Gene loci information

Transcript annotation

  • This transcript has been annotated as Dynein heavy chain 10, axonemal.

Parent gene

Gene structure

  • The exon-intron structure of all isoforms are indicated below. CDS regions are colored in green. TSS and TTs that were predicted with CTR-Seq data are indicated in solid circle and squares, respectively. More specific data are shown in the table below.

Chromosome Gene Transcript Category ID Start End
chr_3 g1029 g1029.t1 isoform g1029.t1 7612809 7668224
chr_3 g1029 g1029.t1 exon g1029.t1.exon1 7612809 7612955
chr_3 g1029 g1029.t1 cds g1029.t1.CDS1 7612809 7612955
chr_3 g1029 g1029.t1 exon g1029.t1.exon2 7615071 7615211
chr_3 g1029 g1029.t1 cds g1029.t1.CDS2 7615071 7615211
chr_3 g1029 g1029.t1 exon g1029.t1.exon3 7615539 7616098
chr_3 g1029 g1029.t1 cds g1029.t1.CDS3 7615539 7616098
chr_3 g1029 g1029.t1 exon g1029.t1.exon4 7617597 7617728
chr_3 g1029 g1029.t1 cds g1029.t1.CDS4 7617597 7617728
chr_3 g1029 g1029.t1 exon g1029.t1.exon5 7617800 7617974
chr_3 g1029 g1029.t1 cds g1029.t1.CDS5 7617800 7617974
chr_3 g1029 g1029.t1 exon g1029.t1.exon6 7618469 7621060
chr_3 g1029 g1029.t1 cds g1029.t1.CDS6 7618469 7621060
chr_3 g1029 g1029.t1 exon g1029.t1.exon7 7621139 7621198
chr_3 g1029 g1029.t1 cds g1029.t1.CDS7 7621139 7621198
chr_3 g1029 g1029.t1 exon g1029.t1.exon8 7621326 7621645
chr_3 g1029 g1029.t1 cds g1029.t1.CDS8 7621326 7621645
chr_3 g1029 g1029.t1 exon g1029.t1.exon9 7621752 7621866
chr_3 g1029 g1029.t1 cds g1029.t1.CDS9 7621752 7621866
chr_3 g1029 g1029.t1 exon g1029.t1.exon10 7622074 7622497
chr_3 g1029 g1029.t1 cds g1029.t1.CDS10 7622074 7622497
chr_3 g1029 g1029.t1 exon g1029.t1.exon11 7622556 7622698
chr_3 g1029 g1029.t1 cds g1029.t1.CDS11 7622556 7622698
chr_3 g1029 g1029.t1 exon g1029.t1.exon12 7623569 7623767
chr_3 g1029 g1029.t1 cds g1029.t1.CDS12 7623569 7623767
chr_3 g1029 g1029.t1 exon g1029.t1.exon13 7623990 7624767
chr_3 g1029 g1029.t1 cds g1029.t1.CDS13 7623990 7624767
chr_3 g1029 g1029.t1 exon g1029.t1.exon14 7624836 7625100
chr_3 g1029 g1029.t1 cds g1029.t1.CDS14 7624836 7625100
chr_3 g1029 g1029.t1 exon g1029.t1.exon15 7625552 7625644
chr_3 g1029 g1029.t1 cds g1029.t1.CDS15 7625552 7625644
chr_3 g1029 g1029.t1 exon g1029.t1.exon16 7625722 7626669
chr_3 g1029 g1029.t1 cds g1029.t1.CDS16 7625722 7626669
chr_3 g1029 g1029.t1 exon g1029.t1.exon17 7627396 7627554
chr_3 g1029 g1029.t1 cds g1029.t1.CDS17 7627396 7627554
chr_3 g1029 g1029.t1 exon g1029.t1.exon18 7627640 7628167
chr_3 g1029 g1029.t1 cds g1029.t1.CDS18 7627640 7628167
chr_3 g1029 g1029.t1 exon g1029.t1.exon19 7628638 7628753
chr_3 g1029 g1029.t1 cds g1029.t1.CDS19 7628638 7628753
chr_3 g1029 g1029.t1 exon g1029.t1.exon20 7629335 7629457
chr_3 g1029 g1029.t1 cds g1029.t1.CDS20 7629335 7629457
chr_3 g1029 g1029.t1 exon g1029.t1.exon21 7629533 7629673
chr_3 g1029 g1029.t1 cds g1029.t1.CDS21 7629533 7629673
chr_3 g1029 g1029.t1 exon g1029.t1.exon22 7630459 7630508
chr_3 g1029 g1029.t1 cds g1029.t1.CDS22 7630459 7630508
chr_3 g1029 g1029.t1 exon g1029.t1.exon23 7631295 7632070
chr_3 g1029 g1029.t1 cds g1029.t1.CDS23 7631295 7632070
chr_3 g1029 g1029.t1 exon g1029.t1.exon24 7632419 7632695
chr_3 g1029 g1029.t1 cds g1029.t1.CDS24 7632419 7632695
chr_3 g1029 g1029.t1 exon g1029.t1.exon25 7632758 7633325
chr_3 g1029 g1029.t1 cds g1029.t1.CDS25 7632758 7633325
chr_3 g1029 g1029.t1 exon g1029.t1.exon26 7633806 7633935
chr_3 g1029 g1029.t1 cds g1029.t1.CDS26 7633806 7633935
chr_3 g1029 g1029.t1 exon g1029.t1.exon27 7635603 7635755
chr_3 g1029 g1029.t1 cds g1029.t1.CDS27 7635603 7635755
chr_3 g1029 g1029.t1 exon g1029.t1.exon28 7635874 7636032
chr_3 g1029 g1029.t1 cds g1029.t1.CDS28 7635874 7636032
chr_3 g1029 g1029.t1 exon g1029.t1.exon29 7636594 7636885
chr_3 g1029 g1029.t1 cds g1029.t1.CDS29 7636594 7636885
chr_3 g1029 g1029.t1 exon g1029.t1.exon30 7639298 7639380
chr_3 g1029 g1029.t1 cds g1029.t1.CDS30 7639298 7639380
chr_3 g1029 g1029.t1 exon g1029.t1.exon31 7642735 7642843
chr_3 g1029 g1029.t1 cds g1029.t1.CDS31 7642735 7642843
chr_3 g1029 g1029.t1 exon g1029.t1.exon32 7642960 7643705
chr_3 g1029 g1029.t1 cds g1029.t1.CDS32 7642960 7643705
chr_3 g1029 g1029.t1 exon g1029.t1.exon33 7644398 7644481
chr_3 g1029 g1029.t1 cds g1029.t1.CDS33 7644398 7644481
chr_3 g1029 g1029.t1 exon g1029.t1.exon34 7644891 7644979
chr_3 g1029 g1029.t1 cds g1029.t1.CDS34 7644891 7644979
chr_3 g1029 g1029.t1 exon g1029.t1.exon35 7646400 7646507
chr_3 g1029 g1029.t1 cds g1029.t1.CDS35 7646400 7646507
chr_3 g1029 g1029.t1 exon g1029.t1.exon36 7647611 7648148
chr_3 g1029 g1029.t1 cds g1029.t1.CDS36 7647611 7648148
chr_3 g1029 g1029.t1 exon g1029.t1.exon37 7648641 7648754
chr_3 g1029 g1029.t1 cds g1029.t1.CDS37 7648641 7648754
chr_3 g1029 g1029.t1 exon g1029.t1.exon38 7648936 7649328
chr_3 g1029 g1029.t1 cds g1029.t1.CDS38 7648936 7649328
chr_3 g1029 g1029.t1 exon g1029.t1.exon39 7649454 7649652
chr_3 g1029 g1029.t1 cds g1029.t1.CDS39 7649454 7649652
chr_3 g1029 g1029.t1 exon g1029.t1.exon40 7652578 7652768
chr_3 g1029 g1029.t1 cds g1029.t1.CDS40 7652578 7652768
chr_3 g1029 g1029.t1 exon g1029.t1.exon41 7656602 7656729
chr_3 g1029 g1029.t1 cds g1029.t1.CDS41 7656602 7656729
chr_3 g1029 g1029.t1 exon g1029.t1.exon42 7657847 7657958
chr_3 g1029 g1029.t1 cds g1029.t1.CDS42 7657847 7657958
chr_3 g1029 g1029.t1 exon g1029.t1.exon43 7659009 7659219
chr_3 g1029 g1029.t1 cds g1029.t1.CDS43 7659009 7659219
chr_3 g1029 g1029.t1 exon g1029.t1.exon44 7662561 7662726
chr_3 g1029 g1029.t1 cds g1029.t1.CDS44 7662561 7662726
chr_3 g1029 g1029.t1 exon g1029.t1.exon45 7662883 7663272
chr_3 g1029 g1029.t1 cds g1029.t1.CDS45 7662883 7663272
chr_3 g1029 g1029.t1 exon g1029.t1.exon46 7663338 7663461
chr_3 g1029 g1029.t1 cds g1029.t1.CDS46 7663338 7663461
chr_3 g1029 g1029.t1 exon g1029.t1.exon47 7663527 7663594
chr_3 g1029 g1029.t1 cds g1029.t1.CDS47 7663527 7663594
chr_3 g1029 g1029.t1 exon g1029.t1.exon48 7663697 7663750
chr_3 g1029 g1029.t1 cds g1029.t1.CDS48 7663697 7663750
chr_3 g1029 g1029.t1 exon g1029.t1.exon49 7666521 7666619
chr_3 g1029 g1029.t1 cds g1029.t1.CDS49 7666521 7666619
chr_3 g1029 g1029.t1 exon g1029.t1.exon50 7667866 7667940
chr_3 g1029 g1029.t1 cds g1029.t1.CDS50 7667866 7667940
chr_3 g1029 g1029.t1 exon g1029.t1.exon51 7667996 7668224
chr_3 g1029 g1029.t1 cds g1029.t1.CDS51 7667996 7668224
chr_3 g1029 g1029.t1 TSS g1029.t1 NA NA
chr_3 g1029 g1029.t1 TTS g1029.t1 NA NA

Sequences

>g1029.t1 Gene=g1029 Length=14874
ATGGCAGATTATCGAATTATATGGCTTCGAGATCGAATTTCTAAAGCGCTTGGTGTTCAA
GATCATCCAGAGACGATTGAAGAACTTTTTCGTGAACATTCAGAAAAATTTCAAAATTAT
CTTGATGAGGAAATTTCAAGCGTTGATGAGATGGAAAAATGCGCAATTTATATCTATCGA
ACATTCTATGACAAGTTGGTTGAACGAGAAGTTCTCACAATTGAAAAAGTGCCGAGAATT
ATGACGCCGCCACAACAAGTAACAATTGACATCTCGAAAGAGAAGAAAGGCCGAAAGGGA
AAAGCAAGACGAGCAGCAAAAGGAGACAGTCGAGAGGAAGGAGGTGAAGTTCGTCCGGAT
CCGGATATTGAGGATGAAGAAATTAAAGAGACGACACGTTCTGCACCTGAAAAGAAAAGA
GGTGGAAAATCACGAAGACGAAGAACGGCTGTTGAAGAGGACGAACAAGAAGGTGAAACA
CCAGAGCCGCCAAAAGAGCAGTTATATAGCTTCATTGAAGTTCGTAAAATTGAGCAATCA
TTTGAGAAAACGCCAATTTTACACGCTGTCTTTAGCATGAAAGAACTTGAAGAAATCGAC
CATAAGGGCTGCTTTGTATATTTTATTAGAAAATCTATGCTTCCAATTCCTCATATGGAT
TGCTTAGATGATGCAATGTCAGACATGCCTGATTATTTCATCATTGGAACACTTGTTGGT
TCATTTATTCATAAACTTTTGTCACAATCGAAGACTATATTGCGTGAGGTTGTATCAATG
CAAATGCGTGTGCCAATAATTAATGAAAAAAATGATATTCACATGGCAATTGAGGCAAGG
ACTAATGAGGGTGAACAGAAAATTGGACTAATTGACTTTTCGCGTCCATCCGATTATCGT
ACAAAAGCAATTGAGGCGAGAAATGCAGGCATTAATGTGGGCGATGACACATCACATTTA
TCGGGCACAAGTCGTCTATCAACTGTTGCGACATCAAATGATTCGCTCAAAACGGGTGGC
GCTTATGAGCCTTATGAAGAACCAACACCTCAGAGTCATGATGATAAATGGAATCAATTA
TATACGAAAGCTGAGCTTGAAGCACAAAAAGAGCGAGCACAGAGTCAGAATGTGCCGATA
AAGAAACCATCGACAGTCGAAATATTACAGAATAATCTTGATAAATTTGAGCAGACAGTT
GAATGGACTATAGATCATGTTATATGCACGTTCAATTTACCAACAGAGTATAATGCTTTA
GGCCAAGAACATGTAATAGACGATGAAGATAAAGTGAAGATAAAAGTCGATCCATTGAAA
ATGAGCCTGGATGGAATTGAGATAAGTCAATTGGAGGAAATTGTCGACGGATGGTTTAAA
CATGTATCAAAAATAATACGAGATGCATGTGAAAAGGAACCGAATAATCCAACACCGATA
GCTGAATATGAGTTATGGATTGAACGTGAGAGGGAATTCAATCATTTGATGGAACAACTG
AAGTCTCCATTTGCAGAGATGATATTTGATAAATTGAAAGCTGAAAATTCCAAAGCACTC
GATAATTGGCCCCCATTGATGAAAAAACTTCAATCGGAACGTGACTTGGCTCAGGAGAAT
GCTGAATATTTATCAACACTTCAAGAGTTCTTTATTAAAATACGTGACGAAGATAATTTT
TCGTTCATCATTTCAATCATTCCAAGCATGATGAATGGTTTGCGTCATATTTGGACAATG
TCGAATAATTATTCGAATGATGAAAATATGCTGAATTTGTTATCAAAGATATCGAATATA
TTTACAATCAAAGTCATGCAGATCGTTGATTTGGAAAAGATATTCAGTCTCTCAGCAACA
GCTGCGTACAAGCGTGCTCGCGAGTGTGTTAATTTATTGCAATGTTGGAAATCATCGTAT
ATGGAAACTCGAGCTTTTATTGAAAATTCTGGTGTCGGATCAAGATGGGAATTTGATAAG
AAAATTCTCTTTGGACTTGTTGATCATATTACAAGAATTTGTCAAGATATTTCTGAAATT
GCTAAGTCATTCTATGAATTTGAAAACATGTTCAGTTACCGCCTTCGATCAAATGTAGCT
GACCCAGAAGATGTTGATTTAATGATCAAAAAAGTTTATCGCCTACTCAATCACATTCTC
AGCATTGACTATAACATTTTTGAGCCAAATAATTTTGACAATTGGGAATCAACTCTCGAT
TATTTTTATAAACAAATGGAAATTGTTGAGAATGAAGCGAGAGTTGTGCTTGATCAATGC
ATTGACTCTTTGAAATCAGCAGAACAAGGCTTAGAGTTGATTTCATACATGGGTGAAGTT
GAAACGAGAGAAAAATTATTAAATCATTTGATGTCAAAGCGAGAAAGTGTAATGAAAAAA
TTTGTGACTGAAGTTGGAATTGTTGAACATGAATTTCTGAAATTTCGTAAAAATCCACCT
CTTCAAAGGAATCAAAATAAATATTCTGGTGCTGTGTTTTGGGAACGTTTATTGATGGAG
AAATTGAAGAAATCTGTTATTGCATTTCGAAGTATGGAACAAACAGACGATGATAATGAT
GAATGCAATTTTCTCAAACGTTCAGCATTCAATCAATATTTTGCGATAGCACAAGAGATG
GCAGCATTTGAGAAAGATTTGTTTGCAAGATTTCTGCATGAAGGAACATTTGTTGTAAAC
AACGTGTTGAAGCGTAACATACTGAAATTGAAATTTATGACGCTGCCCGAGGAGTTGAAA
GATGATAGCATTCGTAAAGAAGGAATGCCACAATCAATGTCACTTGCAAAGACCGTTTCA
AAAACTGGACGAGTCAAGGCACATTCACAAAAATTAAAATTAGCGTCATCACAAGGTGCT
CTTAGTGCCATAACACCACGCAAATCTCAGTCGGTGAAATCTAAATTTAACATTTACTCA
ACGGCAATTCAGTGGATGACAAATCGACCGCTATCTGATAATCCTGATTTGGCACTCGCT
GAGAAATTAATGAAGGCATCGGAAAGCTTTGTGGGCGATAAGAAAAGCTCCAAAAGTGCG
CGTCATGACTTTAAAGTGTCACAAGCTAAATTGATGACTACAGCATCGCAACAGCAAAAA
GTACCAACATGGAGGGAGATTGTTGGCAGTTCCTTACTCGTTGAGTACGAGTTAAAATTT
GATGTAAATTTTTCACAACAAATTTTTGACGTGATGATAGAAGGTCAACAATTTGAGTAT
CTTGGTTTCACATTAAATCCAGTTATACGAATGGCCATAATGAGAAAAGAGCAATTATCT
TCAGACGTGGAGTATGTCAAAAGAATAGTCAACGAATATAATGACATTGTCGCAAAGTTG
TCACCATCAGAGATTCATTTCCTACGTGATAAACTTTATGAAACGGAATCAAAAATTCAA
GCAGGCCTCGGTCGATATACATGGCAGACACTCAATATAAAAACCTTTTGTGAATCATGC
GAACGATTGTTAAAAAATCTTTCAGCAATTGTAATGCAAATAAATCGAATGGCAAAAAAT
ATTCATGGAAAAGTGAGCGAATTGGAGTCATTTTCATTATTTGTAATTGATAAACATGAG
CAAAAGTCATCAGTAAGCAATTTAAGACCACCAATAATTCTTAAAAGTTCAAAACTTGAT
GGAAAAATGAGTGAAACACCCGATGACCTTGAAGAAATTGAAGCAATTGGCGAAAGAAAA
AAAAGTGTTCGAATAACAGAGCGTGATTTGAGTGTGAAATCTTGCCTTGAATATTTTAGT
AGTTTGGAACTTGAACGTAATGAAAAGACAAGTAAATTGCAGCGACTTTATGACTCAATT
GGTCCAACAATGATTAAACTTGAAAGCTTAATTCTTGGCACATTTACTGGTGAATCGGAC
AAAATGAATCATTATTATACATATTGGGAGCGTGAAATGTTTTCTGCACTTGTTCGTTTT
ACGACAAGAAACTTGCAGAACTTTTCGGAGAAGCTCATGCATAACGACGTCATGTTCGAG
GTGGATGCCGTCCTAGCGGCACCCGAGATCACAATGAAGCCATCAGCTAATGAAATTTAC
AACATCATGGTTCACTCGGTGAAGGATTTCCTTGAACGGTTGAAATGCTTTCGACGATGG
ATGTCAGAGACATGCCTGCCATGCCCGCCTACGAGATTGGATAACAATGAGGTTTATGTG
TTTAGCTTTTATGAAGATATTGTGCAGATTCCAAAAGTATGTGAACTTGTCATCAATTTA
CAACAAACCATTCAAAATTTGGTATCCGATGTTCGATCATATTTATCACGTTGGCACAAA
TATAAAAGTTTATGGATGTACGATAAGAATGTCGTGTGCGATAAATACTTAAATCGACGT
GTACCGCTTGTGAGATTAGACGAAAAATTTATTTTCTTCACTCAAATCATCAATGACTTG
GAGAGTGTTAAGCCATATTACGACATAAAATCAATACGCATTAATCTACAGCCTCTAATT
CGTTCAATTATCGAGCATGCTGTCGAGTGGCGTAATACATTGGGAAATTTCTTATCGGAG
CGTACAAGTGTCGATATGGTTACGATGAACAAGGAATTTAAGGAGCTAAGACTTAATCTC
GATCGAAATATTAAGCATTTGTCAGATTTTAAGATTGTCATGAGCACGATAAATGTGATT
CAGTCAACAACATTGACTGTAGAATTAAAAATAAAAGAAATGCAAGAAACTTTCAATGTT
TTAGAAGAACATCGCATTCATTTTCCTTATGGTGACATGCTGATGGCATTTCATTTAGAG
AAACGTTGGAAGAAATTGTATAATTCTGCACTCTATCGCATGAAAACATTGCATTCAACA
AAAGTTAAATTCTCGCAAATGACACAAAAAGATATTGAGAAATTTAAGAATGAGCTCGAT
GAATTTGTCAACAAATTTGATAACGAAGGGCCCGGCATCGAAAAGGATATGGATAAAGGA
CAGAAACTAATGGAAATTTACGCTGTGGACTTTGACAAGATGGAAATGAATCGCATAGAA
ATGGTAAACGCAGAAAAGCTCTTCGATATAGAAGTTGCTGACTATAGTCGTTTCCTGCAA
GCAAAAGCAGAATTTGAACGAATGCAAGTGATTTTCAAGCTCTATCAAGCTCAAAAAATT
GCACGTGAATCATGGGGCAAGACACTTTGGGCGAATCTCAATACTCAAGCACTCACAGAT
GGTATCGACAGTTTTATGCGAGATTATAGAAAGTTACCGAAAGTTGTTCGTCAAATGCCA
ATTGCAAATGTTCTAGAGACAATAATGAAGCAATTTAAAAATGTTGTGCCACTCATGGCA
AGCCTCAAGCATGAAGCAATGCGAGAACGTCATTGGAAAATGTTGATGTTAAGAACTGGC
AAATCGTTCGATATGTCGCCACAAAGATTCACATTAAACAACATGTTTTCAATGGAGTTG
CATAAACATCAGGACGTTGTAGAAGAAATTGTATTAAATGCAATCAGAGAGTTGGCAATT
GAGCGTGGTGTTAAAGAAATTGCACAGCAATGGGAAACTATAAAGTTTAATGTCATTAAG
CATACGATGAACGAGTCTGCAATTGATCGAGGTTACATTCTCGGTTCGATGGATGAAATC
ATGCAAATTTTAGATGACCATTCAATGAATTTACAATCTATGAGTGCATCACCATTCATT
GGACCGTTTCTGACGGCTGTACAAAAATGGGAAAAGTGTTTGACACTTGTGTCAGAGATT
ATCGATGAATGGCTTGCAGTGCAACGTAAATGGATTTATTTGGAAGGAATTTTCATTGGT
GGCGATATTAGAGACCAATTACCAGAAGAAGCAAAGAAATTTGATGACATTGATAAGAAT
TTTAGAAAGATCATGAATATCACAGCAGAGAAACTCATTGTAATTGATGTGTGCATGGAG
CCAGAGCGTCTTGCAGAAATAAGAGCGCTAAGCGAGGGTTTGGATCGATGTCAAAAATCC
TTGAATGATTATCTTGATTCAAAACGTCGCATCTTTCCGCGTTTCTATTTCATCTCAACA
GAAGAATTGCTCTCAATATTGGGCAATAGTCGTCATGATTGCGTGCAAGAGCACATGATA
AAAATGTTTGATAATATCAAATCACTTACATTTGCAAAATCAGCAATGGGCTTAAATGTC
GCAATTGCCATGAACTCATCAGAAGGTGAAACGATGCAATTTAAAAATCAAGTTCAAGCT
GAAGGTCGTGTTGAAGAATGGATGAATGAAGTGCTTAAAGAAATGAGAAGCAGCAATCGT
CATATAACAAAAAAATCAATTTTTGATTATGGCAAGAACAAGGACATGTCAAGACCAGAT
TGGATCATGATGTATCAAGGTATGATTTGTCTTGCTGCAAATCAAATCTGGTGGACATCT
GAGGTCGAAGAAGTTTTTCAACGCGTTGCTAAAGGCAATAAAAGAGCTATGAAAGAATAT
TTGGAAATACAAAATAGACAAATTGATGATCTTGTAAGAAAAGTGAGAGAAAATTTATCA
ATGAATGATCGGATGAAGTTCAAGACGATTGCAACAATTGATGTGCATGCACGTGACATC
ATTGAAACATTTGTACGTGACAGTGTACTTGATGCATCGGAATTTCAGTGGGAAAGTCAA
CTTAGATTTTATTGGATGAAAGATGTTGACAACTTGTATGTGGTACAGTGTACAGGAAAA
TTCGAATATGGTTACGAATATATGGGACTAAATGGACGTTTGGTCATCACACCTCTCACT
GATCGAATTTATCTCACAATCACACAAGCATTGACTTTGAAAATGGGCTGTGCACCCTCA
GGCCCTGCTGGTACTGGAAAAACGGAAACAACAAAGGATTTAGCGAAAGCAATGGCTTTG
TTGTGTATGGTTACGAATTGTGGTGAAGGCATGGATAATCGAGCCGTAGCAACAATTCTG
TCTGGATTATCACAATGCGGTGCTTGGGGCTGTTTCGATGAGTTCAATCGAATTGATTTA
TCAGTATTGAGTGTGATTTCAGCACAGCTGCAAACAATAAGAAGCGCTTTATTGGCCAAC
AAGGACAAATTTATGTTTGAAGGACAACAAATAAATCTTGATTCAAAAGTTGGAATTTTT
ATAACAATGAATCCAGGCTACGCAGGACGTACAGAACTACCAGAATCAATTAAAGCACTC
TTTCGTCCAGTTACATGCATCATGCCCGATCTAGAACTCATTTGTCTCATTTCTTTATTT
TCTGATGGTTTTCTAGCTGCTAAAGTGCTTGCAAAAAAAATGACAGTTTTATATAAACTC
GCTCGCGAGCAATTATCGAAACAATATCACTACGATTTCGGTCTACGTTCACTCAATTCT
GTGCTGCGTATGGCAGGTGTAGTGAAGCGTGAAATGCCAGACGCACCGGAGGCTGTGGTG
CTTATGCGCGTGCTACGTGACATGAATTTCCCCAAATTTGTCTTCGAAGACGTTCCGCTC
TTTCTTGGTTTGATTAAAGACCTCTTTCCTGGTGTTGAATGTCCACGAAGTGTTTATTCA
CAGTTAAATGATGTGGTACGAAAAGAACTGCAAGACGATGGCTTTATATTGAAAGCAGAG
CAGGTTGACAAAGTCATTCAATTGTATGAAACAATGTTAACGAGACACTGTGTCATGATT
GTTGGTCCAACGGGTGGTGGTAAATCTGTCGTCTTAAATACACTGATTAAAGCACAATCC
GCTATGGGCATACCAACAAAATGTGTCACATTAAATCCTAAGGCATGTTCAGTAATCGAA
TTGTATGGTTATTTGGATGCATCAACACGCGATTGGATTGATGGATTGTTTTCGAATATT
TTTCGAGAAATGAACAAAGTGAGCACAACAGATGATGATCAACAACAGCAGCAGCAACAG
CAGCGTCAATATGTTTGTTTTGATGGTGATGTTGATGCTCTTTGGATTGAAAATATGAAT
TCTGTGATGGATGACAATAAACTGCTAACATTGGCTAATGGTGAAAGAATTCGACTTTCA
CAAAATTGTGCATTGCTTTTTGAAGTTGGAGATCTTGCATATGCATCACCAGCGACAGTC
AGTCGTGCAGGAATGGTCTATGTTGATCCGAAAAATCTCGGATATTCACCATATTGGCAA
AGATGGCTTATGACACGTCATGAACGTGAAAGAGAAAAAATTCATGAGCTTTATGAGCGA
CTCATTAGTGATGCACTTGCATTTGTACTTGAAGGCATAGACGGAACAACGCAAGCACAA
GTTGAACCATTGAAAATGATTGTGCCACAAACGGAATTGAATCTAATCGTGCAACTGTGC
ATGATGCTTGACGCAACACTACCACAACTGAATGATAAAATCATCTATGATGATGAAGTG
CTCGAGTGTGCATTTGTGCAATGTATTTATTTTTCGCTTGGCGCATCGCTTATGGATGAT
AGTCGAATTCGCTTCGATGCTTTTATGAAAAAATTAAATCCGCTAATGGCAGTGCAAGAT
TCAATTGAAAGACCAGCAAATACAACTCAATGTCCAACTGCAAAGTCAACGCTCTATGAA
TACTTTTTCGACATTTACAGACGTGAGTGGATTGCATGGGAATGGATTATACCTGACTAT
ATTCATGATGTTAGCGCAAAATTCAATGATATTCTTGTGCCGACTGTTGATACGTTGAGA
ACTGAGTGGTTGCTAAATATGATGAATCAGATTCAACATCCGATTGTACTTGTTGGTGAA
ACTGGAACATCAAAAACTGCAATCATATCGAATTTTTTGAGAAATATTGATCAGAAATAT
AACATTGTGTTGAACATAAATTTTTCATCACGTACAACATCGATGGATGTACAGAGGACA
ATAGAAGCGGCAGTTGAAAAGCGTACAAAAAATATATTTGGTCCACCTGTTGGTAAAAAA
CTAATTGCATTTATCGATGATATGAATATGCCAAAAGTTGATGAGTATGGTACACAGCAG
CCAATTGCACTACTTAAATTACTTTTTGAACGTGGCGGAATGTATGGACGTGGAAAAGAA
TTATTTTGGAAGAATTTCAAAGACATTTCATTTTTGGCAGCAATGGGTAAAAGTGGTGGC
GGTCGTAATGAGGTCGATGCTCGTTTCATATCAAAATTTGCTGTCATCAATTTGCAATTT
CCACTTGAATCGACACTCAAACACATTTACGGTAGCATACTTGATGGCCATCTAAAGTTA
TTTCCGGAAAAAGTTCAAGAGGTTTCTGAGGTTGTAGTGCAAATGACACTCGATTTATTT
AAAATTGTCACAAACGAATTGCCACCAACGCCATCAAAATTCCATTACATTTTTAACATG
AAAGATTTGTCGAGAATTTATGCGGGAATTTTACTGACAAGTGGTGCAAACTTTAACTCT
GACCGACAACTTGTACGTGTATGGCGTAATGAATTTACGCGAGTATTTTGTGATCGAATG
ATATGTGAAAGTGATGTAGCAATGGTACGAGATCACATGCATGAAATGGTCAATAAATAT
TTCAAGGGTGATGACTTAAGATCGAGAATGTCACAAATTTCATCATTTAGAAGCTCTGAT
AAAATGGAGAAAAAAGATTCTGTTTCTGATATGCCTGCTAATCAATATATCATGAGAGAT
CCTTTACTTTTTGGTGACTTTAGACATGGTGTAGTTGATGAAGAAGAAAGAACTTATGAA
GATTTACTTGACTTTACTGCCTGCATGCATTTGTTTAAAGAAATTATGGATGAGTATAAT
GATAAACGTGGAAGCATGGACTTAGTTCTTTTTGATGATTGTTTAGATCATTTAACTCGT
GTTCATCGTGTTATGAGAATGCATAAAGGTCATTTGCTTCTCGTCGGCGTCGGTGGTTCT
GGAAAGCATAGCATATCAAGACTAGCAGCGTTTGCTGCCGGCTGTGAAATGTTTGAAATA
ACGATTACAAGAGGCTACAATGAGGAATCTTTCAAAGCTGACTTAAAGACCCTCTTCAAT
AAGTTGATGACACAGCCAACTGTTTTTCTTTTCTCATCCGCTCAAATTGTGGAAGAAGGA
TTTCTGGAGTTTATAAATAATATTTTAACTATTGGATTTGTGCCAGCGTTATTTACTGAT
GATGAAAAAGATTCTATAATTGGTAATTGCCGTAATGCTGCAAAGGATGCTGGTTATGCT
TCTTCAAAAGATGGAATTTGGAAATATTTTGTGGATAAATGCAGTGAAAATTTGCATGTG
GTGCTGTCAATGTCACCATCAGGCGACTCATTACGCAATTATTGTCGTTCATTTCCTGGT
CTTGTTGGTAATACGACAATCAATTGGATTTTTCCATGGCCAAAACAGGCATTGCGCTCT
GTTGCTCGTGGCTATATCTCGGAAAATCGTAAAATACCGGATAGCTATAAGGATGAAATT
AATGATCACGTTGTACACGTACATGAATCATTGACATATTACACACAGGAATTTCACACC
ATCTTACGACGTCGCAATTACATAACGCCAAAACACTATCTCGATTATGTTACCACCTAC
ATCCGTCTGTTGGATGAAAAAAGTTCATTTATCACGAAGCAAATTGTTCGTTATAGTGAT
GGTATTCGTAAAATTGATGATGCATCACTACAAATAGCCATATTACAATCAGAAGTTGAA
AAAACCAAAATGGAAGCAACAAAAGCATCAGAAGACTGTGACAGAGTCATGGAAGACATT
GAAGATTCTACGGAAAGAGTAATGAGAAAGAAAAAGGAAGCAATGGAAAAGTCAACTGAA
GTGGAGCAAAATCGTAAGCAGATTGCAGTCGAAACGGAAGAAGCAGAAGAGTCATTACGT
CAAGCAATGCCAGATCTCGAGAATGCACGTGAAGCGCTTGATACACTCGCTAAAAAGGAT
ATAACGGAAGTAAGAAGTTTTGCAAATCCACCTGAACCAGTACAAATAATATGTGAATGC
GTTGCAATATTGAAAGGAAATAAAGACATCTCATGGAAAACTGCAAAGGGAATGCTTGCG
GAAGTTAACTTTTTAAAGAGCTTACAGGAAATGAATTGCGATTTAATTACAGTAAAGCAA
GTCACAAGTTGCAGAGCACATATGAAGAAAACAACAAAGATGGATGAAATGAAAGCAATT
TCAAAAGCTGGCTATGGCTTGTTGAAATTTGTAAGAGCAGTTTTACGTTATTGTGATACA
TATCGTGAAGTGAAGCCTAAACAAGAGCGAGTTGAGTTTCTAGAAAATGACTTAAAGCAA
AAGACCAAAGTGCTCGAGTACTTGAAACTTGAAGTTGAAACGAATGAAAAAGAGCTCGAA
GAACTAAATAAAAAGTATGAAGACTCAAAAGAATTGCGTCAAAAGTACCGTGAAGAACTT
GACATTTCAGAGAAGCGACTAAATGCTGCCAACAAACTTGTAACTGGTCTTTATAGTGAG
AAAAATCGTTGGCAAGAAATGTTAAGACAATTAGCAGTGGATAAGGAAAATATGATTGGC
ACATGCCTCTTGTCAGCTTCATTCCTTGCTTATGCCGGTGCTTTCTCATGGGATTTCCGT
AAAACAATGATATTTGATGATTGGCTTGCTGATATTTTACGAAGAGATATTCCAGTGACA
ACACCATATAAAATTGATCAAGATTTAACGAATGATGTTGAAATGAGCACTTGGTCATCA
GAAGGTTTACCATCCGATGATCTTTCAATTCAAAATGGAATTTTAACTACACGAGCATCA
CGTTTTCCCTTCTGCATTGATCCACAACAGCAAGCATTAAATTGGATAAGAAAAAGAGAA
TTTCATAATAATTTAAAAATTTTATCCTTCAATGATGCTGATTTCTTGCGACATTTGGAA
ATTTCTGTCAAATATGGCACACCTGTGCTATTTCAAGATGTTGAAGATTACATTGATCCA
GTAATTGGAAATTTACTTGAAAGAAATTTTCGATATCAAACTGGTCAAGCTTATGTCATG
TTGGGTGATAAAGAAGTTGATGTCGATGCAAATTTCCGTCTTTATTTAACAACAAAATTA
TCAAATCCACAACTTGATCCATCAATTTATGCTCGTGCACTAGTGATTAATTATGCAATA
ACAATTGATGGACTTGAAAATCAATTGTTAGCAGAAGTTATAAAAGTTGAAAGATCAGAT
TTGGAAGAGCAACGTGAAATGTTAATTGAAGAGACCAGCATAAATAAAATTTTACTTTCA
ACACTTGAAGATTCATTGTTAAGAGAATTGGGAAGTTCACAAGGAAATATGCTTGATAAT
GAAGAATTAATTCAAACTTTAGAAAGTTCCAAATCAAAAGCAACTGAAGTGACAACAAAA
CTTGAACTTGCAACTGAAACAGCAAAAGATATTAATAATTTAAGAAATGGTTATCGACCA
GTTGCATGTCGTGGTGCACATTTATTCTTTGTACTTGCTGATATGTCAATTGTCAATGCA
ATGTATCAATATTCTTTGTCATCATATTTAGTTGAATTTATTAATTCACTTAAGCAAGCT
GATTCAGATATAATTTTATCAAAACGACTCGTAAACATTCTAAAAGTGCTGACAAAAAAT
ATTTATGATTATGGTTGCTCGGGAATATTTGAAAAGCATAAACTTTTATTCTCATTTCAA
ATTGCATCAAAATTGCAACAAAGTGAAGGAAAATTGACGCAAGCAGAACTTGATTTCTTC
ATTAAAGGATCAATGTCACTTGAAAAAAGCTCCGAACCATGTCCTGCAAAATGGCTCAAT
GAAAAAAGCTGGAATGATTTGCTTCATTTAGCAGCGACATTTGCTGACTCATTTGAGCAC
ATTCCACAGCATTTCAAAATGCACATGGCAGAATGGCGTGATTGGTATGATCTTGAAGCT
CCCGAAACTTGTGAATGTCCGGGTGGTTTTACTTCTCACATGACTTCATTCCAACGTATG
ATGTTACTTCGATGCTTCCGTGTTGATCGAATTTTCTGTGCAATTAATTCATATGTAATT
GAAATTATGGGTGAAGAATTCGTGACACCACCAGTGATAAATTTTAAGGCAATTTATGAA
CATACGACACCATTTGTTCCAGTTGTATTTATGTTATCACCTGGCTCTGATCCGACAGGT
GATTTAATAAAATTGGCTGAACAACATCGAATGATTGAAGAAAATCGTTTCAAATATATT
TCACTTGGTCAAGGGCAAGAAGCGGCAGCTTTAAGTCTTTTTGAAATTGCATTCAATGAT
GGTCATTGGTTGATGCTACAAAATGGACATTTGTTGATAAAGTTTATGAAAAGAATTGAA
AAAATGTTGGAGAAAATCGATAAACCACCACATAAGGACTTCCGACTATGGATTACAACA
GATCCAACGCCAATCTTTCCAATTGGAATTCTACAAAAGTCACTGAAAGTTGTAACGGAA
CCACCAAATGGCTTGAAATTAAATCTGCGCTCGACATTCTTTAAAATGCAAGCTGAAGTA
TTGCAATCGTGCCAGCATGAGTCATTCAAGTCACTCGTCTATGTTCTTGCATTCTTTCAC
GCTGTTGTGCTCGAACGTCGTAAATATGGCAAGCTGGGCTTCAACATCTCATACGATTTC
AATGAATCTGACTTTAATGTTTGCACACAGATACTCGATACATATCTCTCACGTACTGAA
AACATTCCATGGAATAGCTTAAAATATTTAATTGGCGAGGTCATGTACGGAGGAAGAGTA
ATTGATGATTTCGATCGTCGAATTGTACGTGTTTACATGGACGAATATATGGGAGATTTT
CTATTTGACACATTTCAACCCTTTCATTTCTATCATGATGATAATGTTGACTATAAAATT
CCATCCTATGCTAAAACAAAAGAAGACTTTATTGCATCGACCGATTTATTGCCACTCGCA
AATACACCGGAAGTATTTGGTTTGCATCCGAATGCCGAAATTAACTATTATAGTCAAACG
ACACGGGAAATATGGAGTCATTTAATTGAATTGCAACCACAAACTGGTCAATCATTTAGT
GGCACATCACGAGATCAATTTATCGATAACGTTGCCGAGGACATATTGCGTCGCCTACCA
CGACCCTTTGAAATTTGGCGTATTAAAAAGTCATTTGCAATGAATATCACACCAACACTA
GTAGTGCTGATACAAGAGCTAGAACGTTTCAATCGACTTGTTAATCGTATGCATGTGACG
TTGAGTTTATTACGCAAAGCGCTAGCGGGTGAGATCGGAATGGACGCAACATTAGATGGA
ATTGCCAATGCATTATTTAACAATCAACTGCCGGATGATTGGAGGAAATTGGCGCCTGAT
ACAACAAAAAGTCTCGCAAGTTGGATGGAGCATTTGAATCATCGCTCGCAGCAATATCGT
TATTGGTCGTCGTCAGGTGAACCACTCGTTATGTGGCTCTCGGGACTTCATGTGCCTGAA
AGTTTTCTCACCGCTCTCGTACAAATTGCATGTCGTAAAAATAATTGGCCGCTCGACAGG
TCGACCTTGTTTACTGTCATCACTGACTTTAATGATCCTGACGATGTTGAAGATAGACCT
GAGTCGGGCTGTTATGTGCATGGACTATTTCTTGAGGGCGCTCGTATAAAAGACAGATGC
CTGGATAGATCATTACCGAAAGTGCTTGTTGAGCCACTGCCAATATTATCCATTCAACCG
ATTGAGGCACATCGATTGAAATTGCAAAATACATTTCGTACTCCTGTTTATATTACATCA
AAACGACGTAATGCGATGGGTAATGGATTGGTTTTTGAAGCTGATTTGGCAACGAATATT
CATCCGAATCGATGGGTTCTTCAAGGCGTTTGTCTTATGCTAAACGATGATTAA

>g1029.t1 Gene=g1029 Length=4957
MADYRIIWLRDRISKALGVQDHPETIEELFREHSEKFQNYLDEEISSVDEMEKCAIYIYR
TFYDKLVEREVLTIEKVPRIMTPPQQVTIDISKEKKGRKGKARRAAKGDSREEGGEVRPD
PDIEDEEIKETTRSAPEKKRGGKSRRRRTAVEEDEQEGETPEPPKEQLYSFIEVRKIEQS
FEKTPILHAVFSMKELEEIDHKGCFVYFIRKSMLPIPHMDCLDDAMSDMPDYFIIGTLVG
SFIHKLLSQSKTILREVVSMQMRVPIINEKNDIHMAIEARTNEGEQKIGLIDFSRPSDYR
TKAIEARNAGINVGDDTSHLSGTSRLSTVATSNDSLKTGGAYEPYEEPTPQSHDDKWNQL
YTKAELEAQKERAQSQNVPIKKPSTVEILQNNLDKFEQTVEWTIDHVICTFNLPTEYNAL
GQEHVIDDEDKVKIKVDPLKMSLDGIEISQLEEIVDGWFKHVSKIIRDACEKEPNNPTPI
AEYELWIEREREFNHLMEQLKSPFAEMIFDKLKAENSKALDNWPPLMKKLQSERDLAQEN
AEYLSTLQEFFIKIRDEDNFSFIISIIPSMMNGLRHIWTMSNNYSNDENMLNLLSKISNI
FTIKVMQIVDLEKIFSLSATAAYKRARECVNLLQCWKSSYMETRAFIENSGVGSRWEFDK
KILFGLVDHITRICQDISEIAKSFYEFENMFSYRLRSNVADPEDVDLMIKKVYRLLNHIL
SIDYNIFEPNNFDNWESTLDYFYKQMEIVENEARVVLDQCIDSLKSAEQGLELISYMGEV
ETREKLLNHLMSKRESVMKKFVTEVGIVEHEFLKFRKNPPLQRNQNKYSGAVFWERLLME
KLKKSVIAFRSMEQTDDDNDECNFLKRSAFNQYFAIAQEMAAFEKDLFARFLHEGTFVVN
NVLKRNILKLKFMTLPEELKDDSIRKEGMPQSMSLAKTVSKTGRVKAHSQKLKLASSQGA
LSAITPRKSQSVKSKFNIYSTAIQWMTNRPLSDNPDLALAEKLMKASESFVGDKKSSKSA
RHDFKVSQAKLMTTASQQQKVPTWREIVGSSLLVEYELKFDVNFSQQIFDVMIEGQQFEY
LGFTLNPVIRMAIMRKEQLSSDVEYVKRIVNEYNDIVAKLSPSEIHFLRDKLYETESKIQ
AGLGRYTWQTLNIKTFCESCERLLKNLSAIVMQINRMAKNIHGKVSELESFSLFVIDKHE
QKSSVSNLRPPIILKSSKLDGKMSETPDDLEEIEAIGERKKSVRITERDLSVKSCLEYFS
SLELERNEKTSKLQRLYDSIGPTMIKLESLILGTFTGESDKMNHYYTYWEREMFSALVRF
TTRNLQNFSEKLMHNDVMFEVDAVLAAPEITMKPSANEIYNIMVHSVKDFLERLKCFRRW
MSETCLPCPPTRLDNNEVYVFSFYEDIVQIPKVCELVINLQQTIQNLVSDVRSYLSRWHK
YKSLWMYDKNVVCDKYLNRRVPLVRLDEKFIFFTQIINDLESVKPYYDIKSIRINLQPLI
RSIIEHAVEWRNTLGNFLSERTSVDMVTMNKEFKELRLNLDRNIKHLSDFKIVMSTINVI
QSTTLTVELKIKEMQETFNVLEEHRIHFPYGDMLMAFHLEKRWKKLYNSALYRMKTLHST
KVKFSQMTQKDIEKFKNELDEFVNKFDNEGPGIEKDMDKGQKLMEIYAVDFDKMEMNRIE
MVNAEKLFDIEVADYSRFLQAKAEFERMQVIFKLYQAQKIARESWGKTLWANLNTQALTD
GIDSFMRDYRKLPKVVRQMPIANVLETIMKQFKNVVPLMASLKHEAMRERHWKMLMLRTG
KSFDMSPQRFTLNNMFSMELHKHQDVVEEIVLNAIRELAIERGVKEIAQQWETIKFNVIK
HTMNESAIDRGYILGSMDEIMQILDDHSMNLQSMSASPFIGPFLTAVQKWEKCLTLVSEI
IDEWLAVQRKWIYLEGIFIGGDIRDQLPEEAKKFDDIDKNFRKIMNITAEKLIVIDVCME
PERLAEIRALSEGLDRCQKSLNDYLDSKRRIFPRFYFISTEELLSILGNSRHDCVQEHMI
KMFDNIKSLTFAKSAMGLNVAIAMNSSEGETMQFKNQVQAEGRVEEWMNEVLKEMRSSNR
HITKKSIFDYGKNKDMSRPDWIMMYQGMICLAANQIWWTSEVEEVFQRVAKGNKRAMKEY
LEIQNRQIDDLVRKVRENLSMNDRMKFKTIATIDVHARDIIETFVRDSVLDASEFQWESQ
LRFYWMKDVDNLYVVQCTGKFEYGYEYMGLNGRLVITPLTDRIYLTITQALTLKMGCAPS
GPAGTGKTETTKDLAKAMALLCMVTNCGEGMDNRAVATILSGLSQCGAWGCFDEFNRIDL
SVLSVISAQLQTIRSALLANKDKFMFEGQQINLDSKVGIFITMNPGYAGRTELPESIKAL
FRPVTCIMPDLELICLISLFSDGFLAAKVLAKKMTVLYKLAREQLSKQYHYDFGLRSLNS
VLRMAGVVKREMPDAPEAVVLMRVLRDMNFPKFVFEDVPLFLGLIKDLFPGVECPRSVYS
QLNDVVRKELQDDGFILKAEQVDKVIQLYETMLTRHCVMIVGPTGGGKSVVLNTLIKAQS
AMGIPTKCVTLNPKACSVIELYGYLDASTRDWIDGLFSNIFREMNKVSTTDDDQQQQQQQ
QRQYVCFDGDVDALWIENMNSVMDDNKLLTLANGERIRLSQNCALLFEVGDLAYASPATV
SRAGMVYVDPKNLGYSPYWQRWLMTRHEREREKIHELYERLISDALAFVLEGIDGTTQAQ
VEPLKMIVPQTELNLIVQLCMMLDATLPQLNDKIIYDDEVLECAFVQCIYFSLGASLMDD
SRIRFDAFMKKLNPLMAVQDSIERPANTTQCPTAKSTLYEYFFDIYRREWIAWEWIIPDY
IHDVSAKFNDILVPTVDTLRTEWLLNMMNQIQHPIVLVGETGTSKTAIISNFLRNIDQKY
NIVLNINFSSRTTSMDVQRTIEAAVEKRTKNIFGPPVGKKLIAFIDDMNMPKVDEYGTQQ
PIALLKLLFERGGMYGRGKELFWKNFKDISFLAAMGKSGGGRNEVDARFISKFAVINLQF
PLESTLKHIYGSILDGHLKLFPEKVQEVSEVVVQMTLDLFKIVTNELPPTPSKFHYIFNM
KDLSRIYAGILLTSGANFNSDRQLVRVWRNEFTRVFCDRMICESDVAMVRDHMHEMVNKY
FKGDDLRSRMSQISSFRSSDKMEKKDSVSDMPANQYIMRDPLLFGDFRHGVVDEEERTYE
DLLDFTACMHLFKEIMDEYNDKRGSMDLVLFDDCLDHLTRVHRVMRMHKGHLLLVGVGGS
GKHSISRLAAFAAGCEMFEITITRGYNEESFKADLKTLFNKLMTQPTVFLFSSAQIVEEG
FLEFINNILTIGFVPALFTDDEKDSIIGNCRNAAKDAGYASSKDGIWKYFVDKCSENLHV
VLSMSPSGDSLRNYCRSFPGLVGNTTINWIFPWPKQALRSVARGYISENRKIPDSYKDEI
NDHVVHVHESLTYYTQEFHTILRRRNYITPKHYLDYVTTYIRLLDEKSSFITKQIVRYSD
GIRKIDDASLQIAILQSEVEKTKMEATKASEDCDRVMEDIEDSTERVMRKKKEAMEKSTE
VEQNRKQIAVETEEAEESLRQAMPDLENAREALDTLAKKDITEVRSFANPPEPVQIICEC
VAILKGNKDISWKTAKGMLAEVNFLKSLQEMNCDLITVKQVTSCRAHMKKTTKMDEMKAI
SKAGYGLLKFVRAVLRYCDTYREVKPKQERVEFLENDLKQKTKVLEYLKLEVETNEKELE
ELNKKYEDSKELRQKYREELDISEKRLNAANKLVTGLYSEKNRWQEMLRQLAVDKENMIG
TCLLSASFLAYAGAFSWDFRKTMIFDDWLADILRRDIPVTTPYKIDQDLTNDVEMSTWSS
EGLPSDDLSIQNGILTTRASRFPFCIDPQQQALNWIRKREFHNNLKILSFNDADFLRHLE
ISVKYGTPVLFQDVEDYIDPVIGNLLERNFRYQTGQAYVMLGDKEVDVDANFRLYLTTKL
SNPQLDPSIYARALVINYAITIDGLENQLLAEVIKVERSDLEEQREMLIEETSINKILLS
TLEDSLLRELGSSQGNMLDNEELIQTLESSKSKATEVTTKLELATETAKDINNLRNGYRP
VACRGAHLFFVLADMSIVNAMYQYSLSSYLVEFINSLKQADSDIILSKRLVNILKVLTKN
IYDYGCSGIFEKHKLLFSFQIASKLQQSEGKLTQAELDFFIKGSMSLEKSSEPCPAKWLN
EKSWNDLLHLAATFADSFEHIPQHFKMHMAEWRDWYDLEAPETCECPGGFTSHMTSFQRM
MLLRCFRVDRIFCAINSYVIEIMGEEFVTPPVINFKAIYEHTTPFVPVVFMLSPGSDPTG
DLIKLAEQHRMIEENRFKYISLGQGQEAAALSLFEIAFNDGHWLMLQNGHLLIKFMKRIE
KMLEKIDKPPHKDFRLWITTDPTPIFPIGILQKSLKVVTEPPNGLKLNLRSTFFKMQAEV
LQSCQHESFKSLVYVLAFFHAVVLERRKYGKLGFNISYDFNESDFNVCTQILDTYLSRTE
NIPWNSLKYLIGEVMYGGRVIDDFDRRIVRVYMDEYMGDFLFDTFQPFHFYHDDNVDYKI
PSYAKTKEDFIASTDLLPLANTPEVFGLHPNAEINYYSQTTREIWSHLIELQPQTGQSFS
GTSRDQFIDNVAEDILRRLPRPFEIWRIKKSFAMNITPTLVVLIQELERFNRLVNRMHVT
LSLLRKALAGEIGMDATLDGIANALFNNQLPDDWRKLAPDTTKSLASWMEHLNHRSQQYR
YWSSSGEPLVMWLSGLHVPESFLTALVQIACRKNNWPLDRSTLFTVITDFNDPDDVEDRP
ESGCYVHGLFLEGARIKDRCLDRSLPKVLVEPLPILSIQPIEAHRLKLQNTFRTPVYITS
KRRNAMGNGLVFEADLATNIHPNRWVLQGVCLMLNDD

Protein features from InterProScan

Transcript Database ID Name Start End E.value
43 g1029.t1 Coils Coil Coil 1625 1645 -
41 g1029.t1 Coils Coil Coil 3545 3572 -
40 g1029.t1 Coils Coil Coil 3577 3597 -
42 g1029.t1 Coils Coil Coil 3751 3813 -
44 g1029.t1 Coils Coil Coil 4051 4071 -
26 g1029.t1 Gene3D G3DSA:1.20.140.100 - 1839 2010 1.1E-52
27 g1029.t1 Gene3D G3DSA:3.20.180.20 - 2011 2110 9.7E-27
39 g1029.t1 Gene3D G3DSA:1.20.58.1120 - 2111 2257 4.6E-41
35 g1029.t1 Gene3D G3DSA:3.40.50.300 - 2258 2408 4.4E-63
31 g1029.t1 Gene3D G3DSA:1.10.8.710 - 2409 2517 1.3E-35
34 g1029.t1 Gene3D G3DSA:3.40.50.300 - 2519 2761 7.0E-85
32 g1029.t1 Gene3D G3DSA:3.40.50.300 - 2891 3449 7.1E-186
29 g1029.t1 Gene3D G3DSA:1.20.920.30 - 3062 3287 7.1E-186
30 g1029.t1 Gene3D G3DSA:1.20.920.20 - 3510 3848 1.5E-85
37 g1029.t1 Gene3D G3DSA:3.40.50.11510 - 3889 4057 1.3E-59
38 g1029.t1 Gene3D G3DSA:1.10.8.1220 - 4138 4228 3.0E-11
33 g1029.t1 Gene3D G3DSA:3.40.50.300 - 4352 4479 8.6E-34
36 g1029.t1 Gene3D G3DSA:1.10.8.720 - 4480 4649 1.3E-51
28 g1029.t1 Gene3D G3DSA:1.20.1270.280 - 4662 4817 1.3E-15
25 g1029.t1 Gene3D G3DSA:3.10.490.20 - 4819 4957 1.1E-9
23 g1029.t1 MobiDBLite mobidb-lite consensus disorder prediction 88 167 -
24 g1029.t1 MobiDBLite mobidb-lite consensus disorder prediction 105 138 -
14 g1029.t1 PANTHER PTHR45703 DYNEIN HEAVY CHAIN 364 4957 0.0
15 g1029.t1 PANTHER PTHR45703:SF3 DYNEIN AXONEMAL HEAVY CHAIN 10 364 4957 0.0
12 g1029.t1 Pfam PF08385 Dynein heavy chain, N-terminal region 1 448 910 2.9E-74
13 g1029.t1 Pfam PF08385 Dynein heavy chain, N-terminal region 1 1027 1156 2.2E-14
5 g1029.t1 Pfam PF08393 Dynein heavy chain, N-terminal region 2 1700 2105 1.4E-120
3 g1029.t1 Pfam PF12774 Hydrolytic ATP binding site of dynein motor region 2243 2569 9.1E-148
9 g1029.t1 Pfam PF17852 Dynein heavy chain AAA lid domain 2735 2874 1.3E-20
7 g1029.t1 Pfam PF12775 P-loop containing dynein motor region 2882 3061 3.4E-69
8 g1029.t1 Pfam PF17857 AAA+ lid domain 3092 3185 3.1E-17
2 g1029.t1 Pfam PF12780 P-loop containing dynein motor region D4 3266 3523 3.5E-91
1 g1029.t1 Pfam PF12777 Microtubule-binding stalk of dynein motor 3537 3869 9.4E-38
4 g1029.t1 Pfam PF12781 ATP-binding dynein motor region 3897 4117 2.0E-79
11 g1029.t1 Pfam PF03028 Dynein heavy chain region D6 P-loop domain 4364 4478 2.7E-36
10 g1029.t1 Pfam PF18198 Dynein heavy chain AAA lid domain 4492 4652 1.4E-53
6 g1029.t1 Pfam PF18199 Dynein heavy chain C-terminal domain 4659 4954 2.7E-82
21 g1029.t1 SMART SM00382 AAA_5 2273 2412 5.8
20 g1029.t1 SMART SM00382 AAA_5 2554 2756 0.11
22 g1029.t1 SMART SM00382 AAA_5 2911 3061 0.98
18 g1029.t1 SUPERFAMILY SSF52540 P-loop containing nucleoside triphosphate hydrolases 2261 2469 1.08E-22
19 g1029.t1 SUPERFAMILY SSF52540 P-loop containing nucleoside triphosphate hydrolases 2489 2710 1.06E-12
16 g1029.t1 SUPERFAMILY SSF52540 P-loop containing nucleoside triphosphate hydrolases 2909 3171 1.33E-18
17 g1029.t1 SUPERFAMILY SSF52540 P-loop containing nucleoside triphosphate hydrolases 3266 3530 2.06E-22

Transmembrane regions from TMHMM

Disordered region

IUPRED3 score over 0.5 is predictive of a disordered region.

GO terms from InterProScan

GOID TERM ONTOLOGY
GO:0007018 microtubule-based movement BP
GO:0030286 dynein complex CC
GO:0005524 ATP binding MF
GO:0008569 minus-end-directed microtubule motor activity MF

KEGG

Orthology

Pathway

  • This transcript belongs to the following pathways

Expression

Transcript expression in Pv11 cells

TPM values are indicated as average +/- STDEV.

Differential expression

Differentially expressed genes were identified with DESeq2 using the ‘run_DE_analysis.pl’ script from Trinity. Transcripts were determined as differentially expressed when (1) FDR < 0.05 (2) fold change > 2 (TPM calculated by RSEM). DE information and fold change between conditions are indicated in the plot below.

Raw TPM values