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Tomato locus mitogen-activated protein kinase 10
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
New Edit Delete
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Locus | Solyc10g007500 |
Locus name | mitogen-activated protein kinase 10 |
Symbol | mapk10 |
Gene activity | |
Description | MAPK10 is a member of mitogen-activated protein kinase gene family of tomato. It plays an important role in mediating responses to biotic and abiotic stresses. |
Chromosome | 10 |
Arm |
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Registry name: | None | [Associate registry name] |
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Accession name:
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc10g007500.2 SL2.50ch10:1838376..1832683 (sequence from reverse strand)
TAAAAGGACCCCTCTATTTCTCAAATGCTCTTCTTCTTTCTCCTGTCTTCCTTTTCGTATCGGTTCTTCCGTCAATTCTC
TGTCTCTTCAGTCAATTACCATTAGATCTTCAAAACCCATTAAGGGTTTGTTCTGTATTTGAGTTTCTGTTCAGTTTTTT
TTCGAATTTTTTGGTATTTTTTGTTGTTTTTTGAGTAGTAGTGTGAGGGATCTTTGTGGGGTTCTTTAGAATTGGATGAG
TGAGCTGGTAGTGGAGTTTTTTCAGTTTGTTAAGCTCGTGAATTGGGGTAAAACGAAGAGGATTTTCGGTTTTGGTGATA
CGGAGCAGCTGCAGGTGGTGGAATTGAAGCTGATTTTTGATTAATTCTGGTTGTGGTGTTTGTAGTTTGGGGTTGATTTG
ATTTTGTGTAAGATCTGGGAAAAAATAGGAGAAAGTTGAAGTGGATATAGTGTAGGCATTTTTTGAGATTATTGGTGAAT
TGGGTTGTTGGGTATTCTCAGAATTATGATGCAACAAGATCATCGCAAGAAGGTTTTTTATCTCTTTCTCACTGTGAAAA
AATTGATTTTGTGTTACTCAAGAACCGAGGGTTTATCGGAAACAACCTCTCTACCTTTGGGGAGGTAGGGGTAAGGTCTG
TGAAAATTTACCCTCACTAGATTCTACTTGTGGGATTGCATTGGCTATGTTGTTGTTGTTGTTGCTGCTACTCAAGGAGA
GATCTTGAAGAAAGATGAGGGTGTTGTTCTTAAATTTTGCTTTTTGAGAGCTTAGAAGTTTTAGCTCAATAATGTTTGCA
TGAATTGAATATATAATCACCATAAGCAAAATTGAACTGAATCTAGCTGAAGAAATATGGGTTTAGTGTCAGTTGGAATT
CTTAATTTCTGGTCAGTTCTCTAAGTAAGTGTTTCGCAATAGATTTGGTTGAAATTTGAGGAAAAAAAACTGTTTTTGAA
GCTGAAGTTGTAAAATGGTATTTGGAAGTAAGAAGTTGTGATTGGACATGCATTTTAATTGTGAAGAAGTTGGTTTTGTG
TGTGGAAAAAGAATAATCACTTGATAAGCTGTTCTTGATCATCAAACTTGAAAAATCCTTCAAAAACTAACCAAAAGATC
ACTCCAATATATAACCAGACAATGTTTTGAAATGTTTCTTGAAAAAGAAAAGGAAAAAATCCCCATATCCATGCCCTTTC
CTCTAGTTTCTTGATTTTAAGAAGGATAAGTTTTTTCTAGAAAAAGTTCAGGCCCATATTGCTGTTAAAGAAAGCAGCTT
TATTAGGGTAGAAATTATTTTTGTTTTTGGAACTTGAGGGTATGTAGGTGAATCACTTAACTATTCTTCTATTTGTTGAT
GTTATTTAGTATTATTAAATCTCTATCTGCATGACCTTTATGTGTGAAAAAATGGTTCTTGGAATTTATGATTTTATTTG
TGTTTGAAGACAGCCTTCTAGTTACTCTTCTCTCATAGTTTTGAAGAATGTTATCAATTGCTTCTTAGGAAAAAGGCAAC
CTTATGATTAAGAAGGTTTCTTACTCTTTACTTCATGCTAGTTGGTCTATTTGTTGAAGGATATCAAGTTCTTATTTTCT
TGTCCTTTTTTTTTGGTTGTGAAAGTAGATCAACCTCTGCTTTCAGTTGACAACCATTCCTTGTTTTTCATACTGTAAAT
GGTTTGCTTATTAAGTGATACAAATCATATTTGTAACTTGGTTTGGTGGACTACCTTGTGGAAGTATAGTTCAAAAATAT
CAATGTAAAATTCCGTTGTTTCATAACAAATGCACTTGTCATTGGAAGTATTTATTTGGTACTTTCTTTAATGTTTCAGA
ATACCAAAGAAGTGGAGTTCTTTACAGAGTATGGAGAGGCAAATAGGTATAAAATCCTGGAAGTCGTAGGGAAGGGAAGC
TATGGAGTTGTTTGTGCTGCCATTGACACCCATACTGGAGAAAAAGTGGCAATTAAGAAAATAACTGATATTTTCGAGCA
CGCCTCTGATGCTATTCGAATTTTGCGCGAAATTAAATTGCTTAGACTTTTAAGGCATCCTGATATCGTGGACATCAAGA
GAATCATGTTACCACCTTCAAAACGAGACTTCAAAGATATTTATGTTGTTTTTGAGCTTATGGAGTCTGATCTTCACCAT
GTTATTAAGGCTAATGATGACTTGTCACATGAACACCATCGCTTTTTTCTATATCAGATGCTACGAGCACTGAAATATAT
GCACACAGGTAAATTATCTTGTGAATATGGTAGGTAACTAGTACTTTTCCCCCCCTCTCTGAGCGGGTACGAGGTATTCT
ATATTATCAATGTCTGACTTGTATGTGTCTGTTTCAGCGAATGTGTACCATCGAGATCTTAAGCCGAAAAATATATTGGC
AAATGCAAACTGTAAACTCAAAATATGTGACTTAGGATTGGCAAGGGTTTCATTCAGTGATACTCCAACCACAGCACTTT
GGACGGTATGTTTTCTTTAGATCTTTGTCCCATCCATGATCAATGTCAGTAATGGTGTTTTTATTATTCTTGATATTGGG
TAAACTTTACTTGGAAGTGCAAAATCATGCATTATTTATATCTTCAGTTTTTGATGTAATAATTTTTATTGACTGTGTCT
TTTGACACACCATGCAGGATTATGTTGCTACAAGGTGGTACAGGGCTCCTGAACTATGTGGATCTTTCTTTTCCAAGGTA
GTTCATGCTAACAATGTGCCACTTGCTCTGTCTTTTATTTAATAATTTCTTAGCAGGAATGGTAGTTTTTCGTGTAATAA
CAATGCACTCTTACGTCCCTTCGAATACATTCATCCCGGGGGTTTGGACAAGGAGAAGGGTATAGAGAGAAGCACCACCA
AAGATGGTGCACATAATTAGTTGAAATGGAAAGTTTACATGAACAGTTTTGTGTTCGATTCGTTTGTCCCTCTTAGGATT
GCAGGTTTGGAGATTCTGTAGTCAATCATTTTATGCACTAGGCCAGGGATTGAGCATAAGTTTTAGTTAGTTTTGATGCC
ATTGAAGTATCATGTATCGGTTCTTATTTTCCAATGGCTTTAGGAAGGCAAAAAGGTACTTGTCCCACTCTTCTTGCAGC
GTCTGATGTGCTGATGCTACTGTTAGAAACTGTGGTATTTTGGTTAGAATACCAATTTTATATAAGTCAATACATTATAA
GTGTATTTGAGTGATGTGTAGATTACAACCGTTCTTGTTCAGGGAGGACAATTGAACTCTCCTGGAAGTTGAATTATCTA
TTCTTCAGGTAACTGTGTCAGGTCCTGCGTTAATTTTTCTGCGGGGTCTTACTGATGCTTTTGCAGATTTGTTATCTAAA
TCTTTATCTTGTGCTTGCATTCCTTCAGTATACACCTGCCATTGATATTTGGAGTATCGGCTGCATTTTTGCGGAGGTAC
TGACAGGAAAACCGTTGTTCCCGGGAAAAAGTGTTGTTCATCAGTTAGATTTGATGACTGATCTTCTTGGGACGCCATCA
GCTGATTCCATATCTGGGGTAAAAACTTCAGCCTATTTGTTTTTTGGTGGATAACTGGATGTCAGCCTTATTTTGCAACA
TATTAATATTGGAGTCCTCTCTTGAGTGTAGGTTCGTAATGAGAAGGCACGAAAGTATTTGACAAGCATGCGGAAAAAGA
ATCCAGTTCCTTTTACAGAGAAATTTCCAGGTGCAGATCCTCTGGTGCTCCGATTGTTGCAGAGGTTGTTAGCATTTGAT
CCAAAGGATCGACCTACTGCTGAAGAGGTATTTTTGCCTCCTAATATGTCCTAACTTTAACATTAGCATAAATAGTAGCC
TTCCATTCTCATCCTTACCTTGCTCATAGTTGGTTCTAATTTTGCTTCTGCGGGTTCCCTTCCTCTTCCTCCATTTCCTT
TAGGCTTTATCCGATCCTTATTTCAAAGGACTGGCCAAGATTGAGAGGGAACCTTCTTGTCGACCAATCTCAAATCTGGA
ATTTGAATTTGAGAGACGAAGGGTAACAAAGGAGGACATTAAGGAATTAATTTTTCGGGAGATATTGGAATATCATCCTC
AACTTCAAAAGGATTACATTGCTGGAAATGATGGCACAAATTTTCTCTATCCTAGGTTCTAACAAAGGCTCCCTAGACTC
ATTTTATTTCTTATTTTAGTTGCATATTTTATCTAATTTCAATTTGTGATTAACTTTGTGGAAGTTGTTTAAACTTGCAG
TGCAACTGATCAGTTTAGAAGGCAATTTGCTTATCTTGAGGAAAATAATGATAAAAGTGGGCCAGTTATTCCTCTTGGTA
GAAAGCACGTTTCTCTTCCACGGTAAGATTATGCAGGATTCGTTTTTGTCAATATAATCTTGTTGCTTAGTTTTCACCAG
TACAACTTCGCGTTATGTAAGCTTCTCTTTGTTCTTTTGTTTCTTATATTTATTGGAGAAGTGATTGTGATTGAGAAAGC
AAGGTAAGTTGCTTACGAAGTTTTTAAACCATTCAAGTCCTTGGGAATAACAAGAGCTGTTTCATAATGGGAATTACTGT
CCTTGCTGTCTCATATTTTCTCTGTTTATCTCGGGCTAAATCGCATATGTTCCTAAATGTGTGCAGATCTGCGGTCAATT
CCAGTACTGATCCCCCAAAAGCTAGGCAGAACTTCTCTGTGTTTGATCATACGCAAGTAACAGAAAAATCATCTACTGAT
GTTAGAGTCGCAGAAAAAACTTCAGGAACTATACAAAACATTTCACGACCACCACATCGAGTCCATGCAGGTACAGGTAA
ACATGCGTTTACTGTTTGGTCTTCTAGTGTCCGATGTGATATTATATCAAATGCCTGTCAATGAAACAAAGTAAATTTTG
ATAACATGTGTAACTCAACTGCGTCTAAATTTATTCTCGCATGGAGTGGAGTAAATCGAAAGTGAATCAGACTTGATCGT
GTCTTACTCAGACCCTCGACGAATGTACATACATAGCACATGATTACATGGTTGTTCTCAATTAGTCATTTCTATCCTTT
TCAGCCAAACCTGGGAGAGTTGTAGGGCCAATTTTACCATATGACGGAAGAATGCTTACACAGAATACTGGCCTCCTTCC
TCATGGCATTTCTCCACATTATATGTTCAGGATGAACCCGGGGAATCGAGAGAAGTGTGGGACAGAATCCAAGGACGCCA
CTCAAGTTAGACCCCTACCTGCACAATGCAACATGAGTGTTGAGATGAACACCAACCCGTATTATCCAGCACAAGAAAAA
GTAGCACAGTTGGGTGGTCAAATTGCAATAGATGCAAAACTACTACAGGCACAAACCAAATTTGGTGCTGTCGGTGCTGC
AGCTGTTGCAGTTGCAGCTCACAGAGAGGTTGGCACCATCCAGTATAGCCTGACTTAGCAAACTGTATTCAGACGTTGTT
TCAATGAACGGTGTAAATCCGCGTTGGAGGTGAAAGAATTCTAGGACTGCATGTTCATCTAACCAAAGCAGCCCTATCGA
AGATTCAATGATGAAAAACATACATCATACTTCTGGTTAGGTCTCTTTGCCTAAATTAGGCATTTCTCTGTTCAGTTTAC
CCTGTGAGTTAGTACCTATGCTCCTGTAAATTTTAGGCTGTAGCTGCTGCATTATTGATTCTATTAATGAATAAAAGTTA
CTGTTCTTCGCGCC
TAAAAGGACCCCTCTATTTCTCAAATGCTCTTCTTCTTTCTCCTGTCTTCCTTTTCGTATCGGTTCTTCCGTCAATTCTC
TGTCTCTTCAGTCAATTACCATTAGATCTTCAAAACCCATTAAGGGTTTGTTCTGTATTTGAGTTTCTGTTCAGTTTTTT
TTCGAATTTTTTGGTATTTTTTGTTGTTTTTTGAGTAGTAGTGTGAGGGATCTTTGTGGGGTTCTTTAGAATTGGATGAG
TGAGCTGGTAGTGGAGTTTTTTCAGTTTGTTAAGCTCGTGAATTGGGGTAAAACGAAGAGGATTTTCGGTTTTGGTGATA
CGGAGCAGCTGCAGGTGGTGGAATTGAAGCTGATTTTTGATTAATTCTGGTTGTGGTGTTTGTAGTTTGGGGTTGATTTG
ATTTTGTGTAAGATCTGGGAAAAAATAGGAGAAAGTTGAAGTGGATATAGTGTAGGCATTTTTTGAGATTATTGGTGAAT
TGGGTTGTTGGGTATTCTCAGAATTATGATGCAACAAGATCATCGCAAGAAGGTTTTTTATCTCTTTCTCACTGTGAAAA
AATTGATTTTGTGTTACTCAAGAACCGAGGGTTTATCGGAAACAACCTCTCTACCTTTGGGGAGGTAGGGGTAAGGTCTG
TGAAAATTTACCCTCACTAGATTCTACTTGTGGGATTGCATTGGCTATGTTGTTGTTGTTGTTGCTGCTACTCAAGGAGA
GATCTTGAAGAAAGATGAGGGTGTTGTTCTTAAATTTTGCTTTTTGAGAGCTTAGAAGTTTTAGCTCAATAATGTTTGCA
TGAATTGAATATATAATCACCATAAGCAAAATTGAACTGAATCTAGCTGAAGAAATATGGGTTTAGTGTCAGTTGGAATT
CTTAATTTCTGGTCAGTTCTCTAAGTAAGTGTTTCGCAATAGATTTGGTTGAAATTTGAGGAAAAAAAACTGTTTTTGAA
GCTGAAGTTGTAAAATGGTATTTGGAAGTAAGAAGTTGTGATTGGACATGCATTTTAATTGTGAAGAAGTTGGTTTTGTG
TGTGGAAAAAGAATAATCACTTGATAAGCTGTTCTTGATCATCAAACTTGAAAAATCCTTCAAAAACTAACCAAAAGATC
ACTCCAATATATAACCAGACAATGTTTTGAAATGTTTCTTGAAAAAGAAAAGGAAAAAATCCCCATATCCATGCCCTTTC
CTCTAGTTTCTTGATTTTAAGAAGGATAAGTTTTTTCTAGAAAAAGTTCAGGCCCATATTGCTGTTAAAGAAAGCAGCTT
TATTAGGGTAGAAATTATTTTTGTTTTTGGAACTTGAGGGTATGTAGGTGAATCACTTAACTATTCTTCTATTTGTTGAT
GTTATTTAGTATTATTAAATCTCTATCTGCATGACCTTTATGTGTGAAAAAATGGTTCTTGGAATTTATGATTTTATTTG
TGTTTGAAGACAGCCTTCTAGTTACTCTTCTCTCATAGTTTTGAAGAATGTTATCAATTGCTTCTTAGGAAAAAGGCAAC
CTTATGATTAAGAAGGTTTCTTACTCTTTACTTCATGCTAGTTGGTCTATTTGTTGAAGGATATCAAGTTCTTATTTTCT
TGTCCTTTTTTTTTGGTTGTGAAAGTAGATCAACCTCTGCTTTCAGTTGACAACCATTCCTTGTTTTTCATACTGTAAAT
GGTTTGCTTATTAAGTGATACAAATCATATTTGTAACTTGGTTTGGTGGACTACCTTGTGGAAGTATAGTTCAAAAATAT
CAATGTAAAATTCCGTTGTTTCATAACAAATGCACTTGTCATTGGAAGTATTTATTTGGTACTTTCTTTAATGTTTCAGA
ATACCAAAGAAGTGGAGTTCTTTACAGAGTATGGAGAGGCAAATAGGTATAAAATCCTGGAAGTCGTAGGGAAGGGAAGC
TATGGAGTTGTTTGTGCTGCCATTGACACCCATACTGGAGAAAAAGTGGCAATTAAGAAAATAACTGATATTTTCGAGCA
CGCCTCTGATGCTATTCGAATTTTGCGCGAAATTAAATTGCTTAGACTTTTAAGGCATCCTGATATCGTGGACATCAAGA
GAATCATGTTACCACCTTCAAAACGAGACTTCAAAGATATTTATGTTGTTTTTGAGCTTATGGAGTCTGATCTTCACCAT
GTTATTAAGGCTAATGATGACTTGTCACATGAACACCATCGCTTTTTTCTATATCAGATGCTACGAGCACTGAAATATAT
GCACACAGGTAAATTATCTTGTGAATATGGTAGGTAACTAGTACTTTTCCCCCCCTCTCTGAGCGGGTACGAGGTATTCT
ATATTATCAATGTCTGACTTGTATGTGTCTGTTTCAGCGAATGTGTACCATCGAGATCTTAAGCCGAAAAATATATTGGC
AAATGCAAACTGTAAACTCAAAATATGTGACTTAGGATTGGCAAGGGTTTCATTCAGTGATACTCCAACCACAGCACTTT
GGACGGTATGTTTTCTTTAGATCTTTGTCCCATCCATGATCAATGTCAGTAATGGTGTTTTTATTATTCTTGATATTGGG
TAAACTTTACTTGGAAGTGCAAAATCATGCATTATTTATATCTTCAGTTTTTGATGTAATAATTTTTATTGACTGTGTCT
TTTGACACACCATGCAGGATTATGTTGCTACAAGGTGGTACAGGGCTCCTGAACTATGTGGATCTTTCTTTTCCAAGGTA
GTTCATGCTAACAATGTGCCACTTGCTCTGTCTTTTATTTAATAATTTCTTAGCAGGAATGGTAGTTTTTCGTGTAATAA
CAATGCACTCTTACGTCCCTTCGAATACATTCATCCCGGGGGTTTGGACAAGGAGAAGGGTATAGAGAGAAGCACCACCA
AAGATGGTGCACATAATTAGTTGAAATGGAAAGTTTACATGAACAGTTTTGTGTTCGATTCGTTTGTCCCTCTTAGGATT
GCAGGTTTGGAGATTCTGTAGTCAATCATTTTATGCACTAGGCCAGGGATTGAGCATAAGTTTTAGTTAGTTTTGATGCC
ATTGAAGTATCATGTATCGGTTCTTATTTTCCAATGGCTTTAGGAAGGCAAAAAGGTACTTGTCCCACTCTTCTTGCAGC
GTCTGATGTGCTGATGCTACTGTTAGAAACTGTGGTATTTTGGTTAGAATACCAATTTTATATAAGTCAATACATTATAA
GTGTATTTGAGTGATGTGTAGATTACAACCGTTCTTGTTCAGGGAGGACAATTGAACTCTCCTGGAAGTTGAATTATCTA
TTCTTCAGGTAACTGTGTCAGGTCCTGCGTTAATTTTTCTGCGGGGTCTTACTGATGCTTTTGCAGATTTGTTATCTAAA
TCTTTATCTTGTGCTTGCATTCCTTCAGTATACACCTGCCATTGATATTTGGAGTATCGGCTGCATTTTTGCGGAGGTAC
TGACAGGAAAACCGTTGTTCCCGGGAAAAAGTGTTGTTCATCAGTTAGATTTGATGACTGATCTTCTTGGGACGCCATCA
GCTGATTCCATATCTGGGGTAAAAACTTCAGCCTATTTGTTTTTTGGTGGATAACTGGATGTCAGCCTTATTTTGCAACA
TATTAATATTGGAGTCCTCTCTTGAGTGTAGGTTCGTAATGAGAAGGCACGAAAGTATTTGACAAGCATGCGGAAAAAGA
ATCCAGTTCCTTTTACAGAGAAATTTCCAGGTGCAGATCCTCTGGTGCTCCGATTGTTGCAGAGGTTGTTAGCATTTGAT
CCAAAGGATCGACCTACTGCTGAAGAGGTATTTTTGCCTCCTAATATGTCCTAACTTTAACATTAGCATAAATAGTAGCC
TTCCATTCTCATCCTTACCTTGCTCATAGTTGGTTCTAATTTTGCTTCTGCGGGTTCCCTTCCTCTTCCTCCATTTCCTT
TAGGCTTTATCCGATCCTTATTTCAAAGGACTGGCCAAGATTGAGAGGGAACCTTCTTGTCGACCAATCTCAAATCTGGA
ATTTGAATTTGAGAGACGAAGGGTAACAAAGGAGGACATTAAGGAATTAATTTTTCGGGAGATATTGGAATATCATCCTC
AACTTCAAAAGGATTACATTGCTGGAAATGATGGCACAAATTTTCTCTATCCTAGGTTCTAACAAAGGCTCCCTAGACTC
ATTTTATTTCTTATTTTAGTTGCATATTTTATCTAATTTCAATTTGTGATTAACTTTGTGGAAGTTGTTTAAACTTGCAG
TGCAACTGATCAGTTTAGAAGGCAATTTGCTTATCTTGAGGAAAATAATGATAAAAGTGGGCCAGTTATTCCTCTTGGTA
GAAAGCACGTTTCTCTTCCACGGTAAGATTATGCAGGATTCGTTTTTGTCAATATAATCTTGTTGCTTAGTTTTCACCAG
TACAACTTCGCGTTATGTAAGCTTCTCTTTGTTCTTTTGTTTCTTATATTTATTGGAGAAGTGATTGTGATTGAGAAAGC
AAGGTAAGTTGCTTACGAAGTTTTTAAACCATTCAAGTCCTTGGGAATAACAAGAGCTGTTTCATAATGGGAATTACTGT
CCTTGCTGTCTCATATTTTCTCTGTTTATCTCGGGCTAAATCGCATATGTTCCTAAATGTGTGCAGATCTGCGGTCAATT
CCAGTACTGATCCCCCAAAAGCTAGGCAGAACTTCTCTGTGTTTGATCATACGCAAGTAACAGAAAAATCATCTACTGAT
GTTAGAGTCGCAGAAAAAACTTCAGGAACTATACAAAACATTTCACGACCACCACATCGAGTCCATGCAGGTACAGGTAA
ACATGCGTTTACTGTTTGGTCTTCTAGTGTCCGATGTGATATTATATCAAATGCCTGTCAATGAAACAAAGTAAATTTTG
ATAACATGTGTAACTCAACTGCGTCTAAATTTATTCTCGCATGGAGTGGAGTAAATCGAAAGTGAATCAGACTTGATCGT
GTCTTACTCAGACCCTCGACGAATGTACATACATAGCACATGATTACATGGTTGTTCTCAATTAGTCATTTCTATCCTTT
TCAGCCAAACCTGGGAGAGTTGTAGGGCCAATTTTACCATATGACGGAAGAATGCTTACACAGAATACTGGCCTCCTTCC
TCATGGCATTTCTCCACATTATATGTTCAGGATGAACCCGGGGAATCGAGAGAAGTGTGGGACAGAATCCAAGGACGCCA
CTCAAGTTAGACCCCTACCTGCACAATGCAACATGAGTGTTGAGATGAACACCAACCCGTATTATCCAGCACAAGAAAAA
GTAGCACAGTTGGGTGGTCAAATTGCAATAGATGCAAAACTACTACAGGCACAAACCAAATTTGGTGCTGTCGGTGCTGC
AGCTGTTGCAGTTGCAGCTCACAGAGAGGTTGGCACCATCCAGTATAGCCTGACTTAGCAAACTGTATTCAGACGTTGTT
TCAATGAACGGTGTAAATCCGCGTTGGAGGTGAAAGAATTCTAGGACTGCATGTTCATCTAACCAAAGCAGCCCTATCGA
AGATTCAATGATGAAAAACATACATCATACTTCTGGTTAGGTCTCTTTGCCTAAATTAGGCATTTCTCTGTTCAGTTTAC
CCTGTGAGTTAGTACCTATGCTCCTGTAAATTTTAGGCTGTAGCTGCTGCATTATTGATTCTATTAATGAATAAAAGTTA
CTGTTCTTCGCGCC
Download sequence region |
Get flanking sequences on SL2.50ch10
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc10g007500.2.1 Mitogen activated protein kinase 20-1 (AHRD V1 ***- B3GCL1_ORYSI); contains Interpro domain(s) IPR002290 Serine/threonine protein kinase
TAAAAGGACCCCTCTATTTCTCAAATGCTCTTCTTCTTTCTCCTGTCTTCCTTTTCGTATCGGTTCTTCCGTCAATTCTC
TGTCTCTTCAGTCAATTACCATTAGATCTTCAAAACCCATTAAGGGTTTGTTCTGTATTTGAGTTTCTGTTCAGTTTTTT
TTCGAATTTTTTGGTATTTTTTGTTGTTTTTTGAGTAGTAGTGTGAGGGATCTTTGTGGGGTTCTTTAGAATTGGATGAG
TGAGCTGGTAGTGGAGTTTTTTCAGTTTGTTAAGCTCGTGAATTGGGGTAAAACGAAGAGGATTTTCGGTTTTGGTGATA
CGGAGCAGCTGCAGGTGGTGGAATTGAAGCTGATTTTTGATTAATTCTGGTTGTGGTGTTTGTAGTTTGGGGTTGATTTG
ATTTTGTGTAAGATCTGGGAAAAAATAGGAGAAAGTTGAAGTGGATATAGTGTAGGCATTTTTTGAGATTATTGGTGAAT
TGGGTTGTTGGGTATTCTCAGAATTATGATGCAACAAGATCATCGCAAGAAGAATACCAAAGAAGTGGAGTTCTTTACAG
AGTATGGAGAGGCAAATAGGTATAAAATCCTGGAAGTCGTAGGGAAGGGAAGCTATGGAGTTGTTTGTGCTGCCATTGAC
ACCCATACTGGAGAAAAAGTGGCAATTAAGAAAATAACTGATATTTTCGAGCACGCCTCTGATGCTATTCGAATTTTGCG
CGAAATTAAATTGCTTAGACTTTTAAGGCATCCTGATATCGTGGACATCAAGAGAATCATGTTACCACCTTCAAAACGAG
ACTTCAAAGATATTTATGTTGTTTTTGAGCTTATGGAGTCTGATCTTCACCATGTTATTAAGGCTAATGATGACTTGTCA
CATGAACACCATCGCTTTTTTCTATATCAGATGCTACGAGCACTGAAATATATGCACACAGCGAATGTGTACCATCGAGA
TCTTAAGCCGAAAAATATATTGGCAAATGCAAACTGTAAACTCAAAATATGTGACTTAGGATTGGCAAGGGTTTCATTCA
GTGATACTCCAACCACAGCACTTTGGACGGATTATGTTGCTACAAGGTGGTACAGGGCTCCTGAACTATGTGGATCTTTC
TTTTCCAAGTATACACCTGCCATTGATATTTGGAGTATCGGCTGCATTTTTGCGGAGGTACTGACAGGAAAACCGTTGTT
CCCGGGAAAAAGTGTTGTTCATCAGTTAGATTTGATGACTGATCTTCTTGGGACGCCATCAGCTGATTCCATATCTGGGG
TTCGTAATGAGAAGGCACGAAAGTATTTGACAAGCATGCGGAAAAAGAATCCAGTTCCTTTTACAGAGAAATTTCCAGGT
GCAGATCCTCTGGTGCTCCGATTGTTGCAGAGGTTGTTAGCATTTGATCCAAAGGATCGACCTACTGCTGAAGAGGCTTT
ATCCGATCCTTATTTCAAAGGACTGGCCAAGATTGAGAGGGAACCTTCTTGTCGACCAATCTCAAATCTGGAATTTGAAT
TTGAGAGACGAAGGGTAACAAAGGAGGACATTAAGGAATTAATTTTTCGGGAGATATTGGAATATCATCCTCAACTTCAA
AAGGATTACATTGCTGGAAATGATGGCACAAATTTTCTCTATCCTAGTGCAACTGATCAGTTTAGAAGGCAATTTGCTTA
TCTTGAGGAAAATAATGATAAAAGTGGGCCAGTTATTCCTCTTGGTAGAAAGCACGTTTCTCTTCCACGATCTGCGGTCA
ATTCCAGTACTGATCCCCCAAAAGCTAGGCAGAACTTCTCTGTGTTTGATCATACGCAAGTAACAGAAAAATCATCTACT
GATGTTAGAGTCGCAGAAAAAACTTCAGGAACTATACAAAACATTTCACGACCACCACATCGAGTCCATGCAGCCAAACC
TGGGAGAGTTGTAGGGCCAATTTTACCATATGACGGAAGAATGCTTACACAGAATACTGGCCTCCTTCCTCATGGCATTT
CTCCACATTATATGTTCAGGATGAACCCGGGGAATCGAGAGAAGTGTGGGACAGAATCCAAGGACGCCACTCAAGTTAGA
CCCCTACCTGCACAATGCAACATGAGTGTTGAGATGAACACCAACCCGTATTATCCAGCACAAGAAAAAGTAGCACAGTT
GGGTGGTCAAATTGCAATAGATGCAAAACTACTACAGGCACAAACCAAATTTGGTGCTGTCGGTGCTGCAGCTGTTGCAG
TTGCAGCTCACAGAGAGGTTGGCACCATCCAGTATAGCCTGACTTAGCAAACTGTATTCAGACGTTGTTTCAATGAACGG
TGTAAATCCGCGTTGGAGGTGAAAGAATTCTAGGACTGCATGTTCATCTAACCAAAGCAGCCCTATCGAAGATTCAATGA
TGAAAAACATACATCATACTTCTGGTTAGGTCTCTTTGCCTAAATTAGGCATTTCTCTGTTCAGTTTACCCTGTGAGTTA
GTACCTATGCTCCTGTAAATTTTAGGCTGTAGCTGCTGCATTATTGATTCTATTAATGAATAAAAGTTACTGTTCTTCGC
GCC
TAAAAGGACCCCTCTATTTCTCAAATGCTCTTCTTCTTTCTCCTGTCTTCCTTTTCGTATCGGTTCTTCCGTCAATTCTC
TGTCTCTTCAGTCAATTACCATTAGATCTTCAAAACCCATTAAGGGTTTGTTCTGTATTTGAGTTTCTGTTCAGTTTTTT
TTCGAATTTTTTGGTATTTTTTGTTGTTTTTTGAGTAGTAGTGTGAGGGATCTTTGTGGGGTTCTTTAGAATTGGATGAG
TGAGCTGGTAGTGGAGTTTTTTCAGTTTGTTAAGCTCGTGAATTGGGGTAAAACGAAGAGGATTTTCGGTTTTGGTGATA
CGGAGCAGCTGCAGGTGGTGGAATTGAAGCTGATTTTTGATTAATTCTGGTTGTGGTGTTTGTAGTTTGGGGTTGATTTG
ATTTTGTGTAAGATCTGGGAAAAAATAGGAGAAAGTTGAAGTGGATATAGTGTAGGCATTTTTTGAGATTATTGGTGAAT
TGGGTTGTTGGGTATTCTCAGAATTATGATGCAACAAGATCATCGCAAGAAGAATACCAAAGAAGTGGAGTTCTTTACAG
AGTATGGAGAGGCAAATAGGTATAAAATCCTGGAAGTCGTAGGGAAGGGAAGCTATGGAGTTGTTTGTGCTGCCATTGAC
ACCCATACTGGAGAAAAAGTGGCAATTAAGAAAATAACTGATATTTTCGAGCACGCCTCTGATGCTATTCGAATTTTGCG
CGAAATTAAATTGCTTAGACTTTTAAGGCATCCTGATATCGTGGACATCAAGAGAATCATGTTACCACCTTCAAAACGAG
ACTTCAAAGATATTTATGTTGTTTTTGAGCTTATGGAGTCTGATCTTCACCATGTTATTAAGGCTAATGATGACTTGTCA
CATGAACACCATCGCTTTTTTCTATATCAGATGCTACGAGCACTGAAATATATGCACACAGCGAATGTGTACCATCGAGA
TCTTAAGCCGAAAAATATATTGGCAAATGCAAACTGTAAACTCAAAATATGTGACTTAGGATTGGCAAGGGTTTCATTCA
GTGATACTCCAACCACAGCACTTTGGACGGATTATGTTGCTACAAGGTGGTACAGGGCTCCTGAACTATGTGGATCTTTC
TTTTCCAAGTATACACCTGCCATTGATATTTGGAGTATCGGCTGCATTTTTGCGGAGGTACTGACAGGAAAACCGTTGTT
CCCGGGAAAAAGTGTTGTTCATCAGTTAGATTTGATGACTGATCTTCTTGGGACGCCATCAGCTGATTCCATATCTGGGG
TTCGTAATGAGAAGGCACGAAAGTATTTGACAAGCATGCGGAAAAAGAATCCAGTTCCTTTTACAGAGAAATTTCCAGGT
GCAGATCCTCTGGTGCTCCGATTGTTGCAGAGGTTGTTAGCATTTGATCCAAAGGATCGACCTACTGCTGAAGAGGCTTT
ATCCGATCCTTATTTCAAAGGACTGGCCAAGATTGAGAGGGAACCTTCTTGTCGACCAATCTCAAATCTGGAATTTGAAT
TTGAGAGACGAAGGGTAACAAAGGAGGACATTAAGGAATTAATTTTTCGGGAGATATTGGAATATCATCCTCAACTTCAA
AAGGATTACATTGCTGGAAATGATGGCACAAATTTTCTCTATCCTAGTGCAACTGATCAGTTTAGAAGGCAATTTGCTTA
TCTTGAGGAAAATAATGATAAAAGTGGGCCAGTTATTCCTCTTGGTAGAAAGCACGTTTCTCTTCCACGATCTGCGGTCA
ATTCCAGTACTGATCCCCCAAAAGCTAGGCAGAACTTCTCTGTGTTTGATCATACGCAAGTAACAGAAAAATCATCTACT
GATGTTAGAGTCGCAGAAAAAACTTCAGGAACTATACAAAACATTTCACGACCACCACATCGAGTCCATGCAGCCAAACC
TGGGAGAGTTGTAGGGCCAATTTTACCATATGACGGAAGAATGCTTACACAGAATACTGGCCTCCTTCCTCATGGCATTT
CTCCACATTATATGTTCAGGATGAACCCGGGGAATCGAGAGAAGTGTGGGACAGAATCCAAGGACGCCACTCAAGTTAGA
CCCCTACCTGCACAATGCAACATGAGTGTTGAGATGAACACCAACCCGTATTATCCAGCACAAGAAAAAGTAGCACAGTT
GGGTGGTCAAATTGCAATAGATGCAAAACTACTACAGGCACAAACCAAATTTGGTGCTGTCGGTGCTGCAGCTGTTGCAG
TTGCAGCTCACAGAGAGGTTGGCACCATCCAGTATAGCCTGACTTAGCAAACTGTATTCAGACGTTGTTTCAATGAACGG
TGTAAATCCGCGTTGGAGGTGAAAGAATTCTAGGACTGCATGTTCATCTAACCAAAGCAGCCCTATCGAAGATTCAATGA
TGAAAAACATACATCATACTTCTGGTTAGGTCTCTTTGCCTAAATTAGGCATTTCTCTGTTCAGTTTACCCTGTGAGTTA
GTACCTATGCTCCTGTAAATTTTAGGCTGTAGCTGCTGCATTATTGATTCTATTAATGAATAAAAGTTACTGTTCTTCGC
GCC
![]() ![]() | translated polypeptide sequence |
>Solyc10g007500.2.1 Mitogen activated protein kinase 20-1 (AHRD V1 ***- B3GCL1_ORYSI); contains Interpro domain(s) IPR002290 Serine/threonine protein kinase
MMQQDHRKKNTKEVEFFTEYGEANRYKILEVVGKGSYGVVCAAIDTHTGEKVAIKKITDIFEHASDAIRILREIKLLRLL
RHPDIVDIKRIMLPPSKRDFKDIYVVFELMESDLHHVIKANDDLSHEHHRFFLYQMLRALKYMHTANVYHRDLKPKNILA
NANCKLKICDLGLARVSFSDTPTTALWTDYVATRWYRAPELCGSFFSKYTPAIDIWSIGCIFAEVLTGKPLFPGKSVVHQ
LDLMTDLLGTPSADSISGVRNEKARKYLTSMRKKNPVPFTEKFPGADPLVLRLLQRLLAFDPKDRPTAEEALSDPYFKGL
AKIEREPSCRPISNLEFEFERRRVTKEDIKELIFREILEYHPQLQKDYIAGNDGTNFLYPSATDQFRRQFAYLEENNDKS
GPVIPLGRKHVSLPRSAVNSSTDPPKARQNFSVFDHTQVTEKSSTDVRVAEKTSGTIQNISRPPHRVHAAKPGRVVGPIL
PYDGRMLTQNTGLLPHGISPHYMFRMNPGNREKCGTESKDATQVRPLPAQCNMSVEMNTNPYYPAQEKVAQLGGQIAIDA
KLLQAQTKFGAVGAAAVAVAAHREVGTIQYSLT*
MMQQDHRKKNTKEVEFFTEYGEANRYKILEVVGKGSYGVVCAAIDTHTGEKVAIKKITDIFEHASDAIRILREIKLLRLL
RHPDIVDIKRIMLPPSKRDFKDIYVVFELMESDLHHVIKANDDLSHEHHRFFLYQMLRALKYMHTANVYHRDLKPKNILA
NANCKLKICDLGLARVSFSDTPTTALWTDYVATRWYRAPELCGSFFSKYTPAIDIWSIGCIFAEVLTGKPLFPGKSVVHQ
LDLMTDLLGTPSADSISGVRNEKARKYLTSMRKKNPVPFTEKFPGADPLVLRLLQRLLAFDPKDRPTAEEALSDPYFKGL
AKIEREPSCRPISNLEFEFERRRVTKEDIKELIFREILEYHPQLQKDYIAGNDGTNFLYPSATDQFRRQFAYLEENNDKS
GPVIPLGRKHVSLPRSAVNSSTDPPKARQNFSVFDHTQVTEKSSTDVRVAEKTSGTIQNISRPPHRVHAAKPGRVVGPIL
PYDGRMLTQNTGLLPHGISPHYMFRMNPGNREKCGTESKDATQVRPLPAQCNMSVEMNTNPYYPAQEKVAQLGGQIAIDA
KLLQAQTKFGAVGAAAVAVAAHREVGTIQYSLT*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
![]() ![]() | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Genome-wide analysis of the mitogen-activated protein kinase gene family in Solanum lycopersicum.
Gene (2012)
Show / hide abstract
Show / hide abstract
Mitogen-activated protein kinases (MAPKs), a family of Ser/Thr protein kinases, play an essential role in mediating biotic and abiotic stress responses in plants. In this study, we investigated 16 putative SlMAPK genes from tomato genome and compared them with those from Arabidopsis. The full cDNA sequences of 13 novel SlMAPKs in tomato were obtained through PCR ampilification. A comprehensive genome-wide analysis of SlMAPKs in tomato is presented, including their gene structure, phylogeny, genome localization, and expression profiles. Phylogenic analysis of the 16 SlMAPKs and 20 AtMAPKs from Arabidopsis indicated that the SlMAPK genes were clustered into four major groups, and genes within the same groups had similar exon-intron structures. All SlMAPK proteins in groups A, B and C had a Thr-Glu-Tyr (TEY) activation domain, whereas those in group D contained a Thr-Asp-Tyr (TDY) activation domain. The analysis of 5'-upstream region of SlMAPKs revealed a group of putative cis-acting elements related to stress responses. Expression analysis of SlMAPK genes using RT-PCR and real-time quantitative PCR demonstrated that all SlMAPK transcripts were able to be detected in at least one investigated tissue, and some of them exhibited tissue-specific expression patterns. The transcript abundance of nearly all SlMAPK genes was increased in response to heat stress treatment. Our data provided an insight into the evolution of the gene family and a useful reference for further functional analysis of MAPK family genes in tomato.
Kong, F. Wang, J. Cheng, L. Liu, S. Wu, J. Peng, Z. Lu, G.
Gene.
2012.
().
.
![]() ![]() | [Add ontology annotations] |
biological_process
|
molecular_function
|
![]() ![]() |
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