Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Gma06g01547 ATGGTTAGGGCTCGCGAGAACTGGGAGAAGCTGGTTCGCGCGACGCTGAAGAGGGAGCAACATAGGAATGCGGGCCAAGGCCACGCCAGAGTCCCCAGCGGAATCGCCGGCGCGGTTCCGCCGTCGCTCGCGCAAACCACCAACATTGACTTGATCTTGCAGGCCGCCGACGATATTCAATCTGAGGATCCCAACGTCGCCAGGATCTTGTGTGAGCAGGCATATAGTATGGCTCAAAATCTTGATCCCAACAGTGATGGTAGGGGAGTTCTGCAGTTCAAGACTGGTTTAATGTCTGTTATCAAGCAAAAACTTGTTAAGAAGGATAGGGTACGGATTGATCGCAACCATGACATTGAACACCTGTGGAAGTTTTATCAACACTACAAGCAACGCCATAGAGTGGATGACATCCAACGAGAAGAACAGAGACTGCAAGAATCTGGAACTTTTAGCTCCACCACATTGGGAGAGTTGAAACTTAGATCGTCAGAAATGAGAAAGATAATTGCCACTCTACGTGCTTTAGTGGAGGTCCTGGAGTCACTTAGCAAGGATGCTGATCCCAGTGGAGTTGGAGGGCTCATAATGGAGGAGTTGAGAAAAATAAAGAAGTCAAGTGTGACATTATCTGGAGAGTTGACACCATACAATATTATTCCTCTGGAAGCACCATCATTAACCAATCCTATCAGAATTTTCCCTGAAGTTAAAGCAGCAATATCTGCAATTAGATATACTGACCAGTTCCCTAGACTTCCTGCTGGACTTAGAATATCTGGACAAAGGGATGCAGACATGTTTGATCTTTTGGAATTTGTGTTCGGTTTCCAGAAAGATAATGTAAGGAACCAGCGTGAAAATGTTGTTTTGATGATAGCAAATAAGCAGTCTCGACTTGGCATACCTGCTGAAACTGATCCAAAAATAGATGAGAAAACAATCAATGAAGTGTTCTTGAAGGTGCTAGATAACTATATCAGGTGGTGCAGATACTTACGAATTCGTCTTGCATGGAATAGTTTAGAGGCAATTAACCGGGATAGGAAGCTTTTTTTGGTTTCTCTGTATTTTCTTATTTGGGGTGAAGCTGCAAATGTTCGTTTTCTTCCGGAGTGTATTTGCTATATATTCCACAATATGGCTAAAGAGTTGGATGCTATTTTGGATCATGGAGAAGCTGCACCTGCAGTCAGCTGCGTAACCGACGATGGTTCTGCAAAATTCCTTGAGAAAATAATTTATCCTATTTATCAAACGCTATTTGAAGAAGCTGATAGAAACAACAATGGGAAAGCTGCACACTCAGCATGGAGGAATTATGATGACTTCAATGAATACTTTTGGTCGCGTGCTTGTTTTGAATTAAACTGGCCAATGAGGCCAAATTCACCTTTCTTGCGGAAACCTAAAAGAACTAAAAGGACTGGTAAAAGCAGTTTTGTTGAGCATAGAACATTTCTTCACTTGTATAGAAGTTTCCATCGTCTTTGGATCTTCTTGGCATTAATGTTTCAGGCTTTGACAATCATTGCTTTCAATCATGGACACATCAACTTGAATACTTTCAAAACAATACTTAGCATTGGGCCGTCATTTGCAATCATGAATTTTGTCAAGAGTTTCTTAGATGTGTTGCTTACTTTTGGGGCTTACACCACTGCAAGGGGCATGGCTGTTTCAAGACTAGTTATAAAGTTTTTCTGGGGTGGCTTGACTTCCGTGTTTGTAACATATGTTTACCTGAAGGTTTTGCAGGAGAGAAATAGCAATAGCTCTGACAATTCATTCTATTTCCGGATATACCTTCTTGTGCTTGGTGTTTATGCTGCTATACGTCTATTCCTTGCACTGTTGCTCAAATTTCCAGCTTGTCATGCACTTTCGGAAATGTCTGATCAGTTTTTCTTTCAGTTTTTTAAGTGGATTTATCAAGAACGATACTATGTTGGACGTGGTCTTTATGAGAGGATGAGTGATTACTGCAGGTATGTGGCCTTTTGGTTGGTGGTACTTGCCGTCAAATTTACTTTTGCTTACTTTCTCCAGATTAAACCTCTTGTCGAACCTACCAATATCATTGTTCATCTTCCATCTTTGCCTTACTCATGGCATGATTTGATATCAAGGAATAATTACAATGCCTTTACTATTCTTAGCTTGTGGGCTCCTGTTGTGGCTATTTATCTCATGGATATTCTCATTTTTTACACTATCATGTCAGCAATTGTTGGTGGTGTGAGTGGTGCGCGTGCTCGGCTAGGCGAGATTCGTTCAATTGAAATGGTGCATAGACGTTTTGAAAGTTTCCCAGGGGCATTTGTAAAAAATTTGGTCTCTCCACAAATAAAAAGAATTCAGTTTGGGAAAATGAATGTGATTGATTTGGTGCAGGATTCTCAAGATATGAACAAAGCATATGCTGCCATGTTTGCTCCATTTTGGAATGAGATAATTAAAAGCCTGCGTGAGGAAGATTTTATTAGCAATAGGGAAATGGACTTGCTCTCAATTCCTAGTAATGCAGGAAGTCTGAGATTAGTTCAATGGCCTTTATTTCTTCTAAGCAGTAAGATCCTGTTGGCGATTGATTTGGCTTTGGACTGCAAAGATACTCAGACTGATCTGTGGAACAGGATATGTAGGGATGAGTATATGGCCTATGCAGTTAAGGAATGCTATTACAGTGTTGAAAAAATATTATATTCATTAGTTGACAACGAAGGAAGACTTTGGGTGGAGAGAATTTTTCGTGAGATCAATAACAGTATTATAGAGGGTTCGCTTGTTATAACCTTGTCTCTTAAGAAGCTTCCAGTTGTTTTATCAAGACTTACGGCATTGACCGGACTCCTGATTCGAAATGATCCTGAACTTGCTAAAGGTGCTGCAAAAGCTGTACATGACCTGTATGAAGTTGTTACTCATGAACTGGTATCTTCAGATTTAAGGGAGAATCTTGATACATGGAACCTTTTAGCTAGAGCTAGGGATGAGGGACGTCTTTTTTCTAGGATAGTATGGCCTAATGATCCTGAGATTAAAGAGCTTGTAAAGAGGTTGCATCTTCTTCTTACTGTAAAGGACTCTGCTGCTAATGTTCCAAAAAATCTTGAAGCCAGAAGAAGATTAGAGTTTTTCTCAAATTCATTATTTATGGACATGCCTTCAGCAAAGCCTGTTAGTGAAATGTTGCCATTCAGTGTTTTCACTCCATACTATAGTGAAACTGTGCTTTATAGTACTTCCGAATTGCAAAAAGAGAACGAAGATGGCATATCTATTCTTTTCTATCTTCAAAAGATATTTCCAGATGAATGGGAAAACTTTCTTGAAAGAATTGGTCGAGGAGCATCCACTGGGGACGCAGAACTTCAAGAAAATTCCAGTGACTCTTTGGAACTTCGTTTTTGGGCTTCTTATCGAGGGCAGACTCTGGCGAGGACAGTGCGTGGTATGATGTACTATAGGAGGGCTTTAATGCTGCAGAGCTTTCTGGAGAGCAGATCACTTGGAGTGGACAATTATTCTCAAAACAACTTCATTACAACTCAAGATTTTGAATCATCTCGCGAATCACGGGCACAGGCAGATTTGAAGTTTACTTATGTTGTATCATGCCAAATTTATGGTCAACAAAAGCAGCGAAAGGCACCAGAAGCTGCTGATATTGCTTTATTGTTACAGAGGAATGAGGCACTCCGAGTTGCTTTCATTCATGTTGATGAAAGTACAACTGATGGAAATACTTCAAAAGTGTTTTATTCAAAGCTTGTCAAAGCCGATATAAATGGAAAAGATCAGGAAATATATTCTATAAAACTTCCTGGAGATCCTAAGCTTGGGGAAGGAAAGCCTGAAAACCAAAACCATGCAATAGTTTTCACTCGTGGTGAAGCTGTTCAAACTATTGACATGAATCAGGACAATTATCTTGAAGAAGCAATGAAAATGAGGAATCTTCTGGAGGAGTTCCATGCGAATCATGGCCTTCGCCCTCCAAGCATTCTTGGAGTGAGGGAGCATGTTTTTACAGGAAGTGTCTCTTCCTTGGCTTGGTTCATGTCAAATCAAGAAACTAGCTTTGTAACCTTGGCCCAACGAGTTTTAGCAAATCCTCTCAAAGTTCGCATGCACTATGGACACCCAGATGTATTTGACCGAATATTTCACATAACTCGAGGAGGCATTAGTAAGGCATCACGTGTTATTAATATTAGTGAGGATATATACGCTGGTTTCAACTCCACATTGCGGCTGGGAAATGTCACACACCATGAATACATTCAGGTTGGAAAAGGAAGGGATGTTGGGTTAAACCAGATTGCCCTCTTTGAGGGGAAAGTGGCAGGTGGTAATGGAGAGCAAGTGCTTAGCAGGGACATTTACAGGCTTGGACAACTTTTTGATTTCTTCAGAATGCTTTCTTTCTTCTTCACAACTGTTGGTTATTATGTCTGCACCATGATGACAGTCCTTACAGTTTATATATTCTTATATGGAAGAGCATACCTGGCGTTTTCTGGTCTTGATGAAGCTGTCTCAGAGAAGGCAAAATTGCAGGGTAACACAGCACTTGATGCAGCTTTAAATGCTCAATTTTTGGTCCAGATTGGCGTTTTCACTGCAGTTCCAATGATAATGGGTTTTATACTTGAATTAGGATTGCTGAAGGCTGTTTTCAGTTTCATCACAATGCAACTACAATTGTGTTCTGTCTTCTTCACTTTCTCATTGGGAACTAGAACTCATTATTTTGGGCGTACCATTCTCCATGGGGGTGCAAAATATCGTGCTACTGGTAGAGGCTTTGTTGTCCGTCACATAAAGTTTGCTGAAAATTACAGACTATATTCTAGGAGCCACTTTGTCAAAGCGCTTGAGGTGGCATTGCTTCTTATAGTTTATATCGCATATGGGTATGCAGAGGGAGGTGCTGTTACGTATGTTTTGCTAACTCTAAGTAGTTGGTTCCTTGTCATTTCTTGGCTTTTCGCTCCTTACCTTTTCAACCCCTCTGGTTTCGAGTGGCAGAAGACTGTGGAAGATTTTGATGATTGGACAAGTTGGCTTCTTTACAAAGGAGGAGTAGGAGTAAAAGGAGAAAATAGTTGGGAGTCTTGGTGGGACGAAGAACAGATGCATATCCAAACTTGGAGGGGTCGTATTTTGGAGACAATTTTGAGTGCAAGGTTCTTCTTGTTTCAATATGGTGTTGTGTATAAGCTGCATCTTACTGGAAATGATACATCACTTGCGATCTATGGATTCTCATGGGCTGTCTTGGTTGGAATTGTCTTGATATTTAAGATCTTTGCCTACAGCCCAAAAAAGGCTGCTAATTTCCAGGTAGTGTTGCGATTTGCACAAGGGGTTGCATCTATAGGCCTTGTTGCAGCTGTGTGTCTTGTTGTTGCCTTTACTCAACTGTCGATAGCTGACCTTTTTGCAAGCATCCTTGCATTTATCCCTACTGGATGGGGAATATTATCTTTGGCAATTGCATGGAAGAAGATAGTTTGGAGTCTCGGCATGTGGGATTCTGTCCGTGAGTTTGCTAGAATGTATGACGCTGGAATGGGTATGATCATTTTTGCACCAATAGCATTTTTATCGTGGTTTCCATTCATTTCAACTTTCCAATCTCGCCTTCTCTTCAATCAAGCCTTCAGCCGTGGTCTTGAAATTTCTATCATCCTTGCTGGAAACAAAGCTAACGTTGAGACTTAG 5730 0.4084 MVRARENWEKLVRATLKREQHRNAGQGHARVPSGIAGAVPPSLAQTTNIDLILQAADDIQSEDPNVARILCEQAYSMAQNLDPNSDGRGVLQFKTGLMSVIKQKLVKKDRVRIDRNHDIEHLWKFYQHYKQRHRVDDIQREEQRLQESGTFSSTTLGELKLRSSEMRKIIATLRALVEVLESLSKDADPSGVGGLIMEELRKIKKSSVTLSGELTPYNIIPLEAPSLTNPIRIFPEVKAAISAIRYTDQFPRLPAGLRISGQRDADMFDLLEFVFGFQKDNVRNQRENVVLMIANKQSRLGIPAETDPKIDEKTINEVFLKVLDNYIRWCRYLRIRLAWNSLEAINRDRKLFLVSLYFLIWGEAANVRFLPECICYIFHNMAKELDAILDHGEAAPAVSCVTDDGSAKFLEKIIYPIYQTLFEEADRNNNGKAAHSAWRNYDDFNEYFWSRACFELNWPMRPNSPFLRKPKRTKRTGKSSFVEHRTFLHLYRSFHRLWIFLALMFQALTIIAFNHGHINLNTFKTILSIGPSFAIMNFVKSFLDVLLTFGAYTTARGMAVSRLVIKFFWGGLTSVFVTYVYLKVLQERNSNSSDNSFYFRIYLLVLGVYAAIRLFLALLLKFPACHALSEMSDQFFFQFFKWIYQERYYVGRGLYERMSDYCRYVAFWLVVLAVKFTFAYFLQIKPLVEPTNIIVHLPSLPYSWHDLISRNNYNAFTILSLWAPVVAIYLMDILIFYTIMSAIVGGVSGARARLGEIRSIEMVHRRFESFPGAFVKNLVSPQIKRIQFGKMNVIDLVQDSQDMNKAYAAMFAPFWNEIIKSLREEDFISNREMDLLSIPSNAGSLRLVQWPLFLLSSKILLAIDLALDCKDTQTDLWNRICRDEYMAYAVKECYYSVEKILYSLVDNEGRLWVERIFREINNSIIEGSLVITLSLKKLPVVLSRLTALTGLLIRNDPELAKGAAKAVHDLYEVVTHELVSSDLRENLDTWNLLARARDEGRLFSRIVWPNDPEIKELVKRLHLLLTVKDSAANVPKNLEARRRLEFFSNSLFMDMPSAKPVSEMLPFSVFTPYYSETVLYSTSELQKENEDGISILFYLQKIFPDEWENFLERIGRGASTGDAELQENSSDSLELRFWASYRGQTLARTVRGMMYYRRALMLQSFLESRSLGVDNYSQNNFITTQDFESSRESRAQADLKFTYVVSCQIYGQQKQRKAPEAADIALLLQRNEALRVAFIHVDESTTDGNTSKVFYSKLVKADINGKDQEIYSIKLPGDPKLGEGKPENQNHAIVFTRGEAVQTIDMNQDNYLEEAMKMRNLLEEFHANHGLRPPSILGVREHVFTGSVSSLAWFMSNQETSFVTLAQRVLANPLKVRMHYGHPDVFDRIFHITRGGISKASRVINISEDIYAGFNSTLRLGNVTHHEYIQVGKGRDVGLNQIALFEGKVAGGNGEQVLSRDIYRLGQLFDFFRMLSFFFTTVGYYVCTMMTVLTVYIFLYGRAYLAFSGLDEAVSEKAKLQGNTALDAALNAQFLVQIGVFTAVPMIMGFILELGLLKAVFSFITMQLQLCSVFFTFSLGTRTHYFGRTILHGGAKYRATGRGFVVRHIKFAENYRLYSRSHFVKALEVALLLIVYIAYGYAEGGAVTYVLLTLSSWFLVISWLFAPYLFNPSGFEWQKTVEDFDDWTSWLLYKGGVGVKGENSWESWWDEEQMHIQTWRGRILETILSARFFLFQYGVVYKLHLTGNDTSLAIYGFSWAVLVGIVLIFKIFAYSPKKAANFQVVLRFAQGVASIGLVAAVCLVVAFTQLSIADLFASILAFIPTGWGILSLAIAWKKIVWSLGMWDSVREFARMYDAGMGMIIFAPIAFLSWFPFISTFQSRLLFNQAFSRGLEISIILAGNKANVET 1909
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Gma06g01547 1909 PANTHER BNAC03G35120D PROTEIN 1 1907 - -
Gma06g01547 1909 Pfam 1,3-beta-glucan synthase subunit FKS1, domain-1 350 458 IPR026899 -
Gma06g01547 1909 Pfam 1,3-beta-glucan synthase component 1034 1808 IPR003440 GO:0000148|GO:0003843|GO:0006075|GO:0016020
Gma06g01547 1909 PANTHER LYST-INTERACTING PROTEIN LIP5 DOPAMINE RESPONSIVE PROTEIN DRG-1 1 1907 - -
Gma06g01547 1909 SMART FKS1_dom1_2 348 461 IPR026899 -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Gma06g01547 Gma-Chr6 14941631 15006523 Wgd
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Gma06g01547 1 1909 Glycosyltransferase AT2G36850 77.232 0.0 3094
       

Pathway information


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Gma06g01547 K11000 - gmx:100777959 3641.66
       

Event-related genes


Select Gene_1 Chr_1 Start_1 End_1 Gene_2 Chr_2 Start_2 End_2 Event_name
Gma06g01547 06 14941631 15006523 Gma06g01547 06 14941631 15006523 ECH