49|PKS45_DICDI Probable polyketide synthase 45 OS=Dictyostelium discoideum GN=pks45 PE=3 SV=2 4 1017 4.0E-76
sp|Q54D44|PKS42_DICDI Probable polyketide synthase 42 OS=Dictyostelium discoideum GN=pks42 PE=3 SV=2 66 853 5.0E-76
sp|Q03131|ERYA1_SACER Erythronolide synthase, modules 1 and 2 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=1 3 805 2.0E-75
sp|Q54ED6|PKS41_DICDI Probable polyketide synthase 41 OS=Dictyostelium discoideum GN=pks41 PE=3 SV=1 66 802 2.0E-75
sp|Q54IX3|PKS26_DICDI Probable polyketide synthase 26 OS=Dictyostelium discoideum GN=pks26 PE=3 SV=1 66 930 3.0E-75
sp|Q71SP7|FAS_BOVIN Fatty acid synthase OS=Bos taurus GN=FASN PE=2 SV=1 5 857 7.0E-75
sp|Q54FN7|PKS33_DICDI Probable polyketide synthase 33 OS=Dictyostelium discoideum GN=pks33 PE=3 SV=2 71 1016 2.0E-74
sp|Q9Y8A5|LNKS_ASPTE Lovastatin nonaketide synthase OS=Aspergillus terreus GN=lovB PE=1 SV=1 57 1537 2.0E-74
sp|B0G170|PKS28_DICDI Probable polyketide synthase 28 OS=Dictyostelium discoideum GN=pks28 PE=3 SV=1 72 801 5.0E-74
sp|Q55CN6|PKS3_DICDI Probable polyketide synthase 3 OS=Dictyostelium discoideum GN=pks3 PE=3 SV=1 61 801 8.0E-74
sp|Q558Y6|PKS14_DICDI Probable polyketide synthase 14 OS=Dictyostelium discoideum GN=pks14 PE=3 SV=2 4 801 1.0E-73
sp|B2HIL7|MSL7_MYCMM Phenolphthiocerol synthesis polyketide synthase type I Pks15/1 OS=Mycobacterium marinum (strain ATCC BAA-535 / M) GN=pks15/1 PE=1 SV=1 4 1129 1.0E-73
sp|P96202|PPSC_MYCTU Phthiocerol synthesis polyketide synthase type I PpsC OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsC PE=1 SV=2 3 828 5.0E-73
sp|Q7TXL8|PPSC_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsC OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsC PE=1 SV=1 3 828 5.0E-73
sp|Q0C8M3|LNKS_ASPTN Lovastatin nonaketide synthase OS=Aspergillus terreus (strain NIH 2624 / FGSC A1156) GN=lovB PE=3 SV=2 57 1517 6.0E-73
sp|Q54FC8|PKS39_DICDI Probable polyketide synthase 39 OS=Dictyostelium discoideum GN=pks39 PE=3 SV=1 71 801 2.0E-72
sp|Q03132|ERYA2_SACER Erythronolide synthase, modules 3 and 4 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=3 62 799 2.0E-72
sp|Q03132|ERYA2_SACER Erythronolide synthase, modules 3 and 4 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=3 62 1147 3.0E-72
sp|Q54FN2|PKS34_DICDI Probable polyketide synthase 34 OS=Dictyostelium discoideum GN=pks34 PE=3 SV=1 71 801 3.0E-72
sp|Q54FQ3|PKS29_DICDI Probable polyketide synthase 29 OS=Dictyostelium discoideum GN=pks29 PE=3 SV=1 71 801 4.0E-72
sp|Q54FQ2|PKS30_DICDI Probable polyketide synthase 30 OS=Dictyostelium discoideum GN=pks30 PE=3 SV=1 4 801 5.0E-72
sp|P49327|FAS_HUMAN Fatty acid synthase OS=Homo sapiens GN=FASN PE=1 SV=3 5 849 6.0E-72
sp|Q54TW0|PKS18_DICDI Probable polyketide synthase 18 OS=Dictyostelium discoideum GN=pks18 PE=2 SV=1 4 801 9.0E-72
sp|P12785|FAS_RAT Fatty acid synthase OS=Rattus norvegicus GN=Fasn PE=1 SV=3 5 849 1.0E-71
sp|P9WQE9|PHAS_MYCTU Phthioceranic/hydroxyphthioceranic acid synthase OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=pks2 PE=1 SV=1 4 1156 1.0E-71
sp|P9WQE8|PHAS_MYCTO Phthioceranic/hydroxyphthioceranic acid synthase OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=pks2 PE=3 SV=1 4 1156 1.0E-71
sp|A5U9F4|PHAS_MYCTA Phthioceranic/hydroxyphthioceranic acid synthase OS=Mycobacterium tuberculosis (strain ATCC 25177 / H37Ra) GN=pks2 PE=3 SV=1 4 1156 1.0E-71
sp|Q7TVK8|PHAS_MYCBO Phthioceranic/hydroxyphthioceranic acid synthase OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=pks2 PE=3 SV=1 4 1156 1.0E-71
sp|Q54G30|PKS27_DICDI Probable polyketide synthase 27 OS=Dictyostelium discoideum GN=pks27 PE=3 SV=1 72 801 2.0E-71
sp|P19096|FAS_MOUSE Fatty acid synthase OS=Mus musculus GN=Fasn PE=1 SV=2 5 849 2.0E-71
sp|A1KQG0|PHAS_MYCBP Phthioceranic/hydroxyphthioceranic acid synthase OS=Mycobacterium bovis (strain BCG / Pasteur 1173P2) GN=pks2 PE=3 SV=1 4 1156 3.0E-71
sp|Q54ED7|PKS40_DICDI Probable polyketide synthase 40 OS=Dictyostelium discoideum GN=pks40 PE=3 SV=1 58 802 2.0E-70
sp|Q03131|ERYA1_SACER Erythronolide synthase, modules 1 and 2 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=1 4 876 2.0E-69
sp|Q03133|ERYA3_SACER Erythronolide synthase, modules 5 and 6 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=4 3 802 6.0E-69
sp|P22367|MSAS_PENPA 6-methylsalicylic acid synthase OS=Penicillium patulum PE=1 SV=1 56 939 1.0E-68
sp|Q9Y7D5|LOVF_ASPTE Lovastatin diketide synthase LovF OS=Aspergillus terreus GN=lovF PE=1 SV=1 61 805 3.0E-68
sp|Q7TXK8|MSL7_MYCBO Phenolphthiocerol synthesis polyketide synthase type I Pks15/1 OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=pks15/1 PE=1 SV=1 47 1160 1.0E-67
sp|Q03133|ERYA3_SACER Erythronolide synthase, modules 5 and 6 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=4 3 805 9.0E-67
sp|B4XYB8|AZIB_STREG 5-methyl-1-naphthoate synthase OS=Streptomyces sahachiroi GN=aziB PE=1 SV=1 56 821 5.0E-66
sp|Q03149|WA_EMENI Conidial yellow pigment biosynthesis polyketide synthase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=wA PE=1 SV=2 3 821 7.0E-66
sp|Q12053|PKSL1_ASPPA Noranthrone synthase OS=Aspergillus parasiticus GN=pksL1 PE=1 SV=1 14 805 3.0E-63
sp|Q02251|MCAS_MYCBO Mycocerosic acid synthase OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=mas PE=1 SV=2 4 1118 8.0E-63
sp|Q12397|STCA_EMENI Putative sterigmatocystin biosynthesis polyketide synthase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=stcA PE=3 SV=2 61 807 3.0E-59
sp|Q4WAZ9|NRP14_ASPFU Nonribosomal peptide synthetase 14 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=NRPS14 PE=2 SV=2 72 803 4.0E-55
sp|Q7TXL6|PPSE_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsE OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsE PE=1 SV=1 3 828 2.0E-54
sp|P9WQE1|PPSE_MYCTU Phthiocerol synthesis polyketide synthase type I PpsE OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsE PE=1 SV=1 3 828 3.0E-54
sp|P9WQE0|PPSE_MYCTO Phthiocerol synthesis polyketide synthase type I PpsE OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsE PE=3 SV=1 3 828 3.0E-54
sp|A1CLY8|CCSA_ASPCL Polyketide synthase-nonribosomal peptide synthetase OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) GN=ccsA PE=3 SV=1 61 816 3.0E-54
sp|O31782|PKSN_BACSU Polyketide synthase PksN OS=Bacillus subtilis (strain 168) GN=pksN PE=1 SV=3 3 422 3.0E-54
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 3 413 1.0E-52
sp|P40806|PKSJ_BACSU Polyketide synthase PksJ OS=Bacillus subtilis (strain 168) GN=pksJ PE=1 SV=3 4 434 2.0E-51
sp|O31782|PKSN_BACSU Polyketide synthase PksN OS=Bacillus subtilis (strain 168) GN=pksN PE=1 SV=3 3 425 6.0E-51
sp|P96284|PKS15_MYCTU Putative inactive phenolphthiocerol synthesis polyketide synthase type I Pks15 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=pks15 PE=1 SV=2 47 413 2.0E-49
sp|P36189|FAS_ANSAN Fatty acid synthase (Fragment) OS=Anser anser anser GN=FASN PE=1 SV=1 5 356 5.0E-49
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 61 413 4.0E-48
sp|Q54KU5|PKS24_DICDI Probable polyketide synthase 24 OS=Dictyostelium discoideum GN=pks24 PE=3 SV=1 2 384 1.0E-47
sp|Q9R9J1|MYCA_BACIU Mycosubtilin synthase subunit A OS=Bacillus subtilis GN=mycA PE=3 SV=1 4 420 2.0E-47
sp|P40872|PKSM_BACSU Polyketide synthase PksM OS=Bacillus subtilis (strain 168) GN=pksM PE=1 SV=4 4 423 1.0E-46
sp|Q05470|PKSL_BACSU Polyketide synthase PksL OS=Bacillus subtilis (strain 168) GN=pksL PE=1 SV=3 3 460 4.0E-45
sp|Q55E72|PKS1_DICDI Probable polyketide synthase 1 OS=Dictyostelium discoideum GN=stlA PE=1 SV=1 63 414 1.0E-44
sp|P40806|PKSJ_BACSU Polyketide synthase PksJ OS=Bacillus subtilis (strain 168) GN=pksJ PE=1 SV=3 4 414 1.0E-43
sp|Q54FQ1|PKS31_DICDI Probable polyketide synthase 31 OS=Dictyostelium discoideum GN=pks31 PE=3 SV=1 71 424 1.0E-43
sp|Q558W4|PKS15_DICDI Probable polyketide synthase 15 OS=Dictyostelium discoideum GN=pks15 PE=3 SV=2 4 413 1.0E-43
sp|P40872|PKSM_BACSU Polyketide synthase PksM OS=Bacillus subtilis (strain 168) GN=pksM PE=1 SV=4 3 414 4.0E-43
sp|P40872|PKSM_BACSU Polyketide synthase PksM OS=Bacillus subtilis (strain 168) GN=pksM PE=1 SV=4 3 424 1.0E-42
sp|Q05470|PKSL_BACSU Polyketide synthase PksL OS=Bacillus subtilis (strain 168) GN=pksL PE=1 SV=3 63 425 4.0E-42
sp|Q54FD2|PKS38_DICDI Probable polyketide synthase 38 OS=Dictyostelium discoideum GN=pks38 PE=3 SV=1 71 413 5.0E-42
sp|O31784|PKSR_BACSU Polyketide synthase PksR OS=Bacillus subtilis (strain 168) GN=pksR PE=1 SV=2 4 419 8.0E-42
sp|Q54FP8|PKS32_DICDI Probable polyketide synthase 32 OS=Dictyostelium discoideum GN=pks32 PE=3 SV=1 4 413 9.0E-42
sp|O31782|PKSN_BACSU Polyketide synthase PksN OS=Bacillus subtilis (strain 168) GN=pksN PE=1 SV=3 4 414 3.0E-41
sp|Q05470|PKSL_BACSU Polyketide synthase PksL OS=Bacillus subtilis (strain 168) GN=pksL PE=1 SV=3 3 423 4.0E-41
sp|Q54FI3|PKS37_DICDI Probable polyketide synthase 37 OS=Dictyostelium discoideum GN=stlB PE=2 SV=1 4 406 4.0E-39
sp|O31784|PKSR_BACSU Polyketide synthase PksR OS=Bacillus subtilis (strain 168) GN=pksR PE=1 SV=2 4 414 2.0E-36
sp|Q55E72|PKS1_DICDI Probable polyketide synthase 1 OS=Dictyostelium discoideum GN=stlA PE=1 SV=1 503 930 8.0E-33
sp|Q54KU5|PKS24_DICDI Probable polyketide synthase 24 OS=Dictyostelium discoideum GN=pks24 PE=3 SV=1 503 1074 1.0E-31
sp|P40806|PKSJ_BACSU Polyketide synthase PksJ OS=Bacillus subtilis (strain 168) GN=pksJ PE=1 SV=3 60 415 2.0E-30
sp|Q05470|PKSL_BACSU Polyketide synthase PksL OS=Bacillus subtilis (strain 168) GN=pksL PE=1 SV=3 63 415 7.0E-30
sp|Q54FP8|PKS32_DICDI Probable polyketide synthase 32 OS=Dictyostelium discoideum GN=pks32 PE=3 SV=1 501 801 2.0E-27
sp|Q54FD2|PKS38_DICDI Probable polyketide synthase 38 OS=Dictyostelium discoideum GN=pks38 PE=3 SV=1 501 1010 3.0E-27
sp|Q54FQ1|PKS31_DICDI Probable polyketide synthase 31 OS=Dictyostelium discoideum GN=pks31 PE=3 SV=1 501 801 4.0E-26
sp|Q558W4|PKS15_DICDI Probable polyketide synthase 15 OS=Dictyostelium discoideum GN=pks15 PE=3 SV=2 497 801 6.0E-25
sp|O34340|FABF_BACSU 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Bacillus subtilis (strain 168) GN=fabF PE=1 SV=1 137 373 4.0E-23
sp|A7Z4X9|BAED_BACMF Polyketide biosynthesis acyltransferase homolog BaeD OS=Bacillus methylotrophicus (strain DSM 23117 / BGSC 10A6 / FZB42) GN=baeD PE=1 SV=1 505 818 1.0E-22
sp|Q83E37|FABF_COXBU 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Coxiella burnetii (strain RSA 493 / Nine Mile phase I) GN=fabF PE=1 SV=1 90 373 2.0E-22
sp|Q05356|KAS1_STRHA Putative polyketide beta-ketoacyl synthase 1 OS=Streptomyces halstedii GN=sch1 PE=3 SV=1 66 416 1.0E-20
sp|Q9NWU1|OXSM_HUMAN 3-oxoacyl-[acyl-carrier-protein] synthase, mitochondrial OS=Homo sapiens GN=OXSM PE=1 SV=1 128 363 2.0E-20
sp|O94297|OXSM_SCHPO Putative 3-oxoacyl-[acyl-carrier-protein] synthase, mitochondrial OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC887.13c PE=3 SV=1 146 363 2.0E-20
sp|P55338|FABF_VIBHA 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Vibrio harveyi GN=fabF PE=3 SV=2 65 373 3.0E-20
sp|Q02578|KAS1_STRCN Putative polyketide beta-ketoacyl synthase 1 OS=Streptomyces cyaneus GN=curA PE=3 SV=1 136 416 3.0E-20
sp|P71019|FABD_BACSU Malonyl CoA-acyl carrier protein transacylase OS=Bacillus subtilis (strain 168) GN=fabD PE=3 SV=2 504 805 3.0E-20
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 499 801 4.0E-20
sp|O34877|PKSD_BACSU Polyketide biosynthesis acyltransferase homolog PksD OS=Bacillus subtilis (strain 168) GN=pksD PE=1 SV=2 505 807 4.0E-20
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 499 801 8.0E-20
sp|P0AAI8|FABF_SHIFL 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Shigella flexneri GN=fabF PE=3 SV=2 137 373 8.0E-20
sp|P0AAI5|FABF_ECOLI 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Escherichia coli (strain K12) GN=fabF PE=1 SV=2 137 373 8.0E-20
sp|P0AAI6|FABF_ECOL6 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC) GN=fabF PE=3 SV=2 137 373 8.0E-20
sp|P0AAI7|FABF_ECO57 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Escherichia coli O157:H7 GN=fabF PE=3 SV=2 137 373 8.0E-20
sp|Q0VCA7|OXSM_BOVIN 3-oxoacyl-[acyl-carrier-protein] synthase, mitochondrial OS=Bos taurus GN=OXSM PE=2 SV=1 137 415 2.0E-19
sp|Q9KQH9|FABF_VIBCH 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) GN=fabF PE=1 SV=3 72 373 2.0E-19
sp|Q9D404|OXSM_MOUSE 3-oxoacyl-[acyl-carrier-protein] synthase, mitochondrial OS=Mus musculus GN=Oxsm PE=1 SV=1 71 415 2.0E-19
sp|P96285|PKS1_MYCTU Putative inactive phenolphthiocerol synthesis polyketide synthase type I Pks1 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=pks1 PE=1 SV=4 499 1160 4.0E-19
sp|Q5TKS0|FABF_STAAU 3-oxoacyl-[acyl-carrier-protein] synthase 2 (Fragment) OS=Staphylococcus aureus GN=fabF PE=3 SV=1 137 358 7.0E-19
sp|Q02059|KASA_STRCO Actinorhodin polyketide putative beta-ketoacyl synthase 1 OS=Streptomyces coelicolor (strain ATCC BAA-471 / A3(2) / M145) GN=SCO5087 PE=1 SV=2 138 413 8.0E-19
sp|Q8NXE1|FABF_STAAW 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain MW2) GN=fabF PE=1 SV=1 137 358 9.0E-19
sp|Q6GAU2|FABF_STAAS 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain MSSA476) GN=fabF PE=3 SV=1 137 358 9.0E-19
sp|Q5HHA1|FABF_STAAC 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain COL) GN=fabF PE=1 SV=1 137 358 9.0E-19
sp|Q6GIA3|FABF_STAAR 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain MRSA252) GN=fabF PE=3 SV=1 137 358 1.0E-18
sp|Q7A6F8|FABF_STAAN 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain N315) GN=fabF PE=1 SV=1 137 358 1.0E-18
sp|Q99VA6|FABF_STAAM 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Staphylococcus aureus (strain Mu50 / ATCC 700699) GN=fabF PE=3 SV=1 137 358 1.0E-18
sp|Q8L3X9|KASM_ARATH 3-oxoacyl-[acyl-carrier-protein] synthase, mitochondrial OS=Arabidopsis thaliana GN=KAS PE=1 SV=1 137 367 1.0E-18
sp|P39525|CEM1_YEAST 3-oxoacyl-[acyl-carrier-protein] synthase homolog OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CEM1 PE=1 SV=1 137 353 3.0E-18
sp|P06230|NODE_RHIME Nodulation protein E OS=Rhizobium meliloti (strain 1021) GN=nodE PE=3 SV=1 138 367 5.0E-18
sp|P06231|NOE4_RHIML Nodulation protein E OS=Rhizobium meliloti GN=nodE PE=3 SV=1 138 367 6.0E-18
sp|P23902|KASC1_HORVU 3-oxoacyl-[acyl-carrier-protein] synthase I, chloroplastic OS=Hordeum vulgare GN=KAS12 PE=1 SV=1 41 387 1.0E-17
sp|P04683|NODE_RHILV Nodulation protein E OS=Rhizobium leguminosarum bv. viciae GN=nodE PE=3 SV=2 138 367 2.0E-17
sp|P72331|NODE_RHIS3 Nodulation protein E OS=Rhizobium sp. (strain N33) GN=nodE PE=3 SV=1 138 367 2.0E-17
sp|P56902|FABF_RHIME 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Rhizobium meliloti (strain 1021) GN=fabF PE=3 SV=2 137 367 2.0E-17
sp|P23155|KAS1_STRCO Putative polyketide beta-ketoacyl synthase 1 OS=Streptomyces coelicolor (strain ATCC BAA-471 / A3(2) / M145) GN=SCO5318 PE=3 SV=1 136 415 2.0E-17
sp|O34825|PKSC_BACSU Polyketide biosynthesis malonyl CoA-acyl carrier protein transacylase PksC OS=Bacillus subtilis (strain 168) GN=pksC PE=1 SV=1 505 805 2.0E-17
sp|A7Z4Y0|BAEE_BACMF Polyketide biosynthesis protein BaeE OS=Bacillus methylotrophicus (strain DSM 23117 / BGSC 10A6 / FZB42) GN=baeE PE=1 SV=1 505 805 3.0E-17
sp|P16538|KAS1_STRGA Tetracenomycin C polyketide putative beta-ketoacyl synthase 1 OS=Streptomyces glaucescens GN=tcmK PE=3 SV=1 137 367 3.0E-17
sp|Q55E72|PKS1_DICDI Probable polyketide synthase 1 OS=Dictyostelium discoideum GN=stlA PE=1 SV=1 1197 1476 5.0E-17
sp|P41175|KAS1_STRCM Putative polyketide beta-ketoacyl synthase 1 OS=Streptomyces cinnamonensis PE=3 SV=1 4 367 8.0E-17
sp|O69473|FAB2_MYCLE 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Mycobacterium leprae (strain TN) GN=kasB PE=3 SV=2 161 363 1.0E-16
sp|P73283|FABF_SYNY3 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) GN=fabF PE=1 SV=1 126 367 4.0E-16
sp|P52410|KASC1_ARATH 3-oxoacyl-[acyl-carrier-protein] synthase I, chloroplastic OS=Arabidopsis thaliana GN=KAS1 PE=2 SV=2 137 373 5.0E-16
sp|P04684|NODE_RHILT Nodulation protein E OS=Rhizobium leguminosarum bv. trifolii GN=nodE PE=3 SV=2 138 367 6.0E-16
sp|P9WQD7|FAB2_MYCTU 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=kasB PE=1 SV=1 161 363 9.0E-16
sp|P9WQD6|FAB2_MYCTO 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=kasB PE=3 SV=1 161 363 9.0E-16
sp|P63457|FAB2_MYCBO 3-oxoacyl-[acyl-carrier-protein] synthase 2 OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=kasB PE=3 SV=1 161 363 9.0E-16
sp|Q03131|ERYA1_SACER Erythronolide synthase, modules 1 and 2 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=1 498 805 3.0E-15
sp|Q54FI3|PKS37_DICDI Probable polyketide synthase 37 OS=Dictyostelium discoideum GN=stlB PE=2 SV=1 505 928 7.0E-15
sp|Q0C8M3|LNKS_ASPTN Lovastatin nonaketide synthase OS=Aspergillus terreus (strain NIH 2624 / FGSC A1156) GN=lovB PE=3 SV=2 1839 2041 1.0E-14
sp|Q9Y8A5|LNKS_ASPTE Lovastatin nonaketide synthase OS=Aspergillus terreus GN=lovB PE=1 SV=1 1839 2041 2.0E-14
sp|A7Z4X8|BAEC_BACMF Polyketide biosynthesis malonyl CoA-acyl carrier protein transacylase BaeC OS=Bacillus methylotrophicus (strain DSM 23117 / BGSC 10A6 / FZB42) GN=baeC PE=1 SV=1 505 805 9.0E-14
sp|Q54ED7|PKS40_DICDI Probable polyketide synthase 40 OS=Dictyostelium discoideum GN=pks40 PE=3 SV=1 1102 1603 1.0E-13
sp|Q71SP7|FAS_BOVIN Fatty acid synthase OS=Bos taurus GN=FASN PE=2 SV=1 1856 2187 2.0E-13
sp|P43678|KAS1_STRRM Oxytetracycline polyketide putative beta-ketoacyl synthase 1 OS=Streptomyces rimosus PE=3 SV=2 71 416 3.0E-13
sp|Q54ED6|PKS41_DICDI Probable polyketide synthase 41 OS=Dictyostelium discoideum GN=pks41 PE=3 SV=1 1104 1481 1.0E-12
sp|Q4WAZ9|NRP14_ASPFU Nonribosomal peptide synthetase 14 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=NRPS14 PE=2 SV=2 1852 2168 1.0E-12
sp|Q559A9|PKS13_DICDI Probable polyketide synthase 13 OS=Dictyostelium discoideum GN=pks13 PE=3 SV=1 1055 1481 3.0E-12
sp|P49327|FAS_HUMAN Fatty acid synthase OS=Homo sapiens GN=FASN PE=1 SV=3 1856 2224 5.0E-12
sp|O31782|PKSN_BACSU Polyketide synthase PksN OS=Bacillus subtilis (strain 168) GN=pksN PE=1 SV=3 1859 2181 7.0E-12
sp|P16540|KAS1_STRVN Granaticin polyketide putative beta-ketoacyl synthase 1 OS=Streptomyces violaceoruber GN=gra-orf1 PE=3 SV=1 139 367 9.0E-12
sp|P12785|FAS_RAT Fatty acid synthase OS=Rattus norvegicus GN=Fasn PE=1 SV=3 1857 2208 1.0E-11
sp|P19096|FAS_MOUSE Fatty acid synthase OS=Mus musculus GN=Fasn PE=1 SV=2 1856 2187 1.0E-11
sp|Q9CBS7|FAB1_MYCLE 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Mycobacterium leprae (strain TN) GN=kasA PE=3 SV=1 127 373 1.0E-11
sp|B2HIL7|MSL7_MYCMM Phenolphthiocerol synthesis polyketide synthase type I Pks15/1 OS=Mycobacterium marinum (strain ATCC BAA-535 / M) GN=pks15/1 PE=1 SV=1 1850 2030 3.0E-11
sp|P22367|MSAS_PENPA 6-methylsalicylic acid synthase OS=Penicillium patulum PE=1 SV=1 1842 2025 3.0E-11
sp|Q9C9P4|KASC2_ARATH 3-oxoacyl-[acyl-carrier-protein] synthase II, chloroplastic OS=Arabidopsis thaliana GN=KAS2 PE=1 SV=1 138 370 3.0E-11
sp|P9WQD9|FAB1_MYCTU 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=kasA PE=1 SV=1 127 373 4.0E-11
sp|P9WQD8|FAB1_MYCTO 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=kasA PE=3 SV=1 127 373 4.0E-11
sp|H8ESN0|FAB1_MYCTE 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Mycobacterium tuberculosis (strain ATCC 35801 / TMC 107 / Erdman) GN=kasA PE=2 SV=2 127 373 4.0E-11
sp|P63455|FAB1_MYCBO 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=kasA PE=3 SV=1 127 373 4.0E-11
sp|Q03133|ERYA3_SACER Erythronolide synthase, modules 5 and 6 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=4 1861 2217 5.0E-11
sp|O34787|PKSE_BACSU Polyketide biosynthesis protein PksE OS=Bacillus subtilis (strain 168) GN=pksE PE=1 SV=3 505 805 5.0E-11
sp|P57193|FABB_BUCAI 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Buchnera aphidicola subsp. Acyrthosiphon pisum (strain APS) GN=fabB PE=3 SV=1 138 362 9.0E-11
sp|B0G103|PKS10_DICDI Probable polyketide synthase 10 OS=Dictyostelium discoideum GN=pks10 PE=3 SV=1 1279 1504 1.0E-10
sp|B4XYB8|AZIB_STREG 5-methyl-1-naphthoate synthase OS=Streptomyces sahachiroi GN=aziB PE=1 SV=1 1860 2201 2.0E-10
sp|A1CLY8|CCSA_ASPCL Polyketide synthase-nonribosomal peptide synthetase OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) GN=ccsA PE=3 SV=1 1876 2178 3.0E-10
sp|Q89AY4|FABB_BUCBP 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Buchnera aphidicola subsp. Baizongia pistaciae (strain Bp) GN=fabB PE=3 SV=1 140 362 5.0E-10
sp|Q7A124|FABD_STAAW Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain MW2) GN=fabD PE=3 SV=1 504 805 5.0E-10
sp|Q7A5Z3|FABD_STAAN Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain N315) GN=fabD PE=1 SV=1 504 805 5.0E-10
sp|Q99UN8|FABD_STAAM Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain Mu50 / ATCC 700699) GN=fabD PE=1 SV=1 504 805 5.0E-10
sp|Q6G9Y3|FABD_STAAS Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain MSSA476) GN=fabD PE=3 SV=1 504 805 7.0E-10
sp|Q7TXK8|MSL7_MYCBO Phenolphthiocerol synthesis polyketide synthase type I Pks15/1 OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=pks15/1 PE=1 SV=1 1850 2030 1.0E-09
sp|P43710|FABB_HAEIN 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) GN=fabB PE=3 SV=1 138 363 1.0E-09
sp|Q03132|ERYA2_SACER Erythronolide synthase, modules 3 and 4 OS=Saccharopolyspora erythraea GN=eryA PE=1 SV=3 1854 2216 2.0E-09
sp|P96285|PKS1_MYCTU Putative inactive phenolphthiocerol synthesis polyketide synthase type I Pks1 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=pks1 PE=1 SV=4 1850 2030 2.0E-09
sp|Q93QD4|FABD_STAAU Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus GN=fabD PE=3 SV=1 504 805 2.0E-09
sp|Q5HGK3|FABD_STAAC Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain COL) GN=fabD PE=3 SV=1 504 805 2.0E-09
sp|Q02K94|FABB_PSEAB 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Pseudomonas aeruginosa (strain UCBPP-PA14) GN=fabB PE=1 SV=1 131 414 2.0E-09
sp|Q86JI5|PKS5_DICDI Probable polyketide synthase 5 OS=Dictyostelium discoideum GN=pks5 PE=2 SV=1 1324 1490 3.0E-09
sp|P40804|PKSF_BACSU Polyketide biosynthesis malonyl-ACP decarboxylase PksF OS=Bacillus subtilis (strain 168) GN=pksF PE=1 SV=3 210 366 8.0E-09
sp|Q6GHK5|FABD_STAAR Malonyl CoA-acyl carrier protein transacylase OS=Staphylococcus aureus (strain MRSA252) GN=fabD PE=3 SV=1 504 805 8.0E-09
sp|Q86AE3|PKS9_DICDI Probable polyketide synthase 9/36 OS=Dictyostelium discoideum GN=pks9 PE=2 SV=1 1324 1485 9.0E-09
sp|Q54IX3|PKS26_DICDI Probable polyketide synthase 26 OS=Dictyostelium discoideum GN=pks26 PE=3 SV=1 1318 1507 1.0E-08
sp|P96202|PPSC_MYCTU Phthiocerol synthesis polyketide synthase type I PpsC OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsC PE=1 SV=2 1850 2027 1.0E-08
sp|Q7TXL8|PPSC_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsC OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsC PE=1 SV=1 1850 2027 1.0E-08
sp|A1CLY8|CCSA_ASPCL Polyketide synthase-nonribosomal peptide synthetase OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) GN=ccsA PE=3 SV=1 1305 1484 1.0E-08
sp|Q9Y7D5|LOVF_ASPTE Lovastatin diketide synthase LovF OS=Aspergillus terreus GN=lovF PE=1 SV=1 1260 1484 2.0E-08
sp|P43712|FABD_HAEIN Malonyl CoA-acyl carrier protein transacylase OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) GN=fabD PE=3 SV=1 504 803 4.0E-08
sp|B0G101|PKS8_DICDI Probable polyketide synthase 8/35 OS=Dictyostelium discoideum GN=pks8 PE=3 SV=1 1324 1484 1.0E-07
sp|B0G100|PKS7_DICDI Probable polyketide synthase 7 OS=Dictyostelium discoideum GN=pks7 PE=3 SV=1 1324 1484 2.0E-07
sp|P12276|FAS_CHICK Fatty acid synthase OS=Gallus gallus GN=FASN PE=1 SV=5 1858 2018 2.0E-07
sp|Q54G30|PKS27_DICDI Probable polyketide synthase 27 OS=Dictyostelium discoideum GN=pks27 PE=3 SV=1 1322 1565 2.0E-07
sp|P73242|FABD_SYNY3 Malonyl CoA-acyl carrier protein transacylase OS=Synechocystis sp. (strain PCC 6803 / Kazusa) GN=fabD PE=1 SV=1 504 698 2.0E-07
sp|Q54FQ2|PKS30_DICDI Probable polyketide synthase 30 OS=Dictyostelium discoideum GN=pks30 PE=3 SV=1 1322 1481 4.0E-07
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 1870 2018 4.0E-07
sp|Q07017|OL56_STRAT Oleandomycin polyketide synthase, modules 5 and 6 OS=Streptomyces antibioticus GN=orfB PE=3 SV=1 1870 2018 4.0E-07
sp|Q54D44|PKS42_DICDI Probable polyketide synthase 42 OS=Dictyostelium discoideum GN=pks42 PE=3 SV=2 1320 1481 5.0E-07
sp|Q54FN2|PKS34_DICDI Probable polyketide synthase 34 OS=Dictyostelium discoideum GN=pks34 PE=3 SV=1 1322 1481 5.0E-07
sp|Q54FN7|PKS33_DICDI Probable polyketide synthase 33 OS=Dictyostelium discoideum GN=pks33 PE=3 SV=2 1322 1502 6.0E-07
sp|B0G170|PKS28_DICDI Probable polyketide synthase 28 OS=Dictyostelium discoideum GN=pks28 PE=3 SV=1 1322 1572 7.0E-07
sp|Q558Y6|PKS14_DICDI Probable polyketide synthase 14 OS=Dictyostelium discoideum GN=pks14 PE=3 SV=2 1059 1487 8.0E-07
sp|P0AAI9|FABD_ECOLI Malonyl CoA-acyl carrier protein transacylase OS=Escherichia coli (strain K12) GN=fabD PE=1 SV=2 504 803 8.0E-07
sp|P0AAJ0|FABD_ECOL6 Malonyl CoA-acyl carrier protein transacylase OS=Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC) GN=fabD PE=3 SV=2 504 803 8.0E-07
sp|B0G0Z9|PKS6_DICDI Probable polyketide synthase 6 OS=Dictyostelium discoideum GN=pks6 PE=3 SV=1 1324 1484 9.0E-07
sp|Q54FQ1|PKS31_DICDI Probable polyketide synthase 31 OS=Dictyostelium discoideum GN=pks31 PE=3 SV=1 1322 1481 1.0E-06
sp|Q54FQ3|PKS29_DICDI Probable polyketide synthase 29 OS=Dictyostelium discoideum GN=pks29 PE=3 SV=1 1322 1481 2.0E-06
sp|Q54FD2|PKS38_DICDI Probable polyketide synthase 38 OS=Dictyostelium discoideum GN=pks38 PE=3 SV=1 1322 1481 2.0E-06
sp|P0A953|FABB_ECOLI 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Escherichia coli (strain K12) GN=fabB PE=1 SV=1 138 363 2.0E-06
sp|P0A954|FABB_ECOL6 3-oxoacyl-[acyl-carrier-protein] synthase 1 OS=Escherichia coli O6:H1 (strain CFT073 / ATCC 700928 / UPEC) GN=fabB PE=3 SV=1 138 363 2.0E-06
sp|Q9R9J2|FENF_BACIU Malonyl CoA-acyl carrier protein transacylase OS=Bacillus subtilis GN=fenF PE=1 SV=1 505 724 2.0E-06
sp|Q54FC8|PKS39_DICDI Probable polyketide synthase 39 OS=Dictyostelium discoideum GN=pks39 PE=3 SV=1 1322 1481 3.0E-06
sp|Q54FP8|PKS32_DICDI Probable polyketide synthase 32 OS=Dictyostelium discoideum GN=pks32 PE=3 SV=1 1322 1481 3.0E-06
sp|Q9Y7D5|LOVF_ASPTE Lovastatin diketide synthase LovF OS=Aspergillus terreus GN=lovF PE=1 SV=1 1860 2083 5.0E-06
sp|P9WQE6|PPSA_MYCTO Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=ppsA PE=3 SV=1 1859 2232 7.0E-06
sp|Q7TXM0|PPSA_MYCBO Phthiocerol/phenolphthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=ppsA PE=1 SV=1 1859 2232 7.0E-06
sp|P9WQE7|PPSA_MYCTU Phthiocerol synthesis polyketide synthase type I PpsA OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=ppsA PE=1 SV=1 1859 2232 7.0E-06
[Show less]

GO

GO Term Description Terminal node
GO:0008168 methyltransferase activity Yes
GO:0003824 catalytic activity No
GO:0016740 transferase activity No
GO:0003674 molecular_function No
GO:0016741 transferase activity, transferring one-carbon groups No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 11 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

No expression data available for this genome

Sequences

Type of sequenceSequence
Locus Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded.
Protein >Agabi119p4|110000
MMFAIVGVAAQLPSGRFSTTDLDYEEFGKFLFGGEHAFEDFDRLELEPNPFATVDLSNMPRKGAFLKSMTEFDYS
SFGISSDDARVMPNSARRLMELSFRALLDAGIQSRGQSIGCFMSGNNDLGLDNMNTDGSLVYVPSAIPNRISYAL
NLTGPSIAIDTACSSSLTGLHLATSAIKNGDCTAALVGAAQSNRDVVEWWRYDKAHVLSPEGICKPFDEQADGFA
RGEGAVVVVVKSLQDALDDNDRIYCTIAASSHAATGSDFPVYVPHGPSQQQVISQAYKKAGREPTEADYVELHMT
GTRIGDPIEANATGQVFCQNGSRIRVGSVKGNVGHLEGAAFLASLVKVCHIFDKGIIPPTPNFSVPNRGISWDKF
ELEVVTKPVTLGCKAEGRRPLISIASAGIGGSHGHVLLEGPPPKATSRHLQHETNVLFLIGGLTPSATQTVAQDI
SGLPDDSEVILNNAVLASRQARQLPWRSFLIYRNNSTSLADLPRPVLVPTKSPKLAFVFSGQGPQNAQMGHQLFQ
QYPVFRNTVIELDEIHQKVMGYSFLKSTGLFSRKITDTRVLQKKWPVILTLPALVMIHIGIFELLKSMGILPDYT
LGHSAGETAIVYASGAGPKAMAMEIALARGRSMTCTEYMGAGMAVVACNAAVCQALINQVDRGDATEHDVEISCF
NAPDSVVVSGKTELVDAVVSLAKEQGVFAQGVNTLVPGHSKYIEYCREEHNKLIEDIFARYPGPHTPVIPVFSTC
RPGEMVQEFTSEYFWDNARNPVHFSDAVTQILAKSNQSSTMFVEVSPHPVLSGTVASHGVPAARTICPMRRIPQD
VYDPHHETTCLLTSVAQLALTGYDRIDLSGLYGIPENRKPLFNHPLQRSRVMPFKTFTTASSKPPNPLLSSLPSI
GSDTFNLFSQHRVGDVPVVPGTGWLEMALEAGGRYLWDVEFHSLCSIQQGSNLALSFERDGRNKWSITSSQNVDA
HNGLSRTIIATGCLGTNATSRHRMENLDITALQDKLEHIPIEGLHSIFGDHHYYGPSFSRLISVHGNPSEILAEI
RGLDEEERSAGYIIHPGVLDACLRVVAYRELLQVWDTGIWLPKHIRRFVLHTESTSSSSLFAYVRLNRWEPDSRS
FNITITSDQGRIICELEDLTLRRAQSGVTSKQIRALELTSEDLSIPNIVLPLLPFSQGQDKDAYSRLFRVLDHLV
LNQLRKTLKLQPHCENVGRSRYLKRMTQLTQDLEMPKSLEESEIHAQQLQWPAHFQITRRLGEMYEDILLASRGA
ADVLFADDLMGRYCAERNLLVGVCEETSERFDSILKALRGSGRHTVKILEVGAGTGILARQLIPIIKKYPQLAVE
YTVTDASYSLVADLAESLEFNRLIPRVYDPAEDPYSQGFLPESFDLIIAYHVLLLAPELKTSIRWLHELLVPGGL
MLAAGIDANSWSDKPGAVWMDFTFGSFAEWFSYQDEHNHCPMSPSQWDALLHSSDFYNVSPITRSDSRLDFIFTC
QKKPGSIKRTFEPLPAVTLYHYKDGEEVQLQHCLRDFIPGNHGVMCLWTDSKYDGDSAMGLVLTLAREFATWTIW
LAMFDVYLGITTVEEVIKLNHVHLAREHLVYFSADGSPSFPRVVRLPPVSDELTTQTLSPVSVNHLLVRVTDYDL
EGGFLGNVVQSEDPEIPEQSFVAGLKLNARINTLLTVHGGRIVKVDQPDPRVLPYLPAMLLLFQCLGFSRFMYPS
LDHPPLRILLALRNENLAQALHHLFTASCGIYVHTEAPDSFVDVLVTDHETLEADPLLEQSVGMNGRMVVWSPQL
VERTVSQEPWVLRHAFSTGIRNFKIPPLEIPRIADLNGDICSLPLEELKPSSLLDAHKVYLLIGGIGGIGLHLAV
WLYENGARHIYLTSRRGRESALQADDILLRYKLRYLEDRTDLDLRLVACDALSANDTKNFLSSIQLPIGGCFLMP
LILRDSLFLKQTEETMDIVKRSKVEAFDIVTSYCDVKAMDFFVAFSSVAALWGNPGQSNYGSACAILDGKMSGHR
NAFALLVPAVMDAGYILQTRTLDSLGLPGADEWGIGVEELCEYLRDGISRVKQGTNPSIYIPDLEISVLTKYFTL
PPLYHFLIPSSSLEAGSQKPEDSGREVEDVLTAIQEVIKTSLDIRDDTFSSDMPFINYGLDSIRATRLSRQLKQY
IEVSQTDLLLGMSWTKLEERVKDNYLTKPKSINVAETCKRLVLSALGIDSLETFSPDMPFVSYGLDSIRATQLSR
KLKPYIRISHTDLLLGMSWADFEKRITQSKFSEGQQKNNTVNRNTAEECRRLIVGSLGIDSATFDPDIPFINYGL
DSIRAMRLSRQLQPYVKISQMDLLLGMAWRGLEQNVLNKILPEESSLTASNSVQAGERSKKWSVSFTKLDEAIGD
GPIIFALPGATGTLATISPMMNYATKGSTTFWAVHFDLSACDDFPLSLQDLGNEILGGIKERHPRGALRIITVSG
SSTLAFLLAKALEAQGRQILDISFLDHFPALFCHDAYGLVPYIVSREGDTEAFKALDAIVERGTEIMLRLQEIDP
TMQNISPRWEEHDTLKGMEAIKGLETARMLNGASVAFIKKLYYQSEGRSEPYDEALVRWLGDVNAPLLVVVADRG
FNQVVVTPWADMGAGKVSKYKKDIQILHVDAAHFEVVGCETVSRKLCL*
Coding >Agabi119p4|110000
ATGATGTTCGCCATCGTTGGGGTAGCGGCCCAGCTGCCTTCCGGGCGGTTTTCAACAACAGATCTGGATTATGAA
GAATTCGGGAAGTTTCTTTTCGGAGGAGAACATGCATTCGAAGACTTCGATCGACTCGAACTAGAGCCGAATCCA
TTTGCAACAGTGGACTTGTCCAACATGCCGCGAAAAGGTGCTTTCTTGAAATCTATGACGGAGTTCGATTATTCT
TCGTTCGGAATAAGTAGTGATGATGCTCGGGTAATGCCTAACAGTGCGCGACGACTGATGGAACTGTCCTTTCGC
GCTCTGCTTGATGCGGGAATTCAAAGTCGAGGACAATCAATCGGATGCTTCATGAGTGGAAACAATGACCTCGGC
CTTGATAATATGAACACGGATGGTAGTCTTGTTTACGTGCCCAGTGCCATCCCTAACCGCATTTCCTACGCTCTC
AATCTTACGGGCCCATCCATCGCAATTGACACTGCTTGCAGCTCTTCACTCACGGGATTGCACTTGGCAACTTCG
GCCATCAAGAACGGAGATTGTACGGCGGCTTTGGTAGGTGCTGCTCAGAGCAATAGAGATGTCGTAGAATGGTGG
CGATATGACAAGGCACACGTATTGTCACCAGAAGGTATTTGTAAACCTTTTGACGAACAAGCTGACGGGTTTGCG
CGTGGCGAAGGCGCTGTCGTTGTCGTCGTAAAGAGCCTGCAAGACGCACTCGATGACAATGATCGTATATATTGC
ACCATTGCGGCGTCTTCTCATGCTGCGACCGGTTCTGATTTTCCGGTTTACGTTCCTCATGGGCCTTCGCAGCAA
CAGGTTATATCACAAGCATATAAAAAGGCGGGAAGGGAGCCTACAGAGGCAGATTACGTAGAACTTCACATGACA
GGAACGAGAATTGGAGATCCAATCGAGGCGAACGCTACTGGGCAAGTGTTTTGCCAAAACGGATCTAGGATACGT
GTTGGATCTGTGAAAGGGAATGTAGGCCACCTCGAGGGCGCTGCTTTCCTGGCATCCTTGGTCAAAGTATGCCAT
ATTTTCGACAAGGGAATCATACCTCCGACCCCGAATTTTTCTGTCCCAAACAGAGGTATTTCTTGGGACAAATTT
GAGCTTGAGGTCGTAACCAAGCCAGTAACACTCGGGTGCAAAGCTGAAGGCAGGCGACCGCTAATCTCGATCGCG
AGTGCCGGAATTGGCGGATCACATGGTCACGTGTTACTGGAAGGACCGCCTCCAAAAGCCACCTCACGACACTTG
CAGCACGAAACTAATGTCCTCTTCCTCATCGGAGGACTAACCCCAAGTGCAACACAGACCGTAGCTCAAGATATT
TCTGGTCTTCCAGACGACTCAGAGGTCATTCTCAATAATGCTGTACTTGCTTCGCGACAGGCGCGACAACTTCCA
TGGAGGTCTTTCTTAATTTATAGGAATAATTCTACCTCGCTCGCAGATCTTCCTCGCCCAGTCTTGGTACCCACC
AAATCCCCTAAACTTGCTTTTGTTTTCTCTGGTCAAGGACCTCAAAATGCGCAAATGGGTCACCAATTGTTTCAA
CAATATCCAGTATTCAGGAATACCGTCATCGAATTGGACGAAATCCATCAAAAAGTCATGGGATACTCCTTCTTG
AAATCTACTGGCCTTTTCTCCCGCAAAATAACTGATACACGGGTCCTGCAGAAAAAATGGCCTGTAATCCTTACC
CTGCCTGCCCTCGTCATGATTCATATTGGGATTTTCGAGCTCCTCAAAAGCATGGGAATCCTACCCGATTATACG
CTCGGGCACTCGGCCGGAGAGACCGCCATCGTATATGCTTCTGGAGCTGGACCAAAGGCTATGGCAATGGAGATA
GCTCTTGCTCGCGGTCGCTCCATGACGTGTACTGAATACATGGGTGCGGGCATGGCCGTTGTTGCATGCAATGCT
GCCGTTTGCCAAGCTCTGATCAACCAAGTTGATCGAGGCGATGCAACAGAACATGATGTCGAGATTTCATGCTTC
AATGCTCCGGATTCGGTGGTCGTGTCAGGAAAGACGGAGCTGGTGGACGCCGTTGTTTCACTTGCGAAAGAACAA
GGGGTTTTCGCTCAAGGCGTCAACACACTTGTCCCGGGACATAGCAAATATATCGAATACTGTCGTGAAGAACAC
AATAAACTTATAGAGGATATTTTTGCTCGCTATCCAGGCCCACATACTCCCGTCATCCCAGTCTTCTCCACCTGT
AGGCCTGGTGAAATGGTCCAAGAGTTCACTTCCGAATACTTCTGGGATAACGCTAGGAATCCCGTTCATTTCTCT
GATGCGGTAACTCAAATCCTTGCCAAAAGTAATCAATCTTCTACAATGTTCGTGGAGGTTTCTCCTCACCCTGTT
CTTTCTGGCACTGTCGCTTCTCATGGTGTTCCCGCGGCACGCACTATTTGCCCCATGCGAAGAATCCCACAGGAC
GTTTATGATCCTCATCATGAGACGACATGTCTCCTTACAAGCGTTGCTCAGCTAGCTCTGACTGGCTATGATCGG
ATCGATCTGTCTGGGCTCTATGGTATTCCAGAAAACCGAAAACCCCTGTTTAATCACCCACTGCAGCGTTCTCGA
GTCATGCCGTTCAAAACATTCACGACAGCCAGCAGCAAACCTCCTAATCCTCTCCTGTCCTCTTTACCGTCTATC
GGGAGCGATACCTTCAACCTATTTTCCCAGCATCGGGTTGGTGATGTTCCTGTTGTTCCAGGAACTGGTTGGTTA
GAAATGGCTTTGGAAGCGGGTGGTCGTTATTTATGGGATGTCGAATTTCATTCACTGTGTTCCATACAGCAAGGT
AGTAATTTGGCCTTGTCTTTTGAGCGAGATGGACGCAACAAATGGTCTATAACATCGTCTCAGAACGTCGATGCA
CACAACGGCTTAAGTCGTACCATCATCGCTACTGGATGTCTAGGGACAAACGCCACGTCTCGACATCGCATGGAG
AACCTTGACATTACTGCTCTCCAAGATAAACTCGAGCACATCCCTATTGAAGGTCTCCATTCAATCTTCGGTGAC
CATCACTACTATGGCCCATCGTTTTCTCGCCTCATCTCTGTGCACGGCAATCCATCTGAAATACTAGCGGAAATT
CGAGGGTTAGATGAGGAAGAACGCTCGGCTGGGTACATTATCCACCCTGGTGTCCTGGATGCATGTCTTCGTGTC
GTGGCATACCGAGAACTTCTACAAGTATGGGATACAGGCATCTGGCTCCCAAAGCACATCCGAAGATTCGTACTT
CATACTGAATCAACCTCTTCTTCGTCTTTATTCGCCTATGTGCGTCTGAATCGCTGGGAACCAGATTCTAGGTCG
TTCAACATAACGATTACGAGCGATCAAGGCCGTATTATATGTGAACTCGAAGACCTCACGTTGCGACGGGCACAA
TCTGGTGTGACTTCGAAGCAGATACGGGCCCTAGAATTGACTTCGGAAGATCTCTCAATACCAAACATTGTATTG
CCTTTGTTACCTTTCTCCCAGGGTCAGGACAAGGATGCTTACTCGCGGCTTTTCCGCGTCTTGGATCATCTTGTA
CTCAATCAACTTCGTAAGACGCTCAAGCTCCAACCACATTGCGAAAATGTCGGTCGGTCGCGGTACCTGAAAAGG
ATGACACAGTTGACTCAAGATTTAGAAATGCCTAAGTCGCTCGAAGAATCAGAGATTCATGCACAACAATTGCAG
TGGCCCGCACACTTTCAAATTACACGACGACTTGGAGAAATGTATGAAGATATTTTACTCGCTTCCCGGGGAGCT
GCCGATGTACTATTTGCCGACGATTTGATGGGTCGGTACTGTGCAGAACGTAATCTTCTGGTTGGAGTTTGTGAA
GAAACATCAGAGCGATTTGATAGCATTCTAAAAGCTTTGCGTGGGTCAGGGAGACATACAGTGAAAATCCTTGAG
GTTGGAGCAGGGACCGGGATTCTTGCGCGTCAACTTATACCAATTATCAAGAAATATCCTCAACTCGCGGTGGAA
TATACGGTCACTGATGCGTCATACTCCCTCGTGGCGGATCTGGCGGAGTCGTTAGAATTTAATAGACTCATACCC
AGAGTTTATGATCCAGCCGAAGATCCATACTCCCAGGGATTTCTACCTGAAAGCTTTGATTTAATCATAGCTTAC
CACGTCCTTCTTCTTGCGCCTGAGCTCAAAACATCAATCCGGTGGCTGCATGAGTTGCTCGTACCGGGAGGTTTA
ATGCTTGCAGCGGGAATAGACGCCAATTCGTGGTCCGATAAACCTGGAGCGGTGTGGATGGATTTTACTTTTGGG
TCCTTCGCAGAATGGTTCAGCTACCAAGATGAACATAACCATTGTCCCATGTCGCCGTCGCAGTGGGATGCATTG
CTCCACTCCTCTGATTTCTACAACGTCTCACCAATCACTCGTTCGGATTCCCGTCTTGATTTTATCTTTACCTGC
CAGAAGAAACCAGGATCTATAAAGAGGACATTCGAGCCACTACCAGCTGTCACACTATATCACTACAAGGACGGG
GAGGAAGTTCAACTCCAGCACTGTCTCCGTGATTTCATTCCTGGCAATCATGGTGTCATGTGTCTATGGACGGAC
AGTAAATACGATGGTGACTCTGCGATGGGTTTGGTTTTGACTCTTGCTAGGGAGTTTGCGACGTGGACAATTTGG
TTGGCCATGTTCGATGTTTATTTGGGCATAACAACAGTTGAGGAAGTCATCAAACTTAATCACGTACACCTCGCC
CGTGAACATCTTGTATATTTCTCAGCGGATGGCAGCCCATCTTTCCCCCGGGTGGTGCGGCTACCGCCTGTTTCA
GACGAACTTACCACCCAAACACTTTCCCCTGTTTCGGTTAATCATCTTCTCGTCCGAGTCACGGACTACGATCTG
GAAGGTGGTTTTTTGGGAAATGTCGTCCAAAGTGAAGACCCAGAAATTCCCGAACAATCTTTCGTAGCAGGATTA
AAACTGAACGCTAGGATTAATACCCTCTTAACAGTCCATGGAGGAAGAATTGTGAAAGTTGATCAACCTGATCCT
CGTGTTCTTCCTTACCTGCCAGCAATGCTACTCTTATTCCAATGCCTTGGATTTTCACGCTTCATGTATCCATCT
CTTGACCACCCTCCCCTACGAATTCTCCTTGCTTTGCGCAATGAGAACTTGGCTCAAGCGCTGCACCATCTTTTC
ACTGCATCTTGCGGGATCTACGTTCATACAGAAGCCCCTGATTCATTCGTCGACGTCCTTGTGACGGACCACGAA
ACTCTTGAAGCTGATCCTTTACTCGAGCAAAGTGTTGGTATGAATGGGAGGATGGTGGTCTGGTCTCCCCAGTTG
GTTGAACGGACTGTATCGCAAGAGCCTTGGGTTCTGCGCCATGCCTTCAGTACTGGCATTCGTAATTTCAAAATC
CCTCCACTCGAAATTCCACGGATAGCGGACCTGAATGGTGACATATGCAGTCTGCCACTCGAGGAACTCAAACCT
TCCTCACTTCTGGACGCCCACAAAGTTTACCTATTGATTGGAGGCATTGGAGGTATCGGTCTCCACCTTGCAGTC
TGGCTTTATGAGAATGGTGCACGTCATATATATCTCACCTCTCGTAGAGGGCGAGAATCGGCTCTACAAGCGGAT
GACATCCTTCTTCGTTATAAACTCCGGTATTTAGAAGACCGGACTGACCTTGATTTACGATTGGTGGCCTGCGAT
GCTCTGAGTGCCAATGACACCAAAAACTTCCTAAGTTCCATTCAACTTCCCATCGGTGGCTGTTTTCTCATGCCC
CTCATCCTTCGCGATTCTCTTTTCCTCAAACAAACGGAAGAAACGATGGATATTGTCAAGAGGTCGAAGGTTGAA
GCCTTTGATATTGTCACCAGTTATTGTGACGTAAAGGCAATGGATTTCTTTGTTGCGTTCTCGTCTGTAGCCGCT
CTCTGGGGTAATCCTGGACAGTCGAATTATGGAAGCGCCTGCGCCATTCTAGATGGGAAAATGTCGGGACATCGA
AATGCTTTCGCTCTGCTCGTTCCGGCCGTCATGGATGCAGGATATATTTTACAAACTAGGACGCTTGACAGTCTT
GGTTTACCGGGAGCTGATGAATGGGGCATAGGTGTCGAAGAACTATGTGAATACCTCAGAGATGGAATCTCGAGA
GTAAAGCAAGGGACTAACCCCTCGATATACATTCCTGACCTGGAGATTAGTGTTTTAACCAAGTATTTCACCCTC
CCACCCCTCTACCACTTCCTTATTCCGTCGTCATCTTTGGAAGCTGGATCACAGAAACCGGAGGATTCAGGTCGA
GAGGTGGAAGACGTTCTTACAGCAATTCAAGAGGTCATCAAAACAAGCCTCGACATCCGCGATGATACATTTTCA
TCTGACATGCCTTTCATCAATTATGGTCTGGACTCTATCCGAGCAACTCGTTTATCTCGCCAACTTAAACAATAT
ATCGAGGTTTCGCAAACAGATCTCTTACTCGGAATGTCGTGGACCAAGCTCGAAGAACGTGTCAAGGATAACTAT
CTGACCAAGCCAAAATCCATCAATGTCGCCGAGACCTGCAAACGCCTCGTGTTGTCGGCTCTAGGCATCGACTCG
CTTGAGACATTCTCTCCGGATATGCCTTTCGTCAGCTATGGTCTGGATTCGATACGAGCAACACAGCTTTCCAGG
AAATTGAAACCTTATATCCGAATCTCACATACGGACTTGCTCCTCGGAATGTCATGGGCAGATTTCGAAAAAAGG
ATCACCCAATCAAAGTTCTCTGAAGGCCAGCAAAAAAACAATACGGTGAATCGTAATACTGCCGAAGAGTGTAGA
AGATTGATTGTTGGGAGCCTCGGTATCGATTCAGCGACATTCGATCCCGACATCCCATTCATCAATTATGGGCTG
GATTCCATCAGAGCTATGAGACTCTCGCGACAGCTGCAACCCTACGTCAAGATTTCGCAGATGGATTTGTTGCTG
GGTATGGCTTGGAGAGGATTAGAACAGAACGTTCTGAACAAAATTCTCCCAGAGGAATCCTCGTTGACGGCATCG
AACTCTGTTCAAGCAGGAGAGAGGTCGAAGAAATGGTCAGTGTCGTTCACGAAACTGGACGAGGCAATAGGAGAT
GGGCCCATCATTTTCGCTTTGCCAGGAGCCACAGGAACACTTGCTACAATCTCTCCGATGATGAACTATGCCACA
AAGGGTTCTACAACCTTTTGGGCGGTTCATTTTGACCTCTCAGCGTGTGATGACTTTCCGCTATCACTACAAGAC
CTTGGTAACGAGATTCTCGGAGGAATTAAGGAAAGACACCCCCGTGGCGCTCTTCGTATCATAACAGTTTCCGGT
TCCAGTACTCTAGCATTCTTGCTGGCTAAAGCACTTGAAGCACAAGGAAGACAAATTCTTGACATCTCATTTCTC
GACCATTTCCCAGCTCTATTCTGTCACGACGCTTATGGCCTCGTACCTTATATCGTGTCGCGCGAAGGCGATACC
GAGGCTTTCAAAGCACTGGACGCTATTGTAGAACGTGGGACGGAAATAATGCTTCGCCTGCAAGAAATTGATCCG
ACCATGCAGAATATCTCTCCCAGGTGGGAGGAACATGACACACTGAAGGGGATGGAGGCTATTAAGGGTCTAGAA
ACTGCAAGGATGTTGAATGGAGCCTCGGTTGCATTTATCAAGAAACTTTATTACCAATCAGAAGGCAGATCCGAA
CCATACGATGAAGCACTGGTGAGGTGGTTAGGAGATGTGAACGCACCACTTCTCGTCGTCGTCGCAGATAGGGGT
TTCAATCAGGTAGTGGTAACGCCATGGGCCGACATGGGTGCGGGGAAAGTGTCAAAATACAAAAAGGATATCCAG
ATCTTACACGTTGACGCTGCACATTTTGAGGTAGTTGGCTGCGAGACCGTCTCGAGGAAGTTGTGTCTATAA
Transcript >Agabi119p4|110000
ATGATGTTCGCCATCGTTGGGGTAGCGGCCCAGCTGCCTTCCGGGCGGTTTTCAACAACAGATCTGGATTATGAA
GAATTCGGGAAGTTTCTTTTCGGAGGAGAACATGCATTCGAAGACTTCGATCGACTCGAACTAGAGCCGAATCCA
TTTGCAACAGTGGACTTGTCCAACATGCCGCGAAAAGGTGCTTTCTTGAAATCTATGACGGAGTTCGATTATTCT
TCGTTCGGAATAAGTAGTGATGATGCTCGGGTAATGCCTAACAGTGCGCGACGACTGATGGAACTGTCCTTTCGC
GCTCTGCTTGATGCGGGAATTCAAAGTCGAGGACAATCAATCGGATGCTTCATGAGTGGAAACAATGACCTCGGC
CTTGATAATATGAACACGGATGGTAGTCTTGTTTACGTGCCCAGTGCCATCCCTAACCGCATTTCCTACGCTCTC
AATCTTACGGGCCCATCCATCGCAATTGACACTGCTTGCAGCTCTTCACTCACGGGATTGCACTTGGCAACTTCG
GCCATCAAGAACGGAGATTGTACGGCGGCTTTGGTAGGTGCTGCTCAGAGCAATAGAGATGTCGTAGAATGGTGG
CGATATGACAAGGCACACGTATTGTCACCAGAAGGTATTTGTAAACCTTTTGACGAACAAGCTGACGGGTTTGCG
CGTGGCGAAGGCGCTGTCGTTGTCGTCGTAAAGAGCCTGCAAGACGCACTCGATGACAATGATCGTATATATTGC
ACCATTGCGGCGTCTTCTCATGCTGCGACCGGTTCTGATTTTCCGGTTTACGTTCCTCATGGGCCTTCGCAGCAA
CAGGTTATATCACAAGCATATAAAAAGGCGGGAAGGGAGCCTACAGAGGCAGATTACGTAGAACTTCACATGACA
GGAACGAGAATTGGAGATCCAATCGAGGCGAACGCTACTGGGCAAGTGTTTTGCCAAAACGGATCTAGGATACGT
GTTGGATCTGTGAAAGGGAATGTAGGCCACCTCGAGGGCGCTGCTTTCCTGGCATCCTTGGTCAAAGTATGCCAT
ATTTTCGACAAGGGAATCATACCTCCGACCCCGAATTTTTCTGTCCCAAACAGAGGTATTTCTTGGGACAAATTT
GAGCTTGAGGTCGTAACCAAGCCAGTAACACTCGGGTGCAAAGCTGAAGGCAGGCGACCGCTAATCTCGATCGCG
AGTGCCGGAATTGGCGGATCACATGGTCACGTGTTACTGGAAGGACCGCCTCCAAAAGCCACCTCACGACACTTG
CAGCACGAAACTAATGTCCTCTTCCTCATCGGAGGACTAACCCCAAGTGCAACACAGACCGTAGCTCAAGATATT
TCTGGTCTTCCAGACGACTCAGAGGTCATTCTCAATAATGCTGTACTTGCTTCGCGACAGGCGCGACAACTTCCA
TGGAGGTCTTTCTTAATTTATAGGAATAATTCTACCTCGCTCGCAGATCTTCCTCGCCCAGTCTTGGTACCCACC
AAATCCCCTAAACTTGCTTTTGTTTTCTCTGGTCAAGGACCTCAAAATGCGCAAATGGGTCACCAATTGTTTCAA
CAATATCCAGTATTCAGGAATACCGTCATCGAATTGGACGAAATCCATCAAAAAGTCATGGGATACTCCTTCTTG
AAATCTACTGGCCTTTTCTCCCGCAAAATAACTGATACACGGGTCCTGCAGAAAAAATGGCCTGTAATCCTTACC
CTGCCTGCCCTCGTCATGATTCATATTGGGATTTTCGAGCTCCTCAAAAGCATGGGAATCCTACCCGATTATACG
CTCGGGCACTCGGCCGGAGAGACCGCCATCGTATATGCTTCTGGAGCTGGACCAAAGGCTATGGCAATGGAGATA
GCTCTTGCTCGCGGTCGCTCCATGACGTGTACTGAATACATGGGTGCGGGCATGGCCGTTGTTGCATGCAATGCT
GCCGTTTGCCAAGCTCTGATCAACCAAGTTGATCGAGGCGATGCAACAGAACATGATGTCGAGATTTCATGCTTC
AATGCTCCGGATTCGGTGGTCGTGTCAGGAAAGACGGAGCTGGTGGACGCCGTTGTTTCACTTGCGAAAGAACAA
GGGGTTTTCGCTCAAGGCGTCAACACACTTGTCCCGGGACATAGCAAATATATCGAATACTGTCGTGAAGAACAC
AATAAACTTATAGAGGATATTTTTGCTCGCTATCCAGGCCCACATACTCCCGTCATCCCAGTCTTCTCCACCTGT
AGGCCTGGTGAAATGGTCCAAGAGTTCACTTCCGAATACTTCTGGGATAACGCTAGGAATCCCGTTCATTTCTCT
GATGCGGTAACTCAAATCCTTGCCAAAAGTAATCAATCTTCTACAATGTTCGTGGAGGTTTCTCCTCACCCTGTT
CTTTCTGGCACTGTCGCTTCTCATGGTGTTCCCGCGGCACGCACTATTTGCCCCATGCGAAGAATCCCACAGGAC
GTTTATGATCCTCATCATGAGACGACATGTCTCCTTACAAGCGTTGCTCAGCTAGCTCTGACTGGCTATGATCGG
ATCGATCTGTCTGGGCTCTATGGTATTCCAGAAAACCGAAAACCCCTGTTTAATCACCCACTGCAGCGTTCTCGA
GTCATGCCGTTCAAAACATTCACGACAGCCAGCAGCAAACCTCCTAATCCTCTCCTGTCCTCTTTACCGTCTATC
GGGAGCGATACCTTCAACCTATTTTCCCAGCATCGGGTTGGTGATGTTCCTGTTGTTCCAGGAACTGGTTGGTTA
GAAATGGCTTTGGAAGCGGGTGGTCGTTATTTATGGGATGTCGAATTTCATTCACTGTGTTCCATACAGCAAGGT
AGTAATTTGGCCTTGTCTTTTGAGCGAGATGGACGCAACAAATGGTCTATAACATCGTCTCAGAACGTCGATGCA
CACAACGGCTTAAGTCGTACCATCATCGCTACTGGATGTCTAGGGACAAACGCCACGTCTCGACATCGCATGGAG
AACCTTGACATTACTGCTCTCCAAGATAAACTCGAGCACATCCCTATTGAAGGTCTCCATTCAATCTTCGGTGAC
CATCACTACTATGGCCCATCGTTTTCTCGCCTCATCTCTGTGCACGGCAATCCATCTGAAATACTAGCGGAAATT
CGAGGGTTAGATGAGGAAGAACGCTCGGCTGGGTACATTATCCACCCTGGTGTCCTGGATGCATGTCTTCGTGTC
GTGGCATACCGAGAACTTCTACAAGTATGGGATACAGGCATCTGGCTCCCAAAGCACATCCGAAGATTCGTACTT
CATACTGAATCAACCTCTTCTTCGTCTTTATTCGCCTATGTGCGTCTGAATCGCTGGGAACCAGATTCTAGGTCG
TTCAACATAACGATTACGAGCGATCAAGGCCGTATTATATGTGAACTCGAAGACCTCACGTTGCGACGGGCACAA
TCTGGTGTGACTTCGAAGCAGATACGGGCCCTAGAATTGACTTCGGAAGATCTCTCAATACCAAACATTGTATTG
CCTTTGTTACCTTTCTCCCAGGGTCAGGACAAGGATGCTTACTCGCGGCTTTTCCGCGTCTTGGATCATCTTGTA
CTCAATCAACTTCGTAAGACGCTCAAGCTCCAACCACATTGCGAAAATGTCGGTCGGTCGCGGTACCTGAAAAGG
ATGACACAGTTGACTCAAGATTTAGAAATGCCTAAGTCGCTCGAAGAATCAGAGATTCATGCACAACAATTGCAG
TGGCCCGCACACTTTCAAATTACACGACGACTTGGAGAAATGTATGAAGATATTTTACTCGCTTCCCGGGGAGCT
GCCGATGTACTATTTGCCGACGATTTGATGGGTCGGTACTGTGCAGAACGTAATCTTCTGGTTGGAGTTTGTGAA
GAAACATCAGAGCGATTTGATAGCATTCTAAAAGCTTTGCGTGGGTCAGGGAGACATACAGTGAAAATCCTTGAG
GTTGGAGCAGGGACCGGGATTCTTGCGCGTCAACTTATACCAATTATCAAGAAATATCCTCAACTCGCGGTGGAA
TATACGGTCACTGATGCGTCATACTCCCTCGTGGCGGATCTGGCGGAGTCGTTAGAATTTAATAGACTCATACCC
AGAGTTTATGATCCAGCCGAAGATCCATACTCCCAGGGATTTCTACCTGAAAGCTTTGATTTAATCATAGCTTAC
CACGTCCTTCTTCTTGCGCCTGAGCTCAAAACATCAATCCGGTGGCTGCATGAGTTGCTCGTACCGGGAGGTTTA
ATGCTTGCAGCGGGAATAGACGCCAATTCGTGGTCCGATAAACCTGGAGCGGTGTGGATGGATTTTACTTTTGGG
TCCTTCGCAGAATGGTTCAGCTACCAAGATGAACATAACCATTGTCCCATGTCGCCGTCGCAGTGGGATGCATTG
CTCCACTCCTCTGATTTCTACAACGTCTCACCAATCACTCGTTCGGATTCCCGTCTTGATTTTATCTTTACCTGC
CAGAAGAAACCAGGATCTATAAAGAGGACATTCGAGCCACTACCAGCTGTCACACTATATCACTACAAGGACGGG
GAGGAAGTTCAACTCCAGCACTGTCTCCGTGATTTCATTCCTGGCAATCATGGTGTCATGTGTCTATGGACGGAC
AGTAAATACGATGGTGACTCTGCGATGGGTTTGGTTTTGACTCTTGCTAGGGAGTTTGCGACGTGGACAATTTGG
TTGGCCATGTTCGATGTTTATTTGGGCATAACAACAGTTGAGGAAGTCATCAAACTTAATCACGTACACCTCGCC
CGTGAACATCTTGTATATTTCTCAGCGGATGGCAGCCCATCTTTCCCCCGGGTGGTGCGGCTACCGCCTGTTTCA
GACGAACTTACCACCCAAACACTTTCCCCTGTTTCGGTTAATCATCTTCTCGTCCGAGTCACGGACTACGATCTG
GAAGGTGGTTTTTTGGGAAATGTCGTCCAAAGTGAAGACCCAGAAATTCCCGAACAATCTTTCGTAGCAGGATTA
AAACTGAACGCTAGGATTAATACCCTCTTAACAGTCCATGGAGGAAGAATTGTGAAAGTTGATCAACCTGATCCT
CGTGTTCTTCCTTACCTGCCAGCAATGCTACTCTTATTCCAATGCCTTGGATTTTCACGCTTCATGTATCCATCT
CTTGACCACCCTCCCCTACGAATTCTCCTTGCTTTGCGCAATGAGAACTTGGCTCAAGCGCTGCACCATCTTTTC
ACTGCATCTTGCGGGATCTACGTTCATACAGAAGCCCCTGATTCATTCGTCGACGTCCTTGTGACGGACCACGAA
ACTCTTGAAGCTGATCCTTTACTCGAGCAAAGTGTTGGTATGAATGGGAGGATGGTGGTCTGGTCTCCCCAGTTG
GTTGAACGGACTGTATCGCAAGAGCCTTGGGTTCTGCGCCATGCCTTCAGTACTGGCATTCGTAATTTCAAAATC
CCTCCACTCGAAATTCCACGGATAGCGGACCTGAATGGTGACATATGCAGTCTGCCACTCGAGGAACTCAAACCT
TCCTCACTTCTGGACGCCCACAAAGTTTACCTATTGATTGGAGGCATTGGAGGTATCGGTCTCCACCTTGCAGTC
TGGCTTTATGAGAATGGTGCACGTCATATATATCTCACCTCTCGTAGAGGGCGAGAATCGGCTCTACAAGCGGAT
GACATCCTTCTTCGTTATAAACTCCGGTATTTAGAAGACCGGACTGACCTTGATTTACGATTGGTGGCCTGCGAT
GCTCTGAGTGCCAATGACACCAAAAACTTCCTAAGTTCCATTCAACTTCCCATCGGTGGCTGTTTTCTCATGCCC
CTCATCCTTCGCGATTCTCTTTTCCTCAAACAAACGGAAGAAACGATGGATATTGTCAAGAGGTCGAAGGTTGAA
GCCTTTGATATTGTCACCAGTTATTGTGACGTAAAGGCAATGGATTTCTTTGTTGCGTTCTCGTCTGTAGCCGCT
CTCTGGGGTAATCCTGGACAGTCGAATTATGGAAGCGCCTGCGCCATTCTAGATGGGAAAATGTCGGGACATCGA
AATGCTTTCGCTCTGCTCGTTCCGGCCGTCATGGATGCAGGATATATTTTACAAACTAGGACGCTTGACAGTCTT
GGTTTACCGGGAGCTGATGAATGGGGCATAGGTGTCGAAGAACTATGTGAATACCTCAGAGATGGAATCTCGAGA
GTAAAGCAAGGGACTAACCCCTCGATATACATTCCTGACCTGGAGATTAGTGTTTTAACCAAGTATTTCACCCTC
CCACCCCTCTACCACTTCCTTATTCCGTCGTCATCTTTGGAAGCTGGATCACAGAAACCGGAGGATTCAGGTCGA
GAGGTGGAAGACGTTCTTACAGCAATTCAAGAGGTCATCAAAACAAGCCTCGACATCCGCGATGATACATTTTCA
TCTGACATGCCTTTCATCAATTATGGTCTGGACTCTATCCGAGCAACTCGTTTATCTCGCCAACTTAAACAATAT
ATCGAGGTTTCGCAAACAGATCTCTTACTCGGAATGTCGTGGACCAAGCTCGAAGAACGTGTCAAGGATAACTAT
CTGACCAAGCCAAAATCCATCAATGTCGCCGAGACCTGCAAACGCCTCGTGTTGTCGGCTCTAGGCATCGACTCG
CTTGAGACATTCTCTCCGGATATGCCTTTCGTCAGCTATGGTCTGGATTCGATACGAGCAACACAGCTTTCCAGG
AAATTGAAACCTTATATCCGAATCTCACATACGGACTTGCTCCTCGGAATGTCATGGGCAGATTTCGAAAAAAGG
ATCACCCAATCAAAGTTCTCTGAAGGCCAGCAAAAAAACAATACGGTGAATCGTAATACTGCCGAAGAGTGTAGA
AGATTGATTGTTGGGAGCCTCGGTATCGATTCAGCGACATTCGATCCCGACATCCCATTCATCAATTATGGGCTG
GATTCCATCAGAGCTATGAGACTCTCGCGACAGCTGCAACCCTACGTCAAGATTTCGCAGATGGATTTGTTGCTG
GGTATGGCTTGGAGAGGATTAGAACAGAACGTTCTGAACAAAATTCTCCCAGAGGAATCCTCGTTGACGGCATCG
AACTCTGTTCAAGCAGGAGAGAGGTCGAAGAAATGGTCAGTGTCGTTCACGAAACTGGACGAGGCAATAGGAGAT
GGGCCCATCATTTTCGCTTTGCCAGGAGCCACAGGAACACTTGCTACAATCTCTCCGATGATGAACTATGCCACA
AAGGGTTCTACAACCTTTTGGGCGGTTCATTTTGACCTCTCAGCGTGTGATGACTTTCCGCTATCACTACAAGAC
CTTGGTAACGAGATTCTCGGAGGAATTAAGGAAAGACACCCCCGTGGCGCTCTTCGTATCATAACAGTTTCCGGT
TCCAGTACTCTAGCATTCTTGCTGGCTAAAGCACTTGAAGCACAAGGAAGACAAATTCTTGACATCTCATTTCTC
GACCATTTCCCAGCTCTATTCTGTCACGACGCTTATGGCCTCGTACCTTATATCGTGTCGCGCGAAGGCGATACC
GAGGCTTTCAAAGCACTGGACGCTATTGTAGAACGTGGGACGGAAATAATGCTTCGCCTGCAAGAAATTGATCCG
ACCATGCAGAATATCTCTCCCAGGTGGGAGGAACATGACACACTGAAGGGGATGGAGGCTATTAAGGGTCTAGAA
ACTGCAAGGATGTTGAATGGAGCCTCGGTTGCATTTATCAAGAAACTTTATTACCAATCAGAAGGCAGATCCGAA
CCATACGATGAAGCACTGGTGAGGTGGTTAGGAGATGTGAACGCACCACTTCTCGTCGTCGTCGCAGATAGGGGT
TTCAATCAGGTAGTGGTAACGCCATGGGCCGACATGGGTGCGGGGAAAGTGTCAAAATACAAAAAGGATATCCAG
ATCTTACACGTTGACGCTGCACATTTTGAGGTAGTTGGCTGCGAGACCGTCTCGAGGAAGTTGTGTCTATAA
Gene >Agabi119p4|110000
ATGATGTTCGCCATCGTGAGTTCTCGGATATTTTGTCGGGATACCTAACGACTGAGGTGAATAAACTAGGTTGGG
GTAGCGGCCCAGCTGCCTTCCGGGCGGTTTTCAACAACAGATCTGGATTATGAAGAATTCGGGAAGTTTCTTTTC
GGAGGAGAACATGCATTCGAAGACTTCGATCGACTCGAACTAGAGCCGAATCCGTATGCATATGTAACCTTTTGG
TGATTAATTCTGAAACCAGATCTAGATTTGCAACAGTGGACTTGTCCAACATGCCGCGAAAAGGTGCTTTCTTGA
AATCTATGACGGAGTTCGATTATTCTTCGTTCGGAATAAGTAGTGATGATGCTCGGGTAATGCCTAACAGTGCGC
GACGACTGATGGAACTGTCCTTTCGCGCTCTGCTTGATGCGGGAATTCAAAGTCGAGGACAATCAATCGGATGCT
TCATGAGTGGAAACAATGACCTCGGCCTTGTGAGTTTTGTCTTTACTACCTATGATCTAAATGAATGAATTGACA
TCGTCAGGATAATATGAACACGGATGGTAGTCTTGTTTACGTGCCCAGTGCCATCCCTAACCGCATTTCCTACGC
TCTCAATCTTACGGGCCCATCCATCGCAATTGACACTGCTTGCAGCTCTTCACTCACGGGATTGCACTTGGCAAC
TTCGGCCATCAAGAACGGAGATTGTACGGCGGCTTTGGTAGGTGCTGCTCAGAGCAATAGAGAGTCAGTGATATC
TCACGGCAAATCAGCGTGGACATTGTGCTTACTCGCTTTTTTTAATAGTGTCGTAGAATGGTGGCGATATGACAA
GGCACACGTATTGTCACCAGAAGGTATTTGTAAACCTTTTGACGAACAAGCTGACGGGTACATTGGTTATTACAT
GTTTCCAGGGAGCCCTTTATTGACCAACGATCCAGGTTTGCGCGTGGCGAAGGCGCTGTCGTTGTCGTCGTAAAG
AGCCTGCAAGACGCACTCGATGACAATGATCGTATATATTGCACCGTCAGTTTCCTTCGAATTTTTCGCGTGTGA
ATGATTTCGTATTGTTAATAGATTGCGGCGTCTTCTCATGCTGCGACCGGTTCTGATTTTCCGGTTTACGTTCCT
CATGGGCCTTCGCAGCAACAGGTTATATCACAAGCATATAAAAAGGCGGGAAGGGAGCCTACAGAGGCAGATTAC
GTAGAACTTCACATGACAGGTGAGCTAAGAATCTTGACCGTTTGTCGAACAGGGGTTGATTCTTCGAAGGAACGA
GAATTGGAGATCCAATCGAGGCGAACGCTACTGGGCAAGTGTTTTGCCAAAACGGATCTAGGATACGTGTTGGAT
CTGTGAAAGGGAATGTAGGGTGCGTTATTCAAGTGTTTACGGTGATAGGAGTCCTAAGGAGTTTACTAGCCACCT
CGAGGGCGCTGCTTTCCTGGCATCCTTGGTCAAAGTATGCCATATTTTCGACAAGGGAATCATACCTCCGACCCC
GAATTTTTCTGTCCCAAACAGAGGTATTTCTTGGGACAAATTTGAGCTTGAGGTCGTAACCAAGCCAGTAACACT
CGGGTGCAAAGCTGAAGGCAGGCGACCGCTAATCTCGATCGCGAGTGCCGGAATTGGCGGATCACATGGTCACGT
GTTACTGGAAGGACCGCCTCCAAAAGCCACCTCACGACACTTGCAGCACGAAACTAATGTCCTCTTCCTCATCGG
AGGACTAACCCCAAGTGCAACACAGACCGTAGCTCAAGATATTTCTGGTCTTCCAGACGACTCAGAGGTCATTCT
CAATAATGCTGTACTTGCTTCGCGACAGGCGCGACAACTTCCATGGAGGTCTTTCTTAATTTATAGGAATAATTC
TACCTCGCTCGCAGATCTTCCTCGCCCAGTCTTGGTACCCACCAAATCCCCTAAACTTGCTTTTGTTTTCTCTGG
TCAAGGACCTCAAAATGCGCAAATGGGTCACCAATTGTTTCAACAATATCCAGTATTCAGGAATACCGTCATCGA
ATTGGACGAAATCCATCAAAAAGTCATGGGATACTCCTTCTTGAAATCTACTGGCCTTTTCTCCCGCAAAATAAC
TGATACACGGGTCCTGCAGAAAAAATGGCCTGTAATCCTTACCCTGCCTGCCCTCGTCATGATTCATATTGGGAT
TTTCGAGCTCCTCAAAAGCATGGGAATCCTACCCGATTATACGCTCGGGCACTCGGCCGGAGAGACCGCCATCGT
ATATGCTTCTGGAGCTGGACCAAAGGCTATGGCAATGGAGATAGCTCTTGCTCGCGGTCGCTCCATGACGTGTAC
TGAATACATGGGTGCGGGCATGGCCGTTGTTGCATGCAATGCTGCCGTTTGCCAAGCTCTGATCAACCAAGTTGA
TCGAGGCGATGCAACAGAACATGATGTCGAGATTTCATGCTTCAATGCTCCGGATTCGGTGGTCGTGTCAGGAAA
GACGGAGCTGGTGGACGCCGTTGTTTCACTTGCGAAAGAACAAGGGGTTTTCGCTCAAGGCGTCAACACACTTGT
CCCGGGACATAGCAAATATATCGAATACTGTCGTGAAGAACACAATAAACTTATAGAGGATATTTTTGCTCGCTA
TCCAGGCCCACATACTCCCGTCATCCCAGTCTTCTCCACCTGTAGGCCTGGTGAAATGGTCCAAGAGTTCACTTC
CGAATACTTCTGGGATAACGCTAGGAATCCCGTTCATTTCTCTGATGCGGTAACTCAAATCCTTGCCAAAAGTAA
TCAATCTTCTACAATGTTCGTGGAGGTTTCTCCTCACCCTGTTCTTTCTGGCACTGTCGCTTCTCATGGTGTTCC
CGCGGCACGCACTATTTGCCCCATGCGAAGAATCCCACAGGACGTTTATGATCCTCATCATGAGACGACATGTCT
CCTTACAAGCGTTGCTCAGCTAGCTCTGACTGGCTATGATCGGATCGATCTGTCTGGGCTCTATGGTATTCCAGA
AAACCGAAAACCCCTGTTTAATCACCCACTGCAGCGTTCTCGAGTCATGCCGTTCAAAACATTCACGACAGCCAG
CAGCAAACCTCCTAATCCTCTCCTGTCCTCTTTACCGTCTATCGGGAGCGATACCTTCAACCTATTTTCCCAGCA
TCGGGTTGGTGATGTTCCTGTTGTTCCAGGAACTGGTTGGTTAGAAATGGTTTGAAACGCAGTCTCAGCAGGATC
AATAATATACTAACTTTTCCTATAGGCTTTGGAAGCGGGTGGTCGTTATTTATGGGATGTCGAATTTCATTCACT
GTGTTCCATACAGCAAGGTAGTAATTTGGCCTTGTCTTTTGAGCGAGATGGACGCAACAAATGGTCTATAACATC
GTCTCAGAACGTCGATGCACACAACGTAAGCTCTCCTGCTTCAGGAAGTAATGACGCTCACCTTTACCATTTAGG
GCTTAAGTCGTACCATCATCGCTACTGGATGTCTAGGGACAAACGCCACGTCTCGACATCGCATGGAGAACCTTG
ACATTACTGCTCTCCAAGATAAACTCGAGCACATCCCTATTGAAGGTTTGTGCTTACTTATGGCTGTGGTATCAT
ACTCAAAAACTAATGGATTCGACAGGTCTCCATTCAATCTTCGGTGACCATCACTACTATGGCCCATCGTTTTCT
CGCCTCATCTCTGTGCACGGCAATCCATCTGAAATACTAGCGGAAATTCGAGGGTTAGATGAGGAAGAACGGTAA
GCAGAAGTCTGCGAAGACGGGAGATGCAATATTCACAGATGTAATCCGTCAGCTCGGCTGGGTACATTATCCACC
CTGGTGTCCTGGATGCATGTCTTCGTGTCGTGGCATACCGAGAACTTCTACAAGTATGGGATACAGGCATCTGGC
TCCCAAAGCACATCCGAAGATTCGTACTTCATACTGAATCAACCTCTTCTTCGTCTTTATTCGCCTATGTGCGTC
TGAATCGCTGGGAACCAGGTTTGGCTGTTCCGTGACCCCATTACTCCTTCCTGACGTTCATCCTCTACTTAGATT
CTAGGTCGTTCAACATAACGATTACGAGCGATCAAGGCCGTATTATATGTGAACTCGAAGACCTCACGTTGCGAC
GGGCACAATCTGGTGTGACTTCGAAGCAGATACGGGCCCTAGAATTGACTTCGGAAGATCTCTCAATACCAAACA
TTGTATTGCCTTTGTTACCTTTCTCCCAGGGTCAGGACAAGGATGCTTACTCGCGGCTTTTCCGCGTCTTGGATC
ATCTTGTACTCAATCAACTTCGTAAGACGCTCAAGCTCCAACCACATTGCGAAAATGTAAGTTCTCGAATTCCAC
GGGGCCTGCAGCGGAAAAAGCTAACATCTTTCTAGGTCGGTCGGTCGCGGTACCTGAAAAGGATGACACAGTTGA
CTCAAGATTTAGAAATGCCTAAGTCGCTCGAAGAATCAGAGATTCATGCACAACAATTGCAGTGGCCCGCACACT
TTCAAATTACACGACGACTTGGAGAAATGTATGAAGATATTTTACTCGCTTCCCGGGTATATTCTTTTAAGTTCT
CAGTCGGTAAAGTTAACTTAAGATATACATTCAGGGAGCTGCCGATGTACTATTTGCCGACGATTTGATGGGTCG
GTACTGTGCAGAACGTAATCTTCTGGTTGGAGTTTGTGAAGAAACATCAGAGCGATTTGATAGCATTCTAAAAGC
TTTGCGTGGGTCAGGGAGACATACAGTGAAAATCCTTGAGGTTGGAGCAGGTATGTGGTCTACATCGAGCGTCTT
TCAATAAGTTTGTTAATGCGTCAAATGATTTAGGGACCGGGATTCTTGCGCGTCAACTTATACCAATTATCAAGA
AATATCCTCAACTCGCGGTGGAATATACGGTCACTGATGCGTCATACTCCCTCGTGGCGGATCTGGCGGAGTCGT
TAGAATTTAATAGACTCATACCCAGAGTTTATGATCCAGCCGAAGATCCATACTCCCAGGGATTTCTACCTGAAA
GCTTTGATTTAATCATAGCTTACCACGTCCTTCTTCTTGCGCCTGAGCTCAAAACATCAATCCGGTGGCTGCATG
AGTTGCTCGTACCGGGAGGTTTAATGCTTGCAGCGGGAATAGACGCCAATTCGTGGTCCGATAAACCTGGAGCGG
TGTGGATGGATTTTACTTTTGGGTCCTTCGCAGAATGGTTCAGCTACCAAGATGAACATAACCATTGTCCCATGT
CGCCGTCGCAGTGGGATGCATTGCTCCACTCCTCTGATTTCTACAACGTCTCACCAATCACTCGTTCGGATTCCC
GTCTTGATTTTATCTTTACCTGCCAGAAGAAACCAGGATCTATAAAGAGGACATTCGAGCCACTACCAGCTGTCA
CACTATATCACTACAAGGACGGGGAGGAAGTTCAACTCCAGCACTGTCTCCGTGATTTCATTCCTGGCAATCATG
GTGTCATGTGTCTATGGACGGACAGTAAATACGATGGTGACTCTGCGATGGGTTTGGTTTTGACTCTTGCTAGGG
AGTTTGCGACGTGGACAATTTGGTTGGCCATGTTCGATGTTTATTTGGGCATAACAACAGTTGAGGAAGTCATCA
AACTTAATCACGTACACCTCGCCCGTGAACATCTTGTATATTTCTCAGCGGATGGCAGCCCATCTTTCCCCCGGG
TGGTGCGGCTACCGCCTGTTTCAGACGAACTTACCACCCAAACACTTTCCCCTGTTTCGGTTAATCATCTTCTCG
TCCGAGTCACGGACTACGATCTGGAAGGTGGTTTTTTGGGAAATGTCGTCCAAAGTGAAGACCCAGAAATTCCCG
AACAATCTTTCGTAGCAGGATTAAAACTGAACGCTAGGATTAATACCCTCTTAACAGTCCATGGAGGAAGAATTG
TGAAAGTTGATCAACCTGATCCTCGTGTTCTTCCTTACCTGCCAGCAATGCTACTCTTATTCCAATGCCTTGGAT
TTTCACGCTTCATGTATCCATCTCTTGACCACCCTCCCCTACGAATTCTCCTTGCTTTGCGCAATGAGAACTTGG
CTCAAGCGCTGCACCATCTTTTCACTGCATCTTGCGGGATCTACGTTCATACAGAAGCCCCTGATTCATTCGTCG
ACGTCCTTGTGACGGACCACGAAACTCTTGAAGCTGATCCTTTACTCGAGCAAAGTGTTGGTATGAATGGGAGGA
TGGTGGTCTGGTCTCCCCAGTTGGTTGAACGGACTGTATCGCAAGAGCCTTGGGTTCTGCGCCATGCCTTCAGTA
CTGGCATTCGTAATTTCAAAATCCCTCCACTCGAAATTCCACGGATAGCGGACCTGAATGGTGACATATGCAGTC
TGCCACTCGAGGAACTCAAACCTTCCTCACTTCTGGACGCCCACAAAGTTTACCTATTGATTGGAGGCATTGGAG
GTATCGGTCTCCACCTTGCAGTCTGGCTTTATGAGGTTTGTTGATTCGCTGTATGTTCCGATTACTTTGCACTCA
AAGTATTGATCCCTAGAATGGTGCACGTCATATATATCTCACCTCTCGTAGAGGGCGAGAATCGGCTCTACAAGC
GGATGACATCCTTCTTCGTTATAAACTCCGGTATTTAGAAGACCGGACTGACCTTGATTTACGATTGGTGGCCTG
CGATGCTCTGAGTGCCAATGACACCAAAAACTTCCTAAGTTCCATTCAACTTCCCATCGGTGGCTGTTTTCTCAT
GCCCCTCATCCTTCGCGATTCTCTTTTCCTCAAACAAACGGAAGAAACGATGGATATTGTCAAGAGGTCGAAGGT
TGAAGCCTTTGATATTGTCACCAGTTATTGTGACGTAAAGGCAATGGATTTCTTTGTTGCGTTCTCGTCTGTAGC
CGCTCTCTGGGGTAATCCTGGACAGTCGAATTATGGAAGGTATGTCACTCAGTTGCTCCCGCTTACATGTGCCTG
GTCCTAACTACCTCGACTTGTAGCGCCTGCGCCATTCTAGATGGGAAAATGTCGGGACATCGAAATGCTTTCGCT
CTGCTCGTTCCGGCCGTCATGGATGCAGGATATATTTTACAAACTAGGACGCTTGACAGTCTTGGTTTACCGGGA
GCTGATGAATGGGGCATAGGTGTCGAAGGTATGTTGACATTGTGGATAGCATACTGGTAGCTGACGGATTGACAC
AGAACTATGTGAATACCTCAGAGATGGAATCTCGAGAGTAAAGCAAGGGACTAACCCCTCGATATACATTCCTGA
CCTGGAGATTAGTGTTTTAACCAAGTATTTCACCCTCCCACCCCTCTACCACTTCCTTATTCCGTCGTCATCTTT
GGAAGCTGGATCACAGAAACCGGAGGATTCAGGTCGAGAGGTGGAAGACGTTCTTACAGCAATTCAAGAGGTCAT
CAAAACAAGCCTCGACATCCGCGATGATACATTTTCATCTGACATGCCTTTCATCAATTATGGTCTGGACTCTAT
CCGAGCAACTCGTTTATCTCGCCAACTTAAACAATATATCGAGGTTTCGCAAACAGATCTCTTACTCGGAATGTC
GTGGACCAAGCTCGAAGAACGTGTCAAGGATAACTATCTGACCAAGCCAAAATCCATCAATGTCGCCGAGACCTG
CAAACGCCTCGTGTTGTCGGCTCTAGGCATCGACTCGCTTGAGACATTCTCTCCGGATATGCCTTTCGTCAGCTA
TGGTCTGGATTCGATACGAGCAACACAGCTTTCCAGGAAATTGAAACCTTATATCCGAATCTCACATACGGACTT
GCTCCTCGGAATGTCATGGGCAGATTTCGAAAAAAGGATCACCCAATCAAAGTTCTCTGAAGGCCAGCAAAAAAA
CAATACGGTGAATCGTAATACTGCCGAAGAGTGTAGAAGATTGATTGTTGGGAGCCTCGGTATCGATTCAGCGAC
ATTCGATCCCGACATCCCATTCATCAATTATGGGCTGGATTCCATCAGAGCTATGAGACTCTCGCGACAGCTGCA
ACCCTACGTCAAGATTTCGCAGATGGATTTGTTGCTGGGTATGGCTTGGAGAGGATTAGAACAGAACGTTCTGAA
CAAAATTCTCCCAGAGGAATCCTCGTTGACGGCATCGAACTCTGTTCAAGCAGGAGAGAGGTCGAAGAAATGGTC
AGTGTCGTTCACGAAACTGGACGAGGCAATAGGAGATGGGCCCATCATTTTCGCTTTGCCAGGAGCCACAGGAAC
ACTTGCTACAATCTCTCCGATGATGAACTATGCCACAAAGGGTTCTACAACCTTTTGGGCGGTTCATTTTGACCT
CTCAGCGTGTGATGACTTTCCGCTATCACTACAAGACCTTGGTAACGAGATTCTCGGAGGAATTAAGGAAAGACA
CCCCCGTGGCGCTCTTCGTATCATAACAGTTTCCGGTTCCAGTACTCTAGCATTCTTGCTGGCTAAAGCACTTGA
AGCACAAGGAAGACAAATTCTTGACATCTCATTTCTCGACCATTTCCCAGCTCTATTCTGTCACGACGCTTATGG
CCTCGTACCTTATATCGTGTCGCGCGAAGGCGATACCGAGGCTTTCAAAGCACTGGACGCTATTGTAGAACGTGG
GACGGAAATAATGCTTCGCCTGCAAGAAATTGATCCGACCATGCAGAATATCTCTCCCAGGTGGGAGGAACATGA
CACACTGAAGGGGATGGAGGCTATTAAGGGTCTAGAAACTGCAAGGATGTTGAATGGAGCCTCGGTTGCATTTAT
CAAGAAACTTTATTACCAATCAGAAGGCAGATCCGAACCATACGATGAAGCACTGGTGAGGTGGTTAGGAGATGT
GAACGCACCACTTCTCGTCGTCGTCGCAGATAGGGGTTTCAATCAGGTAGTGGTAACGCCATGGGCCGACATGGG
TGCGGGGAAAGTGTCAAAATACAAAAAGGATATCCAGATCTTACACGTTGACGCTGCACATTTTGAGGTAGTTGG
CTGCGAGACCGTCTCGAGGAAGTTGTGTCTATAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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