Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Cla09g01723 ATGCTTAGGGACTTCAAATTTTTGCGCCGGAGTTCTGGTAAGAACGAGGAGCTCGAAAATGTACCAGTGAATCCCAGGGATTCATCGATTAATCGAATTGGATTAGACGTATCGCGACCTCCATTGAACACAATTCAAGAGCCGATTCGAAATTCGGAACCAGAACAGGAAGCTGGTTTAAAGAGTAGAGTTGAAAGGACTCCCGTTAAGGCGAAGGGAAAGGGCTCGGATCTTGCATTGCCGCTTCGCACGCCGGACAAGCATGGAGGAGCTGGGTTTTCGTCGAGGAAGCGATTTGGTTGGGCTCAGAAAAGCGAATCTGGTTCTCTTCCTGACGAGGAGAAGGCTGATTCGGTTACTTGTTCAGTACAGCCAACCCGCGGCGGCGGCGGAGGAGGAGGATGTGGAAATGGGGGATTTTCTAACGTTACAACCCCTAGGGCTACGAGGACGGCGGTAAGAGCAACCTCGAGTTATTCCGAAAGCAGTTCTACGCAAAGCACTCCGACTAAAAGTGTTTCCAAGCCTCCGTATTCAGTTTGTCGCAGCAAAACTGATCGAATCAATAATTTTTCTGCATTGTATAAAGGGATTCCGGCTAACCCTGTACCACCTTCGGTTGTTAACACGGTCGAAGTCCCTCACTTCGATCTCAAAGAAGACCCTTCATTTTGGATGGAACACAATGTACAGGTTCTTATACGTGTTCGCCCTTTAAACAACATGGAGAGAAGTAATCATGGTTACAATAGGTGCTTAAAACAGGAAAGTGCGCAGTCCATCACTTGGATTGGCCAACCAGAAACAAAGTTTACGTTTGATCATGTAGCATGTGAAACAGTTGATCAGGAAATGTTGTTCAGGATGGCTGGTCTGCCAATGGTTGAGAACTGCTTGTCTGGCTATAATAGTTGTATGTTTGCCTACGGTCAGACTGGAAGTGGAAAAACGCACACTATGCTTGGTGAGATTGATGATCTTGAAGTCAAGCCAAGTCCACATCGTGGAATCACTCCACGTATATTTGAGTTCTTATTTGCAAGGATCCATGCTGAGGAAGAAATTCGACGTGATGAGAAACTGATATACAATTGCAAGTGCTCTTTTTTAGAGATTTATAACGAACAAATCACGGATCTTCTTGATCCCTCATCCACGAATTTACTTCTGCGGGAAGATGTAAAGAAGGGTGTTTATGTAGAAAATCTGTCTGAATTTGAAGTTCGGACTGTTAGTGATATTCTCAGGCTTCTGACTCAGGGTTCTTCAAATAGGAAAGTTGCAGCCACAAATATGAATAGGGAAAGCAGTCGCTCACATAGTGTATTTACATGCGTGATTGAAAGCAAGTGGGAGAAGGACTCCTCAACTAACCTACGCTTTTCTCGACTGAATCTAGTTGACCTTGCTGGTTCAGAAAGGCAGAAAACTTCTGGAGCTGAGGGTGAGCGTTTAAGGGAAGCTGCTAATATTAACAAGTCACTGTCTACACTAGGTCATGTTATAATGGTTTTGCTGGATGTGGCACGTGGGAAGCCGAGACACATTCCTTACAGAGATTCAAAGCTAACCTTTCTTCTTCAGGACTCTCTTGGTGGAAACTCAAAAACAATGATCATTGCAAATGTTAGCCCTTCTATTTGTTGTGCAGCTGAAACACTAAACACTCTTAAATTTGCCCAGCGAGCGAAGCTTATCCAGAACAATGCAGTGGTCAATGAAGATTCAACAGGGGATGTCATTGCACTCCAACGCCAGATACAGCTTCTTAAGGAGGAGCTTGCATACCTCAAACGGCAGAATGTCTCCAGGTCTCTGTCATTTGGTTCCTTTGTCAAAGATACACCAATGGAACATGAATACGATACAGAAAATATATGTGATATGGACATTTCTCAAGATGATGATTCCTTTAAATTCCAATCAAAAGAAGTGAGAATGTCAATGAAACAGTTGAAATCTTTGGAGATAGTACTTGCTGGTGCTTTGAGGAGGGAAAAAATGGCAGAAGCTTCCATCAAGAAACTTGAAGCTGAAATTGAACAGCTGAACCGTTTGGTTCGTCAAAGAGAAGAGGATACAAGGTGTACTAAAATGATGCTCAAATTTCGAGAAGACAAAATTCAGAGAATGGAGTCACTTCTTGGTGGTTCAATTCCGGCAGAAACTTATCTTCTTGATGAGAATAAAGGTCTATATGAGGAGATTCAGCTACTTCGAGCCAAAATAGATAGAAATCCTGAAGTTACACGCTTCGCCTTAGAGAACATTAGGCTTTTGGATCAGCTTAGAAGATTTCAAGAATTCTATGAAGAGGGGGAGAGAGAAGTACTCATAGATGAAGTATCCAAATCACGCGATCAGCTGCTTCAATTTCTCTCTGGGAATTCAGAACAGCAAGAGGAATCAAAACCTACCATGCAACCTCAGTTGAAGAAAGCACTTGATGAACTAGAGGAAACCAAGTGCAGTCTAGAATCTTGCCTAAAGGAAAATGAAAAACTTAGCTGGGAGGTAGACCGACTGCAATCAATGCTGAATAAATTAAAATCTGAACAGCATCAAGATCACAGTATCTTTACCATTAAGGGATCATTTAAAACTGATTTTGAAGATTTAGTGCCAAAGGAAATCCATCAGAAGCTGAGAGAGGGGAATGACGATTCCTTGCTGGAGAAACATGATGAAGAAATTCTGAACTTGCGGATTGAATTGGATGTGCTTAAAATCATTCTCAACGAAGGAATGCTGTCTCACAGAGAAGTTGATGAGAAAGTCATATGCTTGAATAACGATCTTCAGCTTGCAGCAAAAGAGCTTCTGCAAATGAATGAACGGTGTGAAGCTGTAAGCAGAGAATTAGAAGAAGCAAAATCTATTATCGAAGCTCTTGAATCCCAGCAAATTCTCTCAATCAATGAGATCGAGGAACTGAGGAATAGCAACTGTCAAAATTCCCAGCTTTTGAGTGAACAGGAGCATGAAATCATGTGTTTGAAAAAGTGCCTTGCTCTAAAGGAGATACATGATAATTCACCTGAATCACCTCCAGCCCATTCCAGATTTGACGAATCTCGACTGCGTACAAGACTGAACAGGATGCAAGTTTCTCTTGAAAAGGCCAAGAGACTGAATGCTTTGTGCCAAAGGGATCGTGAATGTCAAGCTTCAAATGATAAAGAAATTGATGAAGTTCGCCGGCAAGCTGAAGCTGAAACTGCTGAGGTGATTGTCTGTATGCAGGAAGAGCTGGCTATACTTCAGCAACAAGTCCAAGAAAGTCATTTGAAAGAAATAGAGATGAAAAAAGATGTAAACTCCTTGGAATCTGAATTGAAGCAACTGCAGGATGAACTCCAGCTTATGACTGAAAATAATGAAAGTTTAAGTGAAATACTTGAGAAAAAGGACCAGGAACTAACAACATTGACTGATGAATGGGAACTGCTGACCTGTGAGATGGAAGAAATTCTTGCTGATGGATATGTAGCAGTTGTGGATGCCTCGAATCACCTTGATGACATATCTTCTTCCTTTCCAGAGAAAAGGATTTGGATTTCTGAACAAGTGAGTAGAATGACAAGAATCTTATCTGAGAAGGACTTGTTAATTGAAGAACTCAGAAGGTGTTTGGAGGATGCAAACAATAAACGTATCGACATGGAGAGCATGCTTAAATCTCTCAGAGGAGCAGCATTAGCTATCACAGAAGCTCATCAGCTGGAGTGCAAGGAAAAAGATGAGGAGATTCTTCATTTGACATCCCAGATTAAAGAAAAGGCTACAAGTATTGCAGAAATGGTAGACACCATCAAATTGGTAGAAGAGCGTGTTAGAAAAACATCAGTTTGTGCTACAGTTGCTTTTATTCTTGTTAATAGATTATCAGAGTTGAACCATTCTCATTCTGTTGCCTCGAAAGATAAGGATATCCAATTTAAAGAATTAGTAGAATCAAACTTGATGAAAGATGCCCATGTTGAGCATCAAGCCACTTTGATCAAAGCAGCAGAGGAACAGATAGTGCATCTAAGGAAGCAGCTAGAAGAATCAAGGGGAACTTGTGCTACACTGGGAAAGCAACTTACTGAGGAACAAGAATATCACCGTTCAATGCAAGTAAAGCTTGATGAATTTGAGAATGATAAAATTTTGACAATTGAGAAGCTAGCTGAGCTAAAAACTGGTGTTTCTACTCTAAGGTCATGCATGAGCTCAAATATGGGAGAGCAGCATATCAATAATGAGGAACAGGAATCGAAAGATATACCTTCATCTTTGGGTGAGAGGGAAGAACGATGGACAGGAGCAAACACACATCAAGAGAACAATGTAAACCAGGATGAAGACCAAAGAGCTGAAATATTTGGTCGTTCTTCAAAAGTTGGAAAAGACGTACCTGCCTATCCATGTATTGAGAAAAACTTAGAGTCTCAAACCTTCAGTTGTAATTCTGGTAGAGATATTACCATCACCCTTCTAAAGAAAGAAATAGAGTCTGCACTAAGAAGCTTGGGAGTGGTACAAGCTCAGATGGTCAAGCTTCAAAATGAGAAGAAAGTGATGTTGATCAATGAAAAACAGAATCAGCAGAACTTACAGTGTTTAATGAATCAAGTACTTATGCTGCAAGATACTATTGACAAGTTTGAAAAGCAATCTGAAAATGTGATGGAATCTTTCAGTCACAGGCTAAAAGCATTTGAACAGAATGTGCTTGAAGCTGGTTCTCATTGGTGCCAAACAAAAGAGTTACTTGAACTTGAAGTTGGGGAAGCAAAAGTACTTGCAGTCCACAAGACTGCAGAAGCATCTTGCATTCTTGCTAAATTTGAAGAAGCCCAAGAGACCATAAAAGAAGCAGATATTATGATTAATGAGCTCATGATAGCAAATGAGACGTTGAAGCTTGAAATAGAAAGGCTAAGGGAAAAGGTAATGTTGCAAATCACTGAGAAGGAACTATTGAGGAAAGAGGTTAAAAGCTTGCAACACTGTAATACTTTAGCATGTCAGAAATTCCGAACTCTAGAGGAACACCTATATTCAAATTCAATGGAAATAGAGGCTACCATTGTGGAACTAGAGGGCATGATTGCAGAAGTCCAGACTACTGTCAATAGCAGTTTCATGTCATTGGCATCTGAGATCCAATCAATGAAGTCTTTACAACTGGACTCAACCAAGTTAGTCCGCTCATGTTTTGAGAATGTATGGTCTGAGATAATTGTGAAGGATTGTGCTATATCGGTGCTGCACCTCTGTCACATGGGTATCCTATTGGAAACTGTGATGGGGCTAAATGCTGAGAATGGTTTGCTTCAGCATGGGCTGTGTGAATCAGATGCTGCAGTAGCTGGTTTAAGGGAGCAAAACCTCAAGTCGAAAAGAGAGCTTGATATGTGTAAAATTCTGAAAGGAAAACTGCTTTCTGACCTCAAGAATGGTTTTCATCGCATCCAAAAGAAAGAAGAGGAAGCGGGAGAAATGAGTTCAAAGCTAAATGAATTTGAGAAAAAGATATCAGACCTACAAATACAAGAGGAGCAAATGTTACAAAGGTCAAATTACATGGGACACCAACTTGTTGTTTTGATGAAGGAGTTGGATGACAGTAATAAAAATTTGATTTCATCAGTACTGGATCAAGAGAAATTGCTGAAGGAAAGAGAAAATTTCCTCGAGTTCCAAACTGATTTTTTTGTGACAAATCTGGTCTTGAGAGATTTGGAGTCATGTATTTTAGATGGAGAAATAGAAGAGTTTACTCTCCAGAAGTCTATTGCTGATAGAGAGCATATAAATTGTCTAGCATTTTTGGAGGTTTTGAAGGAAAGGGCAATTATTTCGAAGGTTGATGAAGAGTTGAGAGAACAGCTCTTACTAGACAAGGAAGTTGAGGTTGTACTTCTACAAAAGGAAGTTGAAAAAGCACAAGTCGAGCAGAAAAATTTATTGTCAAAACTGAATGAAAGCAATATGAGTGTGAGGAAGATGGATGAAATAAACAAAACCCTTGAACGAGATATTCAGCTGCTAGAAGGAGCCAGAGGTTCAAATGATGTACTGAAAGATGAACTGGATGAAGTTAGGGGGAAATGTCGGGAACTTGAAGCTGAATGTGATAGATTACTGAAGGATTTGCAAACGAAAGAAAAATTATTGGAAGATTCTTCCAGTCACATGCATGCCATTGATCAGAAAAATCAGAATTTAAATACTGATCTTGAAATGAAAAATATTGAATTGCTGGAGCTACAATATTTACAGCTTATACTTAAAGAGATATTGTGCTCAAAAAGGCAAGATTTTGAAATCTGTGTTAACCATATAACTACACTAAATGAGGAGAATATTTCTTTCAGAAACAAACTTCAATATTATGAGGAAAATATGAATGCAGTTCTCAGGGATATGAGTATGAACATCGCAAAATCTGTTGATTCAATGGGCATGTTAGATGTTGGCTGTACCAGTGTAGTTGACGGGTTGAATGCTGGTTTTCCAGTCTTGGACAAGATATATCATGAGATGCTGGACAATGTGGGAAAGATATCTACTTTTCTGGAAGAGTTTGAATACCTGGAGTTGAGTACCAAGGAAGTGGAATTGGAGAATTTGACTCTTCAAACTGAGTTAATTAGAAAGGACGAAGTTCTTACTGGACTTCTTTTCGATCTTAGGTTGCTGCAGGAATCTGCTTCTAAAAATAAGGACAAAAAAGATGAACTAGATAAGACGGTAGCTTCAATGGAGGCTTTAGATAATGAGCTTGCACAAAAGTCAGCTGAACTTGATAAGGCCATTGATCATGTCCATAGACTAGAAGCTCAATTGCAGGATAAAATGGACATAATCTATGATCTGGAGCTCAATTTATCAAAAGAAAGTGATTCTAAAAAGTTAATTTTCAGTGAAAATCTGGAGCTCAAAACTCAAATTGAAAATGTTCTAGTAGGAAAATGTTCAATTGAGGAGGAGTTGTCAGAAAAGAGGAAGTTAACTGAAGACTTGGAAATGGAACTGTTAGAAGTGGGCAATCAACTCAGCCAAATGAATGACTTGATTGAATTTTTGAAGAGCAATTTGAATGAACTGACTAGTGAAAGGGATCAGCTACAAATGGAGGTGTGTAGTGTGAAAGAAAAGCTAGGAACCTTAGAAGCACTAGCTGAAGAAAATGAGGCAAATCTGATGGAAGCTCAACAGATAGCAGAATCACAAAAGATATATGCTAAAGAGAAGGAGGCTGAAGTGCAACTCTTGGAGAGGTCTGTGGAAGAGCTAGAGTGTACCATAAATGTATTGGAAAATAAGGTTGACATTGTAAAGGAAGATGCTGAACAGCAGAGGTTACAACGAGAAGAGCTCGAATTAGAGCTTCATGCTGTGAAGAATCAAATGCATAATTTTAAAAATGCCGATGCTGACTTGAAAAGATATGTAAGTGAAATAGAGAAAAAACTCACAGAAGCGTGTAAACATGTACAAATTCTTGAAGGAGAAGTAAATGAAAAAATTTCTGAGGTTGCTCAACTTAAAGCCCATATCTCCGAGCTGAACTTGCATGCAGAAGCACAGGCTAATGAGTATAAGCAAAAGTTCAAATTCTTGGAAGCAATGGCTGAACAAGTCAGACCTGAAGGGCATTCCATGTATGTCACTAATTCTTCTTCAAACAAGACAGACAAGTATGCAACAAGGCCACGTGGATCTGGTTCACCTTTTAAATGCATTGGATTGGGCTTGGCACAACAAATGAAATCTGAGAAGGATGAAGACCTCTCTGCTGCGAGGAATCGCATTGAGGAGCTCGAATCTTTGGCAGCGAGCAGACAAAAAGAGGTGTTTGCATTGAATGCAAGACTAGCTGCTGCTGAGAGTATGACACATGATGTCATCCGAGACTTGCTAGGTGTCAAGCTTGATATGACCACTTGCATGTCACTGTTGGATGATAATCATCAGATGCAGAAGACGTCAGAGAGTGCCCAATCCAACATTGTTGAGTCCCAGGAAAAGGAGAAGGTAGTAAAACTGAAGAAACAGCTGAGTGAGTTTGTTGAGGAGCGTCGTGGATGGTTGGAGGAGATTGATAGAAAGCAGGCTGAAATGCTGGCCTTACAAGTTGCTTTGGAAAAACTTCGCCACAAAGATCAGTTACTCAAGACTGAAAATGAAATGTTAAAGTCGGAGAACTTCAATCACAAGCAGAAAGTGTTGGAACTTGAAGGAGAACTTAAGAAATTGTCTGGTCAACAAAATATCCAGCAGCGTATTCACCACCATGCGAAAATCAAAGAAGAAAATAACATGCTCAGAGCACAGAATGGTGACTTAAGTGCTAAGCTGCATCGAACCGAGATTTTTCTTTCTCGTGTAAAAGAAGAGCTGGCTTACTTCCGCACCTCCAATGGGAAGACTTCTGACATTAATTTCGATGAGGAGCAACGATTAAACATCAAGTTGAAGCAAACCGAGGAAGAGAAGGTCCAACTAGCTCGGAAGCTATTGAATTTGTGCACCAGTGTTTTAAAGGCAGCTGGAGTAACAAAACCTGCATCTGAGATATGCCCTTCTGTGGCTGAGGAGGCACTAGATCAACTAATGATTAGAATCTCTTCAGTAGAAAGAGAGCTGCAGGATTTCAAATTCAAGAACAAAATTGCCAACGAAAGAATTAGATTATCCGAACTCATACCGCAACCTTCACCAAAAAGTTCAAAGAACGAAGATAATTGTCAATCTCCTCTAAGACTGCTTCAAACCTCATATTTTTCTGCTTTAGATCGATGA 8796 40.01 MLRDFKFLRRSSGKNEELENVPVNPRDSSINRIGLDVSRPPLNTIQEPIRNSEPEQEAGLKSRVERTPVKAKGKGSDLALPLRTPDKHGGAGFSSRKRFGWAQKSESGSLPDEEKADSVTCSVQPTRGGGGGGGCGNGGFSNVTTPRATRTAVRATSSYSESSSTQSTPTKSVSKPPYSVCRSKTDRINNFSALYKGIPANPVPPSVVNTVEVPHFDLKEDPSFWMEHNVQVLIRVRPLNNMERSNHGYNRCLKQESAQSITWIGQPETKFTFDHVACETVDQEMLFRMAGLPMVENCLSGYNSCMFAYGQTGSGKTHTMLGEIDDLEVKPSPHRGITPRIFEFLFARIHAEEEIRRDEKLIYNCKCSFLEIYNEQITDLLDPSSTNLLLREDVKKGVYVENLSEFEVRTVSDILRLLTQGSSNRKVAATNMNRESSRSHSVFTCVIESKWEKDSSTNLRFSRLNLVDLAGSERQKTSGAEGERLREAANINKSLSTLGHVIMVLLDVARGKPRHIPYRDSKLTFLLQDSLGGNSKTMIIANVSPSICCAAETLNTLKFAQRAKLIQNNAVVNEDSTGDVIALQRQIQLLKEELAYLKRQNVSRSLSFGSFVKDTPMEHEYDTENICDMDISQDDDSFKFQSKEVRMSMKQLKSLEIVLAGALRREKMAEASIKKLEAEIEQLNRLVRQREEDTRCTKMMLKFREDKIQRMESLLGGSIPAETYLLDENKGLYEEIQLLRAKIDRNPEVTRFALENIRLLDQLRRFQEFYEEGEREVLIDEVSKSRDQLLQFLSGNSEQQEESKPTMQPQLKKALDELEETKCSLESCLKENEKLSWEVDRLQSMLNKLKSEQHQDHSIFTIKGSFKTDFEDLVPKEIHQKLREGNDDSLLEKHDEEILNLRIELDVLKIILNEGMLSHREVDEKVICLNNDLQLAAKELLQMNERCEAVSRELEEAKSIIEALESQQILSINEIEELRNSNCQNSQLLSEQEHEIMCLKKCLALKEIHDNSPESPPAHSRFDESRLRTRLNRMQVSLEKAKRLNALCQRDRECQASNDKEIDEVRRQAEAETAEVIVCMQEELAILQQQVQESHLKEIEMKKDVNSLESELKQLQDELQLMTENNESLSEILEKKDQELTTLTDEWELLTCEMEEILADGYVAVVDASNHLDDISSSFPEKRIWISEQVSRMTRILSEKDLLIEELRRCLEDANNKRIDMESMLKSLRGAALAITEAHQLECKEKDEEILHLTSQIKEKATSIAEMVDTIKLVEERVRKTSVCATVAFILVNRLSELNHSHSVASKDKDIQFKELVESNLMKDAHVEHQATLIKAAEEQIVHLRKQLEESRGTCATLGKQLTEEQEYHRSMQVKLDEFENDKILTIEKLAELKTGVSTLRSCMSSNMGEQHINNEEQESKDIPSSLGEREERWTGANTHQENNVNQDEDQRAEIFGRSSKVGKDVPAYPCIEKNLESQTFSCNSGRDITITLLKKEIESALRSLGVVQAQMVKLQNEKKVMLINEKQNQQNLQCLMNQVLMLQDTIDKFEKQSENVMESFSHRLKAFEQNVLEAGSHWCQTKELLELEVGEAKVLAVHKTAEASCILAKFEEAQETIKEADIMINELMIANETLKLEIERLREKVMLQITEKELLRKEVKSLQHCNTLACQKFRTLEEHLYSNSMEIEATIVELEGMIAEVQTTVNSSFMSLASEIQSMKSLQLDSTKLVRSCFENVWSEIIVKDCAISVLHLCHMGILLETVMGLNAENGLLQHGLCESDAAVAGLREQNLKSKRELDMCKILKGKLLSDLKNGFHRIQKKEEEAGEMSSKLNEFEKKISDLQIQEEQMLQRSNYMGHQLVVLMKELDDSNKNLISSVLDQEKLLKERENFLEFQTDFFVTNLVLRDLESCILDGEIEEFTLQKSIADREHINCLAFLEVLKERAIISKVDEELREQLLLDKEVEVVLLQKEVEKAQVEQKNLLSKLNESNMSVRKMDEINKTLERDIQLLEGARGSNDVLKDELDEVRGKCRELEAECDRLLKDLQTKEKLLEDSSSHMHAIDQKNQNLNTDLEMKNIELLELQYLQLILKEILCSKRQDFEICVNHITTLNEENISFRNKLQYYEENMNAVLRDMSMNIAKSVDSMGMLDVGCTSVVDGLNAGFPVLDKIYHEMLDNVGKISTFLEEFEYLELSTKEVELENLTLQTELIRKDEVLTGLLFDLRLLQESASKNKDKKDELDKTVASMEALDNELAQKSAELDKAIDHVHRLEAQLQDKMDIIYDLELNLSKESDSKKLIFSENLELKTQIENVLVGKCSIEEELSEKRKLTEDLEMELLEVGNQLSQMNDLIEFLKSNLNELTSERDQLQMEVCSVKEKLGTLEALAEENEANLMEAQQIAESQKIYAKEKEAEVQLLERSVEELECTINVLENKVDIVKEDAEQQRLQREELELELHAVKNQMHNFKNADADLKRYVSEIEKKLTEACKHVQILEGEVNEKISEVAQLKAHISELNLHAEAQANEYKQKFKFLEAMAEQVRPEGHSMYVTNSSSNKTDKYATRPRGSGSPFKCIGLGLAQQMKSEKDEDLSAARNRIEELESLAASRQKEVFALNARLAAAESMTHDVIRDLLGVKLDMTTCMSLLDDNHQMQKTSESAQSNIVESQEKEKVVKLKKQLSEFVEERRGWLEEIDRKQAEMLALQVALEKLRHKDQLLKTENEMLKSENFNHKQKVLELEGELKKLSGQQNIQQRIHHHAKIKEENNMLRAQNGDLSAKLHRTEIFLSRVKEELAYFRTSNGKTSDINFDEEQRLNIKLKQTEEEKVQLARKLLNLCTSVLKAAGVTKPASEICPSVAEEALDQLMIRISSVERELQDFKFKNKIANERIRLSELIPQPSPKSSKNEDNCQSPLRLLQTSYFSALDR 2931
       

Gff information


Chromosome Start End Strand Old_gene Gene Num
9 34504977 34519830 - ClCG09G017600.2 Cla09g01723 281143

Annotation


Select Seq ID Length Analysis Description Start End IPR GO
Cla09g01723 2931 Coils Coil 2816 2836 - -
Cla09g01723 2931 Coils Coil 1533 1553 - -
Cla09g01723 2931 Coils Coil 1611 1659 - -
Cla09g01723 2931 ProSitePatterns Kinesin motor domain signature. 462 473 IPR019821 GO:0003777|GO:0005524|GO:0007018
Cla09g01723 2931 Coils Coil 2349 2376 - -
Cla09g01723 2931 PANTHER KINESIN-LIKE PROTEIN KIF11 124 1256 - -
Cla09g01723 2931 PANTHER KINESIN-LIKE PROTEIN KIF11 2179 2931 - -
Cla09g01723 2931 Coils Coil 811 852 - -
Cla09g01723 2931 MobiDBLite consensus disorder prediction 1 180 - -
Cla09g01723 2931 MobiDBLite consensus disorder prediction 1414 1437 - -
Cla09g01723 2931 Coils Coil 1327 1354 - -
Cla09g01723 2931 MobiDBLite consensus disorder prediction 1409 1441 - -
Cla09g01723 2931 PRINTS Kinesin heavy chain signature 301 322 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 PRINTS Kinesin heavy chain signature 430 447 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 PRINTS Kinesin heavy chain signature 463 481 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 PRINTS Kinesin heavy chain signature 516 537 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 MobiDBLite consensus disorder prediction 54 72 - -
Cla09g01723 2931 PANTHER KINESIN-LIKE PROTEIN KIN-12F ISOFORM X1 2179 2931 - -
Cla09g01723 2931 PANTHER KINESIN-LIKE PROTEIN KIN-12F ISOFORM X1 124 1256 - -
Cla09g01723 2931 Coils Coil 891 911 - -
Cla09g01723 2931 Coils Coil 2412 2474 - -
Cla09g01723 2931 Coils Coil 1961 1988 - -
Cla09g01723 2931 Coils Coil 2384 2404 - -
Cla09g01723 2931 ProSiteProfiles Kinesin motor domain profile. 229 566 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 Coils Coil 2588 2615 - -
Cla09g01723 2931 Coils Coil 2496 2516 - -
Cla09g01723 2931 Coils Coil 659 693 - -
Cla09g01723 2931 Coils Coil 2698 2732 - -
Cla09g01723 2931 Pfam Kinesin motor domain 235 566 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 SUPERFAMILY Tropomyosin 2325 2541 - -
Cla09g01723 2931 Coils Coil 1197 1231 - -
Cla09g01723 2931 MobiDBLite consensus disorder prediction 138 180 - -
Cla09g01723 2931 MobiDBLite consensus disorder prediction 1 16 - -
Cla09g01723 2931 SMART kinesin_4 227 574 IPR001752 GO:0003777|GO:0005524|GO:0007018|GO:0008017
Cla09g01723 2931 Coils Coil 1820 1854 - -
Cla09g01723 2931 Coils Coil 2237 2278 - -
Cla09g01723 2931 Coils Coil 1098 1146 - -
Cla09g01723 2931 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 229 600 IPR027417 -
Cla09g01723 2931 Coils Coil 933 981 - -
Cla09g01723 2931 Coils Coil 573 600 - -
Cla09g01723 2931 Coils Coil 2521 2541 - -
Cla09g01723 2931 Coils Coil 2324 2344 - -
Cla09g01723 2931 Coils Coil 1996 2054 - -
Cla09g01723 2931 Gene3D Kinesin motor domain 224 578 IPR036961 -
Cla09g01723 2931 Coils Coil 2866 2886 - -
       

Pathway


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Cla09g01723 K10400 KIF15; kinesin family member 15 - csv:101207258 5048.03
       

Dupl-types


Select Gene1 Location1 Gene2 Location2 E-value Duplicated-type
Cla06g00398 Cla-Chr6:4873161 Cla09g01723 Cla-Chr9:34504977 4.88E-12 dispersed
Cla06g01407 Cla-Chr6:27609170 Cla09g01723 Cla-Chr9:34504977 0 dispersed
Cla09g01723 Cla-Chr9:34504977 Cla10g00437 Cla-Chr10:5879448 1.14E-76 dispersed
Cla09g01723 Cla-Chr9:34504977 Cla03g00174 Cla-Chr3:1918379 6.23E-70 transposed
       

Deco-Alignment


Select Vvi1 Blo1 Blo2 Bda1 Bda2 Bpe1 Bpe2 Bma1 Bma2 Cmo1 Cmo2 Cma1 Cma2 Car1 Car2 Sed1 Cpe1 Cpe2 Bhi1 Tan1 Cmetu1 Lac1 Hepe1 Mch1 Lcy1 Cla1 Cam1 Cec1 Cco1 Clacu1 Cmu1 Cre1 Cone1 Cone2 Cone3 Cone4 Lsi1 Csa1 Chy1 Cme1 Blo3 Blo4 Bda3 Bda4 Bpe3 Bpe4 Bma3 Bma4 Sed2 Cmo3 Cmo4 Cma3 Cma4 Car3 Car4 Cpe3 Cpe4 Bhi2 Tan2 Cmetu2 Lac2 Hepe2 Mch2 Lcy2 Cla2 Cam2 Cec2 Cco2 Clacu2 Cmu2 Cre2 Lsi2 Csa2 Chy2 Cme2
Vvi3g473 . . . . . . . . . . Cma02g00434 . Car02g00289 . . . . . . . . . . . . . . . . . . Cone12ag1117 . . . Lsi10g00317 . Chy11g00430 . Blo04g00495 . . Bda14g00526 Bpe15g00887 . Bma03g00528 . . Cmo02g00437 . . . . . . Cpe05g01228 Bhi10g02067 . . . . . . Cla09g01723 Cam09g1818 Cec09g1879 Cco09g1971 . . Cre01g0688 . Csa02g01206 . Cme11g00502
       

Syn-Orthogroups


Select Orthogroup Bda Bhi Blo Bma Bpe Cam Car Cco Cec Chy Cla Clacu Cma Cme Cmetu Cmo Cmu Cone Cpe Cre Csa HCH Hepe Lac Lcy Lsi Mch Sed Tan Vvi Total
OG0010311 1 1 1 2 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 2 1 32