Gene search


Sequence information


Select Gene Cds Cds_length GC_content Pep Pep_length
Cma14g01944 ATGCCTCCAAGGAAGAAGTCTAATTCTTCTTCCAAGAAGCTCAATTCAAATCAGCAATCAGAGCCTTCCAAGTTCGGAATTCAACACTTCTTCGACCGCCACTCTCAAAATGCTGCGCATTCTCAGAAGCTCACTCCACGAACTTCCGATTCGAAAACTGATGTTTCTGACTCTCTGGATCGTGGAGATGATCCGAATATGGGACGGTTAGATTATAAGGACGCCGCTGCGGCTGCGGCGGCAATGGTGACGACGACTGCTCAAAAGTCAGAGTTGCAGGCGCTTCCTGTGAGTGATGCGGTTTTAGCTTCTGAAAACCCTAAAGTACCGCAGGGAAATGATGCTTGCTCTTCGTCTCTGGATACGACGCCTGAGATTTTGATTGCTGCTGGTGGAAATGCTGGCCATGACCTTTCTAACGAGCTGTCTCCACAATTTTCCAAGTCCGTGTCCTTGAAGCGCTGCAAGTTCTCTCCTGGGATGCTGATTAAGCAAAGTCAGGATGAGGGGACGACAAACGATGAGATCACATGGAAGATATCTCCAGTAAACGAAAGGCTTCAGGCTGTTTCAAAGCAATTGCCGGAAACTATAAGAGTTTTGGCGAACTCCTCAAGGCTCAACTCTTTGAGAATTCGACAGTGTTCACAAAATAAGACTTCCTCTGTCGAGCTTGGGAATTTTGAGCAGTTGAGTTCACTAAACCCGAAACCTTCTGAAAGATCAGTGACTTCGTTACATAAGACTGGATTGAAAAGGTTACGTTCTAAACATGATACGGAACCTAATGGAGTTGCGATTGATAGTTTGAGTGGCTCTAGAGTAGCTAACAGTCAGAGTCCATTCCGGACGCCCCCATCCTTGTCATACTGCGATAAGACTGCCAATGATGTTGTTGAACGTACTGAAGCACCCGATCACCCTATTTTAAGGCCACACAAAAAGGCATTACTTGAGCTTTTAGATCAAGTAGAAGATGTCATTGCTGTTGATACCGTGGCTCCTTCCATTGATTTGGAGGAGGATTCATCTGAATTACAAGCGGAAGTCCTTCAAAAGATTCCAGACACTGTAATGAAGGCATCCCCTTGTGATTTTCTTGTCTTGGAGGTAACAGAGAAATGTGAGCTGGCTGATACATCTGAAGTTAAACGCTCGTATAAGGTTCTTCGCTTGCTAAATGAGCAAAGTGGAGAAGAGCGGGCTGTATATCTTTGGGATGACTGGTTTGACAGTATTATTGCACCTGGAGATACTGTGAATGTGATTGGTGAATTTGATGACCAAGAAAGATGTCATGTTGACCACGACAAAAATTTTGTTATTCTACACCCCGATGTACTTGTCTCTGGAACTCGGGTTGCTGGTCATTTGACCTGTCCAAGGAGGAGTGTTCTTGATGAGAGGCTTAGAAGTAACGAACAGTCTATTTCAGCATTAATTGGTACTTTGCTGCACCAGGTTTTTCAGGCTGGTCTTGTAGAAGAAACACCAACTGTCACCTTCTTGGAAGAGGTTTCGAGAATAGTGCTTCAGAAAAGTATGGAAAGTGTATATGCATGCGGAGCAAATGAAAAGGATATAGGCAGAACCATGAATGAAGCAGTTCCAAAAATTTTGCATTGGATCACCCTGTTCAAATGCCCAATGGGTTCTAAAGCACCTACTATCGAGTTTAGATCTGATGATGGTCCCAGGAAAGTTAGTATATCAGAGGTAATTGATATTGAGGAGATGGCATGGGCTCCAAAATATGGTTTGAAGGGAATGATTGATGCTTCTGTCAGGGTAAAAGTACTGTCAAATTATAATACATGTGTTGAGAACGTCGTGCCTTTAGAGTTTAAAACTGGAAAGGTGCCAGCTGGCCAGTCCTCCATGGAACATTGTGCCCAAGTGATCTTATACACACTACTTATGTCCGAGAGGTATCAAAAACATGTTGGTTATGGTCTCCTTTACTATCTCCAGTCGGATCAGACACAGGGTATCCGGGTTCAAAGATCTGACTTGGTGGGGCTAATCATGCGTCGTAATGAGCTTGCAAATAACATCCTCAAGGCATCAACTGCACAATTACTCCCCCCTATGTTACAGATTCCAAATGTGTGTAAAGGGTGCCGCCATCTTGATGTTTGTACCATTTATCATAAGATGCAAAATGGAAGCAAAGAGAGCAGTGGTCTTGGAGCTTTATTTGACTCCAATACGGACCATTTGAAAGCTTCTCATGGTTTTTTCTTTCAACATTGGGAAAGATTGATTGATTTAGAGGCCAAGGAGACTGAGCTTGTAAAGAGGGGAGTTTGGCACACACCTAGTGCAGAGAAAAATCAAACGTCTACCTGTCTTTCTTCTATTGTTCTTAGTACGTTGGATGGCCAACCACATTGTACTTCTGAAAAGGACAACCGAATCAGCTATCGTTTTGTGCGTCAAGGTTTGTCATCTCTGTGTTCTAAAGATTCAAATGTCGATAGTTCAAACACTGATTCAACAAATGACATGGACAGTTCACTTAGAGTTGGAGACTATGTGATACTTAGTACAGATTCTGGGAATTTAACCCTAGCGAGTGGGATTATAAAAGATCTGAGCAGTCTCCATATATCTGTTTCTTTCTCTAAGCGCCTACGTTTGCCTGGAAGCACTTCTTCTACTGAGGCACATGATCTTATGAAGCAGGTATGGCGGATTGACAAGGATGAATTTATGACTTCGTTTGCAATCATGAGGTTTAATCTTGTACAACTGCTTCTGCAAGGTGAACAAAATTCTCATCTTAGAAAGTTGATCGTAGATCTTGCGGCTCCAAGATTTGATAGTGGATGCATATTCAGCCAGGATCCAGCAATATCTTACATCTGGTCAGAGAAGAATTTAAATGATGACCAACGTCGAGCCATAATTAAGATACTTACAGCAAAGGATTATGCTCTGATTCTGGGAATGCCTGGAACAGGCAAGACATCCACAATGGTTCATGCCGTGAAAGCACTGTTGATGAGAGGTGTATCCATTTTGCTCACGTCTTACACAAACACTGCTGTTGATAATTTACTTATCAAACTGAAATCTCAGAACATTGATTTTATACGGATTGGAAGAATTAATGCAGTGCATGAAGACATCCGCAGCCATTGCTTTTCGGAGTTGAACATACAAAGTGTGGAAGACATCAGAATGAGATTGGACCAAGTGAAAGTTGTTGCAGTCACTTGTTTGGGGATAACTAGTCCCTTACTCGTCAATAAAAAATTTGATATATGCATAATGGATGAAGCTGGACAGACCACCCTTCCAGTTTCCCTTGGACCTTTGATGTTTGCTTCAACATTTGTCCTTGTTGGCGATCATTATCAGCTACCTCCTCTTGTTCAGAGTACAGAGGCTCGAGAAAATGGACTGGGGATAAGCTTGTTTTGTAGGCTTTCAGAAGCACATCCTCAAGCCATTTCCGCCTTACAAAGCCAGTATCGCATGTGCCGCGACATTATGGAATTATCAAATGCCTTGATATACGGAGACAGATTGCGTTGTGGTTCTGAAGAAACCGCAAACGCAAAGCTTGAATTTTCATGTTTAAAGTTGTCTACATCTTGGCTCAAGGAGGTTGTAAACCCATGCAAACCAGTTATCTTTGTTTGTACAGATTTATTACCTGCTTACGAGACAAGAGATCACAAGATTGTGAACAACCCAATTGAAGCTAACATATTAGCAGAGGTGACGAAGGGATTGCTTGATGGTGGAATTAACGGGAATGACGTCGGCATCATTACTCCTTATAACTCCCAGGCAAGCATCATTCGTCTAGCTATTAACATACCCTCCGTGGAGATACATACCATTGACAAATACCAGGGAAGAGACAAGGACTGCATATTGGTGTCCTTTGTTAGGTCGAGTGAAAATCCGAAGAGCTGTACTACTTCACTTCTTGGAGACTGGCATAGAATTAATGTGGCCATTACTCGTGCCAAGAAAAAACTAATCATGGTGGGATCACGCAAAACACTATCAAAAGTTCCACTGCTGAAGCTTCTAATCAAGAAGGTCGAGGAGCAATCAGGCATCTTCAATGTAACAAGGAATGACATAAGTCAAAGTAGCAAGCTTCCTGCGGACATAGTTGTCAAAGAGGAGCTGGGGCTGGACTGTGTATCAAATGCCATGTGTGAAGCACCGAGAAAGTCTTGTCTACTTGCGAAAAGTTTATCTGGTAGAGTTAGAAGATTTGAACATCAGACCTCTCGATCGAAGAAGAAAAAGAGGAGGAGCAACATCATTAGCTTCCTTCTTTCAAATTTCACTATGAATCAGCTTCAGTTCTTCAACTCTTTCTCTCTTCCAACTTATAAGCTTTCTCAATTGGGAGCGAACTGGCAATGGCGGGAACTTGAATCCACATCATCGTGCCTGTGGGAGTGCATTAGCATAGGGGTACAATTAGGGTTCTTGGGAGTAATAATCGTTCGAGTTCTTCAGAAGTGTGTTGGTTGGATATGGAATTCTTACAGTGGAGATGGCAAATCGACGGATCGAGCTGCGGAAAACCGTCCGATCAGTCAGAAATTGAGCATTTCTTACAGAGTCGGTGTAGGCTGCTCCGTCTTGCTGTTGATGATTCATGTTCTTATGGCTTTTGTTTTGCGAAATGGTTCTCATTGCAATTCCGGAATCGAAGTAATTTCTTCAAAGATAATGGGAGTGATAGCGTGGGGAGGAGCGGTTTTTGCAGTTTTCGGGGTTTTGCGTGATAAATCCGTCGATTATCCTTGGATCCTACGAGGTTGGTGGTTTTGCAGCTTCATTTTATCGATTGTTCATGTGGTTTTGGATTTACATTTCGGAAATTTCAAGCACTTGAGAGTGCAAGATTATGTCGAGTTTTTCGGCCTTCTTCCGTCGATTTTATTGCTAGGGCTTTCCATTCATGGACATACAAACATAGTTTTCAATGTTCATAATGTTTTGGATGATCCACTTCTTCCGGAAAAACGCCTAGATCAAGAGAGGGACGAGAAGGATTCTCCTTATGGAAGGGCAACGCTTCTTCAACTCGTTACCTTCTCCTGGCTCAATCCCCTGTTTTCTGTTGGATACAAAAAGCCACTCGAAAAGGAGGACGTACCAGATGTTTGTCGGATAGACTCCGCGAAATTTTTGTCACATTCCTTTGATGAGACACTAAATTTTGTTAAGAAGAAGAACAATAGCACAAATCCATCAATATACGAGACAATATATTTGTTTGGTCGAAGGAAAGCAGCAATAAATGCATTTTTTGCTGTGATAAGTGCTGCAACATCATATGTAGGACCATACCTGATTGATGACTTTGTGAGTTTCCTCACTCAGAAGAAAATGCGGACCTTATCAAGCGGGTATCTTCTTGCGCTTGCGTTTGTTAGCGCAAAGATGATCGAGACGATAGCTCAGAGACAGTGGATTTTTGGTGCACGTCAACTGGGTCTTCGTCTTCGTGCTGCTTTGATATCACACATATACCAAAAGGGCTTGCGTCTTTCGAGCCGATCTCGCCAAAACTGCAGCAGTGGGGAGATCATGAACTACATGAGTGTTGATATCCAAAGAATCACCGACTTCAGTTGGTTCTTGAACACTGTATGGATGTTACCCGTACAGATTTCATTAGCTATGTTCATTTTGCATACAAATCTGGGAGTGGGATCGCTGGGCGCATTAGCAGCAACTCTAGTAGTCATGTCCTGCAACATACCAATGACCAGAATTCAGAAAAATTACCAGACAAAGATAATGGAAGCTAAAGATAATAGGATGAAAACCACTTCAGAAGTTCTCAAAAACATGAAGACACTCAAACTTCAAGCATGGGATACTCAGTACCTCCAAAAGCTAGAACGCTTAAGGAAATTGGAGCACCACTGGTTATGGAAGTCATTGAGATTAATGGGAATTTCAGCTTTCGTCTTTTGGGGATCGCCCACTTTTATCTCCGTTGTAACGTTCGGGGTGTGTGTCTTACTGGGAATTGAATTGACTGCTGGAAGAGTCTTATCTGCTTTGGCTACCTTCCGTATGCTACAAGACCCCATATTCAATCTCCCTGACTTGCTCTCTGCTCTTGCACAAGGCAAAGTCTCAGCAGATCGAGTTTCATCTTACCTGCACGAAGATGAAATACAGCAGGATTCCATCACTTATGTTTCTAGAGATCAAACGGAATTCGATATAGATATCGAAAATGGAAAATTCAGCTGGGACCTTGAAGCAAGCAAGGCATCTCTTGATCAGATAAACTTGAAAGTGAAAAGGGGGATGAAGGTGGCAGTATGTGGGACTGTAGGTTCGGGAAAGTCCAGCCTACTCTCATGCATACTTGGTGAAATAGAAAAGCTCTCTGGGACAGTGAAGATCAGTGGTACAAAGGCCTATGTTCCTCAATGTCCTTGGATACTGTCAGGAAATATCAGGGAAAATATTCTTTTTGGAAATGATTATGAAAGTACTAAATACAACAGAACAATTAATGCATGTGCTCTGGCAAAGGATTTTGAGTTGTTTTCTTGTGGAGACTTAACTGAAATTGGAGAAAGAGGGATAAACATGAGTGGGGGACAGAAGCAGAGGATACAAATTGCTCGTGCAGTTTATCAGGATGCTGATATTTACCTCCTTGATGATCCTTTCAGTGCAGTTGATGCTCATACAGGAACTCAACTCTTCGAGGACTGTTTGATGGGTGCTCTCAAGGAGAAGACCGTAGTTTATGTAACCCACCAAGTCGAATTTCTACCGGCAGCAGACCTCATCCTGGTGATGCAAAATGGAAAAATTGCTCAAGCTGGAGGATTTGAAGAACTTCTGAAACAAAACATAGGCTTTGAAGTTCTAGTAGGGGCCCATAGTCAAGCTTTAGAGTCTATCGTCACAATTGAAAACTCAAGTAGCAACTGTCAACTGCCAAAACCCGAAAAGGAATTGTATGAAGATTCTCCCATGAATGTGAATCCTAGAAAGTCACAACATGATTTAGTGCAGAATAAAAATTCTGCAGAGATAACAGAGAAGGGAGGAAAATTGGTTCAAGAGGAAGAGAGAGAGAGAGGAAGCATTGGCAAAGAAGTGTTCGTTTCCTATTTAACCATTGTGAAAAGAGGAGCATTTGTTCCGATCATAATCTTGGCACAATCGTCATTCCAAGCTTTACAGGTAGCTAGTAACTACTGGATGGCATGGGCTTGTCCCCCTACAAGTGATACAGAACCAGTAATTGGGATGAAAATCATACTACTTGTTTACTCACTACTTGCTATTGGAAGCGCACTATGTGTGCTTCTGCGAGCTATGCTAGTAGCCATAACAGGACTTCAGACAGCACAAACACTATTCACAAATATGTTATGTAGTATACTCCGGGCACCAATGGCATTCTTCGACTCGACTCCCACTGGAAGAATCATAAACCGGGCATCCACTGATCAAAGCGTTGTAGACTTGGAAATGTTTACGAAGTTAGGTTGGTGTGCATTCTCAATAATTCAGATTCTAGGGACCATTGTAGTAATGTCTCAGGTAGCATGGGAAGTGTTTGCCGTTTTTATTCCTATTACTGCAACCTGCATTTGGTACCAACAATATTACACACCTACAGCACGGGAACTTGCTCGGTTATCTGGAATACAACGAGCTCCAATCCTTCATCACTTCGCAGAATCCCTAGCAGGAGCAGCAACTATTCGCGCTTTCAATCAAGAAGATAGATTTTTCAAAACTAACCTTGGTCTCATTGATGACCATTCAAGGCCTTGGTTTCATAATGCTTCAGCCATGGAGTGGCTTTCTTTCAGATTAAACGTACTATCAAATTTTGTTTTTGGATTTTCTTTGGTTTTGCTGGTGACTCTCCCTGAAGGAATTATTAATCCAAGTATTGCAGGCTTGGCAGTAACTTATGGGATAAACTTGAATGTTTTGCAAGCTTCTGTTATCTGGAACATATGCAACGCAGAGAATAAGATGATCTCAGTTGAAAGAATTCTTCAGTATTCGAAAATAAAAAGTGAAGCACCTCTTGTTATTGAAAATTGCAGACCACCAAGCAATTGGCCGCAAGATGGGAGCATTTGCTTCAAAAATTTGCAGATCCGTTACGCGGACCATCTCCCAGATGTCCTGAAGAATATCAGTTGCACCTTCCCAGGAAGGAAGAAAGTGGGTGTTGTAGGAAGGACAGGCAGTGGGAAATCAACTCTGATACAGGCAATTTTTAGGATTGTTGAACCTAGAGAGGGAAGCATTATAATAGACGAGGTTGACATTTGTAAGATAGGCCTCCATGACCTGAGATCAAGGTTAAGCATCATCCCTCAAGACCCTTCCATGTTTGAAGGAACAGTTAGAGGAAACCTCGACCCACTAGAACGGTATACCGACCAGGAAATTTGGGAGGCGTTAGACAAATGTCAACTAGGTGATTTGGTGCGTGCAAAGGACGAGAAATTGAATTCTTCAGTGGTTGAAAATGGAGAAAATTGGAGTGTTGGTCAACGACAGCTATTTTGTCTCGGGAGGGCGTTGCTCAAAAAAAGCAGCATTCTGGTGCTTGATGAAGCAACAGCCTCTGTCGATTCTGCAACTGATGGCATCATACAAAACATCATTAGTCAAGAGTTTAAAGATCGAACCGTGGTTACCATAGCTCATAGAATCCACACAGTTATAGCTAGTGATCTTGTCTTGGTCCTCAGTGATGGAAGAATTGCAGAGTTCGACTCTCCAAAAATGCTTCTCAAACGAGACAATTCGTTTTTCTCCAAGCTAATAAAAGAGTACTCCACGAGATCACAAAACTTCAGTAGTCTTGCAAATCAAAGGTATGATTAG 8871 42.32 MPPRKKSNSSSKKLNSNQQSEPSKFGIQHFFDRHSQNAAHSQKLTPRTSDSKTDVSDSLDRGDDPNMGRLDYKDAAAAAAAMVTTTAQKSELQALPVSDAVLASENPKVPQGNDACSSSLDTTPEILIAAGGNAGHDLSNELSPQFSKSVSLKRCKFSPGMLIKQSQDEGTTNDEITWKISPVNERLQAVSKQLPETIRVLANSSRLNSLRIRQCSQNKTSSVELGNFEQLSSLNPKPSERSVTSLHKTGLKRLRSKHDTEPNGVAIDSLSGSRVANSQSPFRTPPSLSYCDKTANDVVERTEAPDHPILRPHKKALLELLDQVEDVIAVDTVAPSIDLEEDSSELQAEVLQKIPDTVMKASPCDFLVLEVTEKCELADTSEVKRSYKVLRLLNEQSGEERAVYLWDDWFDSIIAPGDTVNVIGEFDDQERCHVDHDKNFVILHPDVLVSGTRVAGHLTCPRRSVLDERLRSNEQSISALIGTLLHQVFQAGLVEETPTVTFLEEVSRIVLQKSMESVYACGANEKDIGRTMNEAVPKILHWITLFKCPMGSKAPTIEFRSDDGPRKVSISEVIDIEEMAWAPKYGLKGMIDASVRVKVLSNYNTCVENVVPLEFKTGKVPAGQSSMEHCAQVILYTLLMSERYQKHVGYGLLYYLQSDQTQGIRVQRSDLVGLIMRRNELANNILKASTAQLLPPMLQIPNVCKGCRHLDVCTIYHKMQNGSKESSGLGALFDSNTDHLKASHGFFFQHWERLIDLEAKETELVKRGVWHTPSAEKNQTSTCLSSIVLSTLDGQPHCTSEKDNRISYRFVRQGLSSLCSKDSNVDSSNTDSTNDMDSSLRVGDYVILSTDSGNLTLASGIIKDLSSLHISVSFSKRLRLPGSTSSTEAHDLMKQVWRIDKDEFMTSFAIMRFNLVQLLLQGEQNSHLRKLIVDLAAPRFDSGCIFSQDPAISYIWSEKNLNDDQRRAIIKILTAKDYALILGMPGTGKTSTMVHAVKALLMRGVSILLTSYTNTAVDNLLIKLKSQNIDFIRIGRINAVHEDIRSHCFSELNIQSVEDIRMRLDQVKVVAVTCLGITSPLLVNKKFDICIMDEAGQTTLPVSLGPLMFASTFVLVGDHYQLPPLVQSTEARENGLGISLFCRLSEAHPQAISALQSQYRMCRDIMELSNALIYGDRLRCGSEETANAKLEFSCLKLSTSWLKEVVNPCKPVIFVCTDLLPAYETRDHKIVNNPIEANILAEVTKGLLDGGINGNDVGIITPYNSQASIIRLAINIPSVEIHTIDKYQGRDKDCILVSFVRSSENPKSCTTSLLGDWHRINVAITRAKKKLIMVGSRKTLSKVPLLKLLIKKVEEQSGIFNVTRNDISQSSKLPADIVVKEELGLDCVSNAMCEAPRKSCLLAKSLSGRVRRFEHQTSRSKKKKRRSNIISFLLSNFTMNQLQFFNSFSLPTYKLSQLGANWQWRELESTSSCLWECISIGVQLGFLGVIIVRVLQKCVGWIWNSYSGDGKSTDRAAENRPISQKLSISYRVGVGCSVLLLMIHVLMAFVLRNGSHCNSGIEVISSKIMGVIAWGGAVFAVFGVLRDKSVDYPWILRGWWFCSFILSIVHVVLDLHFGNFKHLRVQDYVEFFGLLPSILLLGLSIHGHTNIVFNVHNVLDDPLLPEKRLDQERDEKDSPYGRATLLQLVTFSWLNPLFSVGYKKPLEKEDVPDVCRIDSAKFLSHSFDETLNFVKKKNNSTNPSIYETIYLFGRRKAAINAFFAVISAATSYVGPYLIDDFVSFLTQKKMRTLSSGYLLALAFVSAKMIETIAQRQWIFGARQLGLRLRAALISHIYQKGLRLSSRSRQNCSSGEIMNYMSVDIQRITDFSWFLNTVWMLPVQISLAMFILHTNLGVGSLGALAATLVVMSCNIPMTRIQKNYQTKIMEAKDNRMKTTSEVLKNMKTLKLQAWDTQYLQKLERLRKLEHHWLWKSLRLMGISAFVFWGSPTFISVVTFGVCVLLGIELTAGRVLSALATFRMLQDPIFNLPDLLSALAQGKVSADRVSSYLHEDEIQQDSITYVSRDQTEFDIDIENGKFSWDLEASKASLDQINLKVKRGMKVAVCGTVGSGKSSLLSCILGEIEKLSGTVKISGTKAYVPQCPWILSGNIRENILFGNDYESTKYNRTINACALAKDFELFSCGDLTEIGERGINMSGGQKQRIQIARAVYQDADIYLLDDPFSAVDAHTGTQLFEDCLMGALKEKTVVYVTHQVEFLPAADLILVMQNGKIAQAGGFEELLKQNIGFEVLVGAHSQALESIVTIENSSSNCQLPKPEKELYEDSPMNVNPRKSQHDLVQNKNSAEITEKGGKLVQEEERERGSIGKEVFVSYLTIVKRGAFVPIIILAQSSFQALQVASNYWMAWACPPTSDTEPVIGMKIILLVYSLLAIGSALCVLLRAMLVAITGLQTAQTLFTNMLCSILRAPMAFFDSTPTGRIINRASTDQSVVDLEMFTKLGWCAFSIIQILGTIVVMSQVAWEVFAVFIPITATCIWYQQYYTPTARELARLSGIQRAPILHHFAESLAGAATIRAFNQEDRFFKTNLGLIDDHSRPWFHNASAMEWLSFRLNVLSNFVFGFSLVLLVTLPEGIINPSIAGLAVTYGINLNVLQASVIWNICNAENKMISVERILQYSKIKSEAPLVIENCRPPSNWPQDGSICFKNLQIRYADHLPDVLKNISCTFPGRKKVGVVGRTGSGKSTLIQAIFRIVEPREGSIIIDEVDICKIGLHDLRSRLSIIPQDPSMFEGTVRGNLDPLERYTDQEIWEALDKCQLGDLVRAKDEKLNSSVVENGENWSVGQRQLFCLGRALLKKSSILVLDEATASVDSATDGIIQNIISQEFKDRTVVTIAHRIHTVIASDLVLVLSDGRIAEFDSPKMLLKRDNSFFSKLIKEYSTRSQNFSSLANQRYD 2956
       

Gff information


Chromosome Start End Strand Old_gene Gene Num
14 13670232 13695483 + CmaCh14G019440.1 Cma14g01944 308927

Annotation


Select Seq ID Length Analysis Description Start End IPR GO
Cma14g01944 2956 Gene3D - 2071 2302 IPR027417 -
Cma14g01944 2956 Pfam DNA replication factor Dna2 395 597 IPR014808 -
Cma14g01944 2956 ProSiteProfiles ATP-binding cassette, ABC transporter-type domain profile. 2706 2938 IPR003439 GO:0005524
Cma14g01944 2956 SMART AAA_5 2100 2273 IPR003593 -
Cma14g01944 2956 SMART AAA_5 2730 2915 IPR003593 -
Cma14g01944 2956 SMART AAA_5 975 1236 IPR003593 -
Cma14g01944 2956 ProSiteProfiles ATP-binding cassette, ABC transporter-type domain profile. 2073 2296 IPR003439 GO:0005524
Cma14g01944 2956 MobiDBLite consensus disorder prediction 233 268 - -
Cma14g01944 2956 CDD ABCC_MRP_domain2 2702 2922 - -
Cma14g01944 2956 Gene3D ABC transporter type 1, transmembrane domain 2353 2685 IPR036640 GO:0005524|GO:0016021
Cma14g01944 2956 Gene3D ABC transporter type 1, transmembrane domain 1735 2056 IPR036640 GO:0005524|GO:0016021
Cma14g01944 2956 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 959 1351 IPR027417 -
Cma14g01944 2956 ProSiteProfiles ABC transporter integral membrane type-1 fused domain profile. 2387 2667 IPR011527 GO:0005524|GO:0016021|GO:0055085|GO:0140359
Cma14g01944 2956 Gene3D - 829 902 - -
Cma14g01944 2956 CDD ABCC_MRP_domain1 2073 2273 - -
Cma14g01944 2956 ProSitePatterns ABC transporters family signature. 2198 2212 IPR017871 GO:0005524
Cma14g01944 2956 CDD SF1_C_Upf1 1161 1354 IPR041679 -
Cma14g01944 2956 MobiDBLite consensus disorder prediction 1 25 - -
Cma14g01944 2956 Pfam ABC transporter 2721 2869 IPR003439 GO:0005524
Cma14g01944 2956 CDD ABC_6TM_ABCC_D2 2385 2679 IPR044726 GO:0140359
Cma14g01944 2956 ProSiteProfiles ABC transporter integral membrane type-1 fused domain profile. 1758 2039 IPR011527 GO:0005524|GO:0016021|GO:0055085|GO:0140359
Cma14g01944 2956 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 2068 2289 IPR027417 -
Cma14g01944 2956 MobiDBLite consensus disorder prediction 1 69 - -
Cma14g01944 2956 CDD ABC_6TM_ABCC_D1 1759 2047 IPR044746 GO:0140359
Cma14g01944 2956 PANTHER - 1574 2947 - -
Cma14g01944 2956 MobiDBLite consensus disorder prediction 34 52 - -
Cma14g01944 2956 Pfam AAA domain 1138 1337 IPR041679 -
Cma14g01944 2956 Gene3D - 2687 2940 IPR027417 -
Cma14g01944 2956 Pfam AAA domain 1061 1128 IPR041677 GO:0004386
Cma14g01944 2956 Pfam AAA domain 960 1051 IPR041677 GO:0004386
Cma14g01944 2956 Gene3D - 1159 1373 IPR027417 -
Cma14g01944 2956 SUPERFAMILY ABC transporter transmembrane region 1754 2052 IPR036640 GO:0005524|GO:0016021
Cma14g01944 2956 CDD DEXXQc_DNA2 960 1160 - -
Cma14g01944 2956 Gene3D - 1055 1158 IPR027417 -
Cma14g01944 2956 Gene3D - 903 1051 IPR027417 -
Cma14g01944 2956 SUPERFAMILY P-loop containing nucleoside triphosphate hydrolases 2696 2934 IPR027417 -
Cma14g01944 2956 SUPERFAMILY ABC transporter transmembrane region 2388 2684 IPR036640 GO:0005524|GO:0016021
Cma14g01944 2956 MobiDBLite consensus disorder prediction 53 69 - -
Cma14g01944 2956 Gene3D - 450 714 IPR011604 -
Cma14g01944 2956 Pfam ABC transporter transmembrane region 1759 2026 IPR011527 GO:0005524|GO:0016021|GO:0055085|GO:0140359
Cma14g01944 2956 Pfam ABC transporter transmembrane region 2416 2631 IPR011527 GO:0005524|GO:0016021|GO:0055085|GO:0140359
Cma14g01944 2956 PANTHER ATP-BINDING CASSETTE SUB-FAMILY C 1574 2947 - -
Cma14g01944 2956 Pfam ABC transporter 2091 2225 IPR003439 GO:0005524
       

Pathway


Select Query KO Definition Second KO KEGG Genes ID GHOSTX Score
Cma14g01944 - - - csv:101202970 2664.41
       

Dupl-types


Select Gene1 Location1 Gene2 Location2 E-value Duplicated-type
Cma06g01219 Cma-Chr6:8130383 Cma14g01944 Cma-Chr14:13670232 3.96E-09 dispersed
Cma14g01944 Cma-Chr14:13670232 Cma17g01368 Cma-Chr17:9146720 0 dispersed
Cma14g01944 Cma-Chr14:13670232 Cma06g01218 Cma-Chr6:8121567 0 wgd
       

Syn-Families


Select Gene Event_type S_start S_end Function Ath_gene Identity(%) E-value Score
Cma09g01213 . 106 793 Core DNA Replication Machinery Family AT4G14700 67.2 9.8e-271 930.2
Cma09g01213 . 73 793 Core DNA Replication Machinery Family AT4G12620 67.7 1.1e-282 969.9
Cma12g00526 . 2 361 Core DNA Replication Machinery Family AT2G37560 67.2 1.3e-142 503.4
Cma04g01092 . 9 418 Core DNA Replication Machinery Family AT2G01120 65.5 4.2e-156 548.5
Cma17g00438 . 92 588 Core DNA Replication Machinery Family AT4G29910 58.3 3.6e-163 572.4
Cma05g00856 . 1 261 Core DNA Replication Machinery Family AT1G26840 67.8 3.7e-92 335.5
Cma06g01701 CST 1031 1774 Core DNA Replication Machinery Family AT1G79150 56.9 8.6e-230 794.3
Cma06g01755 . 218 1156 Core DNA Replication Machinery Family AT1G44900 75.4 0.0e+00 1344.3
Cma14g01060 . 9 939 Core DNA Replication Machinery Family AT1G44900 75.2 0.0e+00 1337.0
Cma07g00117 CST 1 572 Core DNA Replication Machinery Family AT5G46280 81.5 3.2e-268 921.4
Cma03g01388 CST 1 224 Core DNA Replication Machinery Family AT5G46280 54.4 9.2e-66 248.8
Cma19g00684 . 20 884 Core DNA Replication Machinery Family AT2G16440 75.1 0.0e+00 1149.4
Cma11g01087 . 107 738 Core DNA Replication Machinery Family AT2G16440 64.9 3.9e-262 901.7
Cma12g01169 . 1 735 Core DNA Replication Machinery Family AT2G07690 78.6 0.0e+00 1116.3
Cma07g00004 . 523 1345 Core DNA Replication Machinery Family AT5G44635 72.8 0.0e+00 1189.9
Cma17g01031 . 8 719 Core DNA Replication Machinery Family AT4G02060 85.8 0.0e+00 1221.8
Cma08g00472 . 11 690 Core DNA Replication Machinery Family AT4G02060 85.3 0.0e+00 1152.9
Cma20g00352 . 30 509 Core DNA Replication Machinery Family AT2G29680 59.8 1.1e-158 557.4
Cma20g00352 . 30 479 Core DNA Replication Machinery Family AT1G07270 59.1 2.4e-144 509.6
Cma08g00225 . 238 830 Core DNA Replication Machinery Family AT3G25100 76.1 4.4e-260 894.4
Cma17g01271 . 241 833 Core DNA Replication Machinery Family AT3G25100 76.6 2.2e-256 882.1
Cma06g00352 . 39 805 Core DNA Replication Machinery Family AT3G09660 74.4 0.0e+00 1109.7
Cma19g00466 . 16 642 Core DNA Replication Machinery Family AT2G14050 78.3 1.0e-286 983.0
Cma20g00753 . 1 398 Core DNA Replication Machinery Family AT2G20980 55.0 8.3e-114 407.9
Cma09g00770 . 7 968 Core DNA Replication Machinery Family AT1G77320 50.1 6.7e-261 897.9
Cma08g00461 CST 25 146 Core DNA Replication Machinery Family AT4G02110 56.5 4.5e-38 157.9
Cma08g00673 . 1 192 Core DNA Replication Machinery Family AT1G80190 66.5 5.2e-72 268.1
Cma07g01186 . 1 145 Core DNA Replication Machinery Family AT3G12530 72.4 3.1e-61 231.9
Cma04g02907 . 1103 1270 Core DNA Replication Machinery Family AT1G19080 61.3 1.7e-53 206.5
Cma04g02907 . 1103 1270 Core DNA Replication Machinery Family AT3G55490 61.3 1.7e-53 206.5
Cma14g02049 . 15 164 Core DNA Replication Machinery Family AT5G49010 66.7 5.7e-52 201.4
Cma02g00514 . 1 1546 Core DNA Replication Machinery Family AT5G67100 60.4 0.0e+00 1763.4
Cma18g00719 . 2 620 Core DNA Replication Machinery Family AT1G67630 63.8 1.8e-224 776.2
Cma08g00169 . 498 940 Core DNA Replication Machinery Family AT1G67320 65.3 1.8e-182 636.3
Cma09g01290 . 39 477 Core DNA Replication Machinery Family AT5G41880 65.3 1.1e-175 613.6
Cma07g00817 . 1 1086 Core DNA Replication Machinery Family AT5G63960 81.1 0.0e+00 1807.7
Cma14g00418 . 1 438 Core DNA Replication Machinery Family AT2G42120 75.6 1.7e-205 712.6
Cma08g00169 . 498 940 Core DNA Replication Machinery Family AT1G67320 65.3 1.8e-182 636.3
Cma02g01335 . 1 2094 Core DNA Replication Machinery Family AT1G08260 70.4 0.0e+00 2946.0
Cma02g01335 . 9 2200 Core DNA Replication Machinery Family AT2G27120 67.4 0.0e+00 2919.4
Cma01g00753 . 529 1044 Core DNA Replication Machinery Family AT5G22110 65.8 1.5e-192 669.8
Cma02g01296 . 1 928 Core DNA Replication Machinery Family AT5G22010 62.4 3.1e-305 1045.0
Cma20g00138 CCT,ECH 67 182 Core DNA Replication Machinery Family AT5G22010 64.1 7.2e-36 150.2
Cma16g01020 . 1 333 Core DNA Replication Machinery Family AT1G63160 89.5 7.3e-172 600.5
Cma03g00215 . 1 335 Core DNA Replication Machinery Family AT5G27740 83.3 1.7e-166 582.8
Cma01g01369 . 1 336 Core DNA Replication Machinery Family AT1G21690 80.7 6.4e-152 534.3
Cma15g00666 . 1 363 Core DNA Replication Machinery Family AT1G77470 75.3 6.5e-153 537.7
Cma04g02374 . 1 363 Core DNA Replication Machinery Family AT1G77470 73.0 2.1e-148 522.7
Cma05g01409 . 26 604 Core DNA Replication Machinery Family AT2G06510 68.8 1.8e-245 845.9
Cma06g00602 CST 34 701 Core DNA Replication Machinery Family AT2G06510 52.2 6.2e-201 698.0
Cma16g01216 CST 34 661 Core DNA Replication Machinery Family AT2G06510 52.1 9.3e-189 657.5
Cma11g00209 . 1 623 Core DNA Replication Machinery Family AT5G08020 67.3 3.8e-243 838.2
Cma06g00602 CST 10 808 Core DNA Replication Machinery Family AT5G45400 51.1 6.3e-228 788.1
Cma16g01216 CST 10 661 Core DNA Replication Machinery Family AT5G45400 54.5 1.0e-206 717.6
Cma11g00209 . 1 618 Core DNA Replication Machinery Family AT5G61000 65.4 3.6e-236 815.1
Cma06g00602 CST 5 822 Core DNA Replication Machinery Family AT4G19130 53.1 2.1e-230 796.2
Cma16g01216 CST 5 661 Core DNA Replication Machinery Family AT4G19130 58.8 2.8e-214 742.7
Cma11g01183 . 1 376 Core DNA Replication Machinery Family AT5G26680 85.7 1.6e-184 642.9
Cma14g01944 . 1 1102 Core DNA Replication Machinery Family AT1G08840 51.8 8.7e-296 1013.8
Cma14g01473 . 1 297 Core DNA Replication Machinery Family AT2G25100 67.3 2.4e-115 412.5
Cma20g00522 . 44 804 Core DNA Replication Machinery Family AT1G08130 68.3 1.2e-292 1003.0
Cma20g00522 . 204 804 Core DNA Replication Machinery Family AT1G49250 68.4 8.0e-239 823.9
       

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
OG0007869 2 2 1 1 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 3 3 1 1 1 1 2 36
       

Transcriptome


Select Gene Chr Type da1 da2 da3 da4 da5 da6 da7 da8 da9 da10
Cma14g01944 Cma_Chr14 FPKM 7.515991 9.019551 7.991102 7.848539 7.501663 7.123072 7.5912 3.422242 2.90337 2.950921
Cma14g01944 Cma_Chr00 FPKM 0.0 0.0 1.553637 1.520425 2.017265 0.0 1.35525 2.208277 1.474377 0.0