Lsi02G021810 (gene) Bottle gourd (USVL1VR-Ls) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAGTAGTTCTTCAGAATCATCTAAAGCAAAGAAACGCCGACGAGAGGCCGAAATTGAAGACGATGGCGGCGACAATACTGAAATTCTCTCTTTGGGTATTTTCTGGCCATTTTTTTTAATCATTTTATTCGCCTAATTGCTGATTGATTGATGAAATATGTTGTGTTTACTTCAAATGCAGAGGATTGTCTTACATTTAACGATACTTTGGCGGCGCTTCGTATGATGCGAGCTCAGTTTCCCAACATTGAGAAGGTTCAGGTTCTTTAATTTCCTTTGATTTGTGTCTTTATATCTGGGTTTCTTAATTTTAGGCGAAATATGTAATTGTTCGTTTCATGGAGACTTTGAGTAGTGAGTGCCAGAGATGTGTGTGTAATGGGGCTATTCAACTTTTATAATCGAGTAATTCAAATTATAGCTAGTGGGTCTTTTTTTGCCAGAGAATGCGAAGTGTTGGATATGAGAGTGTCGGAATTGTTCGACGGCCGTGAGAGGTTTCCACTTGAGGAGGAATTTGATGTGGGAAATTTCTTATGGGTTTTTTTATGGACCCACTGGATGAAGAGAACCAAGACTTTTCTATGGATTATGGTGCTTGTTAGGATTATGGAGTTTAATCCTAAAACTAACTCAGTACAATTCCAAGCTGAAGTCGAGTGTATACCGGAAAGAATCATTGAAGATGTATGGATGCTGTGGCGCAAGGGCCTATTACAATTCATTGAAGAAGAGGCAGATTCTGTGATATATGGCCCGGGCATGACGTTCAACCTGTAAACAAAGTTTTCACGGTCAGTTCTAGGTACAACTTGTGAATAAATGGGGGATTTGAGAAAAGACGAGCTGTTTGCTATATGTGAAGACTCTGGGGCATGAGTCGTTAGTGGACAGGAAGTTGAAAGAAAAAATTATTTGGGTCATATTTTCATAGGCGGGAAATACTATTGTGGGAGCGCGTGTGTTTTCTATTGTTTACAAAGGTGAGATATAGTACATTCACGGTCTTCTATTGGATTGTCTTTTTGCGCAGTCAAGTCGATCTGGAGCATATGTTGAGGACTTCTGGTTTACGTTTAGCTTGGAGGAGAGATCGTTTCTCCATGATTGAGAGAGGTTCTCTTGTATTTTCCGTGAGAAAGGCCATGTGAAGTGGCAAGTGAGTTTTTTTTGCTATTGTTTGGGGTATTTGGCTAGAGAGTAATAATAGGATCTCTAGAGAGGTTGAGACATCCAGTGAGGAGGTTTGGGAGGGGTCGGTTTAATGCCTTATTGTGGGTGTTTGTTATTAGGTTCTTTTGTAATTATGATCTTGGTTTGATTTTGTTGGATTGGAGCCATTTTCTTAGTTAGTTTGGGGCTCCCTCTGCTTTTCTGTGGGCTGTTTTTTTTCTTTTTTTTTTCTTTGTATGTCCCTTTTCTTTCATTATTTCTCAATGAAAGTTTGATTTGTAAAATGAAAAAAAAAATCATGTTCTTAGTTGAACCTACAGAGTCTGAAGGAGATGGAATTTAATTAGTTAAGGGTAAATTTATATAATTTTTTGTGGTTCTTATTCTCATTTATTTTTCTTCTCTTGCTTTTATCATTGTTATTACTGCTTATGTGAAAGGAGAATTAAGGATTATGTGAAAATTTCAAATTTCTGATGATAAGTATGAAAGCAAGGTTCATAATCTTGATGTCAATTGATGCTATAGATTGCTGTTTTGAAGATTAGATCAATGATTGTTTTTCTAGTGAATAGTTAAACCTAATATTGGAGAAGTCAAATGACATGATGGATGAAGATTTGAAGTGTTTAGAGAAGATACTTCTTTTTCACCGTCGAAGTATTTGTAGTGCTAGTTAGGATTAACATTGAATTTTGAGGGAACAAGAATTTCAACCACGAGTTTGAAAACAGTAGTAATAATAGATGGATTAGCAAGAAAGATGTCAAATGCTACCCTTACTGTAAGAAGGATCAAGGTGATTATAGAAAATTAAAGAAGCAAAGGAACAACTCAAAGGAAAACATCATAGAAAATTGTCTCATAAGCTTTCACATTGACATATGGATTACATACTATATATTATATTGGGCAGCTGACAGTGCAACATCTATCCAGTGATCTCAAATCAAGAAATGTTGTAGATTGTTGTTGCGTAGGATCAAATATATTCCAGGTATTTGTCTCTTGTTAAAAAAAAAAAAAAAAAAAAAAAATTCCAGCTATTAAGTTCAATCTCTTCTCTATAAATAAACATGATGATGGAGGTTAATTGAGTGAGTTCAGAAACGGCTAGTAGAAGCTTTCTTGAGGCTTCATGTTGGTGGTTAGAGGCCACAATAGTTTTACACTAGAGATGAAAGTGCTTAAGGCATGTCATAAATCTTTTACACAAAATGGCTAAGAGGTCATGAGTTCAATCCATGATGGCCACTTACCTAGGAATTAATTTTCTACGAGTTTTCTTGACGCCCAAATGTTGTAGGGTTAGGTAGGTTGTCCTGTGAGATTAGTCGAGGTGCGTGTAAGCTGGCTCGGACACTCACGGATATAATAATAATAAAAAATCTTTTACACAAAGTGCCATTCAATAGGCTTGTTTATGACTTTATGTTACTTTAGCTGACAATGTAATTAGGACAGTTACATTCTAAGCCACTGGTTTAAGTAGAACAATTGGGAAGATATGAAAGCAGTCAGAACATATCCTCAAGTATTAGCTATCCCATAACACGCAAGATATGAAAGTAGTAGACCGATGTAATTGCTTAATGACAAGTCTGCACTTAGGATAGGTATCTCGCGGTCCAGGTGTAAGAATGTGTACAGTTTTAGAGTTATAATAGAGTGGAAGAAGATTACGAAATAATTATAAATTGGTATCGTACTTCAAGTAGGCATCCATATTGCTCGTATCTATGATGTTAATGGAGTAATGATAAGTGAATTAGTAGAATTTGAAGAGGGTACTACAGACATTGCTCTAAACTTAGAATGAAATAATAAGGTGTTAGAGAGTGAGTCAACTTTGGCAACATGCTTGAGCATATGGATAAAAAAAAACAGAAAATTCTTTTTCTAGTGGTTGCTATTGACAGACCACGGAATGGTGATACATTTTGGTCTCTAGTTGGGATGAGTGTTAATGGGTTTCATGCATTGAAGAAAACTCATAACAAGGTTCACATTGTGGGAGTTGTTGAGGTAGAGGGAGATGAGATTGCTGTTTGGTTTCTAAATAAGAGATAGCATTAATATTTTGGTGCTTGGCGATCAATTGAACTTGGTCTAAGCTCTATTTGAAGTTTAACCGAAGATCAAGTGAATGAATCTTTGAGTTTCCATGTTTTGGTGTTAGTTGGTAAGAACTCCTTGTACGGTTAGGAGACTTCCTAATGAAGCCATGTGCATGTTACTAGCAAGCATGACAACACCCTACAATCAGTGCTTTCTCTATCAGTTTGGGAACAACTTGTGGGAAATGAAGGGCATAGCGGAAGGAAAGATTGTTTGCAATTTATAAGAGCCTTGGACATGAGTAGGGAGAAAATTTAGAGAAAAATCCTATGAGAAACTTCTTCAGAGATGAAATATATTCTTGTAGTAGTGTGCATGCTCTCTATTATTCTTCTCATTTAATCTTCATTGGTGGAACTTATTGAGTTGTAGAAGGCAGAATCAAAACATGGGAAAGAAAAGTTCATGTCAATGTGCAGCACATACTCTTAAGTTACTAGTTATTTATCAGTATGTCCTTCCTCATTAAATTGGTATGTGCCTTGTCTTCTGCCTTGCTCTGCATTCTATGAAGCATTTGCATCTTAGTTCGAAAGACATCAATACATGTCAATCCCATTTGCTTTTACACTTGGTGTTTATTTACTTTTCCTTGTTTTTCAGGTGTCAATTCAGCCATTCATTTTGCAATCACAGTTGTATAGTAGTTTGAAAGACAGAACAGAAGTAGACAGGGAATTAGAGGTCTGTACTTCTTTCCTCTCTTGTACTCTGTAATTTCTAGGTTTATAAGTTTTCTCCAAGCATTAACCTGCGATCTGGAAAGTGGAAGATAGTTTTTGGTACATGTGAGGCGATGCTCGAGCAACACTGGGGCGGCGTGCAGGGATGCACAAGCGCGCATGACAGGCAAGCAGACTGACACTGGGGCGCGCGGTAGCAGGTAGATTGACGCTGGGGTGTGCACACAGTGGCTGTCAGCGGGCTGTCTTTGTGATGGCATGAACAACTGAAGCCACAACTTTTTTCCGAACTCGGTGAGCATTTTCAGAGTATGAAAATGAGTGAAACTAGGTATGCCAGTAGGAGAGGAGTGGGGAGCAAGTCAAGACCTTAGATCACATGCTAAAATTAGCACGAAGACCTTTTCGTAGGGCCAAAGGGATAGGAGTTCGGTCTACTATAAATAGCTGGACGACTTCCCCAAGTTTCTCAACTTCCTTTGAGAATAGGGAAGGTTGTTGCTTGTAAATTGTATAAATAGGGGATGGATTCTCATTTGGAAACCATCCCATTTCACTCACATTAGAATTGTAATAACATTCTTTAGAGAATAAAGAAAACAAGGGAGTTCCCCCTTGGTCAACCATGAGCTTGTGTAGCGTTAGTCCGCTTGTGTGCCACTGCACGTTGCCTTGCGCGCGTGCGCCTATGCATCCTCGCACGCCCCTGCCGTGCGCACCTTTGCGTCCCAGCTCGCACGCACACCCGCCTGCACGTCCCAGCTCGCTCGCGCACACGCCCGCCCGTCTACGGGTCCTAGCTCGCCAGCTCGCATGCGCATGCCCACTTGTGTGTGCGTCTGCGCCCATGTCAGCGCTGCCTGGCACGTGCCAGGGCCTTCCTAACGCCTGCTTGCTATGCCGCGTCCGACCATGCCTATGCATGCTCCCACGCCCATCCCAGCGTCGTGCGTCCACCCACGCTCGTTGGTGTGCTATGCCCACGAACAAGTCTCCACTTCCTTGTGTGCTTCAGGTACGCCCTCTCGCACCTTGAATTTTTCTCGAACCTCAGTGTGTTTGTATATTTGAAAAACACCCTTGTGACAAACAAATCAAAATAGGGCGCTGGCCAAACAAATCCAAATAATTTTTGCCTTTTTAATCTTGTGTATTTTGATTTTCGGGCAATTCCTACTACCCTGGTTTGTCGGGCAATGGCCCATTGCACTCGGGCTGGGTCCTTCTCTTATGTTGTAGAAGTGCATTTTCCAGTGAAAAAGCAACCATGGATTTTAGCTACTTTGTCTATTGAGAGGTTCCTGTCTTGACACGCCACTACTTGCGCCACAAAGCATTGATCATCATCTACCAGCTTTACTTTGGCCGGGTGAATACACAATAGTTTCCTTTGGACCATTATGGTGACTTTCACCCAATTGACAAGGGTAGAATTATTTTCAGAATACCCATAAAATCTTTGAAAAAGTCCCCTGTAGCCTTAAAGACTTCCAATCTCCATAAATGTGAAATCCAAATATTTATGATATTGCTCCTTGGTGGAATGAATGGGATTCTATTCATTTGAAAGGATTGTCTTCTCTTTTTGGACTCAACAACTCCTCGAGAAAAGATTGGGGAACCTTTCACATCGACAGAGACAACAATGGAAAATTTTGTTTCCGTGGTAACCGTGATAATTGGCGCCCATCTGGTTCATTGCACCTTTATGGTGGTATAGCAAGAACATTGCTAGACGGTCAAATCGACATCGATAAAAATATGATGAAACTTATCATTATTCGTGATGGAAATCCAAACATTTCTATTTTCTAGTACTGGGTTTAAGTGCTTCAGATGGTTGGTAATGGAAGAGGCTGAAGTTTTTGATAGTGTTAAGTGATACAGAATGTAAACGCCTTACATGTAAATTGTTCAAGCTTCAAAAAAAAGAAAAAATCTCCATAAATGTGAAGAAATGTTTCTGAATTTAGCCCACCCACCATAAGAAGAGACCAAATTATTCTTGCCACGTTCTTTCAGCTCCCATATCACCATTTTTGGTGAGAATGAGGTGAAAGTGACCTGTCCCTATCCAGTTGGAATGGATTTATGATGAAAGACTCCTGCGTTTGAATCTGTATTGAGTATTGTTTGTGTTTCAACAATCCTTTCCCAGTCATCATGGAAGTCGTCACTATCAGCATTTCCTTCAAATTTAATTTTCTTACCTCCTCTTGCAGCCTTTTAATTTGGCCTCAGCAAAGAAGTATTTAAAGGTTCTCCACACCTGAACTTGGCTTAAGAGCTTCAGCATACTTAATAACTCCTCTGACTGTTTTCTTTCTGGGAGTTTTGAGCTGAACATTTTCTATTTATGAAGTCTAGAATGAGAGTCCTCATAGCTGCCCATTCATTTGGTCGTGGAATTTTCAACCGCCATTGCAATAGGTCTTTCTGAAACATTCCTGTGACTGGGGAGCACTTCTGATAGTTTTTTTGATCTCATTATATTTCATGCCATGACTTGGTGCAAATGTATTTTTTATAGTTCTTATAACCTATTATCTCTTCTAACCAATTGGAGAAGTCTTTTGTAACTCTATTGGTTTGGGCTTTGGCCTCTTTCTTATAAATTTCATACATCAATAAAATTTGTTTCTTATAAAAAAAAATTCTGCGACTGAGGGACTGGCTAATATCAGGTCTTCCAAGGTGTCTGCAGTGCAAACCAAACTAGCACAATTTCTGCTGCTGTCAAGGCAAAGATCCTCTTGTCTGATTATGTTTTTGTGTAGGATTCTTATGGAAAAATGTTGCTTGCAGGATTGCTTTCTCAATGTTATTCTCAATTGTACTTTTCTTACCTCAAATTTATAATTTTTGAAAAACATTTTGAATTTGGTTCATGGTGATCTTTGCTCATAGATTTTGTTTTATGCAGTGTCTAAAACGAGAAAAAGTAGTGCGTGTATTCAAACTGAATACTGGACAAGATGATCATGCAATAATGTTTTTGGATGATTATCTGAAGCAGGTTAGTTTTAATTAATGTGTGATTATATAAAATTTCATTTTATAGCCCGACGCCTGGTGTTTTGTGATGGGACATTTTGCTTGCTTGTAAACTGTGCGCGGACATTTGAGGGGTTGATTGGTGGCTTTCCCTTGGACTTGGTGCAAATGGTTACAGCCTTCTTGATTTGCTTAAACATTGATTATTGTTTGGTTAGGTGTGTCAAAAGCTTTCTGTTGGGAACATTTGTTGAAAAAGAAATTGTAGAATTTATGAAGGAAAGAGTAAAGTTAAGGAATTGATGGATTTGGCATGCCTTAATTTTTTTTTCTTTCAATTATTCTTCTTTTTTAATGATTGTCAATTGGTGTGCCTTTTCTAATTGCCTTCATATGAGGATGGATATAGTACCTTCCTCTTCAGGTTTTGTACTTTTTGCAATTTGTGATAAAATATTTCTTATCCATTAGAATTTTGAGGGATTTATTTTAGTTTGTTCCTATGACATTAGCATGCAGATTTGTTTGTTATTCAACGATGCATTTAGTTCTGTCATTATTTTCAAGTTCTGTCTCTGTCTCTTTTTCCTTTTCTATATTTTTAATTATTTTTATACAGATTGACCATGTGATATCAAGATTTGAAGAAAGAATGCAACGTGGCATGGAAATTTTTCAGTGGTTTAAGAGGCATGTTATTGATTGCAAATTGGAACCTAGTATTGGACATGAGGAGCTTGTGAGTAAATGTATACTTCCTATAGACTCTAAATTCTATGGGATGTTTTAATAGCTTGTTTCAGGATGGAAATCAGATTTATGCAAATACATAAAAGGATATGAAAATATAAAAGGATGTGACGCTAGATGTTGCATTTTACATTCAAATATTCAATTTTATAATAGACTGGAGATAAAAATGTGAAGTTCATATACTTAACTAAGCTGTACAGGCAGCATCCCATAATTGTATGAAGGAGTTATGGATGGAGCTTCAGGACTGTTTAGGTCTCTGCAGCAATATGGGGCATGGTGGAGATTTCAACATTATTTGTTGGGTACGAAAACTTAAGTAGGACAGCAGACCTGGAAGTAAGAAGGTGTTGGTTTACTTCATTGAGGACTGCAGAACTGGAAGTAAGAAGTCGTTGGATTACTTCAACAAGGTATCACCAAATAACCGCGAGGATGCAAAAAATAAGCCCAATTGAAGGTAATATGCACAAAGATCATAATTACAAGTGTGATTAATATGCAACGAGTGCACCAAGTAAAAGCAAAAAATTTGTTTTGATCCCAGAAACCAAGAAAAACCTAGAGTTCCCGGTCTTCATTGAGAAGTCAGATTCTGTGACTTGCTTCTTTGAGTTGGATTTGAAGTCTGCCTTCAGTTTGTTGCAAGTCTTGTCTAACTTGGTGCCTAGATCTACATGAAACTATGTTAACAACTTGCAAAATCAGAGGAAAGATATTCTTCTTCTTGAGAGTCTTAAAAATATCAGTATGTGATTAACCGTGGTATAAAAAGATGGCTAAAATTTATGTGAAAAATAGTTTTGGTTGGTTATCTGAACTCAATTTGTTAAGTACTAGCAGGACTTTTTGGGAACAAATCTTTGGTGCTCAAGACATGTGGAGCATCTCATCTCTAGTGAGAAAAGGCAATATAGTTTACTTTTCAAAGGATGGTTGGTTGCTATTGCAACATACTCTCTCAGTTCAGTAGTGTCCCCAGAAATTTTTAGCTAAACATCCTCCGTGACAGCTTATGTGTACAATTCTTAGAACAAGCAAACAAATGATTTTGCGGAACTTTATCTAACTGAGAGGTGGAAGAGTGGCCTGGCCTAATGAATTCCCTTTTAAATGTTTGTCACTCAAACATAGGAGATTAGAGGTTCTGGTGTTAAGGATATTCTGGTGGCTTCTATAGCAGATCAACCCTCATTACTTCGTATCATGAGCCATGAGGGTGGTGCTCTTCCAAAATCTTCGATCAAAGCTTTGTAGAAAGGAAGATATCTCAAGAAAGTAAATAGTTTTCCTTTGGATTTTACTTAGAAGTGGGCTTACCGCCGATGAAATCCAAATTAGAAAAACAACCATCACATTTCAACTGAATTGGTGTGGTCTCTATATGTTTGGAATAAAACGACTGGTTGCTATTCCTTCATAGTGACCATTCTCAGTTTTGGTATAAATTGTTTCGATCTTTGATAACCACTTTATAACTCCAAGGATGGCTGGTCATGTTTTTAACCTCTCTGCTTGTTGGGGCCCCTTCCAAAGCAAAGTGAAATTCTGTGGTTTTGATGCATTATTTCAGCTTGAGCCTCTTGTTTTTAGTAATAGGGAGTAATGCAATTTGTTTGAGGACCAATAAATTTCTCAGGTTTGTGTAATATACTTTTCATACTGCAGTTAGCTTGCATTTTCCTGTATTATTTTGTACTGGACAACGTTAATTTGGGTTCACGTACCCTTGGTTGGTTTGAGCAATTTTTCATGGACCGTATGCTCAAACAGAAAGCTAAAGCTGTGGCTTTGTGGTCAATATTTTACAAAGCTTTGCCTTGGAGCTCAGATCATAAATGTTTTTGTGATTATTCCTTTTGTATTAGCTAATAGTAGAATTTGTTGGTAACCCCCTTGGCTTTAGGTTCTTGGGTTCTTGTTCTTCAACGAAGCAAAAGGTTTATGTTTCTTGTAAAAGAATAAAAAAATTGTGGATCCTACAAAATTTCATTGGAGTTTGACTAACTTCAATTTGACGACAGTGAATCTCTGTTCTTCTAAAGAGAGTATATCATTGTCATTTTCCTGAGCAGGATACTTGACCTGTAAATTCTAATTCTTAAATAAGTTTTTTGAAATACGGCTCAAAATATTCCCTTGCGTAGAAAAAAGAAACTCAACTGCTTAATTTCTTGCTGCAGTGCACTCTCTTATCTCTTGGGGGAAAGGTTAAAGATGAAGATATCTCCCTCTTGATCAACGCTGGACTCTTAGTAAGTAATCTTGAGATTCTCATTACAACTTCCTTTAACGTGGAAAAGAGCGGGTATATGGTTAGAGTTAAGATAACAGGAATTTAGTTCTTTTATCTCGGTGATGGCTGTGTATTAGAGAGAACTGAAAATAGAGAGAAAGCTTGTTGCATTCATGTAGGGCCCCCGTGCCCCATAAATTTTGTTTTTGATATATTGCTGAGTAGCTCTTGCTCACTTGCATTCACGTAGGTCCCTGCACCAAATACTCATTTCTTATTCTATCAATCTCAGCTGACCACACTTGAGGTGGTCTGCTTTTTGAGTCCACAGTTCTCCAGACAGAACCATACCCCTTTCTTTGTCTTTTTATTTATTTTTTATTTTTTTAAAGAATACCTTTAAGAACAAGAATTCCTTTCCATATATGGTCTTCTCATGGCCATTTGTACATATAGATCGGCTGGCCCCTTTTTATTTGGTTAAATAGTATATTTAATGAAAGCCCAAGATTTGTTTCTTTCCAAGTATTTTTCATAATTTTCAATTATGTTATATGCGTTTGATCGTGTCATATTCACTTCTACTTTTCTTTCCAGAATCGCCAACTTATTGATCCAAACGTGTATTGGTTTGCAATTCCAAGTATCGGCTCAGTTCTGAAAGGCATTTCTCAGGTATCAAATAATTTACTTTTGAACTTCCTTCACAATTTGTTTGTATTTCGGCAATATGCATGCAGGGTGGCGTCCAATCTAAAATTGGAGACATTTATATATTTATTGATATGGACAGTTTTTTGTTGTTGATTCACATTGATACAATCTGGATATATGGTAATTTTTTAATACATTTGCAGACAAATTTGAGTGTTAGGTATCATGGAAATTGGTGAAGGAAAGCTTTTAATTGGAAAAGAGTTGAAACTTATTTAACAAGTTCTTTCTGTCTAAGGGAAAAAATGTGTCTCTGCCCCTACTATGTAATTGTATCTACTTGAATTTGATTCCCTCTGGGGATGCATCATGGTCAGGCCACAAACCTTCTGATGTTTCCCATGATGTGAATGCATTATTTCTATATGCCTATTAAAGGGCGTACAAATCTAGTTTGTACACACTAACGGTAAAAATAATACAAATCACTCACTGTACACTCTATATAGAAATAATACAAATCACTTTTTATCTTTAGAAAAAAGGGAAAAAACAAAAAAACCACCAATGGATGAAGTATTTGTGAATATGGGAATAAATAGAGATCTTTCATGTGAAACTACGTCTTTCATCCGCCTTCCAAGCACTGTTATTGAAGTAATGAATATGTCAACCTACAGTGAACACAATTCTATCTTAACTTTTGGTTTGGAGGTATGGAATAAATTTTAAAATTCAATGAAAATGTGACTTAGTTGACCTTACTTGAACAAGATCTATTATATACATTACATGCAATTGTGTCCTTGAATTCTAATGAAAATTCTGACTTATCTTTCACTAGATGTGATGTACTGATGTGTGTGCTCTTTTCTTTCTTTTCTTAATTCAGGGTAGAAAGGAACTCATTTCTTTGCTAAAACGTACCAAATATAAAGAAATGATGATGACATCTTTACAGAAGAAGCGTCTTCGCTTTTCTTCACTTGATATGAGATTTCATATACGGGATTTAATTGGCTCTGGTTACCTCCGAACTGTGCAATCACCGACAGGCTTACTTGTTCAGTTATCGAAAGATTAAAATCAAGGACTGAATCATGTGCTTCTGTTTGCTATCCTCCCCTCTTGTTTATTATCTTGTTGAAAGGTAAGTTGCTATCACTTGAATAGTTTTTAATAAAGATAGAAGAGGGAAGAGTTCAATTTTTACCCTTGTTATACAAGTGACTCTAGTGTATATGGTGCAATTGATATTTAAGTTTCTTTTCTTCTCTTTTATTTAAAAGATTTATGGTTGGCTAAGACTATTTTTTGCCATGATTCATTGTTTCAATCGTGTTGGATGTTCTTCTTAAGTAGTAGATTTTTGGGCAAAATGCATTTTTGGTCCCTGAAATTTGAGGTTAATGTTTGTTTTGTCCCTAAAGCTTTAAAATGGACACTTTAGTCCTTGAGGTTTGGAAAATACCTCTAAATAATCCCTGAATTAACTAACTTGACTGTTAGTTGACTAGTGACGTGACTTGTTGAGTTGATAAATTTTAAATGAGGTGGTCATTTTTTTTAATTTTATATTAATTTTTTAGACATGGTGGTTTTTTTCCCTCCCTTTTCTGTTCTCTTCTCCCTTCCCATCTCTCTCTCCCCCTTTCCCTCTTCCTGCGATACAGTTAGAGAGAGGTAGGAAAAACAACCAAAAAGCCAAAAACTACAATCATCATGAATTGACCTAGTGATAAAATAGGAGGCATAGTCTCAATAAATGGCTAAGAGGTCTTGGATTCAATCTATGGTGGTCATCTACCTAGAAATTAATATCCTACCAGTTTCTTTGATACCCAAATGTTGTAGGGTCAGGTGGGTTGTCCCGTGAGATTAACTGAAATTCATAATTTTGTCAGATGGAACTAAAAGTTTAAGATTAAAATTGATACACGTTTAAAATGATATTTTTTTTATGGAAATTGAAGTTTCTCTTTCTACTAGATGGCTCAAGTATTTGTATCTTGACTTGCAGAGTGAAATGGAAGTTAAGCATCAGCAACATGACAGACACAAAAACTGATCAGAAGCCATCATCACAAGGGTGGTAATGGTAAGAGGACGTGTATTCTTAAACTTTTTATTTTTCTCATTGTTGATTTATTAGCAGAAGGGGAAATAATAACTATTGAATTTGTGAATGTTTTAGTTTATCTTGCCATTACCTTAGTTTGTAACATTTGGGGGGCATTTCTTGTAGGATTTTAAATTAGTATCGATATACAATTGAAATGTCTATGTTATACTATTGATACACTAATGATATACCTTAAGTGCATTTTAAATTAGTATTCATATACTATTGAAATGTTGATGTTATACTTAAAGTTTATCATTATGAATGATATACTTCATTTTTGGTATATTAACAATATCATTGTTATGTTTTCTCTCTCTAAATAATGTATATTAGTCAATTGATATACAAAATACAACTTATACTATTGACCTATCAAGTTAAATGTAACTTACATGCCATAAAAAATTTACATACATAACATAACTAATGCCAAAATTTAAATTAGTCCATTGAAATCAAACTAATCAAATGAAAACTTCCTATCAAATGAAACAAAGAACAAAAACAATATATTCACCATGACCAAATAAGTAATATTGACTATAACATAATTAAAATAATGGTATATCCATTGTATAAGTGACAATTTTTAAGTATATATGATATACATGTTGATAAATCAGATTTAAAATGATGCTATATTTAAAAATTTAGAAAACCATCACTAGATTTGTAAATATTCTTATATTTTTTTTAGCCACTACAATTTCCCAATATTAAGATAGCAAATAATATGTATTGGGTAAATGATGAAGCTTTTTTATTCTGAATGGCCAAAACTGAATCTTAAGTTGAACTGGCCACTCTGATTTCCAAGCAAAACAAAAAGTTTTAAAGATTGAAGTAGTGATGGCTTTTCAAGTTGTCCACTTCCTCACCCTTTTTTTCCTCACTTTTATTGGGTATATATATAATCTTAATCTTAATATGGTCTCTCTTGAAGAAAACTATATTTCAAATTTGATTTTGAATTAATAAAACATCTAATCATCAATAATCATGCTGCTTTTTCCTAAAAAAAGACCATGCTGTTCACTCTCTTTTTCTATGGAACATATTATATGCATTCACTAACATCTTTAGTCTTTTTGACATATTCAAAAATGTTATACAAGTAATTTAACCAAATTAAGGACAAAATGGTAAACTGGCCTAATAATTCATAGACCAAGGAACAATCAGAAGTAGAATGGAACAAATTGCTTTTGCTGTGTATTATCTACACTGAAATACTCATGTAAATTGCTATTGGTTTGGTGTCTTTTGTACAACATAAATTTTTTAGATAACCCCACCAAATTAGACGTGGGAAAAAAAGAAAAACAAGAAAAAGAACATTATGCTTCAATGGTGAAGAATGATAACTACTATTCAGATCTATTATTCACCTTTTTCAGATCTCTTATTCACCTGACTGCAATAAATGCTACCATGGATGAAGGCTTGGCTCCGAGGACAGTTGTTAGAAACCAAGAATCCACCTCCTTCGTCGTTGCTTGAATTTAATTTTCTGTTAAACTGTAGTTGGTCGAAGAATTTTGATGCTGAATGCACCATTCTAGATTGAACCTATATATATACTAAAAAATTCCAACTGATATTGGCTAATGAATCAGAGCTCCTGCTGTTTCTCATCTGATAATATGCAGAGAATCGACACGTTACATCGACTCTTTCC ATGAAATCATCTAAAGCAAAGAAACGCCGACGAGAGGCCGAAATTGAAGACGATGGCGGCGACAATACTGAAATTCTCTCTTTGGAGGATTGTCTTACATTTAACGATACTTTGGCGGCGCTTCGTATGATGCGAGCTCAGTTTCCCAACATTGAGAAGGTTCAGGTGTCAATTCAGCCATTCATTTTGCAATCACAGTTGTATAGTAGTTTGAAAGACAGAACAGAAGTAGACAGGGAATTAGAGTGTCTAAAACGAGAAAAAGTAGTGCGTGTATTCAAACTGAATACTGGACAAGATGATCATGCAATAATGTTTTTGGATGATTATCTGAAGCAGATTGACCATGTGATATCAAGATTTGAAGAAAGAATGCAACGTGGCATGGAAATTTTTCAGTGGTTTAAGAGGCATAATACCTTTAAGAACAAGAATTCCTTTCCATATATGAATCGCCAACTTATTGATCCAAACGTGTATTGGTTTGCAATTCCAAGTATCGGCTCAGTTCTGAAAGGCATTTCTCAGACAAATTTGAGTGTTAGATCTCTTATTCACCTGACTGCAATAAATGCTACCATGGATGAAGGCTTGGCTCCGAGGACAGTTGTTAGAAACCAAGAATCCACCTCCTTCGTCGTTGCTTGAATTTAATTTTCTGTTAAACTGTAGTTGGTCGAAGAATTTTGATGCTGAATGCACCATTCTAGATTGAACCTATATATATACTAAAAAATTCCAACTGATATTGGCTAATGAATCAGAGCTCCTGCTGTTTCTCATCTGATAATATGCAGAGAATCGACACGTTACATCGACTCTTTCC ATGAAATCATCTAAAGCAAAGAAACGCCGACGAGAGGCCGAAATTGAAGACGATGGCGGCGACAATACTGAAATTCTCTCTTTGGAGGATTGTCTTACATTTAACGATACTTTGGCGGCGCTTCGTATGATGCGAGCTCAGTTTCCCAACATTGAGAAGGTTCAGGTGTCAATTCAGCCATTCATTTTGCAATCACAGTTGTATAGTAGTTTGAAAGACAGAACAGAAGTAGACAGGGAATTAGAGTGTCTAAAACGAGAAAAAGTAGTGCGTGTATTCAAACTGAATACTGGACAAGATGATCATGCAATAATGTTTTTGGATGATTATCTGAAGCAGATTGACCATGTGATATCAAGATTTGAAGAAAGAATGCAACGTGGCATGGAAATTTTTCAGTGGTTTAAGAGGCATAATACCTTTAAGAACAAGAATTCCTTTCCATATATGAATCGCCAACTTATTGATCCAAACGTGTATTGGTTTGCAATTCCAAGTATCGGCTCAGTTCTGAAAGGCATTTCTCAGACAAATTTGAGTGTTAGATCTCTTATTCACCTGACTGCAATAAATGCTACCATGGATGAAGGCTTGGCTCCGAGGACAGTTGTTAGAAACCAAGAATCCACCTCCTTCGTCGTTGCTTGA MKSSKAKKRRREAEIEDDGGDNTEILSLEDCLTFNDTLAALRMMRAQFPNIEKVQVSIQPFILQSQLYSSLKDRTEVDRELECLKREKVVRVFKLNTGQDDHAIMFLDDYLKQIDHVISRFEERMQRGMEIFQWFKRHNTFKNKNSFPYMNRQLIDPNVYWFAIPSIGSVLKGISQTNLSVRSLIHLTAINATMDEGLAPRTVVRNQESTSFVVA Homology
BLAST of Lsi02G021810 vs. ExPASy Swiss-Prot
Match: P49842 (Serine/threonine-protein kinase 19 OS=Homo sapiens OX=9606 GN=STK19 PE=1 SV=2) HSP 1 Score: 48.9 bits (115), Expect = 8.3e-05 Identity = 25/73 (34.25%), Postives = 44/73 (60.27%), Query Frame = 0
BLAST of Lsi02G021810 vs. ExPASy TrEMBL
Match: A0A1S3BHW5 (serine/threonine-protein kinase 19 homolog isoform X2 OS=Cucumis melo OX=3656 GN=LOC103489740 PE=4 SV=1) HSP 1 Score: 282.0 bits (720), Expect = 2.2e-72 Identity = 153/196 (78.06%), Postives = 160/196 (81.63%), Query Frame = 0
BLAST of Lsi02G021810 vs. ExPASy TrEMBL
Match: A0A1S3BHM8 (serine/threonine-protein kinase 19 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103489740 PE=4 SV=1) HSP 1 Score: 274.2 bits (700), Expect = 4.5e-70 Identity = 154/220 (70.00%), Postives = 164/220 (74.55%), Query Frame = 0
BLAST of Lsi02G021810 vs. ExPASy TrEMBL
Match: A0A0A0K8K8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G373500 PE=4 SV=1) HSP 1 Score: 268.9 bits (686), Expect = 1.9e-68 Identity = 152/220 (69.09%), Postives = 163/220 (74.09%), Query Frame = 0
BLAST of Lsi02G021810 vs. ExPASy TrEMBL
Match: A0A6J1JWE0 (serine/threonine-protein kinase 19 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111488094 PE=4 SV=1) HSP 1 Score: 265.4 bits (677), Expect = 2.1e-67 Identity = 152/224 (67.86%), Postives = 165/224 (73.66%), Query Frame = 0
BLAST of Lsi02G021810 vs. ExPASy TrEMBL
Match: A0A6J1DR39 (serine/threonine-protein kinase 19 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111023478 PE=4 SV=1) HSP 1 Score: 263.8 bits (673), Expect = 6.1e-67 Identity = 149/225 (66.22%), Postives = 169/225 (75.11%), Query Frame = 0
BLAST of Lsi02G021810 vs. NCBI nr
Match: XP_008447257.1 (PREDICTED: serine/threonine-protein kinase 19 homolog isoform X2 [Cucumis melo]) HSP 1 Score: 282.0 bits (720), Expect = 4.4e-72 Identity = 153/196 (78.06%), Postives = 160/196 (81.63%), Query Frame = 0
BLAST of Lsi02G021810 vs. NCBI nr
Match: XP_038898141.1 (serine/threonine-protein kinase 19 [Benincasa hispida]) HSP 1 Score: 281.6 bits (719), Expect = 5.8e-72 Identity = 156/220 (70.91%), Postives = 168/220 (76.36%), Query Frame = 0
BLAST of Lsi02G021810 vs. NCBI nr
Match: XP_011659234.1 (serine/threonine-protein kinase 19 isoform X2 [Cucumis sativus]) HSP 1 Score: 276.6 bits (706), Expect = 1.9e-70 Identity = 151/196 (77.04%), Postives = 159/196 (81.12%), Query Frame = 0
BLAST of Lsi02G021810 vs. NCBI nr
Match: XP_031744621.1 (uncharacterized protein LOC101216752 isoform X7 [Cucumis sativus]) HSP 1 Score: 274.6 bits (701), Expect = 7.1e-70 Identity = 147/178 (82.58%), Postives = 153/178 (85.96%), Query Frame = 0
BLAST of Lsi02G021810 vs. NCBI nr
Match: XP_008447256.1 (PREDICTED: serine/threonine-protein kinase 19 isoform X1 [Cucumis melo]) HSP 1 Score: 274.2 bits (700), Expect = 9.3e-70 Identity = 154/220 (70.00%), Postives = 164/220 (74.55%), Query Frame = 0
BLAST of Lsi02G021810 vs. TAIR 10
Match: AT2G20495.1 (CONTAINS InterPro DOMAIN/s: Serine-threonine protein kinase 19 (InterPro:IPR018865); Has 155 Blast hits to 154 proteins in 53 species: Archae - 0; Bacteria - 0; Metazoa - 95; Fungi - 5; Plants - 34; Viruses - 0; Other Eukaryotes - 21 (source: NCBI BLink). ) HSP 1 Score: 195.7 bits (496), Expect = 3.9e-50 Identity = 116/220 (52.73%), Postives = 140/220 (63.64%), Query Frame = 0
BLAST of Lsi02G021810 vs. TAIR 10
Match: AT2G20495.2 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: cellular_component unknown; CONTAINS InterPro DOMAIN/s: Serine-threonine protein kinase 19 (InterPro:IPR018865); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 142.9 bits (359), Expect = 3.0e-34 Identity = 93/220 (42.27%), Postives = 116/220 (52.73%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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