
Lsi11G007120 (gene) Bottle gourd (USVL1VR-Ls) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATTGCACGGTAACTTCAATGATTATAGATCTAGACTAGATTGAATAACAATTTTAGTTTTATATAATTTAGGTATAGTTTAAATTTTGATTCCTATGATTTCTAAAAAAAAATGTTTCTATGATTTTAGAAATCCAAACCATAGTTACAATCAAGAAAGTGAAGTTTTCAAAACAAAAGAAACTAAAGTGTTAATCAAATCATCCCATAGAAGAAAAAAAATGTTTGAAATAAAGTTCAAAATCAACAACAAACATTGCATATCTATAAAAGAGAAAAAGTTTTTTTTGGGTTTATGTCTATATAGAAAAGAAATAATATTTTGGTTTAAATTAAAATTTGAAATTAGGGCATAATCAAATTACTTTTATGAAATTTTATATATATAAAAAATAATATTTTAGTTTAAATTAAAGTTTAAAATTAAAGGATAATCACATCATCATACCAAAATTAAAAAGATTTTTTTTATTATGAGAAGATTATCGCGTAATAAAACTAAAAATATTACTTTAGTTTACATTAAAGTTTAAAATTAAAAGATAATCTAATAATCCAATTCAAAATAAACAAAAAAAAATATAGTTTATAGTTATTATCACAAAATTTTAAATTAAAGTAAAAATTAAGTGGCTAATCAAATCATCTAATTAAAAAAAAAATTATGTGTGTATTTTTTTAATTCAGAGAGGATTATCACAAATTTAAAAAAATAAATACTGATATATTGGATATAAATTAAAGTTTGAAATTAAGAAGGTTAATAAAATCATCCGAATCAAAATAAATAACTAAAAGATTTTTTAAATTAAAAGACTACTATCATGAAAATTTAAAAAATAATTATCATGATATATTTTTTAGAGGATTGATTAAAATAAAAAAAAATTAAAAGAAAACTAAGAAAGGATTATCATGAAATTTTAAAAGACTTAATTTTGTAGAAAAAAAATAAGTTAATCAATAGATCTTCTTGATGTAGTAAACAATTATACAGTTTTTTCTTAAATTATTCAAATATTTATTTTATTAAACTTATATATATATATATATATGTTGAGGCTAGAAACCACACACATATTGTTAAAGAAAAATAAAAATGCTGAAAAGAAAAATAAAAATTTTTCGTATTGATTTTTTAAAAATTAAGTCTATTTTTTTTTCATTTTCTTATAATAATTTACCTATTTTTTTAAGTATTAGAGTTGAATTCTTAGTCAAATTTTAAAAAAGAAAAAAATTAAAAAATTAAAAATAAAAAACTAAATAGTTACAATGAGACTTTAATTAATAAATAAATTAAGTATTAAAAAAAAGTCAAAATACCATTTTAGTTCTTATAACTTGAGTCTTATTAATATTTTAATCTCTCCACTTTCCAATGTCTAATTTTAATCTATGCATTTTTAATAAATCTTAAAATTATTTCGTAGTATTGGTTTATTGTAATCTATTACACTTCTCTCTATAAACTTTAGAAATGTATTCACATTGTTATTTTATTGTATCAAAATTATTATTATTATTTAATCAATTTTGATATACATTAATTAATGAGTAATTTTAAGATAGTTAAAAATACTTTTGATTTCTAAATTTACATAAAAACAATAATTTTAGTCACTGAACTTTAATTTACAATAATTCATTCCCTATATTTTCAAATTTCTAACAATTTATTTCTTAAAGTTTAATATGTGAAAATTTAACATAATCCTTATATATTTAAATTTGTAACAGTTTTTTGTCTCCACCATAACAAATCTCATCAACAATTTTTATTGCGTTAGGATTTAATCTTTATATTTTATAAACCAATTTGACCTATAATCAATTTATCAATCTACATGTAAAAGAAATTTCATTAAATTTCAATAATTTTTTTGATGAGAAGGAAAAATTGTTATTTATTAAAGTTTAGAGACTACATTTTTACAATTTCAAAAGTACCAAGACTAAAAAAATTACAAATCAAAGTTTAGGAATAAAAACTTAAAGATTTAATAGAAGAATAGGAACTAAATTTAAACACTTAAAAGTTAATGAACCAAAATAAAATGATATTTAGAGTATAAGAACCAAATTACTATTCTAACCTTTTTAATATTTAAAGACATCGGTTAAAATAAAAGATGAAATTATTAGTAAATACATATAATTTTCAATAACAAAAATCATTATCACATAGAATTTTAAGATAAAGTTGATGTGTTACAAAGAATATTAATAATACTATTTTTAGATTAAGAATATTAATAATAGTTTAGTGAATAGAATTACTTCTTAATGTAGCTAAAGATAGAGTCAACTGGTGGCCATTCTAGAAAGTGGCAATATTCAATAATAAATTATTATTATGATTATTTTATTTTTTATTTTTTATTTTTTGTGGTGTGTGTAGTTGACCTCAATGGAGTATACACAAGAATTTGAATATTACTGGTGGATCATTCTAGAAAGTGACTATATTTAATTAGAAAATTATTATGGATGCAATAAATATCAAACTATTTATCTATACAAAAAAAAATTTATTGTCTATCAACGGTAGACACAATTAATTTCTATCACTAAGAGATAGAAGTTTATCGTGATCTATCGCTCAGTGATAGAAGTCTATCGTGGTCTATCGCTGATAGATCGCTGACAGACAATAAAATTTTTCTATATTTATAAACATTTTAATTGCAACCAAATATAAGAGCTTCCAAAGTCCACCTCCATGTGATTTGAGGTTGAAATTAAACTATTTTGTGAGAACTAATTTGAAAGTAGAACACTTCCATTTTTTTTTTAAAAAAAATTACATTTGACAATTTTTATTTAAACACTTTTGATAAGAACGATTTAAATATAAAGACATCAATGACTTTCAAAATTTATTTTGAGTGGTTGTCGAACACTCACATTTCTTTCAGAATGACTTATTTTTTAAATTAAACACTTGAAAATGTATTCTATACCGGTAAAAATATATCCGCACTTTGATTCAATTTGGAGGGTATGATTAGGTTTTGATGCGACAAACTCTTAGAAAACAGCAATTCTTTAATCTTTAGATAAATTTGAAATTAAAAAAAAAAAAAAAAAAAATTATGGTTTTTGATGCTTAGCACCAAATTTCAATATTAATCCTTGAGTCTAATTTTGCTTTCTAGTGGAGGATTTGCAACCACATGTTAACCAAAAGAAAGTTAATCCTCAACTATAAACCATAGATTTAGAATGAGTGAGCTTCTCACAATCAAAATAATTTCATAGAACATAATGAAGTCTAAATAGACTATGTCAAGCCTACCATTTTTGTAATATATTTGAATTCATGGATTACATTTACTTGGTAGACCCAATCTAATAGAGGTGAGTTGAATAAGACATTTCGAACTTCGGTTCGTCGAGATTTTTGTCAAATTTCGTTTGTTTGGTTTTCTAATTTTTTAGATGGGTCGTTATCTAGCTGTAGGACGTATCGTCATAATTTTATAGTTGATTTGACTTCTTTTGCTAACTCCTCTATTTTTAGGAAGAAAAAAAAATACTTTCTATCTTAGAGTTAGAGAGGAAAGAGTAGCAAAACTTTTTAAAATAAATTTCAAAAAAATTGTCAAAGTAAGCTTGGCTCAATGGTATTGGTATGCTCTCCGTCCCCACAATTGTTGTACTAAAATAAAAAAAATAGAAAGTTACAATATTAGAGAAATTATTTTAAATGATAAAATGCTGAATTTTTTTTTACAAATATAGCAAAATTTCATTGTCTATTTGCCATAGACCGCGATAGACTAGTGAAATTTTGCTATATTTGTAAATATTTTGGTTCATTTTTCTATATTTGAAAACAACCCATAATATTAAGGTTAAATTACAAATTTGGTTTTTAAATTGATTTTATTTTTGGTTTCTACAATTTTAGGAGTTTTAGTTTAGTATCTATAATCTATGCTTAGTTTCATTTTTTTTAGTACAACAATTGTGGAGATGAAGAATTGAACCTCCGACCTCAAGGGACAGAGTGCATGTCAATAAGCTAAGCTGGCAAACTTAATTTTAATTTGATTATTATGTTTGAAAGTTTTAGTTCATTTAGTCTTAGTCAATATGTGAGGTGAGAGAATCAAACCTCTGATTTCGTGGTAGACAATATACAAGCACTATGCCAGAAGTTATGCTCATTTTGGCTTCATTTAGTCTATAGTTAACACAAGGTAAATTATCTCTAAAGTGTCTTTTACCGCTCGAAAAACAACCTAATTTATTTTGTTTTTTCTTTTAAAACTTTTGGCTTTTTATTTTATTTTATTTTATTTTTTTTAAAAGACTTTTAAACTTAAACTTAAATTTTAGCATAGTCAAATAAAACACTTAACCAACTAGACCATATCAACTAATTTAAAGTAATCTATATATTCTCAAATTTATAATTATTTAGTCCTTATCGTGAAAAATGCTATCAAGTTTAATTGTCAATTTTGATTATCTAACGATTTAGTCTTTATAATTTATAAACAAACCCGACTCTTGATCAATGTTTCAATCTACATGTGTGAGGAATTTGAAAATCTTAATAGTATTTTTCACAATAGGGACTAAATTGTTACAAATTGTAAAATACAAAAATTAAATTGATACTTATTAAAGTTTAGGTACTGAATTGTCACTCCCATAAAAGTTTAGGGACCAAAGCATGTATTACCTATGTTCGACGAGATTTTCGAGAAAAAAAAATTGATTAGTTGAAATGAACTTTAACTTTATATTGATTTAGTATAGTAAGTGCAATATCTTATATATGCTTTTTTGATACTTGAAGAAATTTAAATCTTTCAAGTCTTCTTGAACTTCTAGCTTCCAAGTTTTCAAGAACTTAAACTCAAAAGAATTATGTCTTCTATGTTTTCAATCTTCAGATCTTCTTCAGAGTTTTTTTTTTTAAGCTTCAAAAGAGTTATATTTTTCACATCTCACCAAAATGAAGGATAATGCATGACTCCATTTATAGAGTATTTCAAAATTAGCCTTGATGGGCTTTAGCCTAAATGCCTCTTGGGCCTAATAATTGGACTTGGCTTGAGCCACGGTCCAACACTTTCTTTGGCTCAATTTTCTAGTAGGGCTTGAACTAGATAGGATCTTGGACTCAAGTGACTTAATTTATTCGACCCAATCCATTTTATAATTTTAAGCTAGATTGGGCTACTATCCAAATTATTGATTGTAGTTCAAATTTAATCATCGTTGAATTCAATCAAACCTATTATTGTGATCATATGACTTGAAAGAAGACACATGACATTTAATTTACCATTTATTTGTCTTCAAAATTCAACTTAGAGGCACACATTAATTCTTAATTCCTCCTCCAACAATCTACATATAGGAGATTTAAAATTTATATTCCATTTGTTCTATATAAAAAATTCACAAATAGGAAATTAAAAATTAGAAATAGGTAAATATTTACAACCAAATTTAACTGAAGAATGTATTTGAATTAAATCAAATGGATGAAAAAAGAAAAATCATAAAGGGTCGTTTGTTTTTTGGGAATGTAGATAACCCGAATCTTAAATGCCTAAAATTATAGATATACGGAATTATAGATGCTCGACATCTTTAGATTACCATGGGAATATCCTCAACTCAGAAATCCAGAAAACTCATGTTTCATAACGGTATCCAAAACTCTTGAGATGCCCTCTGTAAGGGCATCGTAGGATGCCCAAGAATCTCTGGATGCCAGAGTGTCTTACAATACCGCAAAACAAATACGGTAATCCAGATGCCTACTCCGTAGAAATTTGAGATGTTCGCAAAACAAAACCGCCTCTAACTTTGTAATTAGGAGAAAAAAAAGTTACTTTCTTTGTCAATGGTCCATAATTCTGTTTTTCACCTTTTGAATTTACTTTTTGCGTATTTGGTCATCCATGGTTCATAATTTATTGATGAAAACTATCTTCTTTTCGGGTTTGTAGTTTTATGATACGAGGTTCTTTATTCTCCCATCCCATGTTTTTGGTCTCGCTTTTACAGCTTAGGAAAACTAGTAAACTTGGTTAAGGGCCCGTTTGGATTGTTTTCAAAAAATTCATTTTTATTTAAACTCTTTTGATAAAAACAGTTTAAAATACACTTCAAAATCTATTTTGCGTAGTTGCCAAACACTCAAATATTTTTCAAAATGACTTATTTTTTAAATTAAACACTTGAAAATATATTCTAAACACACCCTAAAACGTTAATGTTCTCGACTTTTCCTAAGCCTCTATTAGTTGTAAGCTAGTAGCACAGTCAGCTATTTTGAGATTTTCTAATTTCTTTCTATGGTATAGGTAACTCTTATTTGTTCATGTCCTTTCAATTTTTGGAGTGAAAATTGTAACTTTGGGAGAACCGTGGTTTGTACATTACTAAAATTGTATAAAAATCGAAAGTTGTAAGGTTAGATGGTTCTACAATAAGATTTGTTTGGGTATAAGTTGTTGGGTTTTATGCTTTAAACTCGTAGTTTGTAAATATGTAACGATTTATTGATTATTAATAAAATAATGTGTTATTTTATTTTATGTTTTATAATTGCATAACTCAATCCAATAAACACAAAATCCAAGATTATTTACATGAAACTTGAACAACATGCAATTGACATACTAGTAGATCATGTTCAAGTAATAATTTAAAGGGTCTATAGTATATGAATAAGGTTAAGTGCCTTATCATGGTAACACTATAGATACGACCCACTTTATAATCATTACAAACGATGTGATCCAAATCGTTCATATGAAGACATGTGAGTGGGGTATCCCTATACAATGAGTTCGTACAAAACTGGACCAAGAAACCATTAATCTCTCTTTGTAACTCCATTGATTGAAGAGATTAATATTTCACATAATGATCATATGTAACTCGATCTTAATCTTGAGTAAGTTATGAATTTCTGTCGTGAGGCCTCGTCCTTTGATATGTACGGGTAAGAGTGGCCAGAGTTATCGACTCAATAAGCTCGTCATTTTGGAGACTTGACCGAGTAGGGAGTTGGGAATATAACTTCTTCCCGCATAGGGTAAGCAGAGTAGTTCCTTTAAGTACTGACTTCAGGTCTTAAATAATGAGACCCCTTCCTCTCACAGGCCCGAGAGGGACTTGGTTTATGGTTGGACCATAAACAATTGTTCATTAAAGGATCAACGGTACCTAAGGATATAGTGGTAATTACAGGGGTAAAACAGATATTTGTCCCAGCTGTAATTACGAATAACTCGTGAAGGATCGACTTACATGTAGTGATTATATCCATGGATGCAACATATCCTACCGTATATAAAAGTGCAACTATGGATCTATAGTGGTTTGCCTCATAGTTAATGAATGTTGATTAATTAATTAAAGAGTTTAATTAATCAATCTTGAATAATTGAACTTATAATATGTAGGTCTATCATGTCTCCTCAGCTAGCTCATAATGAATTAACATAAGGACAAAAAGTTTTGAAAGAATAATTTGAAATGTTCAAATTAATTTAGGGAAACATATATTAATCGTATATAGATACATTATTATTTATAGTTAATTATAAATATGATTTATAATTAAAACTATATATTATGGGAGAATTAATGGTTGTTTTCAAATATAGAAAAATGACCCAAAATATTTACAAATATAAAAAAATTTCACTTTCTATCAGCGATAGTCTTCTATTGCTGATAGATAATGAATTTTTTTTTTATATTTGTAAATAGTTTGTAATTTTTCTATTTATAATAATTTTTTGAGAATTAATGTATTTGAATGTGATTCAAATATTAGATTAATATAAATAGGATTTATATTAAAACTATAAGTTATGAGAGAAATATAAATTTGATTCAAATATTTTTGAATTAAATATATAATAATTAATTAATATATTATTTTTTAATTTAATTAAACCCCCTCTCTTTTTATGCATAGAGTAGGGAAGTGTGAGATTATTTTTAATCTTCTCCTCGTTAAAATCACAAAGGTTACTGAATTTGAGAATTCTCAAAACCTCTCTCTAGAAACTTACAGAGAAAATTCTTTTTAAAATTTTCTGTCAAAATGAAATTTCTCCCTTCCATTTTGTTTTTCAAAAGACATCCCCACAAACACAGTTCTTGCCAAGAAATATAGCAAGGAAGGCTTTTTGGACACGTTCAAAAGAAAAAGAAGAATTTGAAGAGGAATCACTACTGAAATTCACTAAAAGAAGAGTCTTAAAAGGTATCTTCTTAAATCTTAATTTTATGCCTAACCTAAATTAAACAGAGCATGTTGATGTCTATTTCAATTTTATGTTTGTATGTTTTTAATTTTCTCAAAATCAAAACAAAAGCGTTCATTCGCTTTCGTTAGGGGATTTGATCCCATCACGAGTAAGTTGGTTTGGTCTCCCCCTTTGGAGGTAATCCAAAAGCGATTTCTTCTTTAGACCTGTTAATTGAGAAGGTTAAGAAAAGTTTGGCTTTTTAGAAGAAGATTTTTTTCCCCCTAGAGTGCTTAGGCTAATTCTGATTAGGTTTGCCCTGAGTGGTATCCCTATTTACTATTTCTCTCATTTTCAAGCTTTAAGTGTTGTTTGTAAAAGTATCGAGAAGCTTATACGGGATTTTCTTTAGGAAGGTGTGGATCCATTTGGTGGATTGGGAGATAGTTGGTAAGTCTATCAGTAAAAGTTGAGCCTAGAAACTTAAAGCTTCGTAATAAAGCAATGTTGGCTAAGTGGTTGTGGCGCTTTGCTCATGAGCTTGAAGCTTTATGGAGCATGATTATTGGTAAAAAGTATGATGCACATCCCTTTTATTGATTTTTTAGTGGGATTAAAGGCACACCTCAAAATATGTGGAAAGACATTTCCTTGGAGCGTATTCTTTTTTTTCCTTTTGTTCATTTTCTGGTGGAGGATGGCAAGGAAAAGTGTTTATGGAAAGACCAATAAATAGAGCATATGCCCCTATGATCTATGTTTCCTCAGTTATACCATTTATCTTCCTTTAAAAATTGTTTCATCTCTGCGTGCTTATGGAGTATTAACCCTTTAGATCCTTCTTTCTATTCTTATTGGACCACCTTTTCCATTAGTGAGCCTATCTTTGATTTCTTGTGGATAATTAGGATTCCTAAGAAATTCGGGTTCTTTGTTGGGCAAGTCTTACTTGGTTATGTGAACACTTTGGATCTGCTATCGAGGATGTTGGCTTCGTTAGTGGATCCTTTATGTTGTATTCTTTGCTGAAGACGGATGAAATATGACATCATACTCATGAGGGATTAAAGATTGTATATTGATTGAGGCATGCCGAGACCTCAAACAAATAAATTTTTAACCACTCTTACGAACTTGTAGGTTAGTGAGAACGAGTAATCTCCACAGGGCATCTTGAGTTATTTTAGCTGATTAATGAATTCGATGGTGACACAAGGAGGGTTATGGGAGTTTTGGTTGCAATGAAATATAATTTAAAAGCATAAATGTAAATGCGTAATTTAAAAATGAAATTTTATATGATTAAAGGCCTAGCCTAGGGAATCAGATTCCACCCATTTACTTGATTGCCCATTGAATGCTAAAGATATAATGCATGCTTTAATTTTATTCTTGGCTCGTTTGCTTCTAAGACAATAGTTAAACGCCCTATGCACTAATCAATTGTTTAGTTAGTCTAGATGTTCAATTAACTGGTTATGATAATAACCTAATTATTTAAACATACGGATTAAGTCCTAGAGATTCTAGCCAAGACAATTTGCAGTTTGGATAGTCTAAACTACTAATTGATTCGATTTTTGAACGATTAGTCATGCAGTGTAGCAAAATGATTGACTAGGCAATTTAGAATTTAAATCCATACATGATCTAATCTAAGCCCTAATTGAGATTAACATGCATAGGCATATTTTTCTCTAGCAAAACAAAGAAAAGATAAAAGGGTGATCAAGCCTAATATGATCTCTAAGCATAGGAAATAAATTCAATAAAAAATCAATAAAATTAAACAACAAGAATCATAATAACAAGTCTCACAACTAAGATTTAATGAGTTCTTCCCTCCCCTAAGCTAAAAATGAAATTACCTTAGCCACTCATAGCGTGCCAAGATGAATCCAAAAGTTGCATGAATGGAAAATACAAATGTAATTGAATTGGGAATGAAAAGTACAAAGAAAAGTCGGAGTTGGAGGCTGCAATCCCGATCCGTCCAAACCCTAAATTGGATAACATAAATGTATAGAAAATAGTTTGGTGGTGCGGCAGTAACGCACACGTCCACCAATATAATTTAAGATTTATTAAAAGTATAAAAACTAAAATTACATCATTGGAAGTATATGGATAAAATTTAACAAATTTTAAAATATAGAGACAATGGTATTAAAAGAAATAAAAGATATTGATGGTCTTCAACCTCAATCACGCGAAGCCCCCAATCTCTCTCTCTCTCTAACCACGCACAGCAGCTTCTAGTCACCGCCGCGCAACCTCCGGACGTCATTGTCGCCGTCGTCCCCTGAGTCCGCTGCCACCAGCGTCGCCGTCTCCGGAATCGGTGTTTTGGGTAAGTTTTTGGGTGCTTTTGGATGACTTTGGTTGGTATTTATTTACCATTGGATATTTGGTTTTTGGAGGTTGATTTACCCATTATTTTGAGTTTAGATTCGAAGCTTTGAGGGGATTAGAGCACGCTGTCTAGCGAGGGTAGCGAACGTTTGGACGTTTTGGTGAGTATCAAAATCTTGAGACTCTCTTGGAATTAGTATTAGTTGCTGGAATTTGGGGTTTCCAGTCCTTCTTCTTGATTTCTTGCTTAGGTTAAAAGCATTGGTAAAGGTTTGAAATGTATTTGGATCAAGGTGCACCTTGGATAAGTTGTTTGGTGACTTTTGGAGTGAATTTGCCATTGGAATTAGGCTCTGAAGGTTGAAATTTAATTTAGTTCTTGTTATAGGGTTTAATTCAAGGTTTCTCTAAGCTAAGAAGGAGATTTGGTTGCTTGGATATAAAATTTGAGCTTATCTTCCAGGTGAGTGGTTGTTCTGATGATGGCCTCATGGCTTGTTGGATATGTATGTTTACTATTTGTCAACTATGCCCGATCTTGTGACGCTTAAAAATTCGTCTGTCCACCTTGTTCTTCTTCGTTTCTTGCAAAAGGACAAGAAACAATTGCATGTTAGATATGTATGTTTACTATTTGTAAACTATGCCCAAGCTTGTGACGCATAAGAATCCGTCTGTCCATCTTGTTCTTCTTTGTTTCTTGCAAAAGGATAAGATTTGGGTTGTGCTTTAGGATGGGATTTATGACTTTACTGGAACATAATCTATTTTTTAGGTTGTACAACTATGTCCTTGAGTTCTACAAGTGTTAAGGGATATCGAGAGATTGTTTGATGTTTAGAATATATTGCATCTGCAGTGACATGTCCTTTATAGGTGGCAAGAGGAGGACATCGATCATTTGTTGTGGGATTATCAGTTTGCCACCCTTTGGTGGTCGATGCTTAAGTTCTTTTGGCCATCGCTTAGCATGCAGTGAAGGTTGAGGCTCTATGATTGAGAAGGTGCTCCTGAATCTTCCTTTCGTCATAAGGGAATAAATTTTGTTTTTATTTACCCTTTTTGTTCCCCCCCGGTATTGTGAGGTAATTGGCTGAAGAGGAATAGGATTTTTAAAGGGGTTAAGAAATTGGGAGGAAGTTGAGAGGTCGTTAGGTTTATTGCTTCTTTATGTGCATCAAAACTTTTTGTGATTATCAGTTGGGTTTGATTATTTTAGATTGGAATCATTTTTTTTGGATAAGAAACAGTTTCATTGATTGAATGAAATATCTAAGGATATACAAAGTGGTCACATTGAAAGAAAATACAAAAGATGGTTCCAATTTTCTATAATGAAAGAAAAGAGTTTAATAGCTTGTAAGTTTTTACACTAAGAAAATGCATTGTAAATGGCTGATTCAAGGAATCCCTTCTAGTAGTTAGTTGTGGGATTTCTTTTGTGGCCTCATTTTATGCCCTTGTACATTCTTTCATTTTTCTCCTCGAAAGCTTTGTTTCTTACCCTTTTTTTAATAGCTAATGTCTCTTTGTGGGCTGCGAGTCAAGATTCCCCCCCCCCCTTTTTGTTGATATATATCATTTGAGCTTTTTAAATAACTTTTTTTTTGGGTGTGTGTGGCCCATGCGATTGGTATACCTTTGTATTTTTCTAAAGAATTATTTATTCATTTACATTATTATTCTTGATTAAAGTATTTTCTTGTAAGAAAAATTTAAGCTAAAACTAATTGGATTGAGGACTTGAATACATCAACGTAGACTTGCTCGTCTTTCAACTGGTCTGGCTGGATTTAAGACTTGGATATTCTGTAAGAAATAAGTTTATTCTCTTAAAATTATCAAGTGCTCACTTGATTTAGTTATAAAATTGTGTTCATAGTTGTGTATTCTGTTTTATGTATGTTTTTAGTTCAAGCATCTAGCTGTGCGTTAAAGTGTGCATATTCTTAAAATTCGTGCAGTGAAACCAGTGCTTCAGATAAATCATAAATATAAATGTCCACGAGGGAAACACTTCAGCCACTATACAATGGTCGTCCTGTTAAGGCTCCAGGGTTGATGCGCCATGGCCCGTTTCCTGGATCAGATTCTGCTGTTGGCCACAAGTCTCTTGAATTATTAGAGGATAAATTAGCTGTACAGACATCTGACATAGAAAAACTTGCAAGGGAAAATCATAAGTTGGCAACTGCTCATGTCACTTTGAGGCAAGAGCTCGTGTCTGCCGAGAAGGAAATACAAACTGTGCGGGCACATATTCGAAGTATTCAGACAGAAAGTGATATTCAGATGAGAGTATTGGTAGATAAGATTGGAAAAATGGAAGCAAGTATTGAAGCCGGAGAAGGGCTGAAGAAGGACTTGCAGCAGGCCCACATGGAGGCTCAAGGCTTGGTCAAAGACAAACAAGAATTAACCTTCCAAATTCAACAAGCAACCCAGCAGGCGCATAAAACAGAATCTGATATTAAGAATCTACCCAATTTACATGCTGAGCTCGAGGATTTGAGGAAAGAACACCAAAGGTTAAGGTGAGATGTGTTTCGACATTTCCTGCTTTTCTTTTATAATGTTTCTGTATTTTAGCATTTATTACATTTGCAACTATTTAGCTGAAACTTAAAGCAAGAATTATTTGGCCATGAACTTTAGACTAAAATCAAAATACTAAATCCTTTGTTATTACTTTCTTTTTTTTCCTTTTGTAATGAGAAACTAATTCTTCCCACAACAAAGCTGACCAAAACCAGAGAACCTGTGATGTAGGTGATCTAAGTGCTTTCCTTTAATGTATATCCTCGGTTTTAACCTTTTATTGTTTTATGATCAGCTGCCTTCGTTGCCTTAACTGGCTGTCCAAATTCATGTATAAATTGGCTTTCAGCCATTAGTTGTTCATTATTAATAAAGGTTATCTTTGAGTTCTTGGAGTAATACATCAATTGGTATCAGAGCGTTGATCCAAACACACATTTTTTTTTTTTTTTTTTTGGGTTTTGGTTAGACATGGAAGCTGAAGCCTCCTTATCATCTAAAGTTGTAGAGTTGTTTATCCTCGATAGAAAAAACAGTGGGTGATATGAAGGAAGAAGTTGGGGAAATTCGAATGATGTTGGCCCAAGTTCTACAACAATGGAATTTCCAAAATTCAAGAGACAGCTAAGATACAGACAAGCAAAGAAACAAAAGAGGCATACATATTAAAGAAGGTCATCAAGAAACCGGACTGATTAAAGAAGGGGCTGGTGTTCAATTAGCTTTAGAAAATTAGGAGCTTACCAAAGTTCAGGAACCTGTTAAGATTCTTGATAGAATCAATGCCATAGAGCCAAAACCTCAATATTATTTTCCTGTTAGGAGAAATGTTTATCAACCAAGATTTAGGCCTTAAGTAATGCAAATTCCAGGGTGTATGATGCTATCACACTGGCCACCATTATTGAGGAGAATGAACCAATCAAGACTTATCAAAGAGGAAACAATCGGGATCGGCAGCAACCTACTTTCCGAAAGGCTCAACTGAAAATGCAAGAAACGGTTTACCTAGGAACAATTCAAATAAGCAGCCCAAGAAAGATGACCCAAATCCTAAACAACAACCTACCCGAGGTACTGAAAATACTAATAACAGAAGAAATCCAAACCCTTACAACCATCCAACCTTGGGAAAATGTTTTAGATGTGGTTAACAAGACCATCTCTCCAATGAATGCCCCCAACAAAAAGCATTGGCAATTCAAGAATGGGATGACAATGGCGAGTCTGATTACGATGTGGACGATATTGGGGAAGTTGAATATATACATGCAGATGAGGGATAACTCTCTTGTGTCCTTCAAAGAGTCATTCTTACACCAAAATATGAAAGCCACCCCCCAATGACGCTCTCTCTTTTGCACTAGGTGCACTATCAATGGTCAAATATGTCAAGTGATTGTAGCTAGTGGAAGTAGTGAGAATATTGTTTCCAAGAAACTTATTTCTGCATTAAATTTGAAGGATGAAGCACACCCAAATTCTTAAGAGGTGAGCTGGATTAAGAAAAGGGGCGAAACCATGGTTAAAGTAATTTGCACGGTCCCTCTTTCCGTTGGAATTCATTACTAAGATAAATTACTTGTGATGTCTTGGAGATGGATGCTTGTCATCTACTTTTGGGAAGACCGTGGCGGTGTGACAACAAGACAACACACAATGGCCGAGATAAACCTACGAATTCAAACTACATGAGTCCTAAGGAGTATGAGGTCTTACATAATCAAATTCATATTTTTCTAGAAAAAGACCATATACAACCAAGCCTTAGTCCATGTGCCGTTCCTACATTACTTGCTGATGGCTCTTGGTGGAGACTTTGTGTTGATAGTCGGGCAATTAATAAAATTACAATAAAATACAGGTTTTTAGTACCCCATTTATCCGACCTTTTAGATCAATTAGGTGGAGCTTCAATTATTTTCCAAGATTGACCTTAGAAGTGGCTACCATCAAATTAGAATTAGGCCCAGGGATGAATGGAAAACCACATTTAAGACAAATGAGGGCATTTTTGAGTGGTTAGTTATGCCCTTTGGTCTATCTAGTGCTCCAAGTACGTTTATGAGATAATGAATCAAATCTTGTTACCTTATTTAAATAAGTTTGTTGTTGTATATTTTGATGACATTTTAATTTATAGCTCTACTCATGAAGCACATTTAGAACATTTACACTGTTTTTACTGTTTTAAGAGATAATGCATTGTACATTTTTATACTTCTTGATAAACCACAAAAGGATTACAAAATCCACCTTGCCAAAGTATTCGCCTTTCCCCCAAAAGGAGGGTTTAAACTTACCTCTCATATAATCTTTATTCAGTAGTTTGGAATGAAGTTTATCCAAAGAAGATTAAAATTTTCCTTTGGGAGCTTAGTCTTGGAGCTATGAATATGACAAATTGGCTTCAAAAGAGCCTTACTTTCAAGTTTCAACTCTCTCCATCATGGTGTATTATGTGTTCTTTTGATTTGAAGCATCCTGAACAACCTTTTGCACATCGCTCCTTTGCTTCTAGATATTTGGTAATGGCCGCTGATGGTTTTGGTTGGTCCTTGACTTTGCCGAATAACATCTTCGATATTCTTGCATCCATTTTCATTGGCCATCCACTCCGTGCTACGGAGAATGACTTTGTGGCTTGCCCTCAACAGAATCTTCCTCTGGTTTCTTTGGGGGTGAATGGAATGAAAAACTTTTTAAGGACTCCTTTTCAACCTGAGTTTTATGGATTTGCTGTTTTTTCATGCTATGTATGGGTGTAAATGTGAACACTACTTTTTTTTATTATAGTATTTGTTCATCAATTTCTAAATAAAAAGCTTTCTTGTGATTAACTATAGGTGTCATGTATGTGTGTTTTTACTCCTTTATTTCATTTAGCAATGAAATCTTGGGAAAAAAGAAAAGAAAAGAAAAGACAAAAAAAAAAAAAGAAAAAAAAGAAAAAAAAAAAGAAGCTAAATGATCCTTCAAATGTTTAACCTTTGGAGAGATACCAAGACTTTGCAGAAGACACCATAGACCTTGGCAGCAAAAGGGCGTACGCGTAAAAGATGGTTCGAACCCTCAATGCCATGCCTACACAACATTATAGATTTATAGTTTGGTCCAAAAGCAAGAGTAGAACTGGAGGTAGCTAAAGTGGTGATAAACCCCGTCAGTAAAATGGGTTCCTATGAATTGTAGTGGGATGGACTTCTCCTAGTATGCGATGGTTTGGGAACAAAATGTAAATAGATGTTAGTGAGCACATGATGCCTAAGTGAAGAGACATTGGAATGAATTGACATTGCATTTATATGAGAGGGGTTTTGAGATTGTGAAAATATGAGACAACAGAGCCTACGAAAGTTGAAAAGAACTAATAGGATACTAGCTTTACCTTTCCAAACAAGGTGTACCACCTTCAATAGTCCACTTCAGCATTTAAGTAAGGACAAAAAACATTGAAAGGTTTTGTGTGTTGTAATGACTATTTTCAATTTCAAAATATCAAGCATGTTGCAAATACTTCTCTTGGAAGTGTTGCTTAAGAGTCGAGACTACCTACCATGTTCTTTGGGATGGGTTATTATTATCACTACCTGATTTGTTACTTGGCAATTGACAGCATAATGGTGTTTGGTGCTCTGTGAACCGTGGCAACATTACTTCTCTTTCTATCTGGATGAGATGTATCATTGATAATTGAGTTCCGACTTGAATTTTCAACTTCATGTGTTAATTCTTTTTTGCATTTATCGGCTCGGTATGCAGAGCTACATTTGAGCATGAAAAAGGTAGGAACATGGAACAAGTAGAGCAAATGAAAGCAACAGAAATGAATCTGATTGCCCTTGCAAGGGAAGTAGAGAGATTGCGAGCCGAGGTTTTGAACGTGGAGAAAATGGCATATGGTACATTTCTTTTCACACTTTTCAGTTAGTCATCTTTGGATATCTATTGACTCTTGCAATGAAACTATCTGCTTCTGTAGCACCAATTGCATACGGTGGCGCGTACATGAATTTGGATCCTTCGTACCCACCTCACATGCCTGGTGCCAATGGCTACGTCGACATGTATGGAAGGTCACAAGTCGCAATGGCTCCTGTGGCGCCAGGAGACAGTCAAATTTCGCATTCCATTGATCATGGCCCGGCCACCGCTGGAACGATTGCTAGTGTGGCTGCCCCCATTGGTAGCAGTGCTGCCTGGGAAGCAACGTTTGATCCCTCCATTCCTCGAAGA ATTGCACGCCACTATACAATGGTCGTCCTGTTAAGGCTCCAGGGTTGATGCGCCATGGCCCGTTTCCTGGATCAGATTCTGCTGTTGGCCACAAGTCTCTTGAATTATTAGAGGATAAATTAGCTGTACAGACATCTGACATAGAAAAACTTGCAAGGGAAAATCATAAGTTGGCAACTGCTCATGTCACTTTGAGGCAAGAGCTCGTGTCTGCCGAGAAGGAAATACAAACTGTGCGGGCACATATTCGAAGTATTCAGACAGAAAGTGATATTCAGATGAGAGTATTGGTAGATAAGATTGGAAAAATGGAAGCAAGTATTGAAGCCGGAGAAGGGCTGAAGAAGGACTTGCAGCAGGCCCACATGGAGGCTCAAGGCTTGGTCAAAGACAAACAAGAATTAACCTTCCAAATTCAACAAGCAACCCAGCAGGCGCATAAAACAGAATCTGATATTAAGAATCTACCCAATTTACATGCTGAGCTCGAGGATTTGAGGAAAGAACACCAAAGGTTAAGGGTGTATGATGCTATCACACTGGCCACCATTATTGAGGAGAATGAACCAATCAAGACTTATCAAAGAGGAAACAATCGGGATCGGCAGCAACCTACTTTCCGAAAGGCTCAACTGAAAATGCAAGAAACGGAACATGGAACAAGTAGAGCAAATGAAAGCAACAGAAATGAATCTGATTGCCCTTGCAAGGGAAGTAGAGAGATTGCGAGCCGAGGTTTTGAACGTGGAGAAAATGGCATATGGTACATTTCTTTTCACACTTTTCAGTTAGTCATCTTTGGATATCTATTGACTCTTGCAATGAAACTATCTGCTTCTGTAGCACCAATTGCATACGGTGGCGCGTACATGAATTTGGATCCTTCGTACCCACCTCACATGCCTGGTGCCAATGGCTACGTCGACATGTATGGAAGGTCACAAGTCGCAATGGCTCCTGTGGCGCCAGGAGACAGTCAAATTTCGCATTCCATTGATCATGGCCCGGCCACCGCTGGAACGATTGCTAGTGTGGCTGCCCCCATTGGTAGCAGTGCTGCCTGGGAAGCAACGTTTGATCCCTCCATTCCTCGAAGA ATGCGCCATGGCCCGTTTCCTGGATCAGATTCTGCTGTTGGCCACAAGTCTCTTGAATTATTAGAGGATAAATTAGCTGTACAGACATCTGACATAGAAAAACTTGCAAGGGAAAATCATAAGTTGGCAACTGCTCATGTCACTTTGAGGCAAGAGCTCGTGTCTGCCGAGAAGGAAATACAAACTGTGCGGGCACATATTCGAAGTATTCAGACAGAAAGTGATATTCAGATGAGAGTATTGGTAGATAAGATTGGAAAAATGGAAGCAAGTATTGAAGCCGGAGAAGGGCTGAAGAAGGACTTGCAGCAGGCCCACATGGAGGCTCAAGGCTTGGTCAAAGACAAACAAGAATTAACCTTCCAAATTCAACAAGCAACCCAGCAGGCGCATAAAACAGAATCTGATATTAAGAATCTACCCAATTTACATGCTGAGCTCGAGGATTTGAGGAAAGAACACCAAAGGTTAAGGGTGTATGATGCTATCACACTGGCCACCATTATTGAGGAGAATGAACCAATCAAGACTTATCAAAGAGGAAACAATCGGGATCGGCAGCAACCTACTTTCCGAAAGGCTCAACTGAAAATGCAAGAAACGGAACATGGAACAAGTAGAGCAAATGAAAGCAACAGAAATGAATCTGATTGCCCTTGCAAGGGAAGTAGAGAGATTGCGAGCCGAGGTTTTGAACGTGGAGAAAATGGCATATGGTACATTTCTTTTCACACTTTTCAGTTAGTCATCTTTGGATATCTATTGACTCTTGCAATGAAACTATCTGCTTCTGTAGCACCAATTGCATACGGTGGCGCGTACATGAATTTGGATCCTTCGTACCCACCTCACATGCCTGGTGCCAATGGCTACGTCGACATGTATGGAAGGTCACAAGTCGCAATGGCTCCTGTGGCGCCAGGAGACAGTCAAATTTCGCATTCCATTGATCATGGCCCGGCCACCGCTGGAACGATTGCTAGTGTGGCTGCCCCCATTGGTAGCAGTGCTGCCTGGGAAGCAACGTTTGATCCCTCCATTCCTCGAAGA MRHGPFPGSDSAVGHKSLELLEDKLAVQTSDIEKLARENHKLATAHVTLRQELVSAEKEIQTVRAHIRSIQTESDIQMRVLVDKIGKMEASIEAGEGLKKDLQQAHMEAQGLVKDKQELTFQIQQATQQAHKTESDIKNLPNLHAELEDLRKEHQRLRVYDAITLATIIEENEPIKTYQRGNNRDRQQPTFRKAQLKMQETEHGTSRANESNRNESDCPCKGSREIASRGFERGENGIWYISFHTFQLVIFGYLLTLAMKLSASVAPIAYGGAYMNLDPSYPPHMPGANGYVDMYGRSQVAMAPVAPGDSQISHSIDHGPATAGTIASVAAPIGSSAAWEATFDPSIPRR Homology
BLAST of Lsi11G007120 vs. ExPASy Swiss-Prot
Match: Q84TD8 (Protein FLX-like 2 OS=Arabidopsis thaliana OX=3702 GN=FLXL2 PE=1 SV=1) HSP 1 Score: 107.1 bits (266), Expect = 4.2e-22 Identity = 63/166 (37.95%), Postives = 103/166 (62.05%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy Swiss-Prot
Match: Q9FH51 (Protein FLX-like 4 OS=Arabidopsis thaliana OX=3702 GN=FLXL4 PE=1 SV=1) HSP 1 Score: 107.1 bits (266), Expect = 4.2e-22 Identity = 53/140 (37.86%), Postives = 100/140 (71.43%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy Swiss-Prot
Match: Q93V84 (Protein FLX-like 1 OS=Arabidopsis thaliana OX=3702 GN=FLXL1 PE=1 SV=1) HSP 1 Score: 88.6 bits (218), Expect = 1.5e-16 Identity = 47/139 (33.81%), Postives = 83/139 (59.71%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy Swiss-Prot
Match: Q9C717 (Protein FLX-like 3 OS=Arabidopsis thaliana OX=3702 GN=FLXL3 PE=1 SV=1) HSP 1 Score: 79.3 bits (194), Expect = 9.3e-14 Identity = 50/148 (33.78%), Postives = 85/148 (57.43%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy Swiss-Prot
Match: F4IMQ0 (Protein FLC EXPRESSOR OS=Arabidopsis thaliana OX=3702 GN=FLX PE=1 SV=1) HSP 1 Score: 59.7 bits (143), Expect = 7.7e-08 Identity = 38/139 (27.34%), Postives = 74/139 (53.24%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy TrEMBL
Match: A0A1S3BUI1 (protein FLX-like 4 OS=Cucumis melo OX=3656 GN=LOC103493435 PE=3 SV=1) HSP 1 Score: 390.6 bits (1002), Expect = 7.0e-105 Identity = 231/351 (65.81%), Postives = 247/351 (70.37%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy TrEMBL
Match: A0A0A0LK51 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G037240 PE=3 SV=1) HSP 1 Score: 385.6 bits (989), Expect = 2.3e-103 Identity = 227/351 (64.67%), Postives = 247/351 (70.37%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy TrEMBL
Match: A0A6J1DIK7 (protein FLX-like 4 OS=Momordica charantia OX=3673 GN=LOC111020850 PE=3 SV=1) HSP 1 Score: 351.7 bits (901), Expect = 3.6e-93 Identity = 213/357 (59.66%), Postives = 240/357 (67.23%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy TrEMBL
Match: A0A6J1FH77 (protein FLX-like 4 OS=Cucurbita moschata OX=3662 GN=LOC111443959 PE=3 SV=1) HSP 1 Score: 325.9 bits (834), Expect = 2.1e-85 Identity = 201/338 (59.47%), Postives = 224/338 (66.27%), Query Frame = 0
BLAST of Lsi11G007120 vs. ExPASy TrEMBL
Match: A0A6J1HYG0 (protein FLX-like 4 OS=Cucurbita maxima OX=3661 GN=LOC111468620 PE=3 SV=1) HSP 1 Score: 315.8 bits (808), Expect = 2.2e-82 Identity = 197/337 (58.46%), Postives = 222/337 (65.88%), Query Frame = 0
BLAST of Lsi11G007120 vs. NCBI nr
Match: XP_008452385.1 (PREDICTED: protein FLX-like 4 [Cucumis melo]) HSP 1 Score: 390.6 bits (1002), Expect = 1.4e-104 Identity = 231/351 (65.81%), Postives = 247/351 (70.37%), Query Frame = 0
BLAST of Lsi11G007120 vs. NCBI nr
Match: XP_038889393.1 (protein FLX-like 4 [Benincasa hispida]) HSP 1 Score: 386.3 bits (991), Expect = 2.7e-103 Identity = 230/351 (65.53%), Postives = 247/351 (70.37%), Query Frame = 0
BLAST of Lsi11G007120 vs. NCBI nr
Match: XP_004144707.2 (protein FLX-like 4 [Cucumis sativus] >KGN61077.1 hypothetical protein Csa_021212 [Cucumis sativus]) HSP 1 Score: 385.6 bits (989), Expect = 4.6e-103 Identity = 227/351 (64.67%), Postives = 247/351 (70.37%), Query Frame = 0
BLAST of Lsi11G007120 vs. NCBI nr
Match: XP_022153326.1 (protein FLX-like 4 [Momordica charantia] >XP_022153327.1 protein FLX-like 4 [Momordica charantia] >XP_022153330.1 protein FLX-like 4 [Momordica charantia] >XP_022153331.1 protein FLX-like 4 [Momordica charantia] >XP_022153332.1 protein FLX-like 4 [Momordica charantia] >XP_022153333.1 protein FLX-like 4 [Momordica charantia]) HSP 1 Score: 351.7 bits (901), Expect = 7.4e-93 Identity = 213/357 (59.66%), Postives = 240/357 (67.23%), Query Frame = 0
BLAST of Lsi11G007120 vs. NCBI nr
Match: XP_022937600.1 (protein FLX-like 4 [Cucurbita moschata]) HSP 1 Score: 325.9 bits (834), Expect = 4.4e-85 Identity = 201/338 (59.47%), Postives = 224/338 (66.27%), Query Frame = 0
BLAST of Lsi11G007120 vs. TAIR 10
Match: AT1G67170.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G14750.1); Has 5478 Blast hits to 4354 proteins in 533 species: Archae - 87; Bacteria - 653; Metazoa - 2554; Fungi - 380; Plants - 418; Viruses - 16; Other Eukaryotes - 1370 (source: NCBI BLink). ) HSP 1 Score: 107.1 bits (266), Expect = 3.0e-23 Identity = 63/166 (37.95%), Postives = 103/166 (62.05%), Query Frame = 0
BLAST of Lsi11G007120 vs. TAIR 10
Match: AT5G61920.1 (unknown protein; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 6 plant structures; EXPRESSED DURING: 4 anthesis, F mature embryo stage, petal differentiation and expansion stage, E expanded cotyledon stage, D bilateral stage; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G67170.1); Has 1807 Blast hits to 1807 proteins in 277 species: Archae - 0; Bacteria - 0; Metazoa - 736; Fungi - 347; Plants - 385; Viruses - 0; Other Eukaryotes - 339 (source: NCBI BLink). ) HSP 1 Score: 107.1 bits (266), Expect = 3.0e-23 Identity = 53/140 (37.86%), Postives = 100/140 (71.43%), Query Frame = 0
BLAST of Lsi11G007120 vs. TAIR 10
Match: AT5G61920.2 (unknown protein; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 6 plant structures; EXPRESSED DURING: 4 anthesis, F mature embryo stage, petal differentiation and expansion stage, E expanded cotyledon stage, D bilateral stage; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G67170.1); 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: 107.1 bits (266), Expect = 3.0e-23 Identity = 53/140 (37.86%), Postives = 100/140 (71.43%), Query Frame = 0
BLAST of Lsi11G007120 vs. TAIR 10
Match: AT3G14750.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G67170.1); Has 4036 Blast hits to 3091 proteins in 519 species: Archae - 61; Bacteria - 669; Metazoa - 1503; Fungi - 255; Plants - 421; Viruses - 4; Other Eukaryotes - 1123 (source: NCBI BLink). ) HSP 1 Score: 88.6 bits (218), Expect = 1.1e-17 Identity = 47/139 (33.81%), Postives = 83/139 (59.71%), Query Frame = 0
BLAST of Lsi11G007120 vs. TAIR 10
Match: AT1G55170.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G14750.1); Has 13439 Blast hits to 8993 proteins in 828 species: Archae - 344; Bacteria - 1469; Metazoa - 6958; Fungi - 1008; Plants - 683; Viruses - 29; Other Eukaryotes - 2948 (source: NCBI BLink). ) HSP 1 Score: 79.3 bits (194), Expect = 6.6e-15 Identity = 50/148 (33.78%), Postives = 85/148 (57.43%), 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 Position : 0 Zoom : x 1
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.
|