Basic Info

Gene ID OGI # | Score   Accession | Assembly | Annotation Location Links
OsN22_10G013890 OGI:10040130 | 16/16 N22 | OsN22RS2 | Gramene(+IsoSeq) Chr10:18735864-18740683
Gene Symbol -
DNA seq

GCGACCAACCAGGCTGCCTCCAAAGCAGCCAAACCCAAGCCACTGACCCGCCGCCGCCGCCGCCGCTGCCAGATCTCGCCAATGCCGCGGAGACACGCCGCCCTCCGCCTGCTGCTGCTGCTGGTGGTGGTCGCCGCGGCGGATGCGGCGACGGAGGCCGACGCGCTGCTGGCGTGGAAGGCCGGCCTGCAGGACGGCGCGGCCGCGCTGTCCGGGTGGAGCCGCGCCGCGCCGGTGTGCGCGTGGCGCGGCGTGGCCTGCGACGCCTCCGCCGGCGGCGCCCGCGTCACTTCGCTCCGGCTCAGGGGCGGCGGCCTCGGCGGCGGCCTCGACGCGCTCGACTTCGCGGCGCTCCCGGCGCTGGCCGAGCTCGACCTCAACGGGAACAACTTCACCGGCGCCATCCCGGCGAGCATCTCGCGGCTGCGCTCGCTGGCCTCGCTCGACCTCGGCAATAATGGGTTCACCGACTCCATCCCGCCGCAGCTCGGCGACCTCTCCGGCCTCGTCGACCTCCGTCTCTACAACAACAACCTCGTCGGCGCCATCCCGCACCAGCTCAGCCGCCTCCCCAAGATTGCCCACTTCGACCTGGGAGCAAACTACCTCACCGACCAGGACTTCGCCAAGTTCTCGCCGATGCCCACCGTCACGTTCATGTCGCTCTACCTCAACTACATCAATGGCAGCTTCCCGGACTTCATCCTCAAGAGCGGCAACGTCACCTACCTCGACCTGTCGCAGAACACTCTGTTCGGGCAGATACCGAACACGCTGCCGGAGAAGCTCCCGAATTTGAGGTACCTCAACCTGTCCATCAATGCGTTCTCCGGCCCGATTCCGGCGTCGCTCGGGAAGTTGACGATGCTGCAGGACCTGCGGATGGCCGGCAACAATCTCACCGGCGGCGTCCCGGAGTTCCTCGGGTCGATGCCGCAGTTGAGGATTCTTGAACTCGGCGACAACCAGCTCGGCGGGGCGATCCCGCCGGTTCTTGGCCGGCTCCAGATGCTGCAGCGGCTCGACATCAAGAACTCCAGCCTTGTCTCAACTCTGCCATCGCAGCTGGGAAATCTGAGGAATCTCACTTTCTTCGAGCTGTCCTTGAACCAGCTCTCCGGTGGCTTGCCGCCGGAGTTTGCCGGGATGCGGGCAATGCAGGACTTCGGCATTTCCACGAACAGCCTCACCGGTGAGATCCCGCCGTCGTTGTTCACGAGCTGGCCGGAGCTCAAATCCTTCCAAGTGCAGAACAACTCGTTGACCGGCAAGATTCCGCCGGAGCTCGGCAAGGCGAAGAAACTTCAATACCTGTATCTATTCACCAACCACCTTACCGGCTCCATCCCGGCAGAGCTCGGCGAGCTGGAGAACCTGATACAGCTGGATTTGTCGGTGAACTCGCTCACCGGACCGATCCCCAGCTCGCTCGGCAAGCTCAAGCAGCTCATGAAGTTGGCGCTATTCTTCAACAATCTCACCGGCGTAATCCCGCCGGAGATCGGCAACATGACGGCGTTGCAAAGCCTCGACGTCAACACCAACAGTCTGCACGGCGAGCTGCCAGCCACCATCACGGACCTCAGGAGCCTCCAGTACCTCGCCGTGTTCGACAACCACATGAGCGGCGCCATCCCGGCTGACCTCGGCAAGGGCCTGGCCTTGCAGCACGTGAGCTTCACCAACAACAGCTTCTCCGGCGAGCTGCCGCGCCACATCTGCGACGGCTTCGCGCTGGACCACCTCACGGCGAACTACAACAACTTCACCGGCGCGCTGCCGCCGTGCCTGAAGAACTGCACGAAGCTGGTCCGTGTCCGGCTGGAGGAGAACCACTTCACCGGCGACATCTCGGAGGCCTTCGGCGTGCACCCCAGCCTGGAGTACCTGGACGTCTCCGGCAGCAAGCTCACCGGCGAGCTGTCCTCTGACTGGGGACAGTGCACCAACCTCACGCTCCTGCGCATGGACGGCAATCGCATATCCGGCCGCATTCCTGAGGCATTTGGGAGCATGACAAGATTGCAGATTCTCAGCTTGGCTGGAAACAATCTGACAGGAGGGATTCCACCTGTGTTGGGAGAACTCAGCATCTTCAATCTCAACCTGAGCCATAACTCATTTTCCGGGCCGATTCCGGGGAGCTTGAGCAACAATTCCAAGCTTCAGAAAGTCGATTTGTCAGGGAACATGCTTGATGGGACGATACCAGTTGCCATTAGCATGCTTGATGCTCTGATATTGCTTGATTTGAGCAAGAACAGGTTGTCAGGGGAGATACCAAGTGAGCTTGGTAATCTGGCTCAGCTGCAGATCCTGCTTGATTTGAGCAGCAATTCTCTATCAGGCGCGATCCCTCCAAATCTTGAGAAGCTGATAACTCTGCAGAGACTGAACTTATCACACAATGAGCTCAGTGGTTCGATCCCGGCAGGGTTTTCTCGCATGTCAAGCCTCGAATCAGTTGATTTCTCTTATAATCGACTCACCGGGAGTATACCGTCAGGGAATGTTTTCCAGAATGCTTCAGCTTCTGCATATGTTGGGAATTCGGGGCTCTGTGGTGATGTGCAAGGTCTAACTCCTTGTGACATCAGTTCTACCGGATCATCTTCTGGGCATCACAAGAGAGTAGTCATTGCAACAGTTGTGTCAGTAGTTGGAGTGGTGTTACTACTAGCTGTTGTTACTTGCATCATACTGTTATGCAGGAGGAGGCCTAGAGAGAAGAAAGAGGTGGAATCTAACACCAATTATTCATATGAGTCCACAATCTGGGAAAAGGAAGGCAAGTTCACATTCTTCGACATCGTGAACGCCACGGACAACTTCAATGAAACCTTCTGCATCGGCAAAGGAGGGTTCGGAAGTGTCTACCGGGCTGAGCTCTCCAGTGGGCAGGTTGTGGCCGTCAAACGCTTCCATGTCGCCAACACGGGTGACATATCGGATGTGAACAAGAAGAGCTTCGAGAACGAGATCAAGGCGCTAACGGAGGTCCGCCACCGCAACATTGTCAAGCTCCATGGATTCTGCACTAGTGGTGACTACATGTACCTGGTGTATGAGTACTTGGAAAGGGGCAGCTTGGGGAAGACATTGTATGGGGAGGAAGGGAAGAAGAAGATGGATTGGGGCATGAGGGTGAAGGTGGTGCAGGGGCTGGCTCATGCCCTGGCCTACTTGCATCATGACTGCAATCCAGCCATCGTTCATCGCGATATTACTGTTAATAATATCCTGCTTGAGTCAGACTTTGAGCCGCGCTTGTGTGATTTTGGCACGGCGAAGTTGCTTGGGGGTGCATCGACGAACTGGACTTCTGTGGCAGGATCATATGGATACATGGCTCCAGGTACTTTTCTTAAATTTGAACATTTTTTTTCCTTAAAATGTCACATGTTTCTTATGCATACAATTTTTGAAATGTAGCTTATAATATCAAATCCTAGTTATACTTCAAAGTGCTTCAGTGAGATCCTTATGGTAGCACCAAATAGCATTTGGGATGTTTCAGTCATAATTAACGAAAAAACAGATGGCTAAATTTAGTTCGATACTCCCAGGTAGTAATGTAGTGTATGATAAACTGTCAAACATTTCTGACCATAAAAGAACATTTTGTGCAAGTAACTACCAAATGAAGAGCAGTAGTTATGAAATATAGTTGTCGAATTGTCTGTTGTTTAAAAAAGGAAAAAATGAGAGAAAGAAACTCAGATCCGATCTATTTAAGATTGTTTTGCACATTATTGTGATTCATGAAAGTACTGAAGTCATTACTGTAAGTAGAGTGGTCATTATTGAATGAGTAATTCTACAGTCCTTGAGGAGGTACCATGAGGTACCAAAAATTTAGTGTAAAATTTGGTACCTCATGGTACCTCATAGTACCTAGCTACCAAGAGGTACCAAATTTATAATAGAAAAAATGGTACCTCATGGTATCTCTCAAGGACCGTAAAATTGCTCTTATTGAATAGATTGCCACATACTCCTGCCCTGAAGATTTGCAGAACTTTGAAAGATTGTCATTGGGAAAAGGAACTGCTCAAATTCCGACAAGTACGGCACCGCACCATTAACACTTACCGACTTCGATTATTTCTTGCAGAATTCGCATACACGATGAGGGTGACGGAGAAGTGCGATGTGTATAGCTTTGGCGTGGTTGCGCTAGAGGTCATGATGGGAAAGCACCCAGGTGACCTCTTAACATCCCTGCCAGCCATCTCATCATCAGAAGAAGATGATCTACTGCTCAAGGACATACTAGACCAGCGGCTGGATGCTCCAACAGGACAGCTCGCAGAAGAGGTCGTGTTCATCGTGAGAATCGCACTTGGTTGCACAAGGGCGAACCCTGAATCCAGGCCTTCCATGAGATCTGTAGCGCAGGAGATTTCTGCTCATACTCAAGCCTACCTCTCTGAACCATTCAAACTGATCACAATTAGCAAGCTAACAGACTGCCAGAAGTGAATATATCTCTGTGCAGAGATGTAAAGCACCAGGAGGGGAGGAAGGGAACTTCGCAGTTAGTGATTTGTAAGATGCATTCTCAGATTATATTAATGCCAAGGGTAAGCTTAGGATAGTATATTACATTAACTGCTGATAAATATATAGCGAAATTATTCTGTACACTGAATCACCAAAACCTGTCTTTCATCAACTTTGTACAATTGTATTGCTCGTTGTTACTATCCCTGTGGAAATATTATTATTTTCCCCCCATAGGCTAAACAATAAACTTGTAAATGTAAGACAGAGAAGAGAAATGGAGAAATTTATGACTTTGCCATATAATTCTCTGAGAG

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CDS seq

ATGCCGCGGAGACACGCCGCCCTCCGCCTGCTGCTGCTGCTGGTGGTGGTCGCCGCGGCGGATGCGGCGACGGAGGCCGACGCGCTGCTGGCGTGGAAGGCCGGCCTGCAGGACGGCGCGGCCGCGCTGTCCGGGTGGAGCCGCGCCGCGCCGGTGTGCGCGTGGCGCGGCGTGGCCTGCGACGCCTCCGCCGGCGGCGCCCGCGTCACTTCGCTCCGGCTCAGGGGCGGCGGCCTCGGCGGCGGCCTCGACGCGCTCGACTTCGCGGCGCTCCCGGCGCTGGCCGAGCTCGACCTCAACGGGAACAACTTCACCGGCGCCATCCCGGCGAGCATCTCGCGGCTGCGCTCGCTGGCCTCGCTCGACCTCGGCAATAATGGGTTCACCGACTCCATCCCGCCGCAGCTCGGCGACCTCTCCGGCCTCGTCGACCTCCGTCTCTACAACAACAACCTCGTCGGCGCCATCCCGCACCAGCTCAGCCGCCTCCCCAAGATTGCCCACTTCGACCTGGGAGCAAACTACCTCACCGACCAGGACTTCGCCAAGTTCTCGCCGATGCCCACCGTCACGTTCATGTCGCTCTACCTCAACTACATCAATGGCAGCTTCCCGGACTTCATCCTCAAGAGCGGCAACGTCACCTACCTCGACCTGTCGCAGAACACTCTGTTCGGGCAGATACCGAACACGCTGCCGGAGAAGCTCCCGAATTTGAGGTACCTCAACCTGTCCATCAATGCGTTCTCCGGCCCGATTCCGGCGTCGCTCGGGAAGTTGACGATGCTGCAGGACCTGCGGATGGCCGGCAACAATCTCACCGGCGGCGTCCCGGAGTTCCTCGGGTCGATGCCGCAGTTGAGGATTCTTGAACTCGGCGACAACCAGCTCGGCGGGGCGATCCCGCCGGTTCTTGGCCGGCTCCAGATGCTGCAGCGGCTCGACATCAAGAACTCCAGCCTTGTCTCAACTCTGCCATCGCAGCTGGGAAATCTGAGGAATCTCACTTTCTTCGAGCTGTCCTTGAACCAGCTCTCCGGTGGCTTGCCGCCGGAGTTTGCCGGGATGCGGGCAATGCAGGACTTCGGCATTTCCACGAACAGCCTCACCGGTGAGATCCCGCCGTCGTTGTTCACGAGCTGGCCGGAGCTCAAATCCTTCCAAGTGCAGAACAACTCGTTGACCGGCAAGATTCCGCCGGAGCTCGGCAAGGCGAAGAAACTTCAATACCTGTATCTATTCACCAACCACCTTACCGGCTCCATCCCGGCAGAGCTCGGCGAGCTGGAGAACCTGATACAGCTGGATTTGTCGGTGAACTCGCTCACCGGACCGATCCCCAGCTCGCTCGGCAAGCTCAAGCAGCTCATGAAGTTGGCGCTATTCTTCAACAATCTCACCGGCGTAATCCCGCCGGAGATCGGCAACATGACGGCGTTGCAAAGCCTCGACGTCAACACCAACAGTCTGCACGGCGAGCTGCCAGCCACCATCACGGACCTCAGGAGCCTCCAGTACCTCGCCGTGTTCGACAACCACATGAGCGGCGCCATCCCGGCTGACCTCGGCAAGGGCCTGGCCTTGCAGCACGTGAGCTTCACCAACAACAGCTTCTCCGGCGAGCTGCCGCGCCACATCTGCGACGGCTTCGCGCTGGACCACCTCACGGCGAACTACAACAACTTCACCGGCGCGCTGCCGCCGTGCCTGAAGAACTGCACGAAGCTGGTCCGTGTCCGGCTGGAGGAGAACCACTTCACCGGCGACATCTCGGAGGCCTTCGGCGTGCACCCCAGCCTGGAGTACCTGGACGTCTCCGGCAGCAAGCTCACCGGCGAGCTGTCCTCTGACTGGGGACAGTGCACCAACCTCACGCTCCTGCGCATGGACGGCAATCGCATATCCGGCCGCATTCCTGAGGCATTTGGGAGCATGACAAGATTGCAGATTCTCAGCTTGGCTGGAAACAATCTGACAGGAGGGATTCCACCTGTGTTGGGAGAACTCAGCATCTTCAATCTCAACCTGAGCCATAACTCATTTTCCGGGCCGATTCCGGGGAGCTTGAGCAACAATTCCAAGCTTCAGAAAGTCGATTTGTCAGGGAACATGCTTGATGGGACGATACCAGTTGCCATTAGCATGCTTGATGCTCTGATATTGCTTGATTTGAGCAAGAACAGGTTGTCAGGGGAGATACCAAGTGAGCTTGGTAATCTGGCTCAGCTGCAGATCCTGCTTGATTTGAGCAGCAATTCTCTATCAGGCGCGATCCCTCCAAATCTTGAGAAGCTGATAACTCTGCAGAGACTGAACTTATCACACAATGAGCTCAGTGGTTCGATCCCGGCAGGGTTTTCTCGCATGTCAAGCCTCGAATCAGTTGATTTCTCTTATAATCGACTCACCGGGAGTATACCGTCAGGGAATGTTTTCCAGAATGCTTCAGCTTCTGCATATGTTGGGAATTCGGGGCTCTGTGGTGATGTGCAAGGTCTAACTCCTTGTGACATCAGTTCTACCGGATCATCTTCTGGGCATCACAAGAGAGTAGTCATTGCAACAGTTGTGTCAGTAGTTGGAGTGGTGTTACTACTAGCTGTTGTTACTTGCATCATACTGTTATGCAGGAGGAGGCCTAGAGAGAAGAAAGAGGTGGAATCTAACACCAATTATTCATATGAGTCCACAATCTGGGAAAAGGAAGGCAAGTTCACATTCTTCGACATCGTGAACGCCACGGACAACTTCAATGAAACCTTCTGCATCGGCAAAGGAGGGTTCGGAAGACAGCTCGCAGAAGAGGTCGTGTTCATCGTGAGAATCGCACTTGGTTGCACAAGGGCGAACCCTGAATCCAGGCCTTCCATGAGATCTGTAGCGCAGGAGATTTCTGCTCATACTCAAGCCTACCTCTCTGAACCATTCAAACTGATCACAATTAGCAAGCTAACAGACTGCCAGAAGTGA

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Protein seq

MPRRHAALRLLLLLVVVAAADAATEADALLAWKAGLQDGAAALSGWSRAAPVCAWRGVACDASAGGARVTSLRLRGGGLGGGLDALDFAALPALAELDLNGNNFTGAIPASISRLRSLASLDLGNNGFTDSIPPQLGDLSGLVDLRLYNNNLVGAIPHQLSRLPKIAHFDLGANYLTDQDFAKFSPMPTVTFMSLYLNYINGSFPDFILKSGNVTYLDLSQNTLFGQIPNTLPEKLPNLRYLNLSINAFSGPIPASLGKLTMLQDLRMAGNNLTGGVPEFLGSMPQLRILELGDNQLGGAIPPVLGRLQMLQRLDIKNSSLVSTLPSQLGNLRNLTFFELSLNQLSGGLPPEFAGMRAMQDFGISTNSLTGEIPPSLFTSWPELKSFQVQNNSLTGKIPPELGKAKKLQYLYLFTNHLTGSIPAELGELENLIQLDLSVNSLTGPIPSSLGKLKQLMKLALFFNNLTGVIPPEIGNMTALQSLDVNTNSLHGELPATITDLRSLQYLAVFDNHMSGAIPADLGKGLALQHVSFTNNSFSGELPRHICDGFALDHLTANYNNFTGALPPCLKNCTKLVRVRLEENHFTGDISEAFGVHPSLEYLDVSGSKLTGELSSDWGQCTNLTLLRMDGNRISGRIPEAFGSMTRLQILSLAGNNLTGGIPPVLGELSIFNLNLSHNSFSGPIPGSLSNNSKLQKVDLSGNMLDGTIPVAISMLDALILLDLSKNRLSGEIPSELGNLAQLQILLDLSSNSLSGAIPPNLEKLITLQRLNLSHNELSGSIPAGFSRMSSLESVDFSYNRLTGSIPSGNVFQNASASAYVGNSGLCGDVQGLTPCDISSTGSSSGHHKRVVIATVVSVVGVVLLLAVVTCIILLCRRRPREKKEVESNTNYSYESTIWEKEGKFTFFDIVNATDNFNETFCIGKGGFGRQLAEEVVFIVRIALGCTRANPESRPSMRSVAQEISAHTQAYLSEPFKLITISKLTDCQK

Function Probable leucine-rich repeat receptor-like protein kinase At1g35710 [UniProtKB/Swiss-Prot:Q9LP24]

Transcripts

Gene Transcript Chromosome Start End Strand Source
OsN22_10G013890 OsN22_10G013890_01 Chr10 18735945 18740345 + NAM
CDS seq

ATGCCGCGGAGACACGCCGCCCTCCGCCTGCTGCTGCTGCTGGTGGTGGTCGCCGCGGCGGATGCGGCGACGGAGGCCGACGCGCTGCTGGCGTGGAAGGCCGGCCTGCAGGACGGCGCGGCCGCGCTGTCCGGGTGGAGCCGCGCCGCGCCGGTGTGCGCGTGGCGCGGCGTGGCCTGCGACGCCTCCGCCGGCGGCGCCCGCGTCACTTCGCTCCGGCTCAGGGGCGGCGGCCTCGGCGGCGGCCTCGACGCGCTCGACTTCGCGGCGCTCCCGGCGCTGGCCGAGCTCGACCTCAACGGGAACAACTTCACCGGCGCCATCCCGGCGAGCATCTCGCGGCTGCGCTCGCTGGCCTCGCTCGACCTCGGCAATAATGGGTTCACCGACTCCATCCCGCCGCAGCTCGGCGACCTCTCCGGCCTCGTCGACCTCCGTCTCTACAACAACAACCTCGTCGGCGCCATCCCGCACCAGCTCAGCCGCCTCCCCAAGATTGCCCACTTCGACCTGGGAGCAAACTACCTCACCGACCAGGACTTCGCCAAGTTCTCGCCGATGCCCACCGTCACGTTCATGTCGCTCTACCTCAACTACATCAATGGCAGCTTCCCGGACTTCATCCTCAAGAGCGGCAACGTCACCTACCTCGACCTGTCGCAGAACACTCTGTTCGGGCAGATACCGAACACGCTGCCGGAGAAGCTCCCGAATTTGAGGTACCTCAACCTGTCCATCAATGCGTTCTCCGGCCCGATTCCGGCGTCGCTCGGGAAGTTGACGATGCTGCAGGACCTGCGGATGGCCGGCAACAATCTCACCGGCGGCGTCCCGGAGTTCCTCGGGTCGATGCCGCAGTTGAGGATTCTTGAACTCGGCGACAACCAGCTCGGCGGGGCGATCCCGCCGGTTCTTGGCCGGCTCCAGATGCTGCAGCGGCTCGACATCAAGAACTCCAGCCTTGTCTCAACTCTGCCATCGCAGCTGGGAAATCTGAGGAATCTCACTTTCTTCGAGCTGTCCTTGAACCAGCTCTCCGGTGGCTTGCCGCCGGAGTTTGCCGGGATGCGGGCAATGCAGGACTTCGGCATTTCCACGAACAGCCTCACCGGTGAGATCCCGCCGTCGTTGTTCACGAGCTGGCCGGAGCTCAAATCCTTCCAAGTGCAGAACAACTCGTTGACCGGCAAGATTCCGCCGGAGCTCGGCAAGGCGAAGAAACTTCAATACCTGTATCTATTCACCAACCACCTTACCGGCTCCATCCCGGCAGAGCTCGGCGAGCTGGAGAACCTGATACAGCTGGATTTGTCGGTGAACTCGCTCACCGGACCGATCCCCAGCTCGCTCGGCAAGCTCAAGCAGCTCATGAAGTTGGCGCTATTCTTCAACAATCTCACCGGCGTAATCCCGCCGGAGATCGGCAACATGACGGCGTTGCAAAGCCTCGACGTCAACACCAACAGTCTGCACGGCGAGCTGCCAGCCACCATCACGGACCTCAGGAGCCTCCAGTACCTCGCCGTGTTCGACAACCACATGAGCGGCGCCATCCCGGCTGACCTCGGCAAGGGCCTGGCCTTGCAGCACGTGAGCTTCACCAACAACAGCTTCTCCGGCGAGCTGCCGCGCCACATCTGCGACGGCTTCGCGCTGGACCACCTCACGGCGAACTACAACAACTTCACCGGCGCGCTGCCGCCGTGCCTGAAGAACTGCACGAAGCTGGTCCGTGTCCGGCTGGAGGAGAACCACTTCACCGGCGACATCTCGGAGGCCTTCGGCGTGCACCCCAGCCTGGAGTACCTGGACGTCTCCGGCAGCAAGCTCACCGGCGAGCTGTCCTCTGACTGGGGACAGTGCACCAACCTCACGCTCCTGCGCATGGACGGCAATCGCATATCCGGCCGCATTCCTGAGGCATTTGGGAGCATGACAAGATTGCAGATTCTCAGCTTGGCTGGAAACAATCTGACAGGAGGGATTCCACCTGTGTTGGGAGAACTCAGCATCTTCAATCTCAACCTGAGCCATAACTCATTTTCCGGGCCGATTCCGGGGAGCTTGAGCAACAATTCCAAGCTTCAGAAAGTCGATTTGTCAGGGAACATGCTTGATGGGACGATACCAGTTGCCATTAGCATGCTTGATGCTCTGATATTGCTTGATTTGAGCAAGAACAGGTTGTCAGGGGAGATACCAAGTGAGCTTGGTAATCTGGCTCAGCTGCAGATCCTGCTTGATTTGAGCAGCAATTCTCTATCAGGCGCGATCCCTCCAAATCTTGAGAAGCTGATAACTCTGCAGAGACTGAACTTATCACACAATGAGCTCAGTGGTTCGATCCCGGCAGGGTTTTCTCGCATGTCAAGCCTCGAATCAGTTGATTTCTCTTATAATCGACTCACCGGGAGTATACCGTCAGGGAATGTTTTCCAGAATGCTTCAGCTTCTGCATATGTTGGGAATTCGGGGCTCTGTGGTGATGTGCAAGGTCTAACTCCTTGTGACATCAGTTCTACCGGATCATCTTCTGGGCATCACAAGAGAGTAGTCATTGCAACAGTTGTGTCAGTAGTTGGAGTGGTGTTACTACTAGCTGTTGTTACTTGCATCATACTGTTATGCAGGAGGAGGCCTAGAGAGAAGAAAGAGGTGGAATCTAACACCAATTATTCATATGAGTCCACAATCTGGGAAAAGGAAGGCAAGTTCACATTCTTCGACATCGTGAACGCCACGGACAACTTCAATGAAACCTTCTGCATCGGCAAAGGAGGGTTCGGAAGACAGCTCGCAGAAGAGGTCGTGTTCATCGTGAGAATCGCACTTGGTTGCACAAGGGCGAACCCTGAATCCAGGCCTTCCATGAGATCTGTAGCGCAGGAGATTTCTGCTCATACTCAAGCCTACCTCTCTGAACCATTCAAACTGATCACAATTAGCAAGCTAACAGACTGCCAGAAGTGA

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Protein seq

MPRRHAALRLLLLLVVVAAADAATEADALLAWKAGLQDGAAALSGWSRAAPVCAWRGVACDASAGGARVTSLRLRGGGLGGGLDALDFAALPALAELDLNGNNFTGAIPASISRLRSLASLDLGNNGFTDSIPPQLGDLSGLVDLRLYNNNLVGAIPHQLSRLPKIAHFDLGANYLTDQDFAKFSPMPTVTFMSLYLNYINGSFPDFILKSGNVTYLDLSQNTLFGQIPNTLPEKLPNLRYLNLSINAFSGPIPASLGKLTMLQDLRMAGNNLTGGVPEFLGSMPQLRILELGDNQLGGAIPPVLGRLQMLQRLDIKNSSLVSTLPSQLGNLRNLTFFELSLNQLSGGLPPEFAGMRAMQDFGISTNSLTGEIPPSLFTSWPELKSFQVQNNSLTGKIPPELGKAKKLQYLYLFTNHLTGSIPAELGELENLIQLDLSVNSLTGPIPSSLGKLKQLMKLALFFNNLTGVIPPEIGNMTALQSLDVNTNSLHGELPATITDLRSLQYLAVFDNHMSGAIPADLGKGLALQHVSFTNNSFSGELPRHICDGFALDHLTANYNNFTGALPPCLKNCTKLVRVRLEENHFTGDISEAFGVHPSLEYLDVSGSKLTGELSSDWGQCTNLTLLRMDGNRISGRIPEAFGSMTRLQILSLAGNNLTGGIPPVLGELSIFNLNLSHNSFSGPIPGSLSNNSKLQKVDLSGNMLDGTIPVAISMLDALILLDLSKNRLSGEIPSELGNLAQLQILLDLSSNSLSGAIPPNLEKLITLQRLNLSHNELSGSIPAGFSRMSSLESVDFSYNRLTGSIPSGNVFQNASASAYVGNSGLCGDVQGLTPCDISSTGSSSGHHKRVVIATVVSVVGVVLLLAVVTCIILLCRRRPREKKEVESNTNYSYESTIWEKEGKFTFFDIVNATDNFNETFCIGKGGFGRQLAEEVVFIVRIALGCTRANPESRPSMRSVAQEISAHTQAYLSEPFKLITISKLTDCQK

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Gene Transcript Chromosome Start End Strand Source
OsN22_10G013890 OsN22_10G013890_02 Chr10 18735864 18740683 + IsoSeq
CDS seq

ATGCGGCGACGGAGGCCGACGCGCTGCTGGCGTGGAAGGCCGGCCTGCAGGACGGCGCGGCCGCGCTGTCCGGGTGGAGCCGCGCCGCGCCGGTGTGCGCGTGGCGCGGCGTGGCCTGCGACGCCTCCGCCGGCGGCGCCCGCGTCACTTCGCTCCGGCTCAGGGGCGGCGGCCTCGGCGGCGGCCTCGACGCGCTCGACTTCGCGGCGCTCCCGGCGCTGGCCGAGCTCGACCTCAACGGGAACAACTTCACCGGCGCCATCCCGGCGAGCATCTCGCGGCTGCGCTCGCTGGCCTCGCTCGACCTCGGCAATAATGGGTTCACCGACTCCATCCCGCCGCAGCTCGGCGACCTCTCCGGCCTCGTCGACCTCCGTCTCTACAACAACAACCTCGTCGGCGCCATCCCGCACCAGCTCAGCCGCCTCCCCAAGATTGCCCACTTCGACCTGGGAGCAAACTACCTCACCGACCAGGACTTCGCCAAGTTCTCGCCGATGCCCACCGTCACGTTCATGTCGCTCTACCTCAACTACATCAATGGCAGCTTCCCGGACTTCATCCTCAAGAGCGGCAACGTCACCTACCTCGACCTGTCGCAGAACACTCTGTTCGGGCAGATACCGAACACGCTGCCGGAGAAGCTCCCGA

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Protein seq

MRRRRPTRCWRGRPACRTARPRCPGGAAPRRCARGAAWPATPPPAAPASLRSGSGAAASAAASTRSTSRRSRRWPSSTSTGTTSPAPSRRASRGCARWPRSTSAIMGSPTPSRRSSATSPASSTSVSTTTTSSAPSRTSSAASPRLPTSTWEQTTSPTRTSPSSRRCPPSRSCRSTSTTSMAASRTSSSRAATSPTSTCRRTLCSGRYRTRCRRSSR

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Event Type Chromosome Start End Strand Alternative mRNAs Total mRNAs Source

Expression

Leaf Root Panicle
FPKM 0.0 2.874778 0.436312

Homologues

Genome & Annotation Homologs Type Expression(FPKM)
Leaf Root Panicle
Nipponbare | IRGSP 1.0 | Gramene(+IsoSeq) OsNip_10g0375400 SBH 0.0 0.0 0.0
Nipponbare | IRGSP 1.0 | MSU LOC_Os10g33040 RBH 0.170062 0.165877 0.317543
Nipponbare | IRGSP 1.0 | RAP-db Os10g0375400 SBH None None None
Azucena | AzucenaRS1 | Gramene(+IsoSeq) OsAzu_10g0013980 RBH 0.0 0.883551 0.213539
KETAN NANGKA | Os128077RS1 | Gramene(+IsoSeq) OsKeNa_10g0014190 RBH 0.0 0.531852 1.363117
CHAO MEO | Os132278RS1 | Gramene(+IsoSeq) OsCMeo_10g0013690 RBH 0.0 4.232080 1.245011
ARC 10497 | Os117425RS1 | Gramene(+IsoSeq) OsARC_10g0014050 RBH 0.0 0.229522 None
PR 106 | Os127742RS1 | Gramene(+IsoSeq) OsPr106_10g0013890 RBH 0.527505 17.328310 2.969724
Minghui 63 | MH63RS3 | HZAU OsMH63_10G0288800 SBH 0.137182 1.9143645 0.8113775
IR 64 | OsIR64RS1 | Gramene(+IsoSeq) OsIR64_10g0013920 RBH 0.023879 0.517790 0.473012
Zhenshan 97 | ZS97RS3 | HZAU OsZS97_10G0310300 SBH 0.5951745 0.3719285 0.127059
LIMA | Os127564RS1 | Gramene(+IsoSeq) OsLima_10g0013710 RBH 0.014096 0.0 None
KHAO YAI GUANG | Os127518RS1 | Gramene(+IsoSeq) OsKYG_10g0013590 RBH 0.042996 0.0 None
GOBOL SAIL | Os132424RS1 | Gramene(+IsoSeq) OsGoSa_10g0013910 RBH 0.0 8.310741 None
LIU XU | Os125827RS1 | Gramene(+IsoSeq) OsLiXu_10g0013620 RBH 0.0 0.0 0.342488
LARHA MUGAD | Os125619RS1 | Gramene(+IsoSeq) OsLaMu_10g0014160 RBH 0.0 4.299273 None
N22 | OsN22RS2 | Gramene(+IsoSeq) OsN22_01G012280 SBH 2.352120 10.527529 8.430974
NATEL BORO | Os127652RS1 | Gramene(+IsoSeq) OsNaBo_10g0013830 RBH 0.0 8.414880 2.298571
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Huazhong Agricultural University

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