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Tomato locus leucine aminopeptidase 1
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases | None |
Registry name: | None | [Associate registry name] |
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Image | Description | Type |
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![]() ![]() | [Associate accession] |
Accession name:
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Associated loci - graphical view | None |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc12g010040.1 SL2.50ch12:3187436..3180908 (sequence from reverse strand)
ATGGCCGCATTGAGAGTTTCTTCAGCATTGGCTTGTTCATCTTCTTCATCTTTTCACTCATACCCTTCAATTTTTACTAAATTTCAATCTAGTCCCATCTGGTCTTTTTCAATTTCAGTTACACCCTTGTGTTCAAGAAGAGCTAAAAGAATGGCTCATTCTATTGCTCGTGATACTCTTGGTCTTACTCATACTAATCAAAGTGATGCTCCTAAGGTGGTTTCTTGTTTTATTTTAGCAAAAAGATTTGATCTTTATTGGTTTTTTGTTAGGTTGGTTGGATTGATTTCTGATTTTTATTTGTGGGGTTTGGATTCTTGATCTGTGAGACTGTGTAGTTTTATCTTTATCTTTGGGGATTCAGTGGAAAGACTGGATTTTTGTTGATTTATTGGTGAATTTCAGTGCATAGAACTGTTTTTTCTTGTTTTGTGGTTTTGATTCTGATTTGTGTTTGTGATTCAGTGCCGAAAAGGGATTTTTATTTGTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTTGCTTGTTTCTGTTGTTTGGATTCTGATTTGTGTTTGCGATTCAGTGCAAAGAAGGGACTTTTTCTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTCTTGTTTGTTTTTGTGGTTTGGATTCTGATTTATGTTTGTGATTCAGGGCAAAGAAGGGATTTTTTTTTTGTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTTTGCTTGTTTCTGTTGTTTGGATTCTAATTTGTGATGATGTATACTTTCATTGTGATTCGTTGCAAAGAATGATTTGTTTATAGAGTAAAAGATTGGAAACATAGCTAAATGTTTATCGAATTTTCACCAAATGTTTATTGAAACATACCTCAGCTATCATTGAAAAAGGAAAAAGTGAGCAACTGATACTTGATGTTTCAAGTAGGAAACTGACATATATGATAGTTCATAGTTTAGGTATGGAACTAGAAAAATTCGTGATATGTTGGATGTGTTTTTGATCCTTTGCTCTTTTTTATATTCTTCTTATCTTGTTCTTGTGGACTTGGATTATGATTTGTGATAATGTATACTTTCATCTTTGTCTGTGATAATTCAGTGCAAAGAATGAATATTTTGTTGTTATTGTGAATTCAATGCATAGAACTGATTTTTCTTGTTCTTTTTCTCTTGTTTTTCGTGGGTTTGGATTCTGATTTGTGATAATGTATAACTTCATCTTCATCTTTGTGACTTCAGTGCAAATAATGGATCTTTTAGGTGTGAGTTCAGTGCATAGAGAACTGATTTTTCTTGTTCTTTTCTCTTGTTTTTTTGTGGTTTGTATACTGACAATATACTGATTTGTGATATTGTATACTTTCATCTTTATGTTTGTGAATTCAGTGTAAAGAAAGGATAGTTCTTCTCTTGTTTTGGAGGGTTCTTTGTGTCTGATTTGTGATACAATTAACTTTGAAATTCATCTTTATGAATTAAGAACTGATTTTTCTTATTTTATTGTTTTGCGTCCGCATTCTGATATGTTAAACCCTTGTCTTTCATGGTTATATTGTAATTTCAGTGCATAAAAGAACTAATTTTTGATTCTCTTTTGCTTGGGATTTTTCTTGGTCTCAGTTGGTAAGTGAGCACTTCAACTTTGAGAGTTCACATATAGACACCTCAACTCGTCTCCACTAAGTCCGTTGAACACTTCAACTTACGGAATGATCCATGTAGAGACCTCTAAAATTTTTGTGTCATGTCAGCCTTGGGTGTCCAAAAAACACATTAAGGACAAGTTGAGACCAAGTTGAGGTGTCTAGATATGTTCTCTTCAAGTTGGAGTGCTTACTTGTCAATTGAGGCTGAATTTAAGTGTCTCTTTATGTATTATGTCTATAAAAGATGAGTGTGATACCGTTACTCTCATGTTTATCTTTGTGAGCTTAACCTTTTGAAAAACTTATCTTTCTTATTTTGTTTTTGATGAGTCCGTATTTTGACTTCTGCGTGTGATACCTATACACTCATGTTTATCTTTGTTATGCTGTTTGATATTAGAGTAGCTAATGATTGTTTTATGCGAAATTGGTGTTATTTCCTTATCTCATGAATAAAAAAGACTTTTGATCTCCCAATCCTGTCATAAATATGCCATTATGTTCTATTTGAATTGACCTTTTGGAGTAGAATGTGCATTTATAGAGTGTAATGGATATAAAGTTTCAGATTGCTTACAAGTTACAACAAGTAGTTTGGGATTGAGTAGTAGTTCTGTAATTGGGACTCTTTTTCTGGGGGTGGCTATAATCCTAACATATCCTATCTTTAAGAGTGTAGATAATTTTTTTAATGTTCCATCGTTAGCATGCAGCCAATTGTTGATTCCTGCGATTCTTGTGTTTATACTCATGGAAGTTCTATAATTTCCGGACTAAATCTTTTTTCTATTTTTGGAACATGAAAGATTTCATTTGCTGCTAAAGAGATTGATCTGGTGGAATGGAAAGGAGACATACTTACAGTAGGTGCCACAGAGAAGGACTTGGCTAGAGACGGGAATTCTAAGTTCCAGAATCCACTATTGCAAAAGCTAGATTCCAAATTGAGTGGCTTATTGTCTGAAGCTTCATCTGAGGAGGATTTTAGTGGAAAGGCTGGACAATCCACAATTTTGAGGCTTCCTGGTCTTGGCTCAAAAAGGATTGCTCTAGTTGGGCTTGGCTCACCAACATCATCAACTGCTGCTTATCGCTGTTTAGGGGAGGCTGCTGCTGCAGCTGCCAAGTCTGCTCAGGCTAGTAATATCGCCATTGCTCTTGCTTCTACGGATGGACTCTCTGCAGAGTTGAAGCTTAGCTCTGCCTCTGCCATAACAACTGGTATCCATTTTCATGATCTTCGCTAATTCATTGAATCATATTGAGAAACTAAACTTGGGTTGGTTTTCATGAATGTTCTAGGAGCTGTGCTGGGGACATTTGAAGATAATAGGTTTAAGTCAGAGTCAAAGAAACCAACATTGAAATCTTTGGATATTCTTGGACTGGGTACTGGACCTGAGATAGAGAAGAAAATCAAGTATGCAGCAGATGTCTGTGCAGGTGTTATACTCGGAAGAGAGCTTGTCAATGCACCCGCCAATGTTCTTACGCCTGGTTAGTGTTCTTTCAATGCATTTCCTTGTCCCTTTTATTAGCATGCCTATAACCATGTTATTAACATGCTGACTTTTCGCTGCAGCGGTACTTGCTGAAGAGGCCAAAAAGATTGCGTCCACTTATAGCGATGTCTTTTCTGCAAACATCTTGGATGTTGAGCAGTGCAAAGAATTGAAAATGGGATCCTATTTAGCTGTCGCTGCAGCTTCTGCAAATCCTGCTCATTTCATCCATTTGTGTTATAAGCCTAGTAGTGGAGAAATAAAAAAGAAGATAGCCTTGGTTGGAAAGGGATTAACTTTTGACAGGTAATGCCATCTTCTATAAGTTGGATAAATAGAAATTGATTTCTGACCTGGCTGCAGTGATATCGTTTCTTTTATTATTGCTACTTTTTTTTTTTAAACTCTTATGTTGTGATTGCTTGAACAATTCTTTTTATGTTCCCAGTGGTGGCTACAACATCAAGACTGGACCTGGTTGTTCTATTGAGCTAATGAAGTTTGACATGGGAGGGGCTGCAGCTGTTTTGGGTGCAGCAAAAGCTCTTGGTCAGATAAAACCCGCTGGAGTAGAGGTGAGTCCTTTATCATCATTCAAGAAAAAACAAGTATTTACTCGAAGTGAGTGTATTCAATTATTCTCTTTTCTCCAAACTAATTACCATGCTGCAGGTGCATTTCATTGTTGCAGCTTGTGAGAATATGATCAGTGGGACAGGCATGAGGCCTGGAGACATTATCACTGCTTCAAATGGGAAGACAATTGAGGTAAGCTCATTTTTGGGGCTCTTAGGGGTTTGATTTAATTGGGTCTCTCCTTCACCCCACTTTCACAACAAGCTCTATTTGAAGATTGTTCATCAACCTTCCTATTCAATCTGTTTTCTTTTGTGGTATTCGTGATTGGTTGAGGTGTTTAGAACTGAAGATAATACTGAAACACCTGTTTTATAAGTTCTCTAGATTTTTTGTATAACTCAAGTTGTTTCCTTATTTTCTTTTTGCTGAAAGATTGTCACTTTTCTGCATAATTGAGGTATTTTAACTTTTAGAGTGAGTGAAAAGTGTCCCCTATCTATTTGTCAAAAAAAAAATGTCCCTTATCTGTCAATGATTAAGTTATCATGTATCAATCATGCTTCTCAGTGGCCAGACACATGGCATATGTGGAAGTGCACTAGCTTCAGGAATGCATCTTATTCCCTAGACTACAAAAACATTGAAATACAACCTTTAAAAAGTGGATGATTCAAACTTCCATCTTGACATTTTCACAGTAGATACATTGCACTTGGGTAGATAGTTTATATAGGATAGGATTTTCTTTTATAGTTTATTTTTGATAGGCTATCATTTATTTGATTGTTTACCTATTAGTTTAGGACCAATATGATGCAAGCCTTGGTGCTTATTTTCTGTTTTGCTTTATCTGACTGTTTCGTGGTTACTGTTGGTGCCTTCATATTTATGGTAGGTTAACAACACGGATGCTGAGGGTAGACTCACACTTGCTGATGCGTTGGTATATGCCTGTAACCAAGGTGTAGAAAAGGTATTAATTGAACATTATAATAGTGCATCTGTTGCTTTCGGACATCACTTGACAATGTTTACCATCTAATATGTTTTCTTTGCTTTCCCCTCCCACTTTACACCCCAAAAGTGAAATGTTTCCTTTGAATACATAATTGGAAACATATGAACTTCCATTGGTCAATGTTCTTGTAGCTATCAATATGATTGATCAGTTAAATGCTTAAAATAGACTTGACTATAAAGCCACGTATACTATGAAAATTACAAGCAATAAGACGCGAATTAGAAATAAGATTATCTTTTAACTATAACTTTATTTCTGCAATAACCAATACCTACCAAAATTAGATGTTGTAGCTATCAGAAGAAGTTCCCAGATTTCCAACCTAAGATGTAATAAAAAATGTTGTGAGATCCTCTGCTTTGATCTCCAAAGCTTCGCTCTTGCTAAGAAAGGTTGTACAGTAGTTGGATGTTTACTCAATACCTTGGCATGTGTTAAATGACATGTTTTATTGTTATGCAGATAGTTGATTTGGCAACATTAACTGGTGCTTGTGTGGTTGCTCTTGGGCCTTCAATTGCTGGTATATTTGCTTGTGCCTCTTTTTTTTCTCTTCTTTTTTGGTATATGTGATGGTTGAATAATGGTGAACATTTAGCTGAGGGTCTATCGGAAACAACCTCTCTGCTTTACAATGGTAGGGGTAAGGTCTGTGTACATCCTACCCTTCCCAGCCCCCCTTGTGGGATTGCACTGGGTATGTTGTTGTTGTGATGATCAGTTTATTATTTAATGTTCTAATTTATACATATATTACTTTGATTGCACTAAAATAATTGTGACACCAATTGCACGTGTTGGATGACGAAAGATGCTACGGTGAATCTCTGACTGATATATAAACTATGAATTTCTAATGTACTGGAACTTTATTGGATTTCTTGTACAGGTATTTTTACACCTAGCGATGACCTAGCTAAGGAGGTGGTTGCAGCTTCTGAGGTAAGCGGTGAAAAACTATGGAGGTTGCCGATGGAGGATAGCTACTGGGACTCTATGAAATCAGGAGTGGCTGATATGGTGAACACGGGAGGTCGTCCAGGTGGTGCGATAACCGCTGCTCTCTTCCTGAAGCAGGTAATCATCTGATCACTCTTAATAGTAATGTGTAATTATTTTAGTCATATCGAAATTCACTATGTTATCCCATGAAAATTCTGTCTTGATGCCTTCTTACGGGCAGACCTATGTTGCTCAGTCTCTACAAAAATGCTTCTACATCGAATCCTCCAAAATTTATACTTAAATATGTTAGGTGAAAGTTAGAAGTATAGAATTGCCAAAAGAATTTAAAAAAGAGACGTTCTTTTTGAAACAAACTATAAACAAAAGTAAAACAAACAAATCGAAACTGAGGGAGTTACTACTTTTGGAGGAACAAAAATGATCTGGACTTTCTGTTCTAGCAGCAATGCAAGCTTATGTTTAGTAGAGCCAAAAGTTTCTTCTTACATCATAAACAGAATAAAAGTGACGAGGACGGGAACTTAAAAACATTATTGAAAGGCTAAGGGCCTTCGTTTACAGCTACCAATTATTCGTTACTAGGATCTCTCTGGCCCTCTCCTTTTATAGCGGGTTTTATAAAAGTAGAAATCTTTGAGACGAGAAACTTGACATAATTTTATTCATTTTGCAGTTTGTTAACGAGAAGGTCCAATGGATGCATATCGACTTAGCTGGTCCTGTCTGGAGTGATAAAAAGAAAAACGCCACGGGTTTTGGTGTTTCAACTTTGGTGGAATGGGTGCTGAAGAACTCTACAAATTAG
ATGGCCGCATTGAGAGTTTCTTCAGCATTGGCTTGTTCATCTTCTTCATCTTTTCACTCATACCCTTCAATTTTTACTAAATTTCAATCTAGTCCCATCTGGTCTTTTTCAATTTCAGTTACACCCTTGTGTTCAAGAAGAGCTAAAAGAATGGCTCATTCTATTGCTCGTGATACTCTTGGTCTTACTCATACTAATCAAAGTGATGCTCCTAAGGTGGTTTCTTGTTTTATTTTAGCAAAAAGATTTGATCTTTATTGGTTTTTTGTTAGGTTGGTTGGATTGATTTCTGATTTTTATTTGTGGGGTTTGGATTCTTGATCTGTGAGACTGTGTAGTTTTATCTTTATCTTTGGGGATTCAGTGGAAAGACTGGATTTTTGTTGATTTATTGGTGAATTTCAGTGCATAGAACTGTTTTTTCTTGTTTTGTGGTTTTGATTCTGATTTGTGTTTGTGATTCAGTGCCGAAAAGGGATTTTTATTTGTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTTGCTTGTTTCTGTTGTTTGGATTCTGATTTGTGTTTGCGATTCAGTGCAAAGAAGGGACTTTTTCTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTCTTGTTTGTTTTTGTGGTTTGGATTCTGATTTATGTTTGTGATTCAGGGCAAAGAAGGGATTTTTTTTTTGTTTTTGGTGAATTTCAGTGCATAGAACTGTTTTTTTTGCTTGTTTCTGTTGTTTGGATTCTAATTTGTGATGATGTATACTTTCATTGTGATTCGTTGCAAAGAATGATTTGTTTATAGAGTAAAAGATTGGAAACATAGCTAAATGTTTATCGAATTTTCACCAAATGTTTATTGAAACATACCTCAGCTATCATTGAAAAAGGAAAAAGTGAGCAACTGATACTTGATGTTTCAAGTAGGAAACTGACATATATGATAGTTCATAGTTTAGGTATGGAACTAGAAAAATTCGTGATATGTTGGATGTGTTTTTGATCCTTTGCTCTTTTTTATATTCTTCTTATCTTGTTCTTGTGGACTTGGATTATGATTTGTGATAATGTATACTTTCATCTTTGTCTGTGATAATTCAGTGCAAAGAATGAATATTTTGTTGTTATTGTGAATTCAATGCATAGAACTGATTTTTCTTGTTCTTTTTCTCTTGTTTTTCGTGGGTTTGGATTCTGATTTGTGATAATGTATAACTTCATCTTCATCTTTGTGACTTCAGTGCAAATAATGGATCTTTTAGGTGTGAGTTCAGTGCATAGAGAACTGATTTTTCTTGTTCTTTTCTCTTGTTTTTTTGTGGTTTGTATACTGACAATATACTGATTTGTGATATTGTATACTTTCATCTTTATGTTTGTGAATTCAGTGTAAAGAAAGGATAGTTCTTCTCTTGTTTTGGAGGGTTCTTTGTGTCTGATTTGTGATACAATTAACTTTGAAATTCATCTTTATGAATTAAGAACTGATTTTTCTTATTTTATTGTTTTGCGTCCGCATTCTGATATGTTAAACCCTTGTCTTTCATGGTTATATTGTAATTTCAGTGCATAAAAGAACTAATTTTTGATTCTCTTTTGCTTGGGATTTTTCTTGGTCTCAGTTGGTAAGTGAGCACTTCAACTTTGAGAGTTCACATATAGACACCTCAACTCGTCTCCACTAAGTCCGTTGAACACTTCAACTTACGGAATGATCCATGTAGAGACCTCTAAAATTTTTGTGTCATGTCAGCCTTGGGTGTCCAAAAAACACATTAAGGACAAGTTGAGACCAAGTTGAGGTGTCTAGATATGTTCTCTTCAAGTTGGAGTGCTTACTTGTCAATTGAGGCTGAATTTAAGTGTCTCTTTATGTATTATGTCTATAAAAGATGAGTGTGATACCGTTACTCTCATGTTTATCTTTGTGAGCTTAACCTTTTGAAAAACTTATCTTTCTTATTTTGTTTTTGATGAGTCCGTATTTTGACTTCTGCGTGTGATACCTATACACTCATGTTTATCTTTGTTATGCTGTTTGATATTAGAGTAGCTAATGATTGTTTTATGCGAAATTGGTGTTATTTCCTTATCTCATGAATAAAAAAGACTTTTGATCTCCCAATCCTGTCATAAATATGCCATTATGTTCTATTTGAATTGACCTTTTGGAGTAGAATGTGCATTTATAGAGTGTAATGGATATAAAGTTTCAGATTGCTTACAAGTTACAACAAGTAGTTTGGGATTGAGTAGTAGTTCTGTAATTGGGACTCTTTTTCTGGGGGTGGCTATAATCCTAACATATCCTATCTTTAAGAGTGTAGATAATTTTTTTAATGTTCCATCGTTAGCATGCAGCCAATTGTTGATTCCTGCGATTCTTGTGTTTATACTCATGGAAGTTCTATAATTTCCGGACTAAATCTTTTTTCTATTTTTGGAACATGAAAGATTTCATTTGCTGCTAAAGAGATTGATCTGGTGGAATGGAAAGGAGACATACTTACAGTAGGTGCCACAGAGAAGGACTTGGCTAGAGACGGGAATTCTAAGTTCCAGAATCCACTATTGCAAAAGCTAGATTCCAAATTGAGTGGCTTATTGTCTGAAGCTTCATCTGAGGAGGATTTTAGTGGAAAGGCTGGACAATCCACAATTTTGAGGCTTCCTGGTCTTGGCTCAAAAAGGATTGCTCTAGTTGGGCTTGGCTCACCAACATCATCAACTGCTGCTTATCGCTGTTTAGGGGAGGCTGCTGCTGCAGCTGCCAAGTCTGCTCAGGCTAGTAATATCGCCATTGCTCTTGCTTCTACGGATGGACTCTCTGCAGAGTTGAAGCTTAGCTCTGCCTCTGCCATAACAACTGGTATCCATTTTCATGATCTTCGCTAATTCATTGAATCATATTGAGAAACTAAACTTGGGTTGGTTTTCATGAATGTTCTAGGAGCTGTGCTGGGGACATTTGAAGATAATAGGTTTAAGTCAGAGTCAAAGAAACCAACATTGAAATCTTTGGATATTCTTGGACTGGGTACTGGACCTGAGATAGAGAAGAAAATCAAGTATGCAGCAGATGTCTGTGCAGGTGTTATACTCGGAAGAGAGCTTGTCAATGCACCCGCCAATGTTCTTACGCCTGGTTAGTGTTCTTTCAATGCATTTCCTTGTCCCTTTTATTAGCATGCCTATAACCATGTTATTAACATGCTGACTTTTCGCTGCAGCGGTACTTGCTGAAGAGGCCAAAAAGATTGCGTCCACTTATAGCGATGTCTTTTCTGCAAACATCTTGGATGTTGAGCAGTGCAAAGAATTGAAAATGGGATCCTATTTAGCTGTCGCTGCAGCTTCTGCAAATCCTGCTCATTTCATCCATTTGTGTTATAAGCCTAGTAGTGGAGAAATAAAAAAGAAGATAGCCTTGGTTGGAAAGGGATTAACTTTTGACAGGTAATGCCATCTTCTATAAGTTGGATAAATAGAAATTGATTTCTGACCTGGCTGCAGTGATATCGTTTCTTTTATTATTGCTACTTTTTTTTTTTAAACTCTTATGTTGTGATTGCTTGAACAATTCTTTTTATGTTCCCAGTGGTGGCTACAACATCAAGACTGGACCTGGTTGTTCTATTGAGCTAATGAAGTTTGACATGGGAGGGGCTGCAGCTGTTTTGGGTGCAGCAAAAGCTCTTGGTCAGATAAAACCCGCTGGAGTAGAGGTGAGTCCTTTATCATCATTCAAGAAAAAACAAGTATTTACTCGAAGTGAGTGTATTCAATTATTCTCTTTTCTCCAAACTAATTACCATGCTGCAGGTGCATTTCATTGTTGCAGCTTGTGAGAATATGATCAGTGGGACAGGCATGAGGCCTGGAGACATTATCACTGCTTCAAATGGGAAGACAATTGAGGTAAGCTCATTTTTGGGGCTCTTAGGGGTTTGATTTAATTGGGTCTCTCCTTCACCCCACTTTCACAACAAGCTCTATTTGAAGATTGTTCATCAACCTTCCTATTCAATCTGTTTTCTTTTGTGGTATTCGTGATTGGTTGAGGTGTTTAGAACTGAAGATAATACTGAAACACCTGTTTTATAAGTTCTCTAGATTTTTTGTATAACTCAAGTTGTTTCCTTATTTTCTTTTTGCTGAAAGATTGTCACTTTTCTGCATAATTGAGGTATTTTAACTTTTAGAGTGAGTGAAAAGTGTCCCCTATCTATTTGTCAAAAAAAAAATGTCCCTTATCTGTCAATGATTAAGTTATCATGTATCAATCATGCTTCTCAGTGGCCAGACACATGGCATATGTGGAAGTGCACTAGCTTCAGGAATGCATCTTATTCCCTAGACTACAAAAACATTGAAATACAACCTTTAAAAAGTGGATGATTCAAACTTCCATCTTGACATTTTCACAGTAGATACATTGCACTTGGGTAGATAGTTTATATAGGATAGGATTTTCTTTTATAGTTTATTTTTGATAGGCTATCATTTATTTGATTGTTTACCTATTAGTTTAGGACCAATATGATGCAAGCCTTGGTGCTTATTTTCTGTTTTGCTTTATCTGACTGTTTCGTGGTTACTGTTGGTGCCTTCATATTTATGGTAGGTTAACAACACGGATGCTGAGGGTAGACTCACACTTGCTGATGCGTTGGTATATGCCTGTAACCAAGGTGTAGAAAAGGTATTAATTGAACATTATAATAGTGCATCTGTTGCTTTCGGACATCACTTGACAATGTTTACCATCTAATATGTTTTCTTTGCTTTCCCCTCCCACTTTACACCCCAAAAGTGAAATGTTTCCTTTGAATACATAATTGGAAACATATGAACTTCCATTGGTCAATGTTCTTGTAGCTATCAATATGATTGATCAGTTAAATGCTTAAAATAGACTTGACTATAAAGCCACGTATACTATGAAAATTACAAGCAATAAGACGCGAATTAGAAATAAGATTATCTTTTAACTATAACTTTATTTCTGCAATAACCAATACCTACCAAAATTAGATGTTGTAGCTATCAGAAGAAGTTCCCAGATTTCCAACCTAAGATGTAATAAAAAATGTTGTGAGATCCTCTGCTTTGATCTCCAAAGCTTCGCTCTTGCTAAGAAAGGTTGTACAGTAGTTGGATGTTTACTCAATACCTTGGCATGTGTTAAATGACATGTTTTATTGTTATGCAGATAGTTGATTTGGCAACATTAACTGGTGCTTGTGTGGTTGCTCTTGGGCCTTCAATTGCTGGTATATTTGCTTGTGCCTCTTTTTTTTCTCTTCTTTTTTGGTATATGTGATGGTTGAATAATGGTGAACATTTAGCTGAGGGTCTATCGGAAACAACCTCTCTGCTTTACAATGGTAGGGGTAAGGTCTGTGTACATCCTACCCTTCCCAGCCCCCCTTGTGGGATTGCACTGGGTATGTTGTTGTTGTGATGATCAGTTTATTATTTAATGTTCTAATTTATACATATATTACTTTGATTGCACTAAAATAATTGTGACACCAATTGCACGTGTTGGATGACGAAAGATGCTACGGTGAATCTCTGACTGATATATAAACTATGAATTTCTAATGTACTGGAACTTTATTGGATTTCTTGTACAGGTATTTTTACACCTAGCGATGACCTAGCTAAGGAGGTGGTTGCAGCTTCTGAGGTAAGCGGTGAAAAACTATGGAGGTTGCCGATGGAGGATAGCTACTGGGACTCTATGAAATCAGGAGTGGCTGATATGGTGAACACGGGAGGTCGTCCAGGTGGTGCGATAACCGCTGCTCTCTTCCTGAAGCAGGTAATCATCTGATCACTCTTAATAGTAATGTGTAATTATTTTAGTCATATCGAAATTCACTATGTTATCCCATGAAAATTCTGTCTTGATGCCTTCTTACGGGCAGACCTATGTTGCTCAGTCTCTACAAAAATGCTTCTACATCGAATCCTCCAAAATTTATACTTAAATATGTTAGGTGAAAGTTAGAAGTATAGAATTGCCAAAAGAATTTAAAAAAGAGACGTTCTTTTTGAAACAAACTATAAACAAAAGTAAAACAAACAAATCGAAACTGAGGGAGTTACTACTTTTGGAGGAACAAAAATGATCTGGACTTTCTGTTCTAGCAGCAATGCAAGCTTATGTTTAGTAGAGCCAAAAGTTTCTTCTTACATCATAAACAGAATAAAAGTGACGAGGACGGGAACTTAAAAACATTATTGAAAGGCTAAGGGCCTTCGTTTACAGCTACCAATTATTCGTTACTAGGATCTCTCTGGCCCTCTCCTTTTATAGCGGGTTTTATAAAAGTAGAAATCTTTGAGACGAGAAACTTGACATAATTTTATTCATTTTGCAGTTTGTTAACGAGAAGGTCCAATGGATGCATATCGACTTAGCTGGTCCTGTCTGGAGTGATAAAAAGAAAAACGCCACGGGTTTTGGTGTTTCAACTTTGGTGGAATGGGTGCTGAAGAACTCTACAAATTAG
Download sequence region |
Get flanking sequences on SL2.50ch12
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc12g010040.1.1 Leucyl aminopeptidase (AHRD V1 ***- D7DWG6_NOSA0); contains Interpro domain(s) IPR011356 Peptidase M17, leucyl aminopeptidase IPR000819 Peptidase M17, leucyl aminopeptidase, C-terminal
ATGGCCGCATTGAGAGTTTCTTCAGCATTGGCTTGTTCATCTTCTTCATCTTTTCACTCATACCCTTCAATTTTTACTAAATTTCAATCTAGTCCCATCTGGTCTTTTTCAATTTCAGTTACACCCTTGTGTTCAAGAAGAGCTAAAAGAATGGCTCATTCTATTGCTCGTGATACTCTTGGTCTTACTCATACTAATCAAAGTGATGCTCCTAAGATTTCATTTGCTGCTAAAGAGATTGATCTGGTGGAATGGAAAGGAGACATACTTACAGTAGGTGCCACAGAGAAGGACTTGGCTAGAGACGGGAATTCTAAGTTCCAGAATCCACTATTGCAAAAGCTAGATTCCAAATTGAGTGGCTTATTGTCTGAAGCTTCATCTGAGGAGGATTTTAGTGGAAAGGCTGGACAATCCACAATTTTGAGGCTTCCTGGTCTTGGCTCAAAAAGGATTGCTCTAGTTGGGCTTGGCTCACCAACATCATCAACTGCTGCTTATCGCTGTTTAGGGGAGGCTGCTGCTGCAGCTGCCAAGTCTGCTCAGGCTAGTAATATCGCCATTGCTCTTGCTTCTACGGATGGACTCTCTGCAGAGTTGAAGCTTAGCTCTGCCTCTGCCATAACAACTGGAGCTGTGCTGGGGACATTTGAAGATAATAGGTTTAAGTCAGAGTCAAAGAAACCAACATTGAAATCTTTGGATATTCTTGGACTGGGTACTGGACCTGAGATAGAGAAGAAAATCAAGTATGCAGCAGATGTCTGTGCAGGTGTTATACTCGGAAGAGAGCTTGTCAATGCACCCGCCAATGTTCTTACGCCTGCGGTACTTGCTGAAGAGGCCAAAAAGATTGCGTCCACTTATAGCGATGTCTTTTCTGCAAACATCTTGGATGTTGAGCAGTGCAAAGAATTGAAAATGGGATCCTATTTAGCTGTCGCTGCAGCTTCTGCAAATCCTGCTCATTTCATCCATTTGTGTTATAAGCCTAGTAGTGGAGAAATAAAAAAGAAGATAGCCTTGGTTGGAAAGGGATTAACTTTTGACAGTGGTGGCTACAACATCAAGACTGGACCTGGTTGTTCTATTGAGCTAATGAAGTTTGACATGGGAGGGGCTGCAGCTGTTTTGGGTGCAGCAAAAGCTCTTGGTCAGATAAAACCCGCTGGAGTAGAGGTGCATTTCATTGTTGCAGCTTGTGAGAATATGATCAGTGGGACAGGCATGAGGCCTGGAGACATTATCACTGCTTCAAATGGGAAGACAATTGAGGTTAACAACACGGATGCTGAGGGTAGACTCACACTTGCTGATGCGTTGGTATATGCCTGTAACCAAGGTGTAGAAAAGATAGTTGATTTGGCAACATTAACTGGTGCTTGTGTGGTTGCTCTTGGGCCTTCAATTGCTGGTATTTTTACACCTAGCGATGACCTAGCTAAGGAGGTGGTTGCAGCTTCTGAGGTAAGCGGTGAAAAACTATGGAGGTTGCCGATGGAGGATAGCTACTGGGACTCTATGAAATCAGGAGTGGCTGATATGGTGAACACGGGAGGTCGTCCAGGTGGTGCGATAACCGCTGCTCTCTTCCTGAAGCAGTTTGTTAACGAGAAGGTCCAATGGATGCATATCGACTTAGCTGGTCCTGTCTGGAGTGATAAAAAGAAAAACGCCACGGGTTTTGGTGTTTCAACTTTGGTGGAATGGGTGCTGAAGAACTCTACAAATTAG
ATGGCCGCATTGAGAGTTTCTTCAGCATTGGCTTGTTCATCTTCTTCATCTTTTCACTCATACCCTTCAATTTTTACTAAATTTCAATCTAGTCCCATCTGGTCTTTTTCAATTTCAGTTACACCCTTGTGTTCAAGAAGAGCTAAAAGAATGGCTCATTCTATTGCTCGTGATACTCTTGGTCTTACTCATACTAATCAAAGTGATGCTCCTAAGATTTCATTTGCTGCTAAAGAGATTGATCTGGTGGAATGGAAAGGAGACATACTTACAGTAGGTGCCACAGAGAAGGACTTGGCTAGAGACGGGAATTCTAAGTTCCAGAATCCACTATTGCAAAAGCTAGATTCCAAATTGAGTGGCTTATTGTCTGAAGCTTCATCTGAGGAGGATTTTAGTGGAAAGGCTGGACAATCCACAATTTTGAGGCTTCCTGGTCTTGGCTCAAAAAGGATTGCTCTAGTTGGGCTTGGCTCACCAACATCATCAACTGCTGCTTATCGCTGTTTAGGGGAGGCTGCTGCTGCAGCTGCCAAGTCTGCTCAGGCTAGTAATATCGCCATTGCTCTTGCTTCTACGGATGGACTCTCTGCAGAGTTGAAGCTTAGCTCTGCCTCTGCCATAACAACTGGAGCTGTGCTGGGGACATTTGAAGATAATAGGTTTAAGTCAGAGTCAAAGAAACCAACATTGAAATCTTTGGATATTCTTGGACTGGGTACTGGACCTGAGATAGAGAAGAAAATCAAGTATGCAGCAGATGTCTGTGCAGGTGTTATACTCGGAAGAGAGCTTGTCAATGCACCCGCCAATGTTCTTACGCCTGCGGTACTTGCTGAAGAGGCCAAAAAGATTGCGTCCACTTATAGCGATGTCTTTTCTGCAAACATCTTGGATGTTGAGCAGTGCAAAGAATTGAAAATGGGATCCTATTTAGCTGTCGCTGCAGCTTCTGCAAATCCTGCTCATTTCATCCATTTGTGTTATAAGCCTAGTAGTGGAGAAATAAAAAAGAAGATAGCCTTGGTTGGAAAGGGATTAACTTTTGACAGTGGTGGCTACAACATCAAGACTGGACCTGGTTGTTCTATTGAGCTAATGAAGTTTGACATGGGAGGGGCTGCAGCTGTTTTGGGTGCAGCAAAAGCTCTTGGTCAGATAAAACCCGCTGGAGTAGAGGTGCATTTCATTGTTGCAGCTTGTGAGAATATGATCAGTGGGACAGGCATGAGGCCTGGAGACATTATCACTGCTTCAAATGGGAAGACAATTGAGGTTAACAACACGGATGCTGAGGGTAGACTCACACTTGCTGATGCGTTGGTATATGCCTGTAACCAAGGTGTAGAAAAGATAGTTGATTTGGCAACATTAACTGGTGCTTGTGTGGTTGCTCTTGGGCCTTCAATTGCTGGTATTTTTACACCTAGCGATGACCTAGCTAAGGAGGTGGTTGCAGCTTCTGAGGTAAGCGGTGAAAAACTATGGAGGTTGCCGATGGAGGATAGCTACTGGGACTCTATGAAATCAGGAGTGGCTGATATGGTGAACACGGGAGGTCGTCCAGGTGGTGCGATAACCGCTGCTCTCTTCCTGAAGCAGTTTGTTAACGAGAAGGTCCAATGGATGCATATCGACTTAGCTGGTCCTGTCTGGAGTGATAAAAAGAAAAACGCCACGGGTTTTGGTGTTTCAACTTTGGTGGAATGGGTGCTGAAGAACTCTACAAATTAG
![]() ![]() | translated polypeptide sequence |
>Solyc12g010040.1.1 Leucyl aminopeptidase (AHRD V1 ***- D7DWG6_NOSA0); contains Interpro domain(s) IPR011356 Peptidase M17, leucyl aminopeptidase IPR000819 Peptidase M17, leucyl aminopeptidase, C-terminal
MAALRVSSALACSSSSSFHSYPSIFTKFQSSPIWSFSISVTPLCSRRAKRMAHSIARDTLGLTHTNQSDAPKISFAAKEIDLVEWKGDILTVGATEKDLARDGNSKFQNPLLQKLDSKLSGLLSEASSEEDFSGKAGQSTILRLPGLGSKRIALVGLGSPTSSTAAYRCLGEAAAAAAKSAQASNIAIALASTDGLSAELKLSSASAITTGAVLGTFEDNRFKSESKKPTLKSLDILGLGTGPEIEKKIKYAADVCAGVILGRELVNAPANVLTPAVLAEEAKKIASTYSDVFSANILDVEQCKELKMGSYLAVAAASANPAHFIHLCYKPSSGEIKKKIALVGKGLTFDSGGYNIKTGPGCSIELMKFDMGGAAAVLGAAKALGQIKPAGVEVHFIVAACENMISGTGMRPGDIITASNGKTIEVNNTDAEGRLTLADALVYACNQGVEKIVDLATLTGACVVALGPSIAGIFTPSDDLAKEVVAASEVSGEKLWRLPMEDSYWDSMKSGVADMVNTGGRPGGAITAALFLKQFVNEKVQWMHIDLAGPVWSDKKKNATGFGVSTLVEWVLKNSTN*
MAALRVSSALACSSSSSFHSYPSIFTKFQSSPIWSFSISVTPLCSRRAKRMAHSIARDTLGLTHTNQSDAPKISFAAKEIDLVEWKGDILTVGATEKDLARDGNSKFQNPLLQKLDSKLSGLLSEASSEEDFSGKAGQSTILRLPGLGSKRIALVGLGSPTSSTAAYRCLGEAAAAAAKSAQASNIAIALASTDGLSAELKLSSASAITTGAVLGTFEDNRFKSESKKPTLKSLDILGLGTGPEIEKKIKYAADVCAGVILGRELVNAPANVLTPAVLAEEAKKIASTYSDVFSANILDVEQCKELKMGSYLAVAAASANPAHFIHLCYKPSSGEIKKKIALVGKGLTFDSGGYNIKTGPGCSIELMKFDMGGAAAVLGAAKALGQIKPAGVEVHFIVAACENMISGTGMRPGDIITASNGKTIEVNNTDAEGRLTLADALVYACNQGVEKIVDLATLTGACVVALGPSIAGIFTPSDDLAKEVVAASEVSGEKLWRLPMEDSYWDSMKSGVADMVNTGGRPGGAITAALFLKQFVNEKVQWMHIDLAGPVWSDKKKNATGFGVSTLVEWVLKNSTN*
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Other genome matches | None |
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Nature and regulation of pistil-expressed genes in tomato.
Plant molecular biology (1995)
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The specialized reproductive functions of angiosperm pistils are dependent in part upon the regulated activation of numerous genes expressed predominantly in this organ system. To better understand the nature of these pistil-predominant gene products we have analyzed seven cDNA clones isolated from tomato pistils through differential hybridization screening. Six of the seven cDNAs represent sequences previously undescribed in tomato, each having a unique pistil- and/or floral-predominant expression pattern. The putative protein products encoded by six of the cDNAs have been identified by their similarity to sequences in the database of previously sequenced genes, with a seventh sequence having no significant similarity with any previously reported sequence. Three of the putative proteins appear to be targeted to the endomembrane system and include an endo-beta-1,4-glucanase which is expressed exclusively in pistils at early stages of development, and proteins similar in sequence to gamma-thionin and miraculin which are expressed in immature pistils and stamens, and in either sepals or petals, respectively. Two other clones, similar in sequence to each other, were expressed primarily in immature pistils and stamens and encode distinct proteins with similarity to leucine aminopeptidases. An additional clone, which encodes a protein similar in sequence to the enzyme hyoscyamine 6-beta-hydroxylase and to other members of the family of Fe2+/ascorbate-dependent oxidases, was expressed at high levels in pistils, stamens and sepals, and at detectable levels in some vegetative organs. Together, these observations provide new insight into the nature and possible functional roles of genes expressed during reproductive development.
Milligan, SB. Gasser, CS.
Plant molecular biology.
1995.
28(4).
691-711.
Isolation and characterization of the neutral leucine aminopeptidase (LapN) of tomato.
Plant physiology (2003)
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Tomatoes (Lycopersicon esculentum) express two forms of leucine aminopeptidase (LAP-A and LAP-N) and two LAP-like proteins. The relatedness of LAP-N and LAP-A was determined using affinity-purified antibodies to four LAP-A protein domains. Antibodies to epitopes in the most N-terminal region were able to discriminate between LAP-A and LAP-N, whereas antibodies recognizing central and COOH-terminal regions recognized both LAP polypeptides. Two-dimensional immunoblots showed that LAP-N and the LAP-like proteins were detected in all vegetative (leaves, stems, roots, and cotyledons) and reproductive (pistils, sepals, petals, stamens, and floral buds) organs examined, whereas LAP-A exhibited a distinct expression program. LapN was a single-copy gene encoding a rare-class transcript. A full-length LapN cDNA clone was isolated, and the deduced sequence had 77% peptide sequence identity with the wound-induced LAP-A. Comparison of LAP-N with other plant LAPs identified 28 signature residues that classified LAP proteins as LAP-N or LAP-A like. Overexpression of a His(6)-LAP-N fusion protein in Escherichia coli demonstrated distinct differences in His(6)-LAP-N and His(6)-LAP-A activities. Similar to LapA, the LapN RNA encoded a precursor protein with a molecular mass of 60 kD. The 5-kD presequence had features similar to plastid transit peptides, and processing of the LAP-N presequence could generate the mature 55-kD LAP-N. Unlike LapA, the LapN transcript contained a second in-frame ATG, and utilization of this potential initiation codon would yield a 55-kD LAP-N protein. The localization of LAP-N could be controlled by the balance of translational initiation site utilization and LAP-N preprotein processing.
Tu, Chao. Park, Sang. Walling, LL.
Plant physiology.
2003.
132(1).
243-55.
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