Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Viun10g00110 ATGGCCCAGCAGTCATCTAGGCTCCAGCGTTTGCTTACTCTCCTGGACACCGGGTCAACCCAAGCTACAAGGTTGACCGCTGCTCGTCAGATAGGGGACATTGCAAAATCACATCCTCAAGACTTGACCAGTCTTCTCAAGAAGGTTTCTCAATATCTCCGCAGTAAAAATTGGGATACACGAGTTGCAGCTGCTCATGCAATTGGATCAATTGCTGAGAATGTTAAGCACATACATTTGACTGAACTTTTTGCTTCTGTTGTATCAAAAATGAGTGAGAATGGGATATCTTGTAGCATTGAGGATCTGTGTGCATGGCCATATTTACAATCAAAAATTACAGGAAGCTCATTCAGAAGCTTTGATATGAACAAGGTGCTTGAATTTGGTGCCTTACTAGCTTCAGGGGGGCAGGAATATGATATTGGAAATGATAGTATAAAGAACCCAAAGGAGCGATTGGTTCGACAGAAGCAAAATCTTCGACGTCGTTTAGGTTTGGATGTCTGTGAACAATTTATGGATATCAGTGATGTAATAAGAGACGAAGATCTTATGGTGTCCAAATCAGACCCACATCTGAATGGGATTGATCGTAGAGTTTTTACTTCTTGTTCTGCACATAACATCCAGAAAATGGTTGCAAACATGGTTCCTAGTGTCAAATCAAAGTGGCCAAGCGCAAGAGAATTGAATCTTTTAAAGCGTAAAGCAAAAATAAACTCAAAGGACCAGACAAAAAGCTGGTGTGAAGATGGAGGTACAGAGGCATCAGGTGCTCAAAGTTTGACTCCAAAAGGCACATGTCCTGATTCACTGAATTACAGTAAGGTATTCATGGATGTTAATCATGACGACGATGGCTTTGAGCATGATGGGGATGGGCAATGGCCTTTCCACACTTTTGTTGAGCAACTTATTATAGATATGTTTGATCCTGTTTGGGAGGTACGACATGGTAGCGTGATGGCACTGAGAGAGATTTTAGCACATCAAGGTGCTTCTGCTGGCGTATTTAAACCTGACTCACACATGGGTGGGACCCTGTTTATTGAATTGGAAAACAAAAGTATACCAACCACATTGAAGAGAGAGAGGGAAATTGATTTAAATATGCAAGTTTCAGCTGATGAGTTTGATTCAAACTTGAAGAGGCCAAAACTTGAAGATGTGTCATCACCAAACTTTATGGATAGTGTGATGACTTGCAACAATATTACTTCTGAAACCCATGGATGCAATTTAACTTTGGATTACGGGAACGGGCAATTTAATGGTAATTCCAATGACATGGATCTGGAGTCTCACTCTGATGGCTCACGTGATGCATGCAAAGAGTCTGCCATTATAGCAGAACAGAAGGGTCATCTTGATGACAATCAGATGCCCTCTGGAAATCTTATTGCGCTGAGAAATCTTCCTCAGAACTGTGAGCTGATGAACTCTGTTAAAGTGGCTAGAAGATCCTGGCTTCAAAACTGTGAATTTCTTCAAGATTGTGTGATACGCTTTTTGTGCGTGTTGTCACTTGATCGCTTTGGAGATTATGTATCTGATCAGGTTGTTGCTCCAGTGCGTGAAACCTGTGCACAGGCTTTAGGTGCTGCATTTAAGTATATGCATCCGGCACTAGTAAATGAAACATTGAACATATTGTTGAGAATGCAGTGTAGGCCAGAATGGGAGATTCGTCATGGCAGTCTTCTTGGTATAAAATATTTGGTTGCTGTACGGCAGGAGATGTTGTCTGATTTGCTGGGACGAGTTCTTCCTGCTTGTAAATCTGGATTGGAGGACCCAGATGATGATGTCCGGGCAGTTGCTGCTGATGCTTTAATACCTGCTGCATCTGCAATTGTTTCCTTGCAGGGTCAAACATTGCATTCAATTGTGATGCTTTTATGGGATATATTGCTTGATTTGGATGATTTAAGTCCGTCCACCAGCAGTGTAATGAATCTACTGGCAGAAATCTATTCTCAAGAAGATATGGCGCCAAATATGTATGAAGTTTTGAGATTGGGAGACAAGGAAATGGAAAATGGAGGTGGTGGTTCTTGTGATGGCGATGGAGAAGAAAATCCTTATGTGCTTTCAACATTGGCACAACGTTTGTGGCCCTTTATGAGGCATAGTATCACATCTGTTCGCTATTCTGCAATACGGACTTTGGAGAGGCTACTTGAAGCTGGATATAAAAGAAGCATGTCTGAGTTGTCTGGTGCTTCATTCTGGCCCTCTTCTATATTTGGAGATACCCTTAGAATCGTATTCCAGAATTTGCTATTGGAAACAAATGAAGATATTTTGCAATGTTCTGAGAGAGTTTGGAGTCTCCTTGTTCAGTGTTCTATGGAGGACTTGGAGATGGCTGCAAGTTCTTACGGGTCTTCTTGGATTGAACTTGCATCTACACCATTTGGATCAGCATTAGATGCCTCAAAGATGTACTGGCCAGTTGCTTTTCCACGAAAAAGTCAAATTAGAGCAGCTGCTAAAATGAGAGCTGCAAAAATTGAAAATGAACGGGGTTTGGAATTTAGTCTTGATTCTATTAAAGGAACTATTCCACAAGATAGAAATGGAGATGTTCCTATGAATTCTGTTAAGATAGTTGTCGGTGCTGATGTGGACACATCTGTTACTCATACCCGAGTAGTTACAGCAACTGCTTTGGGATATTTTGCTTCTAAGCTGCCAGTGGGTTCTTTAAAATATGTGATTGATCCACTATGGAGCTCTCTAACCTCTTTCTCTGGTGTCCAACGACAGGTTGCATCTATGGTACTTATTTCTTTGTTCAAGGAGATTAAGCTCAAGAATTCGTCCAAAAACCTTGATGGTATACCTGGTGCCCTCAAAGGTTGGTTGCTGGACTTATTAGCATGTTCTGACCCAGCATTCCCAACAAAAGATTCACTTCTTCCTTATGCTGAGCTTTCCAGAACTTATGCAAAAATGCGCAGTGAGGCTGGTCAATTACTAAATGTAGTCAAGTCTTCTGGTATGTTTGATGAGTTATTGACAGCAACACAAATTGAGTTGGACCGCTTGAGTGTGGATGACGCTATTGGTTTTGCTTCAAAAATTCCAGCTTTGTGTAATGATAGTTCTGCAAATGAGTCCTTGGCAAAGAACATCATGGATGATATTGAATCCTCCAAACAGAGACTCTTGACAACTTCTGGATATTTAAAATGCGTTCAGAGCAACTTGCATGTTACAGTCACTTCTGCAGTTGCGGCTGCCATTGTCTGGATGTCTGAATTTCCTACACGACTTACACCAATCATTTTACCTTTGATGGCTTCTATCAGACGAGAGCAGGAGGAAATACTCCAAATGAAGTCTGCTGAAGCCCTTGCTGAGCTAATGTATCACTGTGTTGCACGTAAACCTTGCCCCAATGATAAATTAATTAAGAATATATGTAGTTTAACTTGCATGGATCCCTCTGAGACCCCTCAAGCCAAATCGCTTTGTACCATTGAGAGTATCGATGACCAAGGTCTTCTGTCTTTTAGAACTCCTGTGAGCAAACAGAAGTCAAAGGTCCATGTGCTAGCTGGTGAAGATCGTTCGAAGGTGGAGGGATTTTTAAGTAGACGAGGATCTGAGCTATCATTGAGGCTTCTATGTGAAAAGTTTGGTGCATCATTATTTGATAAGCTTCCTAAGCTGTGGGATTGCCTTACTGAAGTTCTTAAACCTATAGAGGACACTGAGGAAAAGCAAGTTACTGTGTCTATTGAGTCTGTTAGTGATCCTCAGACCTTGATTAACAATATCCAGGTGGTGCGCTCTGTTGCTCCCGTGTTAACAGAGGAGTTGAAGCCAAAACTGTTGACACTTCTCCCATGCATCTTCAAGTGTGTTCAGCATTCTCATGTTGCTGTTAGATTAGCTGCTTCACGCTGCATCACTTCCCTGGCACAGTCAATGACTGCGAAAGTTATGGGAGCTGTGGTTGAAAATGCTATCCCAATGTTGGAAGATTCATCATCTGTTTATGCTCGACAAGGTGCAGGCATGTTGATTAGTTTTCTAGTTCAGGGGTTGGGTGTAGAGTTGGTCCCTTATGCTCCTCTATTGGTGGTTCCACTTTTGAGGTGTATGAGTGATTGTGATCAGTCTGTTAGACAGAGTGTGACCCATAGTTTTGCTGCTCTTGTTCCTTTACTTCCTTTGGCTCGGGGCCTTCCTCAACCAATTGGACTAGGGGAAGGTGTATCTAGAAATGCAGAAGATTTGCAGTTTTTAGAGCAACTGCTTGACAACTCTCATATTGAAGATTACAAGTTGTGCACTGAATTGAAAGTAACATTGAGGAGGTATCAGCAGGAAGGCATAAATTGGTTAGCTTTTTTGAAACGTTTCAAGCTTCATGGAATTTTATGTGATGACATGGGACTTGGAAAGACACTTCAATCATCAGCAATTGTGGCCTCTGATATAGCTGAGCATCGGAATACAATTGGGAATGAGGATCCTCTGGCTTCTTTAATTATCTGCCCATCAACTCTAGTTGGGCACTGGGCCTTTGAGATAGAGAAGTATATTGATGTTTCTGTTATATCTAGTCTTCAATATGTTGGTTCTGCTCAGGAACGAATGCTTCTTCGAGATCAGTTTTGTAAGCATAATGTCATTATAACATCATATGATGTTGTGCGTAAAGATGTTGATTTTCTGGGACAGCTACTCTGGAATTACTGCATTTTAGATGAAGGGCATATAATAAAAAATGCGAAGTCTAAAGTTACACTTGCTGTAAAACAGTTGAAAGCCCAACACCGCTTGATATTGAGTGGGACACCTATACAGAATAATATAATGGACTTGTGGTCCCTCTTTGATTTTCTGATGCCAGGCTTTCTTGGAACCGAGAGACAGTTCCAAACTGCATATGGAAAACCACTTTTAGCTGCAAGAGATCCAAAATGCTCTGCTAAGGATGCTGAAGCAGGAGTACTGGCTATGGAGGCATTGCATAAGCAGGTAATGCCTTTCCTCCTTCGTAGAACAAAGGATGAAGTCTTGTCTGATCTGCCAGAGAAAATAATTCAAGACAGATACTGTGATTTGAGCCCTGTACAATATAAACTTTACGAGCAGTTTTCTGGTTCTCGTGTAAAACAAGAAATGTCATCTATTGTAACAACGAATGAGTCTGCTGTACCAGAAGGAAGTGGCACTTCTACTAAAGCGTCTTCACATGTCTTCCAGGCACTCCAATATTTGCTAAAACTCTGTAGTCATCCATTGCTTGTCACTGGTGAGAAGATTCCAGATTCACTTTCTCCCATCCTCTTAGAACTGTTTCCTGCTGGCTCTGATATTGTTTCAGAACTTCACAAACTCCATCACTCCCCAAAATTAGTTGCTCTTCATGAGATTCTAGAAGAATGTGGAATTGGAGTTGATAATTCAGGTTCTGAGGGTGCAGTTAACGTTGGGCAGCATAGGGTCTTGATATTTGCTCAACATAAGGCTTTCCTGGATATAATTGAAAGAGATTTGTTTCAGACACACATGAAAAGTGTCACATATTTGCGGTTGGATGGATCAGTTGCATCGGAAAAGCGTTTTGAAATTGTCAAAGCTTTCAATTCAGACCCTACCATTGATGTCTTATTGCTTACAACACATGTCGGTGGGCTTGGTTTGAACCTGACATCTGCAGATACCCTTGTTTTTGTGGAGCATGACTGGAATCCAATGCGAGACCATCAGGCTATGGATAGAGCACACAGGTTAGGTCAGAAAAAAGTAGTTAATGTCCATCGACTAATAATGCGTGGTACTTTGGAAGAGAAAGTTATGAGTCTACAAAGATTCAAAGTGTCCGTGGCTAATGCTGTTATTAATGCTGAAAATGCTAGTATGAAAACAATGAATACAGATCAGTTGCTTGATTTATTTGCATCAGCAGAAACCTCCAAAAAGGGTGGTAATGCTGTAAAGAGCTCAGAGAACAATTCTGATGGAGACGCAAAATTAGTAGGCAGTGGGAAGAGATTGAAATCGATACTCGGCGGATTGGAGGAGCTATGGGACCAATCACAATATACAGAGGAGTACAATCTGAGTCAATTTTTAGCGAGGCTTAATGGCTAA 6117 0.4133 MAQQSSRLQRLLTLLDTGSTQATRLTAARQIGDIAKSHPQDLTSLLKKVSQYLRSKNWDTRVAAAHAIGSIAENVKHIHLTELFASVVSKMSENGISCSIEDLCAWPYLQSKITGSSFRSFDMNKVLEFGALLASGGQEYDIGNDSIKNPKERLVRQKQNLRRRLGLDVCEQFMDISDVIRDEDLMVSKSDPHLNGIDRRVFTSCSAHNIQKMVANMVPSVKSKWPSARELNLLKRKAKINSKDQTKSWCEDGGTEASGAQSLTPKGTCPDSLNYSKVFMDVNHDDDGFEHDGDGQWPFHTFVEQLIIDMFDPVWEVRHGSVMALREILAHQGASAGVFKPDSHMGGTLFIELENKSIPTTLKREREIDLNMQVSADEFDSNLKRPKLEDVSSPNFMDSVMTCNNITSETHGCNLTLDYGNGQFNGNSNDMDLESHSDGSRDACKESAIIAEQKGHLDDNQMPSGNLIALRNLPQNCELMNSVKVARRSWLQNCEFLQDCVIRFLCVLSLDRFGDYVSDQVVAPVRETCAQALGAAFKYMHPALVNETLNILLRMQCRPEWEIRHGSLLGIKYLVAVRQEMLSDLLGRVLPACKSGLEDPDDDVRAVAADALIPAASAIVSLQGQTLHSIVMLLWDILLDLDDLSPSTSSVMNLLAEIYSQEDMAPNMYEVLRLGDKEMENGGGGSCDGDGEENPYVLSTLAQRLWPFMRHSITSVRYSAIRTLERLLEAGYKRSMSELSGASFWPSSIFGDTLRIVFQNLLLETNEDILQCSERVWSLLVQCSMEDLEMAASSYGSSWIELASTPFGSALDASKMYWPVAFPRKSQIRAAAKMRAAKIENERGLEFSLDSIKGTIPQDRNGDVPMNSVKIVVGADVDTSVTHTRVVTATALGYFASKLPVGSLKYVIDPLWSSLTSFSGVQRQVASMVLISLFKEIKLKNSSKNLDGIPGALKGWLLDLLACSDPAFPTKDSLLPYAELSRTYAKMRSEAGQLLNVVKSSGMFDELLTATQIELDRLSVDDAIGFASKIPALCNDSSANESLAKNIMDDIESSKQRLLTTSGYLKCVQSNLHVTVTSAVAAAIVWMSEFPTRLTPIILPLMASIRREQEEILQMKSAEALAELMYHCVARKPCPNDKLIKNICSLTCMDPSETPQAKSLCTIESIDDQGLLSFRTPVSKQKSKVHVLAGEDRSKVEGFLSRRGSELSLRLLCEKFGASLFDKLPKLWDCLTEVLKPIEDTEEKQVTVSIESVSDPQTLINNIQVVRSVAPVLTEELKPKLLTLLPCIFKCVQHSHVAVRLAASRCITSLAQSMTAKVMGAVVENAIPMLEDSSSVYARQGAGMLISFLVQGLGVELVPYAPLLVVPLLRCMSDCDQSVRQSVTHSFAALVPLLPLARGLPQPIGLGEGVSRNAEDLQFLEQLLDNSHIEDYKLCTELKVTLRRYQQEGINWLAFLKRFKLHGILCDDMGLGKTLQSSAIVASDIAEHRNTIGNEDPLASLIICPSTLVGHWAFEIEKYIDVSVISSLQYVGSAQERMLLRDQFCKHNVIITSYDVVRKDVDFLGQLLWNYCILDEGHIIKNAKSKVTLAVKQLKAQHRLILSGTPIQNNIMDLWSLFDFLMPGFLGTERQFQTAYGKPLLAARDPKCSAKDAEAGVLAMEALHKQVMPFLLRRTKDEVLSDLPEKIIQDRYCDLSPVQYKLYEQFSGSRVKQEMSSIVTTNESAVPEGSGTSTKASSHVFQALQYLLKLCSHPLLVTGEKIPDSLSPILLELFPAGSDIVSELHKLHHSPKLVALHEILEECGIGVDNSGSEGAVNVGQHRVLIFAQHKAFLDIIERDLFQTHMKSVTYLRLDGSVASEKRFEIVKAFNSDPTIDVLLLTTHVGGLGLNLTSADTLVFVEHDWNPMRDHQAMDRAHRLGQKKVVNVHRLIMRGTLEEKVMSLQRFKVSVANAVINAENASMKTMNTDQLLDLFASAETSKKGGNAVKSSENNSDGDAKLVGSGKRLKSILGGLEELWDQSQYTEEYNLSQFLARLNG 2038
       

Annotation information


Select Seq ID Length Analysis Description Start End IPR GO
Viun10g00110 2038 ProSiteProfiles Superfamilies 1 and 2 helicase C-terminal domain profile. 1810 1966 IPR001650 -
Viun10g00110 2038 MobiDBLite consensus disorder prediction 251 266 - -
Viun10g00110 2038 MobiDBLite consensus disorder prediction 245 266 - -
Viun10g00110 2038 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 1425 1674 IPR027417 -
Viun10g00110 2038 Gene3D - 1414 1673 IPR038718 -
Viun10g00110 2038 FunFam TATA-binding protein-associated factor 172 1684 2001 - -
Viun10g00110 2038 FunFam TATA-binding protein-associated factor BTAF1 1194 1400 - -
Viun10g00110 2038 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 1675 1976 IPR027417 -
Viun10g00110 2038 PANTHER TATA-BINDING PROTEIN-ASSOCIATED FACTOR 172 4 2037 IPR044972 GO:0003677|GO:0016887|GO:0017025
Viun10g00110 2038 SMART helicmild6 1834 1920 IPR001650 -
Viun10g00110 2038 Pfam Helicase conserved C-terminal domain 1818 1920 IPR001650 -
Viun10g00110 2038 Gene3D - 1684 2001 IPR027417 -
Viun10g00110 2038 SMART ultradead3 1438 1634 IPR014001 -
Viun10g00110 2038 CDD SF2_C_SNF 1789 1931 - -
Viun10g00110 2038 CDD DEXHc_Mot1 1442 1674 IPR044078 GO:0005524
Viun10g00110 2038 Gene3D - 1194 1398 IPR011989 -
Viun10g00110 2038 FunFam TATA-binding protein-associated factor BTAF1 1 96 - -
Viun10g00110 2038 Pfam SNF2-related domain 1460 1756 IPR000330 GO:0005524|GO:0140658
Viun10g00110 2038 Gene3D - 4 92 IPR011989 -
Viun10g00110 2038 Gene3D - 493 672 IPR011989 -
Viun10g00110 2038 SUPERFAMILY ARM repeat 6 1481 IPR016024 -
Viun10g00110 2038 FunFam B-TFIID TATA-box-binding protein-associated factor 1 1412 1673 - -
Viun10g00110 2038 Pfam Domain of unknown function (DUF3535) 776 1230 IPR022707 -
Viun10g00110 2038 ProSiteProfiles Superfamilies 1 and 2 helicase ATP-binding type-1 domain profile. 1454 1624 IPR014001 -
Viun10g00110 2038 FunFam TATA-binding protein-associated factor BTAF1 501 681 - -
       

Duplication type information


Select Gene Chromosome Start End Duplicated_type
Viun10g00110 Viun-Chr10 685286 712017 Tandem
       

Functional genes information


Select Gene Gene_start Gene_end Function Ath_gene Identity(%) E-value Score
Viun10g00110 1437 1975 RAD5 or RAD16-like Gene Family AT1G02670 26.252 9.52e-43 166
       

Transcription factors information


Select Regulatory Factors Family Gene Hmm_acc Hmm_name E_value Clan
TR SNF2 Viun10g00110 DUF3535 6.9e-102 No_clan
       

Pathway information


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Viun10g00110 K15192 - gmx:100777977 3617.78