Microexon ID Ha_6:50204438-50204448:+
Species Helianthus annuus
Coordinates 6:50204438..50204448
Microexon Cluster ID MEP27
Size 11
Phase 1
Pfam Domain Motif Gelsolin
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 49,11,48
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq MRRGADRYTGWMAGWGATCCYCAYYTGTTYDCWTKYWCWTTYWMTAAAGGRAADYTKRAGGTKRMRGARRTHTACAAYTTYWCYCARGATGAYYTGWTGACWGARGAT
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Ha_6:50204438-50204448:+ does not have available information here.
Transcript ID OTG23085
Protein ID OTG23085
Gene ID HannXRQ_Chr06g0178511
Gene Name NA
Pfam domain motif Gelsolin
Motif E-value 9.2e-07
Motif start 641
Motif end 719
Protein seq >OTG23085
MATAKALEPAFQGVGSKPGVEIWRIENFKPVPLPKADYGKFYSGDSYVVLQTSGRAGAGAYTYDIHFWLGKDTSQDEAGV
AAIKTVELDAILGGRAVQHRELQNHESDKFISYFKPCIIPLEGGVASGFKKPEEEEFVTRLYTCKGKRVVHLKQVPFSRS
VLNHDDVFILDTKDKIFQFNGANSNIQERAKALEVVQFLKDTYHEGTCNVAIVDDGKLQAEGDSGEFWVIFGGFAPIGKK
VLSDDDVVPDKTPGKLYSIAGGQVADQIEEYSKSTFENDKCYLMDCGDEVFVWVGRSTQVDDRKAAMKAAEEFLTSNNRP
KATLVTRLIQGYETHSFKSNFDSWPSSTAPSAENRGKVAENRGKVSALLKQQGVGPKGKEKNAPVVEEVVPPLLEANGKL
EVWSIDGDAKTPVASEDIGKFYSGDCYIVLYSYHSREKKEDFYLCYWIGKDSTEEDQNTAAKLTASMFNSLKGRPVQGRI
YQEKEPPQFIAIFQPMVVFKGGLSSGYKSHIAEKGLDDETYKPDSASVIQILGTAVHNNKATQLDPVASSLNSHECFVIQ
SGSHLYIWQGTQSTYEQHAWAAKIAEFVKPGVHVKYQKEGSESASFWLGLGGKDTCGSNKVSLDTNRDPHLFAFSLSKGK
FEIEEVYNFDQDDLLPEDILILDTRAEVIVWIGQAVDQKEKKNALEYGQKYIELAESLDGLSPHVPLYKVTEGNEPCFFT
VYFSWEASKTSIPGNSFQKKVTILFGAGHSAVNL*
CDS seq >OTG23085
ATGGCTACTGCAAAAGCTCTTGAACCTGCATTCCAGGGAGTTGGTTCGAAACCAGGGGTTGAGATATGGAGAATTGAAAA
CTTTAAACCTGTACCTTTGCCGAAAGCTGATTATGGTAAATTCTACTCTGGCGATTCATACGTTGTCTTGCAGACGTCGG
GTAGGGCAGGTGCAGGTGCTTACACGTACGACATACACTTCTGGTTGGGAAAAGACACTAGCCAGGATGAAGCTGGAGTA
GCAGCAATAAAAACGGTGGAGCTCGATGCAATTCTCGGTGGACGTGCAGTGCAACATAGAGAACTTCAAAATCATGAATC
CGACAAGTTTATATCATATTTCAAACCTTGTATTATACCACTTGAAGGTGGCGTTGCATCTGGTTTCAAGAAACCGGAAG
AAGAAGAATTTGTAACAAGATTATATACGTGCAAAGGAAAACGAGTTGTTCATTTGAAACAGGTCCCGTTTTCGCGATCT
GTGTTGAATCATGATGATGTGTTTATCTTGGACACTAAAGATAAGATTTTTCAATTTAATGGAGCAAATTCAAATATTCA
AGAAAGGGCTAAGGCGTTGGAGGTTGTTCAGTTCTTGAAGGATACATATCATGAGGGGACATGCAATGTTGCAATTGTTG
ATGATGGAAAGCTACAGGCAGAGGGGGATTCCGGTGAATTTTGGGTCATTTTCGGCGGGTTTGCTCCTATTGGCAAAAAG
GTTTTGAGTGATGATGATGTCGTTCCAGATAAGACACCTGGCAAACTATATAGCATTGCCGGAGGCCAGGTTGCGGATCA
AATTGAAGAATATTCAAAATCAACATTTGAAAATGACAAATGCTATCTAATGGACTGTGGTGATGAGGTGTTCGTTTGGG
TTGGCCGATCAACTCAGGTAGATGATAGAAAAGCTGCCATGAAGGCCGCTGAGGAGTTTCTCACCAGTAATAACCGGCCA
AAAGCCACCCTTGTTACCCGGCTAATTCAAGGTTACGAGACGCATTCATTCAAGTCAAACTTTGACTCGTGGCCATCATC
AACTGCACCTTCTGCTGAAAATAGAGGAAAAGTGGCCGAAAATAGAGGAAAAGTTTCAGCTTTACTAAAGCAACAAGGTG
TCGGGCCAAAAGGAAAAGAGAAAAACGCTCCTGTTGTTGAGGAAGTTGTTCCTCCTTTGCTTGAAGCAAATGGAAAACTC
GAGGTATGGTCTATTGACGGGGACGCTAAAACTCCAGTAGCCAGTGAGGACATTGGTAAATTTTACAGTGGAGATTGCTA
CATTGTTCTTTACAGTTACCATTCTAGAGAGAAAAAAGAAGATTTTTATCTTTGTTATTGGATTGGAAAGGACAGCACCG
AGGAGGACCAAAATACGGCAGCTAAGTTGACCGCGTCAATGTTTAACTCATTGAAGGGGAGACCTGTTCAGGGCCGTATA
TATCAAGAAAAAGAACCACCACAATTTATTGCCATTTTTCAACCTATGGTTGTATTCAAGGGTGGATTAAGCTCTGGTTA
TAAAAGTCACATTGCAGAAAAAGGATTAGATGATGAAACGTACAAGCCAGATAGCGCGTCGGTGATTCAAATATTAGGAA
CTGCAGTGCATAATAATAAGGCTACCCAACTAGATCCGGTGGCATCATCTTTGAATTCACATGAATGCTTCGTTATACAA
TCCGGGTCTCATCTATACATCTGGCAAGGAACCCAAAGTACTTACGAACAACACGCATGGGCAGCGAAAATTGCTGAGTT
TGTAAAACCCGGTGTACATGTAAAATACCAGAAAGAAGGATCCGAAAGCGCATCGTTCTGGCTTGGACTTGGAGGGAAAG
ATACTTGTGGTAGTAACAAAGTATCACTGGATACTAATAGAGATCCTCATTTGTTTGCATTTTCACTTTCTAAAGGAAAA
TTTGAGATTGAAGAAGTTTACAACTTTGATCAAGATGACTTGTTGCCGGAGGATATTTTGATATTAGATACACGTGCGGA
GGTCATTGTTTGGATTGGTCAAGCGGTTGACCAAAAGGAGAAGAAAAACGCTCTTGAATATGGCCAGAAATACATAGAAC
TGGCTGAATCACTAGACGGATTGTCCCCACACGTGCCGTTATACAAAGTTACCGAAGGAAATGAACCTTGTTTCTTCACA
GTATATTTCTCATGGGAAGCCTCAAAAACATCAATTCCTGGGAACTCATTCCAAAAGAAGGTTACTATACTATTTGGAGC
AGGCCATTCCGCGGTAAATTTATAA
Microexon DNA seq GAAAATTTGAG
Microexon Amino Acid seq GKFE
Microexon-tag DNA Seq CTGGATACTAATAGAGATCCTCATTTGTTTGCATTTTCACTTTCTAAAGGAAAATTTGAGATTGAAGAAGTTTACAACTTTGATCAAGATGACTTGTTGCCGGAGGAT
Microexon-tag Amino Acid seq MDTNRDPHLFAFSLSKGKFEIEEVYNFDQDDLLPED
Transcript ID Ha.48423.1
Gene ID Ha.48423
Gene Name NA
Pfam domain motif Gelsolin
Motif E-value 9.3e-07
Motif start 641
Motif end 719
Protein seq >Ha.48423.1
MATAKALEPAFQGVGSKPGVEIWRIENFKPVPLPKADYGKFYSGDSYVVLQTSGRAGAGAYTYDIHFWLGKDTSQDEAGV
AAIKTVELDAILGGRAVQHRELQNHESDKFISYFKPCIIPLEGGVASGFKKPEEEEFVTRLYTCKGKRVVHLKQVPFSRS
VLNHDDVFILDTKDKIFQFNGANSNIQERAKALEVVQFLKDTYHEGTCNVAIVDDGKLQAEGDSGEFWVIFGGFAPIGKK
VLSDDDVVPDKTPGKLYSIAGGQVADQIEEYSKSTFENDKCYLMDCGDEVFVWVGRSTQVDDRKAAMKAAEEFLTSNNRP
KATLVTRLIQGYETHSFKSNFDSWPSSTAPSAENRGKVAENRGKVSALLKQQGVGPKGKEKNAPVVEEVVPPLLEANGKL
EVWSIDGDAKTPVASEDIGKFYSGDCYIVLYSYHSREKKEDFYLCYWIGKDSTEEDQNTAAKLTASMFNSLKGRPVQGRI
YQEKEPPQFIAIFQPMVVFKGGLSSGYKSHIAEKGLDDETYKPDSASVIQILGTAVHNNKATQLDPVASSLNSHECFVIQ
SGSHLYIWQGTQSTYEQHAWAAKIAEFVKPGVHVKYQKEGSESASFWLGLGGKDTCGSNKVSLDTNRDPHLFAFSLSKGK
FEIEEVYNFDQDDLLPEDILILDTRAEVIVWIGQAVDQKEKKNALEYGQKYIELAESLDGLSPHVPLYKVTEGNEPCFFT
VYFSWEASKTSIPGNSFQKKVTILFGAGHSAVNL*
CDS seq >Ha.48423.1
ATGGCTACTGCAAAAGCTCTTGAACCTGCATTCCAGGGAGTTGGTTCGAAACCAGGGGTTGAGATATGGAGAATTGAAAA
CTTTAAACCTGTACCTTTGCCGAAAGCTGATTATGGTAAATTCTACTCTGGCGATTCATACGTTGTCTTGCAGACGTCGG
GTAGGGCAGGTGCAGGTGCTTACACGTACGACATACACTTCTGGTTGGGAAAAGACACTAGCCAGGATGAAGCTGGAGTA
GCAGCAATAAAAACGGTGGAGCTCGATGCAATTCTCGGTGGACGTGCAGTGCAACATAGAGAACTTCAAAATCATGAATC
CGACAAGTTTATATCATATTTCAAACCTTGTATTATACCACTTGAAGGTGGCGTTGCATCTGGTTTCAAGAAACCGGAAG
AAGAAGAATTTGTAACAAGATTATATACGTGCAAAGGAAAACGAGTTGTTCATTTGAAACAGGTCCCGTTTTCGCGATCT
GTGTTGAATCATGATGATGTGTTTATCTTGGACACTAAAGATAAGATTTTTCAATTTAATGGAGCAAATTCAAATATTCA
AGAAAGGGCTAAGGCGTTGGAGGTTGTTCAGTTCTTGAAGGATACATATCATGAGGGGACATGCAATGTTGCAATTGTTG
ATGATGGAAAGCTACAGGCAGAGGGGGATTCCGGTGAATTTTGGGTCATTTTCGGCGGGTTTGCTCCTATTGGCAAAAAG
GTTTTGAGTGATGATGATGTCGTTCCAGATAAGACACCTGGCAAACTATATAGCATTGCCGGAGGCCAGGTTGCGGATCA
AATTGAAGAATATTCAAAATCAACATTTGAAAATGACAAATGCTATCTAATGGACTGTGGTGATGAGGTGTTCGTTTGGG
TTGGCCGATCAACTCAGGTAGATGATAGAAAAGCTGCCATGAAGGCCGCTGAGGAGTTTCTCACCAGTAATAACCGGCCA
AAAGCCACCCTTGTTACCCGGCTAATTCAAGGTTACGAGACGCATTCATTCAAGTCAAACTTTGACTCGTGGCCATCATC
AACTGCACCTTCTGCTGAAAATAGAGGAAAAGTGGCCGAAAATAGAGGAAAAGTTTCAGCTTTACTAAAGCAACAAGGTG
TCGGGCCAAAAGGAAAAGAGAAAAACGCTCCTGTTGTTGAGGAAGTTGTTCCTCCTTTGCTTGAAGCAAATGGAAAACTC
GAGGTATGGTCTATTGACGGGGACGCTAAAACTCCAGTAGCCAGTGAGGACATTGGTAAATTTTACAGTGGAGATTGCTA
CATTGTTCTTTACAGTTACCATTCTAGAGAGAAAAAAGAAGATTTTTATCTTTGTTATTGGATTGGAAAGGACAGCACCG
AGGAGGACCAAAATACGGCAGCTAAGTTGACCGCGTCAATGTTTAACTCATTGAAGGGGAGACCTGTTCAGGGCCGTATA
TATCAAGAAAAAGAACCACCACAATTTATTGCCATTTTTCAACCTATGGTTGTATTCAAGGGTGGATTAAGCTCTGGTTA
TAAAAGTCACATTGCAGAAAAAGGATTAGATGATGAAACGTACAAGCCAGATAGCGCGTCGGTGATTCAAATATTAGGAA
CTGCAGTGCATAATAATAAGGCTACCCAACTAGATCCGGTGGCATCATCTTTGAATTCACATGAATGCTTCGTTATACAA
TCCGGGTCTCATCTATACATCTGGCAAGGAACCCAAAGTACTTACGAACAACACGCATGGGCAGCGAAAATTGCTGAGTT
TGTAAAACCCGGTGTACATGTAAAATACCAGAAAGAAGGATCCGAAAGCGCATCGTTCTGGCTTGGACTTGGAGGGAAAG
ATACTTGTGGTAGTAACAAAGTATCACTGGATACTAATAGAGATCCTCATTTGTTTGCATTTTCACTTTCTAAAGGAAAA
TTTGAGATTGAAGAAGTTTACAACTTTGATCAAGATGACTTGTTGCCGGAGGATATTTTGATATTAGATACACGTGCGGA
GGTCATTGTTTGGATTGGTCAAGCGGTTGACCAAAAGGAGAAGAAAAACGCTCTTGAATATGGCCAGAAATACATAGAAC
TGGCTGAATCACTAGACGGATTGTCCCCACACGTGCCGTTATACAAAGTTACCGAAGGAAATGAACCTTGTTTCTTCACA
GTATATTTCTCATGGGAAGCCTCAAAAACATCAATTCCTGGGAACTCATTCCAAAAGAAGGTTACTATACTATTTGGAGC
AGGCCATTCCGCGGTAAATTTATAA