Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Gma17g00201 ATGGCGTCCATCACTGTAACCTCATTCAACCAAACTCATACACTGGTGCATCTGACCTCGCTTCACTTCTCGGCGTATCCGAGCCTCAGTTCAGAGGAGATGGCCTCTTCACATAATGTTGAATTGGAGGCTGCTAAGTTTCTGCATAAACTTATTCAAGATTCTAAAGATGAACCAGCCAAGCTGGCTACTAAACTCTATGTGATACTACAACACATGAAATCAAGTGGGAAGGAGCATTCAATGCCATATCAAGTGATATCAAGGGCAATGGAGACTGTCATCAACCAACACGGTCTTGATATTGAAGCATTGAAGTCATCACGTCTTCCTTTGACTGGTGGTCCTCAAATAGGATCTTCTTCACAGTCAGTGAATGTAACAAAAGATTCCAGAGTGGGTTTGGCTGAAAATGAGGTGTCCAAAATGGACCCGTTTGCTTCAGGTCGGCCACCGGTTGCCCCAAGTGGTGGAGCGCCTGATTATTATCAAGGATCTGTGGCACAGAGGAGTAGTCAGTCTTTTGATCAAGGAAGTCCATCTAGTTTGGATTCTAGGTCTGCTAACTCTCAGTCACAAGATAGACGTGATACTGCCAATTGGGACAAACAGGTGAGTCAAAAGGATGGCAAGAAAGCTACAACAAAGAGAAAGAGGGGAGATACATCATCACCTGTGGAACTGCATGTTGACAGTCCTTCTCAGCTGGATCCTCGCAATACTGGTGTTAATGCAAGGAAGGGGAAAATAACCAAGGCTGAATCATCAGATGGTCTTCCAGTTAAAAATGGTGAACTAACCAACTTTAACATGACTCCAAATAGTGGTCAAATGGAGAATGTTTCGGCTTTGTCTGGTAGCATGAGGACAATGCTTAGAGCAAACCAAGAAGGCCATCATTTATTGGCAAAACAAACTGATTTGACAAAGGTTGGCAATCCGATGGTGCGAGCACCTAATTCAAAGTATGCAGAAGACACTGAAGTTTCCTCTGCACATATTGCTTCAGGGAAGCAGCAAGGTGCTTATGCAAATGTTCATGGAGGGATGTCGCTTGCAGCTGGTGCATCTTCAATGGTTGAAGCTTTCTCAAATTCAATGCAATATGGTGGTGCAGTTGAGCGTGACAGGGGAAGTTCTACTACTTTATCTGATGGGCATAAAATTGTTCAGGTTGGCAGGCAAAATAGTGGCTCGGAAATGAATATGCTTAGACAAGGTGTTTCTCCTAGAGACACGGGAAAATCCACTGTTCCTGCCATGCCTTTCAAGGAACAACAGTTAAAACAGCTTCGAGCTCAGTGCCTTGTTTTCCTAGCATTTAGAAATGGTCTAGCACCAAAAAAACTACATCTTGAAATTGCACTTGGAACTGCCTTTTCTAGAGAAGATGGTTCTCGCAAAGATCTAATTGACCTCAAAGGAAAATCACAATCTTTTAATGAACCAGGTAACTCATCTGGGGCCATGATGCCATTTGGAGGTCCCAGCAATGCCAGACAGACGGATAAAAACCTTTTGGGGTCCTCTTCAGTTGGCAAAATTGTGGAGGCTGATTCTTTGTCAAAGGGAACTGAGAGCCCAAGAATGTTGGAGGACAAAGGTAACCTACATGTCACAAAAAGAGGAGAGGTTGATAGACGAATTCAAGAAAGAGTGGCTTCACAAGCTTCCTCAGCCACTTCATGTCAGCAGCAAGATTCTTCAAGTACAAGGGGTGCTTTAGTTGGTAATAATCATTTAGATGATGTTGACATTGGTAATATGCAGGTTGGAAGATCCAACCAATCTTCTGTTGCTGGCCCAAATAACTGGGCCGGTTTTGCTGGTGCTAATGAGGCTTCAAAGGGACCTCCTCAGGTCTCTGCTATTCAACATGAGTTGCCTATAGAAAGAAGAGAGAATATTCCTAGTCAGTTTCAAAATGTTGGTAACAATTGTGGTTCACGGAATCAAAATTCTGTTAATCACTTGTCTTTTTCTTTAAAAGAGCAATGGAAACCTGTTCCAGGGATGGACAGTGATCCTCATGGAGCAACCATGATGAAGGATGGAAATGTAATGATAAAACATGTTTCTCCAGATGGCTTCAAAACAGTTCCAGTTGATAATGCATCAAAGCATGGCATCTCTTTTGCTACAGAGCAAGATGGGAATGAGAGGTTGGTATCAGCTGATTTTCCACCTTCTCCAAAATATACAATGTCAGAGAGATGGATCATGGATCAGCAGAAAAAGAGGCGTCTACTCGAGCAAAATTGGATGCTAAAACAGCAGAAAACAAAGCAAAGAATGGCTACAAGTTTTCACAAGTTGAAGGAAAATGTGAGCTCCTCTGAAGATATTTCTGCTAAGACCAAAAGTGTCATAGAGTTGAAAAAACTTCAACTATTAGAGCTTCAACGTCGTCTCCGGAGTGATTTTCTGAATGATTTTTTCAAACCAATTGCAACCGAGATGGAACATTTAAAATCAATTAAGAAACATAGGCATGGTAGGAGGGTCAAACAACTTGAAAGGTTTGAGCAGAAAATGAAGGAAGAGCGTCAGAAGCGGATTCGTGAGAGGCAGAAGGAGTTTTTCAGTGAGATAGAGGTTCACAAGGAAAAACTTGATGATGTATTCAAAATCAAGAGGGAACGGTGGAAGGGTTTCAATAGATATGTGAAGGAGTTCCATAAAAGAAAAGAACGTATTCATCGTGAGAAGATTGATAGAATCCAGCGGGAAAAGATTAATTTACTGAAAATAAATGATGTGGAGGGCTATCTTCGAATGGTGCAGGATGCAAAATCAGATCGTGTAAAGCAACTACTTAAAGAGACCGAGAAGTATCTTCAAAAGCTTGGGTCCAAGCTACAGGAAGCAAAGACTGCAGCAGGACGTTTTGGGCAGGATGTTGATGAGACAGGAAATGTCAGTTTTCTTGAGAATAGCGAAACAGAAAATGTGGATGAAAGTGATCAGGCAAAGCATTATATGGAAAGCAATGAAAAGTATTACAAGATGGCTCACAGTATAAAGGAGAGCATTGCAGAGCAGCCATCTAGTTTGCAAGGCGGGAAATTGAGGGAATATCAAATGAATGGCCTGAGGTGGCTGGTTTCCCTATACAACAATCATTTGAATGGAATTCTTGCTGATGAAATGGGACTGGGTAAAACAGTACAGGTTATTTCTTTAATTTGCTATCTGATGGAGGCAAAAAATGATAGAGGACCGTTTCTCGTGGTTGTGCCCTCTTCAGTTCTACCTGGTTGGGACTCGGAAATAAACTTTTGGGCTCCTGGTGTTCATAAAATTGTCTATGCTGGTCCACCAGAGGAAAGGCGTCGGTTATTCAAGGAAAGGATTGTTCAACAGAAATTCAATGTTCTTTTGACTACGTATGAATATTTGATGAATAAGCATGATAGACCAAAGCTGAGCAAAATACATTGGCATTATATAATAATTGATGAAGGCCACCGCATAAAGAATGCTTCTTGCAAGTTGAATGCTGACTTGAAACACTATCAGAGCTCTCACAGATTGCTGTTAACTGGAACACCTTTACAGAACAATCTTGAAGAACTATGGGCACTACTTAATTTCTTGTTACCAAACATATTCAATTCATCAGAGGACTTCTCTCAATGGTTTAATAAGCCATTTGAGAGTGCTGGAGATAGCTCGCCTGATGAAGCTTTATTGTCCGAGGAGGAGAATCTCTTGATTATAAATCGTCTGCACCAAGTTTTGAGACCATTTGTACTTAGGAGGCTGAAACACAAGGTTGAAAATGAGTTGCCTGAGAAGATTGAGAGACTAATAAGATGTGAGGCCTCATCATATCAAAAACTTTTGATGAAGAGGGTGGAAGAAAATCTTGGTTCTATTGGCAATTCAAAGGCTCGATCAGTACACAACTCTGTCATGGAGCTTCGTAATATATGCAATCATCCATATCTCAGTCAGCTTCATGCAGAGGAGGTGGATAACTTCATACCTAAACATTATCTGCCACCAATTATTAGACTTTGTGGGAAGCTTGAGATGTTGGACCGTTTATTGCCAAAATTGAAGGCGACAGATCATCGGGTTCTTTTCTTTTCGACAATGACTAGGCTTTTGGATGTTATGGAGGAATACTTAACTTTGAAACAGTATCGGTACCTCCGGTTGGATGGGCATACATCAGGAGGTGATCGTGGTGCTCTGATTGATCTATTTAACCAACCTGGTTCCCCATATTTTATTTTCTTGCTCAGCATTCGGGCTGGTGGTGTTGGAGTGAATCTTCAGGCTGCTGACACAGTGATCTTATTTGACACTGACTGGAATCCACAGGTTGATCTGCAAGCTCAAGCAAGGGCTCATAGAATTGGTCAAAAGAGGGATGTTCTTGTTCTTCGGTTTGAAACGGTTCAAACTGTTGAAGAACAAGTCAGGGCTTCGGCTGAGCACAAACTTGGAGTTGCTAATCAGAGCATTACTGCTGGTTTTTTCGACAATAATACAAGTGCTGAAGATCGAAGAGAATACTTGGAAGCACTCCTGCGTGAGTGTAAGAAAGAAGAGGCTGCACCTGTTTTGGATGATGATGCTCTAAACGATGTCTTAGCCCGCAGTGAATCAGAGTTGGATATATTTGAGGCTGTTGACAAAAAAAGGAAGGAAGATGAGCTGGCTACATGGAAGAAATTGATGCTTGGACAGGCAGCTGATGGTTCCGATATTCCTCAACTTCCTGCTCGTCTGGTCACTGATGAAGACCTGAAACAGTTCTATGAAGCAATGAAGATATCTGATGTGCCTAAGGCTGAGGTAGAATCTAGTGGAGTAAAGAGAAAGGGTGGATATATTGGGGGCCTTGATACTCAACACTATGGCAGGGGAAAACGTGCTAGAGAGGTACGTTCCTATGAAGAGCAATGGACAGAAGAGGAGTTTGAGAAGATGTGTCAGGTTGAAACTCCAGATTCACCCAACAAAGTAAAAGAAGTGGCAGAAAAGAGTTGTCCAACAAATACTTCCAGCTCTGTGGTATCTACTTCTAACTTACAACCTGTGCCTGTGCCTCCAGCGGTCCCAACATTGCCAGCTGTGGAGAGTTTGCCGGTAGTGGTACAGCAAGTTAAAGAGATAACCCCACCCGCCAAACGTGGTCGGGGAAGACCTAAAAGAATAACTTCAGATAAGTCACCAGCTGTAGTGGTCTCTCCAGTAACTTCTGGAACTGTTGAAGTAGACACACAGTTACAGAAAGGATTTGGGTCTGGACATTTAGCATCGTCAACTCCTGATTCTGTTGCTCATTCTGCTGAAGTTGTAGGTGTGAATGCACCTGTGCAGCAGTCTGACACAGTAGTTTCTCCTAACTCACAGTCTGTCATTCCTATGCCTACTATTCCACCAAATTCTCAGGTAGCTGCTGTTCCTGTTTCTGTACCTATTCAAGCAAGAGGGCAAGGGAGGAAAAGTCATGGTGGGGAAGGGATTAGACGTAGAGGGAAGAAGCAGGTCATGATTTCACCTGCAATCCCTGTTGGTTCTGTTGGTCCTGATCTAAAGGTTAATGATAAATTGGAAGATAAATTGGTCAGTCCTTCAGGTCAAGCTATATCCCAGAGTGAAACTGTTCCCAGCTTTGCTGCAGAGCCCCATCCACCTTCTGCTTCTTTGAGCAGTGGAAAGGATCCTTTGGGTGTTGGGGTTGTTTTGAATTCTCAAGCACCCCCTCCTTTGCCCTCTAATACAACCTTGGTTCAAACTGCACCCACTTATCCGTCCGTACAGATGCTAAGTAAAGGACAAAATCAGAAGTCACAAACTGGAGTTTCCCGTCGTAGGGGAAAGAAACAGGCAACAATATTAGCACCGGTTCCGGATCTTTTACATCAGGATTTACATCAAACTGCTAATTTGCCGATTTCATCAGGCAGTATATCAGGTGAAAAAGCCACTGAATTAAAGAGCTTGCAAGAGAGCAATGTTCAAGAATCAAAATGTGTTGTCCTGGATCAAGCATCACAGAGCGTAGGTGATCAGGATTTAAAATCACTGGGAGGATCAGATGATTCATCCAAACAGACAGTGATCATGTCTTCATGTCAAGATAGTATGATTAAATCTCCAGGACAAGATCTTGACACGGTTAAAAATCCTGATGCTCATGATTCTTCTGTAAAGGTTGTTAAATCTTCTGAAATTACCTCATCGAAAATTGATGAAGTTTGCAATAACTCGGGGAATGAAACTTTACTTGGCACAACAGTGCCTGTTACTGGGGTGATACAGGATCAACATTCAGGTGGTAAAACTCATAATCAAACTGTTGAAATTTCAAAAACCATCCCTTCAGTTGTTGATACTCCAATTAATTCCTTGACTGACAATGAAACTACACAAAGCATCAACAAGTCTTTAGATCCTGTGACTCCAACGATTGTTCCCAGTACATTAACTACTGTTTATCCCACGCCAGGTTCTGAATCTACTCATCCAGGCTTGGCTGAATCCATTCCCACCAAAAGGCAAGGTCGTAAAACTCAAAATAGAGCAGAGCCACCACGGCGTAAGGGAAAAAAATCAGCTGCAGTGTTACCTGTTGTTCCTGATGCTGTTACTGGTCAGGATCCTAAGTTAAGTCATCATGCACAAAATTCACCAGTAGATTCATTGCCGGGGAAAGCCACTGCCAATATCACTCAAACCCAAGCATTGGAGATCCTTTTACCCAGTGGAGTAGTTAGTCATGATTCAAAACGAAAAGAGAGGGCAACCAATTCTACCCAAAATAAGCTACAGAAAGTTGCATCAACAAGGATTGATGGTGCACCTATGTCCACAGATAAGATTTCTGTGCATGATGTTGCACGGGTAATGAAGGAAGTTTTCTCTGGAACTTGCTTACCAAAGCCTAAAGCTCATGATTCTGCTGGGAGTGAAGATAGGAACACACCTGTTGTACCTGTACTGACTAAAGCTGCAGTGGATGTCGCTTCCAATAACCAGAGTTTGGAGGATAGAGCGTGTTCTAATATAGCAGCTACTGGTGCAGCATGCCTTGCTTCAAATGTTCCTGTGAATGTTAGCGAAAAACAACCAGAAATGGCATCCAATATGGATAATTTGGAGGGTAAAGCAAGTTTAGATATGCCAACTACTGGAGAACATAGCCTGACATCAGATGTTAAAGAAAAGGCTGAACAGATGCAACATTCTGTTGAAAGCTCAACCACGAGTTGTAAAATAGCTCTAGATACAACTCTCAATGCTGTCCAAAAGATCGATGGTTCTTCTGAGAGACTTCCAACTGGCTCTGCTCTCAATGATTTAAATATAGATAGTTCTAGCCATCAGATGTGTTCATCTTCAGGTGCTGAACCTCTTGCAGTACTTGATCGTAAGCTTAAAAACCAATCCGACTCTTTAGAGAAGTGTTCAAGATCTTCTCCTCTTGATATTGGTGGCACAGGATGCCCACCAACTCCATTGGAACCAGACAGTTTTAGCAATAATCCTGTAACTAGTCAGGCTGATACCTGCACTCGGAGCCATTCATCCTCAAACAAACCTCCTGATACCACAGAACACATTTCTAATGAAAAATTGGAACCCTTGCAACCATCTTTGAAATCTTCATCTCTTGCTTGTGTTGACGGCTCTGGGTTATTGGTTCAGACTGAAAATTTGGGTGATCAACCACAAGTGATCCCATCATGTTCTGCAACAGATCTTCCTCCAATGGCGATGATAGTTTCTAGTATTTCAGAATATACTGAAGTTAAAAATGAAACTGAGTCTACTTTAAAACCTTCTACTGAACTCTCATCTGATGAGGGGATTGTTGGGTATAAAATTCCTGCTTCTCAGTTGCTGGAGCCCGAGGATCGGATTGCATTTGAACATAATTCTCAAATGGCATTAGAACCCTCCACGAAACAGTGTTTAGAATCTGCTTCTGAAATGAAAGTTCCTGTGAGTCCTAAAGCTGTTGAAGTTCAGAAGCATCCAGATGCACTAGAACCTGCTGATTTGCATGGTACTCCATTGATTGAGAGTTGCCCAAAATCTCTCTGTGAAGAAAAAAGGGATGATAGGGTTTCCAAATGTGAACAGCTTCAGTCTTGTGTTGTTGAACCTATAAATATTGACCCTGTTTCCCAAGAAAATATAGTATTATCCAATCCTATTAACAATCCAAAGACTGATTCTTCCGAGGCTTGCCATATGGAAATGGACACATCAGACAGGTCAGTGTTGCCACAACCTTCTTCTGGTTTGGAAGCTGTAGGGAATGAGTTAGTAGATATTTCTGGTGTTGGCAGTCTTTTAGAGGGAAGTAAATCCGAAGCTGCAGTTCTGCCCCCGTCAACCTTGATAGAAGAACAAAATAGGGGATCAGCTGTAACATGCCCAGTTAGGAGTTCAGAACCTTTGGAGGAGTCAATGGAGAAGGGTGTGGCTAACAACTCTGCAGTTCAGGAGGAAGCAAAAGTTGATAAAGTAGAAACTGATGTTCAAATGGATTCTTCCATTAGTCAGACTTTGCAAGTAAAACATGAAATTTTTCAAGCAAATGTGAATTTGCCCTCCCATCTGATGGCGAAGGAAGAAAACATAGAAGTCTCATCCTCAAGGCCCCTATCTATCAGTTCATCTCCATCACATGAATTGAAGGATTCTGAACTTGAACTAGGTGATAAATATATATCTCCGGTTGGTGATTTTCAGACTGAATCTAAAGATAATATGTTGAAGAGCTTGGATTTAGTTTCATCTCCTTCCGTTAGGAAGGAAGAAGGGATCAGTTCTACATCTGATATTGATGGTTCTGAAGGCCTTTCGATGTCTCTGAATGTTCATCAATTAATAACTGTCCCAGATGCTGTCGAGTCTTCATCGTCCCAAGTGAAAGAGGAAAAAAAGATTGGGGTATCTTCTGACAGTAAATTAGTTGTGAGGTCTGTATCTGAAAATGACATGGAAGGATCTGGTCTTTTGCCAGAAAACCCTGTGCTGGAAATCAATAAAATGTCATCAGATTCCTCAACGATTGTTAGCCACTCTGTGGAGGGTCAAGTGTCATTTGTGAAAGAAGATAATTCAGAAATTAAAATTGGTGATCAAATGGATGCTTCTCATGTCTCTGAGAATGATTTAGAAAGGATTACTTCTAAATGCATGGATGTACCTTCTTGCTTGCAGATGGAGGGAGATAAGGTTGATATGTTGTCTGACAAGGGCCCTCTTTGCAGTTCCCTTGCTTCTAGTGAACCAAGAGATCCTTTGATTGAGAATAGTAGAGATGGCATCGAGGATTCTGTTGCAAATCCATTACCACAACAGAAATCAAAATGTTCTGAATCTGGGAAGGTTGATGAGATGAAAACATCTGATGTTGTCAGGGTTGATCCAGGACTGAAGTCCAAAATCGCAGATTTTCCTTCTTCCTTAGTGATGGAGCAAGATAAAGCTGCTGCATCATATGATAGCCCACTGGCTGCTGCAGAACCAAAATATTGTTTGACCGGAGAGAATTGTGAAAATGCTAATGAGGAACCAAATCCTTCAGAAGCTGAGATCGGTAATGAAATGAATGCATCTGATGTAGCTGGGGTTAATACACAGCTTTCATCAAGTAGCATTATTGTGCCATCATCTTCCTTGATGACTGAGGATGATAATATTGTGGTGTCATCTGACAATGGTCCACAATGCAGTATGCAAGTACTCAAGGAATCGAAAGATTGTCAGACTGAAGAGGGGAGCTGTAAAGATGCCACTGAGGGTCCCTCTACAAATCCAGTACTGCTGCAGGAATTAATTATTAATTCTGAAGCTGAGACATGTAATGAAGGCAAGACACAGATTGGTGGGCTATCTGTGGAAGATGTCACAGCATCAGAGGGAAAAAGAGAGGTGGAGACATTGCCTGATGAGGGTCCACAAGGAATATTGGAAGCCCAGGATGGATCAAGAGGACTAGCTGACATTGAGGATGGGACAGATAGTAAAAGCTGTGCTGCTGAGATGGAAAATGTATCTGAAGTCCCAAAGCCCTCAGTATCAGCTGAGAAGGGGGAAGACTTGTCTAAGAAAGGTATAATTGGCAGCCAAGCAAAAAGGCAGGTATCAGAAGAATCTGAAGCTGTTACGGGAGGTGGAATTGATGTTACTCCAGATTGTTTGGCTGTGCCAGAAACGGCAACTAATGATGGGGCTTCATCTTTGTGCTCTTCAGCAGAAGGGAGTGAACATGTGGACAGCTTGTCTGAGAAGGATTTAGTTGGCAACCCTGTAGCAGAACTTGACACTAAAGTATCTGAAGCTGGTGTTTCTGACCAGGAAAATCAAGTAGTGCAAGAAAATGCATTGGAAGATATGGAACATGAGGAGAACTTGTCCGAGACGGGTTTAGTTGGCAACGCCGTAGCAAAACTTAGCACCAATAAATCTGAAGCTGGTGTTAGTAACCAGGAAAAACAAGAAAATGCATTGAAAGACATTGAAAAGTCCCCTCCTTCTGCAGCAGAGGGCTGTTCTTAG 10533 0.4212 MASITVTSFNQTHTLVHLTSLHFSAYPSLSSEEMASSHNVELEAAKFLHKLIQDSKDEPAKLATKLYVILQHMKSSGKEHSMPYQVISRAMETVINQHGLDIEALKSSRLPLTGGPQIGSSSQSVNVTKDSRVGLAENEVSKMDPFASGRPPVAPSGGAPDYYQGSVAQRSSQSFDQGSPSSLDSRSANSQSQDRRDTANWDKQVSQKDGKKATTKRKRGDTSSPVELHVDSPSQLDPRNTGVNARKGKITKAESSDGLPVKNGELTNFNMTPNSGQMENVSALSGSMRTMLRANQEGHHLLAKQTDLTKVGNPMVRAPNSKYAEDTEVSSAHIASGKQQGAYANVHGGMSLAAGASSMVEAFSNSMQYGGAVERDRGSSTTLSDGHKIVQVGRQNSGSEMNMLRQGVSPRDTGKSTVPAMPFKEQQLKQLRAQCLVFLAFRNGLAPKKLHLEIALGTAFSREDGSRKDLIDLKGKSQSFNEPGNSSGAMMPFGGPSNARQTDKNLLGSSSVGKIVEADSLSKGTESPRMLEDKGNLHVTKRGEVDRRIQERVASQASSATSCQQQDSSSTRGALVGNNHLDDVDIGNMQVGRSNQSSVAGPNNWAGFAGANEASKGPPQVSAIQHELPIERRENIPSQFQNVGNNCGSRNQNSVNHLSFSLKEQWKPVPGMDSDPHGATMMKDGNVMIKHVSPDGFKTVPVDNASKHGISFATEQDGNERLVSADFPPSPKYTMSERWIMDQQKKRRLLEQNWMLKQQKTKQRMATSFHKLKENVSSSEDISAKTKSVIELKKLQLLELQRRLRSDFLNDFFKPIATEMEHLKSIKKHRHGRRVKQLERFEQKMKEERQKRIRERQKEFFSEIEVHKEKLDDVFKIKRERWKGFNRYVKEFHKRKERIHREKIDRIQREKINLLKINDVEGYLRMVQDAKSDRVKQLLKETEKYLQKLGSKLQEAKTAAGRFGQDVDETGNVSFLENSETENVDESDQAKHYMESNEKYYKMAHSIKESIAEQPSSLQGGKLREYQMNGLRWLVSLYNNHLNGILADEMGLGKTVQVISLICYLMEAKNDRGPFLVVVPSSVLPGWDSEINFWAPGVHKIVYAGPPEERRRLFKERIVQQKFNVLLTTYEYLMNKHDRPKLSKIHWHYIIIDEGHRIKNASCKLNADLKHYQSSHRLLLTGTPLQNNLEELWALLNFLLPNIFNSSEDFSQWFNKPFESAGDSSPDEALLSEEENLLIINRLHQVLRPFVLRRLKHKVENELPEKIERLIRCEASSYQKLLMKRVEENLGSIGNSKARSVHNSVMELRNICNHPYLSQLHAEEVDNFIPKHYLPPIIRLCGKLEMLDRLLPKLKATDHRVLFFSTMTRLLDVMEEYLTLKQYRYLRLDGHTSGGDRGALIDLFNQPGSPYFIFLLSIRAGGVGVNLQAADTVILFDTDWNPQVDLQAQARAHRIGQKRDVLVLRFETVQTVEEQVRASAEHKLGVANQSITAGFFDNNTSAEDRREYLEALLRECKKEEAAPVLDDDALNDVLARSESELDIFEAVDKKRKEDELATWKKLMLGQAADGSDIPQLPARLVTDEDLKQFYEAMKISDVPKAEVESSGVKRKGGYIGGLDTQHYGRGKRAREVRSYEEQWTEEEFEKMCQVETPDSPNKVKEVAEKSCPTNTSSSVVSTSNLQPVPVPPAVPTLPAVESLPVVVQQVKEITPPAKRGRGRPKRITSDKSPAVVVSPVTSGTVEVDTQLQKGFGSGHLASSTPDSVAHSAEVVGVNAPVQQSDTVVSPNSQSVIPMPTIPPNSQVAAVPVSVPIQARGQGRKSHGGEGIRRRGKKQVMISPAIPVGSVGPDLKVNDKLEDKLVSPSGQAISQSETVPSFAAEPHPPSASLSSGKDPLGVGVVLNSQAPPPLPSNTTLVQTAPTYPSVQMLSKGQNQKSQTGVSRRRGKKQATILAPVPDLLHQDLHQTANLPISSGSISGEKATELKSLQESNVQESKCVVLDQASQSVGDQDLKSLGGSDDSSKQTVIMSSCQDSMIKSPGQDLDTVKNPDAHDSSVKVVKSSEITSSKIDEVCNNSGNETLLGTTVPVTGVIQDQHSGGKTHNQTVEISKTIPSVVDTPINSLTDNETTQSINKSLDPVTPTIVPSTLTTVYPTPGSESTHPGLAESIPTKRQGRKTQNRAEPPRRKGKKSAAVLPVVPDAVTGQDPKLSHHAQNSPVDSLPGKATANITQTQALEILLPSGVVSHDSKRKERATNSTQNKLQKVASTRIDGAPMSTDKISVHDVARVMKEVFSGTCLPKPKAHDSAGSEDRNTPVVPVLTKAAVDVASNNQSLEDRACSNIAATGAACLASNVPVNVSEKQPEMASNMDNLEGKASLDMPTTGEHSLTSDVKEKAEQMQHSVESSTTSCKIALDTTLNAVQKIDGSSERLPTGSALNDLNIDSSSHQMCSSSGAEPLAVLDRKLKNQSDSLEKCSRSSPLDIGGTGCPPTPLEPDSFSNNPVTSQADTCTRSHSSSNKPPDTTEHISNEKLEPLQPSLKSSSLACVDGSGLLVQTENLGDQPQVIPSCSATDLPPMAMIVSSISEYTEVKNETESTLKPSTELSSDEGIVGYKIPASQLLEPEDRIAFEHNSQMALEPSTKQCLESASEMKVPVSPKAVEVQKHPDALEPADLHGTPLIESCPKSLCEEKRDDRVSKCEQLQSCVVEPINIDPVSQENIVLSNPINNPKTDSSEACHMEMDTSDRSVLPQPSSGLEAVGNELVDISGVGSLLEGSKSEAAVLPPSTLIEEQNRGSAVTCPVRSSEPLEESMEKGVANNSAVQEEAKVDKVETDVQMDSSISQTLQVKHEIFQANVNLPSHLMAKEENIEVSSSRPLSISSSPSHELKDSELELGDKYISPVGDFQTESKDNMLKSLDLVSSPSVRKEEGISSTSDIDGSEGLSMSLNVHQLITVPDAVESSSSQVKEEKKIGVSSDSKLVVRSVSENDMEGSGLLPENPVLEINKMSSDSSTIVSHSVEGQVSFVKEDNSEIKIGDQMDASHVSENDLERITSKCMDVPSCLQMEGDKVDMLSDKGPLCSSLASSEPRDPLIENSRDGIEDSVANPLPQQKSKCSESGKVDEMKTSDVVRVDPGLKSKIADFPSSLVMEQDKAAASYDSPLAAAEPKYCLTGENCENANEEPNPSEAEIGNEMNASDVAGVNTQLSSSSIIVPSSSLMTEDDNIVVSSDNGPQCSMQVLKESKDCQTEEGSCKDATEGPSTNPVLLQELIINSEAETCNEGKTQIGGLSVEDVTASEGKREVETLPDEGPQGILEAQDGSRGLADIEDGTDSKSCAAEMENVSEVPKPSVSAEKGEDLSKKGIIGSQAKRQVSEESEAVTGGGIDVTPDCLAVPETATNDGASSLCSSAEGSEHVDSLSEKDLVGNPVAELDTKVSEAGVSDQENQVVQENALEDMEHEENLSETGLVGNAVAKLSTNKSEAGVSNQEKQENALKDIEKSPPSAAEGCS 3510
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Gma17g00201 3510 MobiDBLite consensus disorder prediction 1861 1948 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2208 2224 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2240 2261 - -
Gma17g00201 3510 SMART QLQ_2 421 456 IPR014978 GO:0005524|GO:0005634|GO:0006355
Gma17g00201 3510 Coils Coil 838 858 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2471 2527 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3283 3388 - -
Gma17g00201 3510 SMART SnAC_2 1549 1645 IPR029295 GO:0042393
Gma17g00201 3510 Gene3D - 1014 1263 IPR038718 -
Gma17g00201 3510 SMART ultradead3 1019 1213 IPR014001 -
Gma17g00201 3510 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 1256 1545 IPR027417 -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 261 276 - -
Gma17g00201 3510 Pfam SNF2-related domain 1027 1317 IPR000330 GO:0005524|GO:0140658
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2173 2189 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2035 2054 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 473 604 - -
Gma17g00201 3510 CDD SF2_C_SNF 1334 1466 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3474 3510 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 589 603 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 196 225 - -
Gma17g00201 3510 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 992 1254 IPR027417 -
Gma17g00201 3510 Pfam Helicase conserved C-terminal domain 1343 1456 IPR001650 -
Gma17g00201 3510 ProSiteProfiles HSA domain profile. 843 917 IPR014012 -
Gma17g00201 3510 CDD DEXHc_SMARCA2_SMARCA4 1020 1256 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3081 3129 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3400 3422 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 138 276 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2493 2523 - -
Gma17g00201 3510 ProSiteProfiles Superfamilies 1 and 2 helicase C-terminal domain profile. 1346 1492 IPR001650 -
Gma17g00201 3510 Coils Coil 939 959 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 1815 1834 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 1712 1736 - -
Gma17g00201 3510 Coils Coil 1499 1519 - -
Gma17g00201 3510 PANTHER SNF2/RAD54 HELICASE FAMILY 126 2791 - -
Gma17g00201 3510 PANTHER CHROMATIN STRUCTURE-REMODELING COMPLEX PROTEIN SYD 126 2791 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3400 3414 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2146 2172 - -
Gma17g00201 3510 Pfam Snf2-ATP coupling, chromatin remodelling complex 1551 1645 IPR029295 GO:0042393
Gma17g00201 3510 MobiDBLite consensus disorder prediction 552 576 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 227 241 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2146 2224 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 3474 3491 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 165 195 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 1905 1939 - -
Gma17g00201 3510 SMART helicmild6 1372 1456 IPR001650 -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2119 2138 - -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 526 551 - -
Gma17g00201 3510 Gene3D - 1264 1486 IPR027417 -
Gma17g00201 3510 ProSiteProfiles Superfamilies 1 and 2 helicase ATP-binding type-1 domain profile. 1035 1202 IPR014001 -
Gma17g00201 3510 MobiDBLite consensus disorder prediction 2805 2825 - -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Gma17g00201 Gma-Chr17 1634669 1659818 Dispersed/Wgd
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Gma17g00201 1343 1513 RAD5 or RAD16-like Gene Family AT5G22750 33.918 5.12e-20 96.7
       

Transcription factors information


Select Regulatory Factors Family Gene Hmm_acc Hmm_name E_value Clan
TR SNF2 Gma17g00201 SNF2_N 1.2e-68 CL0023
       

Pathway information


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Gma17g00201 - - gmx:100790172 6662.4
       

Event-related genes


Select Gene_1 Chr_1 Start_1 End_1 Gene_2 Chr_2 Start_2 End_2 Event_name
Gma17g00201 17 1634669 1659818 Gma17g00201 17 1634669 1659818 ECH