Microexon ID Gm_2:13107329-13107338:+
Species Glycine max
Coordinates 2:13107329..13107338
Microexon Cluster ID MEP25
Size 10
Phase 2
Pfam Domain Motif CDP-OH_P_transf
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 50,10,48
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq YTSCARCCYTTYTGGASYCGHTKYGTYAMYYTCTTCCCYCTTTGGATGCCRCCAAAYATGATWACACTTAYRGGATTYATGTTYYTRSTBAYATCTGCAYTGCTTGGC
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq TCCAAACATG
Microexon Amino Acid seq PPNM
Microexon-tag DNA Seq CTACAACCCTTTTGGAGTCGCTTTGTTAATTTTTTCCCCCTATGGATGCCTCCAAACATGATAACTCTTATGGGATTTATGTTCTTACTAGTGTCTGCATTGCTTGGT
Microexon-tag Amino Acid Seq LQPFWSRFVNFFPLWMPPNMITLMGFMFLLVSALLG
Microexon-tag spanning region13106570-13107492
Microexon-tag prediction score0.9677
Overlapped with the annotated transcript (%) 100
New Transcript ID KRH71083x
Reference Transcript ID KRH71083
Gene ID GLYMA_02G128300
Gene Name NA
Transcript ID KRH71083
Protein ID KRH71083
Gene ID GLYMA_02G128300
Gene Name NA
Pfam domain motif CDP-OH_P_transf
Motif E-value 7.5e-17
Motif start 47
Motif end 120
Protein seq >KRH71083
MGYIGAHGVAALHRYKYSGVDHSYVAKYVLQPFWSRFVNFFPLWMPPNMITLMGFMFLLVSALLGYIYSPQLDTPPPRWV
HFAHGLLLFLYQTFDAVDGKQARRTNSSSPLGELFDHGCDALACTFEALAFGSTAMCGRNTFWWWLISAITFYGATWEHY
FTNTLILPVINGPTEGLMIIYICHFFTAIVGAEWWVQQFGKSLPFLNWLPYLAGIPTFKAILCLMIAFGVTPTVTCNVSN
VYKVVKAKNGSMPLALAMLYPFVVLVGGVLVWDYLSPLDIMGRYPHLVVIGTGLTFGYLVGRMILAHLCDEPKGLKTGMC
MSLMFLPLAIANVLASRLNDGVPLVDERLVLLGYCAFSVTLYLHFATSVIHEITNALGIYCFRITRKEA*
CDS seq >KRH71083
ATGGGATATATTGGGGCTCATGGTGTTGCAGCTCTGCACAGATATAAATATAGTGGAGTAGATCATTCCTACGTGGCCAA
ATATGTACTACAACCCTTTTGGAGTCGCTTTGTTAATTTTTTCCCCCTATGGATGCCTCCAAACATGATAACTCTTATGG
GATTTATGTTCTTACTAGTGTCTGCATTGCTTGGTTATATATACTCCCCACAATTGGACACACCTCCTCCAAGATGGGTT
CATTTTGCTCATGGACTACTTCTGTTTTTATACCAGACATTTGATGCTGTTGACGGGAAGCAAGCTAGACGAACAAATTC
CTCAAGCCCATTGGGGGAGCTCTTTGATCATGGGTGTGACGCACTTGCTTGCACATTTGAAGCATTGGCTTTTGGGAGCA
CAGCCATGTGTGGAAGAAATACTTTCTGGTGGTGGTTAATATCTGCAATTACATTTTATGGTGCAACCTGGGAGCACTAT
TTCACCAATACACTTATACTGCCTGTTATAAATGGGCCTACAGAGGGTCTTATGATAATATACATCTGTCACTTTTTCAC
TGCTATCGTGGGTGCTGAGTGGTGGGTTCAGCAATTTGGGAAGTCTTTGCCATTTTTAAATTGGCTTCCTTATCTTGCGG
GAATCCCAACATTCAAAGCTATATTGTGTCTAATGATAGCTTTTGGTGTTACACCAACAGTCACATGCAATGTTAGTAAT
GTTTATAAGGTTGTGAAGGCAAAGAACGGAAGCATGCCACTTGCATTGGCAATGCTTTACCCATTTGTTGTACTCGTGGG
AGGAGTGCTTGTGTGGGATTATTTGTCGCCATTAGACATCATGGGTAGATATCCACATTTAGTTGTCATAGGAACTGGAC
TTACTTTCGGTTATCTTGTGGGAAGGATGATTTTGGCACACTTATGTGATGAACCTAAGGGTCTGAAAACTGGGATGTGC
ATGTCCCTCATGTTTCTCCCATTGGCCATTGCAAATGTACTTGCATCCAGGCTAAATGATGGGGTTCCTTTAGTAGATGA
GAGACTAGTTCTTCTTGGTTACTGTGCATTTTCAGTGACACTATACTTGCATTTTGCGACATCAGTCATTCATGAAATTA
CCAATGCCCTGGGAATATATTGTTTCAGGATAACTAGGAAGGAAGCTTGA
Microexon DNA seq TCCAAACATG
Microexon Amino Acid seq PPNM
Microexon-tag DNA Seq CTACAACCCTTTTGGAGTCGCTTTGTTAATTTTTTCCCCCTATGGATGCCTCCAAACATGATAACTCTTATGGGATTTATGTTCTTACTAGTGTCTGCATTGCTTGGT
Microexon-tag Amino Acid seq LQPFWSRFVNFFPLWMPPNMITLMGFMFLLVSALLG
Transcript ID Gm.30680.1
Gene ID Gm.30680
Gene Name NA
Pfam domain motif CDP-OH_P_transf
Motif E-value 7.6e-17
Motif start 47
Motif end 120
Protein seq >Gm.30680.1
MGYIGAHGVAALHRYKYSGVDHSYVAKYVLQPFWSRFVNFFPLWMPPNMITLMGFMFLLVSALLGYIYSPQLDTPPPRWV
HFAHGLLLFLYQTFDAVDGKQARRTNSSSPLGELFDHGCDALACTFEALAFGSTAMCGRNTFWWWLISAITFYGATWEHY
FTNTLILPVINGPTEGLMIIYICHFFTAIVGAEWWVQQFGKSLPFLNWLPYLAGIPTFKAILCLMIAFGVTPTVTCNVSN
VYKVVKAKNGSMPLALAMLYPFVVLVGGVLVWDYLSPLDIMGRYPHLVVIGTGLTFGYLVGRMILAHLCDEPKGLKTGMC
MSLMFLPLAIANVLASRLNDGVPLVDERLVLLGYCAFSVTLYLHFATSVIHEITNALGIYCFRITRKEA*
CDS seq >Gm.30680.1
ATGGGATATATTGGGGCTCATGGTGTTGCAGCTCTGCACAGATATAAATATAGTGGAGTAGATCATTCCTACGTGGCCAA
ATATGTACTACAACCCTTTTGGAGTCGCTTTGTTAATTTTTTCCCCCTATGGATGCCTCCAAACATGATAACTCTTATGG
GATTTATGTTCTTACTAGTGTCTGCATTGCTTGGTTATATATACTCCCCACAATTGGACACACCTCCTCCAAGATGGGTT
CATTTTGCTCATGGACTACTTCTGTTTTTATACCAGACATTTGATGCTGTTGACGGGAAGCAAGCTAGACGAACAAATTC
CTCAAGCCCATTGGGGGAGCTCTTTGATCATGGGTGTGACGCACTTGCTTGCACATTTGAAGCATTGGCTTTTGGGAGCA
CAGCCATGTGTGGAAGAAATACTTTCTGGTGGTGGTTAATATCTGCAATTACATTTTATGGTGCAACCTGGGAGCACTAT
TTCACCAATACACTTATACTGCCTGTTATAAATGGGCCTACAGAGGGTCTTATGATAATATACATCTGTCACTTTTTCAC
TGCTATCGTGGGTGCTGAGTGGTGGGTTCAGCAATTTGGGAAGTCTTTGCCATTTTTAAATTGGCTTCCTTATCTTGCGG
GAATCCCAACATTCAAAGCTATATTGTGTCTAATGATAGCTTTTGGTGTTACACCAACAGTCACATGCAATGTTAGTAAT
GTTTATAAGGTTGTGAAGGCAAAGAACGGAAGCATGCCACTTGCATTGGCAATGCTTTACCCATTTGTTGTACTCGTGGG
AGGAGTGCTTGTGTGGGATTATTTGTCGCCATTAGACATCATGGGTAGATATCCACATTTAGTTGTCATAGGAACTGGAC
TTACTTTCGGTTATCTTGTGGGAAGGATGATTTTGGCACACTTATGTGATGAACCTAAGGGTCTGAAAACTGGGATGTGC
ATGTCCCTCATGTTTCTCCCATTGGCCATTGCAAATGTACTTGCATCCAGGCTAAATGATGGGGTTCCTTTAGTAGATGA
GAGACTAGTTCTTCTTGGTTACTGTGCATTTTCAGTGACACTATACTTGCATTTTGCGACATCAGTCATTCATGAAATTA
CCAATGCCCTGGGAATATATTGTTTCAGGATAACTAGGAAGGAAGCTTGA