Lsi06G001800 (gene) Bottle gourd (USVL1VR-Ls) v1

Overview
NameLsi06G001800
Typegene
OrganismLagenaria siceraria (Bottle gourd (USVL1VR-Ls) v1)
Descriptionvesicle-associated protein 2-2-like
Locationchr06: 1944340 .. 1975197 (-)
RNA-Seq ExpressionLsi06G001800
SyntenyLsi06G001800
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: polypeptideexonCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
ATGCAGGTAAGAATTTGGAGTGAGATTTATGTCTAGTGATCAGAAGCTAAATCTTCAATGTTCTATGAAAGCCTGCATTTTTCTTTACAAAGATGTGCGTGTGGTTTATTTGAGGATTCTTATATGGTAAATCTGTAAATAAATTAATATTGGTAGGGAAAAGTAAACAAATGGAATTGGAATTTGAATTTAGGTTAAATTGTCAATTTGGTTCATACGAGATCCTGTAGTTTTATAGTTTTAAAAGCTTCAATTTGGTTTTTGTAATTAGGGCTGAGTTTCAATTTGGTTATTGTTTAAAAGTTTTAGTTATGTTTTCATGATTTGGCCAATCCTATCAATTTTTTTTCCTATGCTTGCGAGTCGTTACTATATTGAATACATGACACGATCTCCATGGTCTTGTTCGTTCAATAACACTATTTAGGTTTTGAATATTAGACTTGTTAGTTTCATTTATTCATTCTTTGTTTTGTTATATACTTTTTAAAAGTGTTTTTAAAAAACAAGCCAGAATTTGAAAACTAAAGAAAATAGTTTTTAAAAACTTGTTTTTTTTATAGAATTTGACTAAAATTTAAATATTTAGTTAGAAAATATGAAAACTATGAAGTTGTAAGAAAACAAACACAATAGCATTAGTTTTTGGTTTTTAGTTCTACTTTTTTACTACTTTACTATGGTCATCATCTTTCTTAAGGAAGCATTTGAATTCTTAGCAAAATTCAATAAACAAAAACAAGTTTTTAAAAGGAGTGTTTTTAAACATAGAAAAATGAGTCAAACTATTTACAAAAATAGATTTGTTTTACGATAGATAGAGAAATTTTTCTATATTTATAAATAGTTTGATATTTTTTCTGTTTATAATAATTTAGAAAATTTTTACCGATAGAAAAAATGTTAAACTATATACAGAAAATAGCAAAAAAAAAAAAAAAATATTAATAGACTTCTATCAGCGTCTATCATAACTATTTCAAAATTTTGTTATTTTGTGTAAATAATTTTCTTTATTTTTCTATTTTTAAAAATTCTCCTAATAATTTTCCATTTTAAAAGCTATTTTCTTTTTCCAGTATTCAAAACTTTTTAATTATGGATATGGACATGGACATGAATATGTATCTCTAGTTATGAATGTAGATATGGATGTGTTTATATGAATCTTTAATTATGAATGTGAATCTCAAAAACTTTCTCTAAATTTTAAAACTATAGGAACTAAATTTAAAATTTTAAAACTATATGAACTAATTTGTAACTTTATCTAAACCATAGGAACCAAATTTGGAATTTAATCTAATTTATAATAATTAACATAATACATATTTATATATTAAAAAATTTAAATTGAGTTTATAATATGACATATTATATTTCTAAATACTATTATCTTTATTTAATATAATTATGCATTTTAAATTTTAAAATTCAAATTCTGGATATAATGAAAACATAAAAATATTGTTTTCAGAATTTGCACTGTCTGAATCACAGAATCTGGAAACAGTTTTAAACACATATTTGTTGGATTCAGTGAATCTGAAAATGAAAATATAAAACAGAATCCGGATTGCAAATCAAATAGGCTCTTAATTTCTTTTTAGAGGGTGTCTAACTCATTTTTTTGAATTAGCCGATTAAGACGTTAATTGTGAAATCATATTTCTATGGTAAATCAATAAACAAAACCACTAAAAGTAGCCCAATTGTCAAAGAATTGGCTAGGTAAATCTCATGAACTACCTCTCTTACTCTCTCGCCACTATCTTTACTTTCATGCATTTACATTGATTCGCTTGCCACTCAATCTTTTAAAAACCTACCATTTATCCTTTTTTTGTGTAAATTTAGCTTAGAGAAATTAATATCGTTGCCCTATGGTTCCATTTGGTCTACTATTATGACTAAAAAACTCTGATAAGAATGCCTTAGGTCAAGATTTTACTATAACTACATCATTATGACCTCAGAGAAAGTAAGTTTATTCTAATACTTTATTCTAATACTTAAACTCTCTACTTGATACACAGTTACATTTTCTGACTTAAGCATCTGAGTGTTTGTGGCAAACACCACATCTGTATGCAGATTTTTCCATCTTGTAGGTCACATTCTTTTTCAAATTTACTATTATTATCACATGAAGGTAAACTGGGTTTTTGCCGTAAAAAATTTGACATCAAAATTATAAAGCATAAAGACACATTATATTCAAGCTTTTCATCTTAAAATTTGTTCTAGGCGTGGATGACAAGATTAGTTTTCTTTTTATGTTATATTGGTGAATTAAAAATTTGCAAGTGATTAAATTAAAGCGTTGGAGAGCTTGCTAGTGCTAACTAGATTAAAAATACTTTTAGAACTAATTAATAGAAGATTTTTGCCTGGCTTGTTTGTAAGAAATAGATTGGGAGGTTAATCTTACAAACTGCGGGGAGAAATAACTGAGTTCAGGAAGTGAAATTAATAATTATATTATGTTTGTTATATGATAAAAGTAATCTATTGATTGATTGAGTTTGTTGTCCAATTCATGAAATCTATTTTCAAAGATATCTCTCTAATTGTCGTCCCCACTCAGTTAGGAGTAGGAGTAGTTTTAATTTAAGATCAAAATTTGATGTTTGTTTCTATAGATAAAATAAAATAAAAGTAGTTATAGTACTTAATTAAATTAATGGGTCAATCCTGTGGATAATACTCAAACTCATTCCCTACATAGAAACTTAACACTGTACACTTGTGGACTCGCAATGTACAAAAGTAATGTAACAACAAATCGTCATTCTACTGTGTCCAAAATCTATCCATCTAATTTTTACAAACGCACAATGCGAGAGTATGATTGATTTTCACATAATAATGGATTGACGCTTGTTGAAGGAGAAATTTTGGACCAATCACAAATTGCTCCGTCATTTACCAAATTAATGGCGAAATTATAAAATAATTAAATTTGGGATCAATTAAATGTTACATGTATCCTAAATTGAAATTGAAGACGAAAATTGGCAATCTCGATGGTGCCACATGTTTCCGTCCTCATCGTTGGATCAAATTAATTATTTTTGGTTCAATTAATTATTAATGTTTGGACTAAAATTTAATTAAGTCAAAAAATATAGACTTAATTTGGCCTAAATGGCCCAAAAGCCCAAATCCAATTAGTTGGGCTCAATGGGCCAGATCCATGGACCAATCAAGCCCAAACCCATAAAGCTCGCCTGAGAACTCTATAAATAGAGAAGTTCTCTTCATTTACAAGGTTCAGAAATTTTACGCTCAGAGAGCCTAGAGAGAATTCTCCCTACAATCAGAAGACTCACTAACTCCTGAAGCTGAACATACTTGAAACTAACTCCTGAAGCTGAACATACTTGAAGACTGAAGCTCCTTGGAATACATACATCAACTTCACATGCATCCATGCGCTCCGCTTCCATACATCAAGCGTACGCGTACATACATCCATCCAAGACTCCAACTTCACGTCCATCCACGCACTCCGCTTCCATTCATCAAGCGTGCGCGTACATTTGAGAGAGAATCAGAGGATCAAGTACTAGAGATCGAACCACATCCGCATCAAACTTATATAAGCACAAGTTCAACTCCACGAAACACGTTTATCAGGCAACCTCGTGCGAACAACGCTATAGTCATGATGCATATCAAATAGTTAAAAATCGTTACATGATTCGTAATTGTCGTGTTTCGATAGCCAAGTAGTAAGAATTAAAATCATGTATGTATGTTTGTTTGTTGTTCCACGACACATATTTGCATGGCCAATTTAAGATTAAAGATAAAATCAATTAATTAAATTAAGCAAATATCCAATTAATTAATCTTCGTGCAGTATCATAAAACACTATCATGCACAGTATGACAACATATAGTTTAATTGGGGTAAATAGTCTTAATTAATAGTTTGGACACTTGTTTGACTTTTTTAATAAGTTGACTTTTCGAAACGAGTTGGTTTAGCCGAGTGAGTTGGTCGTGTGCTTGTATGTCAAATAATTTTATTGTGAGTTCCTATGATCAAGTTGAATTTGATGATTAACCTCCTTTCTTCTAAGCTAGATTATTGGGTTAGATTAGTTTCTTTACTGTTATGACCTTTATTTTTCGTGCTATTTTTCTTTTACCAAACCTCCCATCCTCTAAACTAGACTTGTTTGGTAAGAATTTGAGGTCTTTTCACGTTCCCAACATGAAATCTTTAACATGATGTGAAAACCTGACGTCATCGTAAAAAAAAAACATCGAACATCTTGCTCTTGTACCAACACACAAAAACTCGAAGAAACAATATATTAAAGGAATATTTTGTATTCAAAATAAAAAAAATTTAGGGAAATTTTCACAGATAGAAAAAATGTCAAATTATTTCCAGAAAATAGCAAAAAAAAAAAAAAAAAAAANNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN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GCTGATTGTCATTTTAATGAGACAACTTTTCCAACATTAGGGGGAGGAATTAAGAAGTTGGAAAATAAAATTGCCTGGAACGCATCGTTATTGTCTCATTTAGACCCTCGTACAAATCAATGCGAACTGGAAGTTCGAAAAATAATTCATTTACAAAACATAGCAAACAAAATGCCATATGCTTTTACAAATGTTAAGAAAGTGACCAAGTCATATATTCCAGCTGTTAATGCTCCATCTAGAATTGAAATTCCAACTCAGCAAGTTGTTACAACTAATGAGTCAACGGTACGCCAGAAGCGTGGTAGACCAGTAGGTTCAAAAGATAAAAATCCTCGAAAAAGAAAAGTAATCAATAGTCAAAATGACTCAATTGAAAATGAGAAGATTCAAAAAGAATCTCCAGACATGACTATTGATAAAAATGTCGAAGAGACTCAAGTATATGAAGATAACAGTGAGATCTCGATAAATTATGTAATGACAGGAAAAAGATGGAATAGAACTGATGTAGCCATAGACAACATTTTCGCTTATACTGTTGCTCATGATATTATACATGAAAATGAGGATTGTGAACCTAGATCTGTTGAAGAATGTCGCCATAGAAAGGATTGACTTAAGTGGAAAGAAGCCATCCAAGCAGAATTAAACTCACTTTCAAAACGTGAAGTTTTTGGACCTGTAGTCCATACACCTGAAGGTGTAAAACCTATGGGATACAAATGGGTATTTGTACGTAAAAGAAATGAAAATAATGAGGTCACGAGATACAAAGCACGATTGGTTGCACAAGGATTTTCTCAAAGACCAGGCATTGATTATGAGGAAACATATTCACCTGTGGTGGACGCTATTACATTAAGATATTTAATTAGCCTGACTGTATATGAAAAGCTTAACATGCATCTTATGGATGTAGTCACAGCATATCTATATGGATCTCTGGAAAATGAAATCTATATGAAAATCCCTGAAGGATTTAAGATACCTGAATCAGATAATTCAAAATCTAGAGAATTATATTCAATCAAATTACAGAGATCATTGTATGGATTAAAACAATCAGGACGGATGTGGTACAATCGTCTAAGTGAATATTTATTGAAAGAAGGTTATCAAAATAATCCAATTTGTCCATGTGTGTTTATTAAGAAATCACAATCAGGATTTGCTATTATAGCTGTATATGTTGATGATTTAAATATAATTGGAACTCCTGAAGAGCTTTCAAAGGCAATAAACTATCTCAAAAAAGAATTTGAGATGAAAGACCTTGGAAAAACAAAATTTTGCCTTGGCTTGCAAATTAAACATTTAGCTGATGGAATTTTTATTCATCAAACGACATATACAGAAAGGATTTTAAAAAAGTTTTACATGGACAAAGCACACCCATTGAACATTCCAATGGTAGTTCGATCACTAGACGTGAAAAAGGATATCTTTCGACCTCGAGAAGATAATGAAGAACTACTTGGTCCTGAAGTACCATATCTTAGTGCAATAGGTGCACTAATGTATCTTGCTAACAACACAAGACCAGATATAGCATTCTCAGTGAATTTATTAGCAAGATACAGTTCTTCTCCAACAAAAGACATTGGAACGGAGTTAAACATGTACTCCGTTATCTTTGAGGAACGGTTGATATGAGTTTGTTTTATTCAAACAAATCAAATTTTGATCTAGTTGGTTATGCAGATGCTGGATATTTATCTGATCCACACAAAGCTAGATCTCAAACAGGTTATCTGTTTACATGTGGAGGAACTGCTATATCTTGGCGGTCTGTAAAACAGACCATTACAACCACTTCCTCAAATCATGCAGAAATTCTTGCAATTCATGAAGCTAGTAGAGAATGTGTATGGTTGAGGTCAATGACTCATCACATTCGAGGAACATGTGGCTTGTCTTCTAGAAAATTTTTACCAACAATATTATATGAAGACAATACAACAGGTATAACCCAAATCAAAGGAGGGTATATAAAAGGAGATAGAACAAAACATATCTCACCAAAACTCTTCTACACGCATGACCTCGAAGAAAATGGCGACATTAATGTTCAACAAATTTCTTCAAAAGATAACTTGGCAGACTTATTTACAAAGGCATTACCCACATCGACATTCGAAAAGTTGGTGCACAACATTGGAATGCGACGACTCGGAGAACTCAAGTGATATATTCATGAGGGGGAGTAGAATTACTGTACTCTTTTTCCCTTGGCTATGCTTTTCCCCATAGGGTTTTTGTAGCAAGGTTTTTTTTAATGAGGCAGGAAAGTATATAAAATAATGTACTCTTTTTCCTTCACTAGGATTTTTTTTCCCATTGGGTTTTTTTCCTAGTAAGGTTTTAACGAGGCATTTATTTTATATAATATGGATATCTAAGGGGGAGTATTATAAATGTAATATATAAATGTAGATATCCATAACCTATATAGGTTACAAAATATCATAAAACTCCCATTGAATTTGATATTGTAACATACCTCCCCATTGAATTCAATCTTGTAACATACATCATCTCATATCCTATAAATAGTGGTATATGTTACCTTTGTAATACACACCACAATTGAGTTCAATTGTCATTTCTACTTTCTTATTTCTCTCTACTTTTCTTCTTTTGTTCTTGTTTTGTTCATATTTTATAACACGTTATCAGCACGAGTCTCTAACACTTTGAAGATTTTGTAGAGGTTGGATTCGATTCNAACAGTGTTGAATTTTTTCTTCCATCACGTAATATTCGTAACCATTGGAATTAGTCAATTTAGCTTATTTTATTCATATGTAAATAATCCTCAATTAATTAATAAATTCCCTTAATTAATTAATAAAGTCTTTGCTAATTTTTATCTTTCTTGCTTTTCAATCTGTGAGAAGACACAACATAATGGATATTCGACTTCTTGAAGTTCATCCAAAGGAAATCAAGTTTATTTGTAAGTCCCTACACAAAATCCAAACAAATTCATTTCTTTTTCTTTTCTCTTCTTTTCAATCATCTTTGAAACCACTTAATTAAGTGGTTTTGTTGATTGGATTTAACGACTTTCAGTGTTTTCTTTTGTTAATCTTTGTGTGAAGTACGGAGATTTGAACCTAAAAAATGCAATACATGTTAAACTTTGTGTCTTTAACTAAAAAGATACAAACTTTTTATTAATTAACCTATCAATTAGGTATACTTGAGGGAGATGAAAGCTCTTAATTTTTTTGTCTACCTATTATCGATTTGCACTTTGTCTGTTTATTGTTTTGCTTCCAATCGAAGTAATTATTTAATTAATATGAAATGCATGTCAAAGTGAACCTAACTCAACTAATATATATTATGTATTAACGATCAAGAGATTAATGGTTTAATCTTCTAATCTTATTGTACTAAAAGAAAATTAAAAATATTAAGTGAATAAATGTACACTATAATATTGGTCTTTATGTCTGTTTTTTTTTTTTTTTTTTTTTTTAAATATATTGATACAACATTTAAAGCTTAGAGGTACAAGTTTGATTTATTTCCCAAAAAAGTTTCATCAATCCATTCTGTCAATAATAATAAGTCAAATTATCTGATCATGTTTGTGAAAAGACATGGAGCTCATTTCAAATCAAATAGAGAATTTTTGTTAGAAACAGATTTTATTTGAAGGCTTTTGCTTATTATTTATTTATTTATTAAGCTTAAATTAGAAATTTGATTAGACTGGGACAGTATAAGATTAAATGCTTATAGATATCTATACAATCAACTTTATTATGTTTAATTGATTTTATTTTAGCATCAAGTTTACATTTATTTATATATTTTCTCAGCAATTTGATTTAACATAGGACTTGGGGCTTAATATCTATTTTATTTTGAGTTTTTGTTAATAATAAAAAAAAAATTNGTAAGAAATTAATCGTGATGAGACGCAAAGAAAGTGTTTTTCCCCTACTAGACATGGCTTGGTCGAACCTTTGGCTTTGATACTATTTTCCACGACGCTAATTCCTCTAGGTCCACAAACCGTGACATCCAACTGCTAACCTAATGGTCCACTGTAGCCGAGCAAGCTAAAAAAACCCTTTCGATTGAGACTCTTAGTCAAGCCTCAACGCCTTGTATTTTTTCTAAAGTGCTTTAACGCTTTGAATTTTAATTTAGAAAAGAAAATGAAAGAGGAATTTTAATTTAGAAAAGAAAATGAAAGAGGAAGGTGTATTATCATCGAAAATAACTTTCGTGCTACATGCTCAATCCCTTGCTTTGTTTGAGAGTCAGGGACCATTTCTTGTAGTATGCCAAGTATTGGCAGGAACGTGCAACAAGCTTTCCAAGAATTCAAAGAAAAAGTTTGTTTGTTTTAGGATATGAGAATTTGAACCACAAACGTAATACATCCATATGCCTGTTGAGCTATGCTCGCTTTAGTACATATCCAAAAAAATTATTAAAAAAAATACTACGCATATAAATGGCAAATATCTAATAACAATAAATAAAGCTACTTAAGAAAAATAGTTAGGTGATAGGTTGGCATTTAAGTGATTCTAAAATGGTTAAAATCACTTTTGACATTTTCAAAATCACTATGAAACATATTTTTAATTATTCAAAATCAATTTTGATGATATGAAAATTACATTTAAAAGTGTAAGGTTAAATATTAAATTAATTTTAAGTGATTAAAAATATGTTTCAGAGTGATTTTGAACATGACAAAAGTTATTTTTAACAAATTTCAAAATCACTCTCAAACATGCACTAAAAGTATCATCCTCAAGTTCGATTTTCTAATCCACTTAATACCACATATACACAATTGTTCAATTTAATAATAATTGCATCTCTCCTAAGAACAATTAAATCTATTTGCTAATTAGGAAACCAATATTTCTATCTAGTTTCAATGACATGCATGATACCTTAGATCCTCTTCTTTTAACAATGATATGCAAGATATCTTAGCATGAAAACCCGTTTTGGTTGTAGTGATTTTAAAATCATGTAAGCTTTAGATCTAACATCAATTAGTTTTGATTATGTGATAGCGTCTTAACACTGTCGATTCGAAGCTAGTTCTTTGCTAGCTTTAAAAACACTATAAATACTCTATCCTCAAGTCTTGGGTCTAGTTTGTCTTAGGGAATTCCTTAGATGTCACACATTCTTGCTCAAATTACTTGAATTTCTCGATGGTATCCTTAAAATCTTTTGCTAAACTAAAATTGCTATATTTTCTTAAAGGAAAAAGAGGTGTAGGTGAAAATAGCCCATAAATTAGGGTTGTTTACAAATATAAAATTTTTTTACTGTCTATCAGCAATAGCTCGCGATAGAATTCAATCGTAGTCTATCGTTGATAGACAGTAAAATTTTTCTATATTTGTAAATAGTTTGATATTTTTTCTGTTTATAGTAATTTTTGCATAAATTACTAAAATCGACAATAAATATTAAATAAGTTACAAACATAGTCCAAAAATGTGCTATCAAGCTTTAGGGAAAACATTTTATAGGGTAGATTAGATGAGGGTCGCATGTAAGGCCTATCGCAGGTGAAGGTACAAACGTTGCTTATATATGGGTATTATCTTATTATTATTATTATTTTTATATCCGTGAGTGTCCGGACTAGCTTAGGCATACCTTAACTAATCTCATGAGACAACCTGCCTGACCTTATAACATTTTGGTGTCAAGAAAACTCGTAGGCTATTAAATCCTAAGTAGATAGCCCTTTATCAAGGTCATGCCTCCCTATTTACAACTAAGCAAACTCATGATAGTTCTATAGGTATATTATCTATTTGCAACATTCTCGATATATCTTGTCCACTTTGACTTGCTTTGTTTTTGGAACGGTCTAAAAGATCGAAATATCTCAATTGATGTGAAACTTTATATGCGTTGTCTAACAATAAGTATACTTTTCACCTAACCAAATGCTAATTTAAAATATACATCTAAATATTTTAATAATATCCTTAATATTTTTGTTCTAATACAGAACAAATTGTTCATTATGTCCTTAATTAATTGCTTGCAGTTGAAGAAAAGAAACAAGCCTTGTGCTTAATTCAACTTACAAATAAAACAATCAACCATGTGGCTTTTAAGGTATGAGTTTATCTATCCCCTATCTATGTTCTTTTCTTCCTTTTATTTTAGCTAAAATTATATATATATAAAAAGAAACAATTACAAATATAGCAATCAAATTCAAAGTATTAGCATATATAGCAACATTTTTAAAAAATTGCAAATATAGCAAAGTCTATCGGTGGACTTTTATCATTGATAGACCCATATGGTAGCGATAGAAGTCTATCACGGATAGACTTTGCTATAATTGTAATTTTTTAAAAATGTTGCTATACACCTAGTTATTATCCCTAAAATTGCTACTCATTACAATTACCTTAAAAAGTACCTTTGAAATTAAATTCTACCCTTAAACTTTCAAAAGACGTTAAAAACATACTTACCCTTATTCTTTTCATAGAAATCGTTGGTACTTTTGGGAAAAATACCCCGAAACTTTTAAAAGTTTCATATCAATACCCTTATATTTTAAAAGAAAATTTAAAAATATCAATACCTTTATATTTTAAAAGAAAATTTAAAAATATCTTTTCTATTAGTATATTGAGGAAAAACTGTCAGTATATTTGAAAAATAAACTTAAATTTGAGAAGAAAATATTAATATATTTCTTCTAATATTTTATGAATCAAATATAGTTGGAAATTTAAACAAGATATAAATAAATAGTGTAATAAACTAGATTATATTTTACACTCTCACTTAACAGGTTAGAATCAAATAAGTTAATGATCAGAAAACAAACAAATAATAAAGATAAAGGAAAAAGAGAATTACAACACTGAAAGTTTATACTAGTTCGCCTGATCTCAAGACCAAGTCTAGAGATATATAACACATCTTGTGTACAATCAAATACTTTCATATTTAAGTTTTTGCTAGTCCCGAGCAAAATAGAACACATAACTAAATAAACAAATAACAGGCAAGTGGATGACACTCCAGCTTCAATAATTTAAGGTGTAAAAAGAATCATCCCTCGCACGAGCGTATCTACTAGTCTAGCTAACCTATTTTGGTCTTTATAAAGTCGGAAGAAATTTATACGACTTATAACTATCAACCACCCTACTTTATTTTAAGTTATAATCAATAATATGCACATTCCTTTTAGTTCGAAAGGTAATATGCCACTAGGGTGCTCTATGAGTAAGTAATTAAAATTCTCCCAAACTTATTTCATTGCTAGATTTGCAAATATACCCTTATATATATATATTTTTGCTACCTAGTACAATTTTCTTTTCATTTTCAGGTTAAGACCACACAACCTCAAAAATACTTTGTAGGACCAAATATGGGCATCATCGAGCCATTATCCACTTGTGAAGTCAAATGTATGCACTCCTTGCATTTAATTAAATTTCCTTTTTTTTTTTTTTTTTTCCTAATCCTTCTAAAATATTATTTTTAAATGAGTACAAATGGGAGGAAAATGAAAGAAAACCGTGATTTTTATATGATACAAACATGCAAGTGTATGTTGTCAAGTTTTAATATACTCATTGAATTTGAGTATTATCCATGGGATTGAGCTGTTAATTATTAAGTATCACAACCTACTTCTACCTTATTTTTATCTAGAGAACCGTTATTTTAACTTAAAACTATCTAGACGTGCCTTAGAGAAGTGAATTCATNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTAAACAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGCCTAACCCTAACAATATTTGGATTGAACCCATGACTCCTTGACTATTGGTCTTTTTTTGTATATTCCCACTACCACTAGGTACAACCATAGTATTAAATTTTTCCATAGGTTCGATATCGATATGAGGGGTGAATCGATATTTTCATTATATCGTAAAAAAATCTACGAAACACGAAAAATAAGCATCAAAATGCTACTTATATAAATATAATATAAATAATAGATTTGTTTACTTATTTGAGAATAATAAAATGTTTATTTTTAATTTAAATTTAATTTTTGAATTTTTTTTGTTTTTATAATTTTTCCAGAAATATCCATCGAAATCGATAATTTATTAATATTTCCATCGAAATATTGGTAAAATTAAGACCTCGATATTTCCATCGACATCGATATTTTAAACCTTGGGTACAACTTTTTAATTAATATTTCCATCGAAATATCGGTAAATTTAAGACCTCGATACTTCCATCGACATTGATATTTTAAACTTTGGGTACAACTTTTTAATTAATATCTTAAAATCTCTAAATTTTCAATTTTCTCCCTGAAAACGTCGATTGTGCTCAAAATGCTTGAAATAGACCTATAAATCAAACAAATAAACTTGTGAAAGAATTGAAATTCATCCAAAAACTAGCCAAAACCTTAGCCTAGGAAGCACATTTAGTGTGCTATCAAATACCTCTAAACTTAAAATTTTGCTATTGTTCATTATGAAATACCTTAGGACAATTTTTTCTGGCCTAGACTTATTGAAAGTTTGAATACTTAATTTGGTGGGCACATGAAATTCAACATTTTATATATATATATATATAGGAAAAATATTTAGGTGCTGCTTGGACTACACCTATCTTTGTATAGCTCACTAGTTATCCAATTAAAAACTGTCATGTGGCAATAATTGTTTACTTTTTAAAAAAGTTAAATTATTATTTTCTTATCATGTGATAAATGAAGGAGTTGTAGGAAAAGAAGCGTAGTCTAATCATTGCCTTATATAAGTAGATATTAAACTATTTACAAATATAGAAAAGTTTCACTGTCTATCACTGATAGACCACGATAGAATTCTATCGCTTGAGCAATAGAAAGCGATAGATCACGATTGAATTCTATCGCTGATAGATAGTAAAATTTTTCTATGTTTATAAATAATTTAGCTCAATTTTTTATATTTGTGATGGTTAATGTAGTTAGTATGAAAGCACAAAGTATTACTCCATCTGACATGAAATGCAAAGACAAGTTCTTAATCCAAAGCACAATAGTTCCCATTGAGACAACTCTTGAGGATATAACTTCCACTGTCTTGGTAAATGTTCTTGGCAGCTTTCCACTTTTATTTGTTATTTTCCTTCTCATATTTATTTCATAACTCAAACCATTTTTTTTTTCTATTCAGTTTGGAAAAAATAATAGCAAGAACATAGAAGAAAGGAAATTGGGTACAATAATTATTGTTAGGCCATCTAAATCCCCAACTGTTGAAGCTGTTGGAGTTTCAGAACAAAGTAATGTTAAGCAAATAGAAGAATTGAAGTTAATGATCGATGAACTTGATCTACAGCTCCATCAGGTTAGTCTTTCATAAAAGGTCTTTTTTTGAACTATTGAGCAAACCATTTGGTAATTGTTTGGTTTTTGATTTTCTGTTTTTTAAAATTAAGTCTATAAATATCACTTTCGTCTATTGGTTTCTATGCATTTTGTTCTCTAGGACGTTTTTTAGGAGCATTTTCAAAATGAAAATCAAAATTTGAAAACTAAAAGAAGTAGACTCGGTTGGTAACCATTTGACTTTTAGTTTTTTGTTTTTTAAAATTAAGTTTATTTCCTATCAATTTTTTTTTACAATAGTTTGCATCTTTTTTAAGTAAAACAGTTAAATTCTTAGTCAAATTCTAAAAATAAAAACAAGTTTTTAAAATCTATTTTTTTTAGTTTTCAAAATTTAATTTGGTTTTTGAAAACATTGGTAAAAAAAATAGATAACAAAACAAAAAATTTAGAGGTGGAAAGAGTGTTTCTGTTTATAGGCTTATTTTTCAAAAACTAAAAACTAAAAGTCAACTGGTTACCAAATGAGGTGTAAGTTTTAAAAATTTGTTTTTGTTTTTAGAAACTGACTAAGAAGTTAAATGCTTTACATAGAAAAATATGAAAACCATGAGTAAGAAATTGTGAGAAACCAAACATAATTTTTAAAAACCAAAAGAGAAATTTTTACAGATTTAAAAAGTGTCAAACTATTTACAGAAAATAACAAAAAAACACTGATAGACATTGATAGATTTCTATCAATATCTATCAGTGATAGACTTCTATCATTTCTATCACAACTATCTAAATTTTTTGTTATTTTGTATTAATAGTTTCTTTTATTTTTCTATTTTTAAAAATTTTCCAAACTAAAAATTGAAAATCAAATTAGTTCCTAAACGGAACTAAACAATTTTAAGTATTTTATTTTATTTTATTTTGCCCGATAGTAATGTGAATCCTTCAAACTTCCTTTATTTTACAGGCTCGGGTTGCTATTTCGAAGCTAGAAAAGGAAAGAACAATTAAAAAAACCAAATCCTTGCAAAAGAATTGCACAATTCTTTGAAAGAACCCTCTAATGGCATTCTACATATGATGATTGTGAAGCTATTGGTTTATTGATATATGCCCAATTATAGTTTTAATATCTAATTTTGAAGTTATTGTTGAAGTTAGATTTCAAAGTTGGTACATTAGTTTTAGTGCGGTTTTCAAATATAGAAAAATGAAATAAACTATTTACAAATATAGAAAAATTTTACAGTCTATCAGTGATAGACTGCAAGAGAATTCTATCACTTTCTATCGCTCAAGCGATAAAATTTATTTGTTTAAGTGATAGAAAGTTCTATCGTGGTCTATCACTGATAGAAAGTGAAATTTTTCTATATTTGTAAATAATTTGATTTTTTTTTTTTGTTTATAGTAATTTCCCTTAATTTTAATGCTTAAGTGATAATTGTAAATATTTTGTGTAGTTTCTCTAGTTAACTAAATGATAACGTGACATAACAAAATGTAAAAGTTTAGAAAAAAATAAGATTTATATACCTAATTTAATATTAGTTTAACAAAAATCAAACTTGTATTGTATTTATATTATTCATCAACATTTTTAATAAGAGTACTAGGTCTAGTACGATTTTTGAAATGGTGAAAAATGTACTTTAAGTTGAAGTACATTTTAATGACAATATCATATTATTGTGGAAATATCTGGAGATTTGTTCGAAGGAATGATTATTTCGTGGTTGAGCTTTCAGATAGGCAGTGTGTGCTCAAGTGTAATTTAGAGAGATGATTATTTAAGGAAAGCTCGATGATCCTTTGTTCAAGGGGAGGATTGTTGGGAATGCGATCAAAGTAGAGGATGATCACGAGTTTATAAGGGAGGACAACTATCTTCAGTAGTACGAGGTCTTTTGGGTGAAACCAAAAGAAAAGATTCAATCAACATATGCCATGTGGCAATTTTTGTTTTTTAAAAAATTGATCTTTTTAATTTTTTTTTCCTACTATGTATGAAAAATGACTAGACCTAATCATTACCCGAAATTGCATAAGGATATTAATATTTACCATTCAAATGTTCAAGAAATAAATTTAGAGGAATCAATAAAGTTTATGTACCAACTTTGAAATCTATCTTAAACACAACTTTTGAGCAAAATATATAAAATGGCATAACATGGTTCTTTCAAAGAATTGAACATGAAACTAAGCAATTCTTTTGCAAGGATTTGGCTTTTGGGATTCTAGTTTTTTCCTCTTGTAGCTTTGAAATGGCAATTTCAGCCTGTAATAAAAGGAATTTGAAAAATTAAGACACAATAGTAAATAAGGTCTTGAAAAAACTTTTTCTCTTAGTAAAATTACAAATTTGATTCCTAGAATTCAGATAACGTTAGAATTTAGTCCCTATAGTTTATAATTAGAATGTATAGTGTCTCTATAGTTTGATGAAACCCCCATAAGTAGTCTCGATGTTTTATCAAACCTTAAAGACTAAATTTTAATTTTTTGAAATCACAGAGACGGTACAGACTAAACTCTAACTTTCACCAAACATATATAGGAGGTGTTTGGTGGCCCGTAATGGGATGAGAATGTAATGTAAGGTAATCCAAAATCCATGTTTGGATTGAGCGTTTTTTGTCCAATTTGTAATACAGAACTCATTTCGTTCCGACAGTTTTCAATCCAACCATCTTTCTCATCGTTTTTATGCCTCACAATCTCATTTCCGTTCCATCTTTGATTAATTACTCACGCTTTCCAACACTCCTCTGATTCCCAATAATCCTGATTACATTCCAGCTCTCCAAGCACCCCGGATCAAATTTACAATTTACCCTATTCTTTTTTTATTATTTTGGTCAAGAGTTTACAATATATATGAAAAGCAAAATATTTATGGAGAGACAAACCTCATGGAGCTTTAGATCAAGTTGTGTAATCTTTAACTTCAATTCCTCTATTTGTTTATCATTACTTTGTTCTGAAACTCCAACTCTCAATGCTTCAATAGTTGGGGAACTTGATGGCCTAACAAGAATTATAGCCAATTTCTTTTCTTCTATGTTCTTGCTATTATTTTGCCCAAACTGAAGAAAAAATGGTTAAGTTATGATATAAATTTGAGAACAACAAATAAAAAAAATACAAAGCTGCCAAAAAAATTTACCAAACCATTGGAAATTATATCCTCAAGAGTTGTCTCAATGGGAACTATTGTACTTTGGATTAAGAACTTGTCTTTGCATATCATATCAGGTGGAGCTATTTTTTGTGCTTGCATCGTAACTACGCATTAAAGGTTAAAATATCATTTTAGTCGATATTGTATTTTCTCGACCTGTTCGAGTTCAGTAATGTATAAATTTTAGTTCGCATACTTTCAATAAAAATAATACACTAAAATCGGTATATAGGATTGTTACCACATGACAAATTCAACCATTATAAATTGATGTTAATGTAATAGAAAAACAATAAACTGAAATAAATGAACAGAGATTTGGATTAAGTCCACGATTAATAATAAATGCATGAATGGTAAATTTGGTATATAAATTGTATGACTGATATAATTTTTATTTCTATTTAGTGTATCAGTCAAAGTGCATGAATAATAACAAATGTACAAGCATTTGTTAACTGTTAATTATGATATATATATACAAATGGTAAATTTAGTATACCGATTATATAACTTATATACTTTATATTTGGTACGTATATTAGTCAACTTATATAGCAAATGTAAAGTCTATCAGTTGACTGATATGCATATATACATGCTTAATACACCAATAAGGATAAAATTAGTATAATAAAAAGTAACAACAAGCTTTAATGATTTTTTTGTTATATTTGCAAAATTTAAAAAACTATTGCTAGATTTGTGAATTTAACAATGTTTGTTTCCAACGATTAACTCCATAAAACATTGACTAATAATATGGTTTTTGTTTTCTAAAAGCAAAAATAAAAATAAAAAAAAACAAAAAAAAATGGTTACCATAAATCGCCACTGAAAACCAAAAACAGATCCTTTTGAAAAATCAAAAACCGAAAATAAAATAATTATCAAACGGGGCTATACTATTTAAATCTGGGAGGGAATCAAGCTAAATATGCTACACATATTCATCAAGATATATAAAAAATATTTCGAAAGGGTTAATGAAAAAATAAAATAAATAAATAAATTAAATTTGAAGAGATCATACATGAGACTTCGCAATTTGATAATGGCTTGATGATACCCATATTTGGTCGTACAAAGAATTTCCTAGCTTCTGTGGTTTTAACCTGAAAATGAAACTCATATTTGATATTGTTATTAGGGAAATTATTAAAAAAATATATCAAATTATTTATAAATATAGAAAAATTTTAATGTCTATCCGCAATAGATTACGATAAAATTCTATCCTAGTCTATCGTTAATAGACGGTAAAATTTTTATATATTTATAAATAGTTTAGCTCATTTTTTTATATTTGAAAACAACCTTGGTTATTATGACCATATATCATATCATTTAGTCAGGTTAATTATTTTTTTTTAGACTCCTAATCTTTTCGGTTGTATCAATTTAAACTCTAAACAAATAAGTGTATTAATTTAAACCCTGAACTTTTGTATGTGTATCAATTAATATCTTCATTCAAACTTAGTTCGAAAAATATCGTACGAAACATATAATTGTTTCAATTAAGCTTCTAAAGTATTATAAGTGAATCAATTTATACCATTATTTATTAAAATTATATTTGAAAATCGTTCATGCATTCAATTCTTGCATGTGTGTAGACTTCTTCAAATATCATATTAGTAAAATAGATGATTATAATTAATGTATAGAAAATTTTCCAAAGAAATCTTAATTGAGAGTCTAAATTGATTTGCTTATAAAGGTTAAGAAGTTTAATTGATAAGATTATAAGTTTCATACAATGTTTATTAGAACAAATTGTCATGGGGTGTAAATTGATACGCTTATGAAACTTTAGGGGTTTAAATCAATACAATTATTAATTTAGGGTTTAAATTGATAAAATCCCAAACTTTAAGGGTGTAAAATAAAGTGATCATATTTTTTCTAATTTAGAGGAGGAAAAAAAAAAGATGAATGGCAAAGGATCAAATATTAATTACTATATCCATACCTTAAAAGCAACATAGTCGATTGTATTATTTGTTAGTTGAATTGAGCATGAACTTCGTTTCTGTACTTCAACTGGAAGGTAATTAAATCGAATATAAATATTTTGTTATGAATCTAAAACAAAAAGAAAATTTTTAAAAATAGAAAAATAAGGAAAACTATTTATACAAAATAGCAAAATTTCTAGATAGATGTGATAGACACTAATAGAAGTCTATCAGGATCTATTAGTGATAGAAATGATAGAAGTTTATAACGGATAAATGTCTATCAATGTATATCAGTATTTTTTTTGTAAATAAGTTGACCTTTTTTCTATTTGTGAAAATTTTTCAGACAAAAATAGTAAGGATACTATTAAAATGTTAAGATGTATATTTTTGAGTTGTTTTCAAATATAGAAAAATGAGTTAAATTATTTACAAATATAGAAAAACTTCACGGTCTATCAGCGATAAATCGCGATAGACTTTTATCGTTTGAGCGGTAGACTGCGATAGAAGTCTATCGCTCATAGATAATAATTTTCCTATAATTTTCATTAAATATTAGTTAGTTGAAGGTAGCTATAAATAGCTCACATAATTTCAAAAAACTTCCCATAATTTTTCTTTCCATATTAGTTCGAACAAACGTAAAATTATGTGAAGTTTATGAAGGAGGTAACGTTAAGCAAGAAGAAGTTAGAGGCTTATGAGACAACCAACCTCACTAAAGCACGTAGTGCCATCATTCAAAAGAAAAAAAATTAAAAGATCCAAGAGTGTTATTATTCCTTGCACTATTGGTAGTTCTCCTTCTCACAGGGCATTTGTGTGATTTGAGTGCTAGTATCGATTTGATGTCTCTTTTTGTTTACGAGAAACTAGGTTTAGGGGAGGTTCAACCGACAACCATATAACTATAACTCTAGCTGACCATTCCATCACATATCATAGAGGTATTGTGGAGGACGTACATCTTAGTTAAAGTCGATAAATTTATTTTCTATGCAAACTTTATAGTAGTACTGAACATAGAGGAGAATGTTGAAGTTTCTTTTTTGAGACGTCCATAAAATCAAGAAAAGGGCACAAATAACTTTGAGTATTGCTTTCAAAATATGATCAAAATAGAAAAATAATAATTAAAAAAAAGTATGGATAAAATGTTTGTGAAGAGAAACTTACAAATGAACTTTAATTCCTTGGGATGAACTTCAAGAAGTTGCATATCCATGCTTTCTCCTCCAAATTGAAAAGCAAGAAAAATATGAAAAATAGAGACTTTTGGGGTGTTGATGAGGATTCATTCATATATGAAATAAAATAAGCTCAGTTGAATTATTCAAATACATCAATTATTAAAGACTTCTACCACAAGCAATCGTTGACAACAAAAATGGTTTAAAAAAAATACTTTTTTTCTTATAGGAAATTACTATAAACAAAAAAAAAAAAAATATATCAAACTATTTACAAATATATAAAAATTTCACTGTTATCAGCGATAGACCGCAATAGAATTCACTTGAACGATAGACTAGACTTCTATCGTGGTCTATCGCTGATAGACAGTAAAAATTTTCTATATTTGTAAATAGTTTGACTCATTTTTTTATATTTCAAAACAACATTTTTTTTATTCTAAACTTTAGTTGGTATCAATTTAATTCCTATACGTTCAAATTTTATTTAGTTTCTAATTATAATAATTATCAATTTAGTCCATGTATTTTATATTCTATGAAAGTTTAAGGACCAAAAATATATATTTTTTTTTGCATAATTTTTTTAATAAAACTTTTAAAACTTATATATTATAAATATAATTTTAAGTTTAAAAGTATCTAGTAGACACACAATTAAATGTTTAGTAAAAGTTAATAATTAGGCATTTTTCTTAAACTATATATAGTTGTATTCAACGCAACTTTAACATATAAAGAATCACACCTATATATATATATATATATATCTTTGGAAGTTAGTTGAATGGTAGCTAAAATTAGGATAATTATTTTAAGGGCGATTTTCAAATATAGAAGAATGAGTTAAACTATTTATAAATATAGAAAATTTTTACTGTCTATCAGCTATAAATCACGATAGGATTCTATTGCGGTCTATCACTGATAGACATTGAAATTTATCTATCTACTCTGTATATTGTGAGAAAAAAATTGTTTGTTTTTTTAAACAATCAACTAACTTTGACTTTGACTTTATAAGCATTTTAATATAATATGAGAGTTGTAATGTTTGAAAAGATGCTTGGCAATTCCAAAAACTATAAATTTTCTTTCCAATTTCATATATATATATATATATTCTTTTTTCTCTCAACTCATTTAATTGGTGAGAGATTTGACAAATGATTTAAAAATTAATTAATTGATTTGATTTAAGGGCTTTGTTCGAAAGCTATTTTTTTTATTTAAAAAATAAACAATGATGGTTTCAGTTCTCATCTCACCTCTCACCATTTGATCTGACTTGGTCCAAAAATAAAAGTCTCGGATATAATTATAAATAATCCAAAATAATAATGGCTTAATTCTTTCATTAATTTTAATCATCAAACCTTTTTTATATGTGTGTGTTTTTTTATTAAATTATAAAAAATACTCATAAATAGTAAGTGTACAAAAACGAGATGCTGTATGGTGGGGTTTTGTGCTTTCAACAAACTAATCCGTACGATATTAAATTTTAAGTAGGTAGCCACCATGAATTGAATCCATGACTCCTTTATGTTTCCACTACCACTAGGCCAACACGTGATGGTTTCCTTAAAATCTCCAAATTTTCAATTTTCTCAATGAAAATGCCGATTGTGCTCAAAATGCTTGAAATAGACCTATAAATCAAACAAATAATCTCGTGAAAGAAATGAAATTCATCCAAAAACTAGCTAAAACCTAAGTCCAAAAAGCACATTTAGTATGCTATCAAATACCTCCAAACTTAAGCTTTTGCTAGTCTCGAACATAGTAGAACACATAACTAGATTATAAAACAACATGCAAGTGGATGACCCTAAGCTCAATAATTGAAGATGTAAAAAGAATCACAAATAAAAGAATATGAATAACAAAAACCTTTAGTGAGCAAAATTAAATTTAGAACATCCATCCCTCGCACGTGTTTGCGCTAGTATAAGCTATTTTAGTTTTTATAGCCCCATAACATAATGCATCTCTTTTGGATAGGAGTATGATAAAGGCACTAAAGATGTGTCAACCTAGTTGAGATATATCGATGCATCTACTGACTCCTCGACTTCTAGTACTTTTTCAAAAAATATAATTTCAGAACAAGTTATAGACTTATAACTATCTGTCACCCTAATACCCTCCAATTAAGTTCCAATCATAAGGCCTTCCTTAATTTGAGAGGTAATATGCCACTTAGGGTAACCTAATAGGAAGTACAAATTTTCCCAAACTTAATTGTTGCATGATTTGTAAATCAATGCTATTATTATTATTATTATTATTATTATTATTATTACCCTTATGCTATTGTTCATGATGAAATACTTGACAACAAATTTTTGTGGACTCCAATTTTAAAATTTATTGAAAGTTCGAATACTTGATTTGGACATTCTAGAGCATAGAGATTAAAATAAAACATGTGGGCACATGAAATTCAACTTTGATATATATATACGAAAAATACTTAGGTGCTGGCCGGACTACACCTATCTTTGTGTAGCTCACTAGTTACCCAATTAAAAACTGCCATGTGGCAAGAATTTTTTACTTTTTAAAAAAGTTGAATTATTATTTTCTTATCATGTGATAAATGAAGGGGTGTAGGAAAATAAGTGTAGTCTAATTGTTGCCTTATATATATAGAAAATTATTATAAACAGAAAAAATATTAAACTATTTACAAATATAGAAAAATTTCACTATCTATCAACGATAGACCACGATACAATTTTATTGAATTCTAATTCAATCGCTTAAGTCAACGATAGACCACGATATAAGATTTATATACCTTTAAAGTGCTATTATACATGGCTTAAGTCAAGTTAGTTTTTAGATATTTTACGTGCTTAAGTTGACTATCAGGTGCCACCATTTAGGAAGGTTTTATCAAATTATAGGGACTAAATACTATCTTTCGAAATGTAACAACCCGAGTTCAAGAGGGATACATGAATGAATTGAGATCACATCCGAATGAGAAGGATCCTGAGGACATGAAAGTATGGTTAAGAAATGCTTAAAAGAATTGAAAGTTACTACTCATACCAACAAAGTGCACCTTCTTTTTCCGTAACTCAATCATAAGAACTCCAAAGTGCATGTGAACCCATGTTGGTTTGTGGGGACAACTTTCAGTTGTCGAATCCAGATTCTGAATCCTAGGCTTGGGGCATTACATGAAATTCTATGAACTAAATTCTAACTTTTTTTCAAACCATACAGACTAAATTTATAATGTAACCTTAAACTACTTTTTTCATGTTTCTATCTTTTTGTCCGTCAAGAAATTTTAATATCTATTATAACATTTGTTTGTCATTTTTTGTGCTAGCTAGATAGGCCTAATATTAATTTACTAATTAAACATGTCACATCATCATTTACTTTAACAACAGTAACTAGAGGAAATTGCACGGGGTATTTACCATTCAAATGTTCAAGAAATTTACAAGAACCAATAAATTAAAGTTTATGTACCAATTTTGAAATCTATTTAATTTCAACAACTTTTGAGCAAAATTAGATGTCAAATTAATTAGGATGTAGAACTCAGCTAGAACATGATTCTTTCAAAGAATTGAACATGAAACTAAGCAACTCTTTTGCTGAGATTTGA

mRNA sequence

ATGCAGGTTAAGACCACACAACCTCAAAAATACTTTGTAGGACCAAATATGGGCATCATCGAGCCATTATCCACTTGTGAATTTGGAAAAAATAATAGCAAGAACATAGAAGAAAGGAAATTGGGTACAATAATTATTGTTAGGCCATCTAAATCCCCAACTGTTGAAGCTGTTGGAGTTTCAGAACAAAGTAATGTTAAGCAAATAGAAGAATTGAAAACTCAGCTAGAACATGATTCTTTCAAAGAATTGAACATGAAACTAAGCAACTCTTTTGCTGAGATTTGA

Coding sequence (CDS)

ATGCAGGTTAAGACCACACAACCTCAAAAATACTTTGTAGGACCAAATATGGGCATCATCGAGCCATTATCCACTTGTGAATTTGGAAAAAATAATAGCAAGAACATAGAAGAAAGGAAATTGGGTACAATAATTATTGTTAGGCCATCTAAATCCCCAACTGTTGAAGCTGTTGGAGTTTCAGAACAAAGTAATGTTAAGCAAATAGAAGAATTGAAAACTCAGCTAGAACATGATTCTTTCAAAGAATTGAACATGAAACTAAGCAACTCTTTTGCTGAGATTTGA

Protein sequence

MQVKTTQPQKYFVGPNMGIIEPLSTCEFGKNNSKNIEERKLGTIIIVRPSKSPTVEAVGVSEQSNVKQIEELKTQLEHDSFKELNMKLSNSFAEI
Homology
BLAST of Lsi06G001800 vs. ExPASy Swiss-Prot
Match: B9DHD7 (Vesicle-associated protein 2-2 OS=Arabidopsis thaliana OX=3702 GN=PVA22 PE=1 SV=1)

HSP 1 Score: 45.1 bits (105), Expect = 5.3e-04
Identity = 35/120 (29.17%), Postives = 48/120 (40.00%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT P+KY V PN+G++ P STCE                                  
Sbjct: 40  KVKTTSPKKYCVRPNVGVVAPKSTCEFTVIMQAFKEPPPDMVCKDKFLIQSTAVSAETTD 99

Query: 62  -------FGKNNSKNIEERKLGTIIIVRPSKSPTVEAVGVSEQSNVKQIEELKTQLEHDS 81
                  F K   K+IEE KL  + +V PS SP +  +   +Q  V +   LK +L   S
Sbjct: 100 EDITASMFSKAEGKHIEENKL-RVTLVPPSDSPELSPINTPKQGAVFEDSILKDRLYSQS 158

BLAST of Lsi06G001800 vs. ExPASy TrEMBL
Match: A0A1S3BPU6 (vesicle-associated protein 1-3-like OS=Cucumis melo OX=3656 GN=LOC103492223 PE=4 SV=1)

HSP 1 Score: 60.5 bits (145), Expect = 4.5e-06
Identity = 46/122 (37.70%), Postives = 55/122 (45.08%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  +KY V PN GII PLS C+                                  
Sbjct: 40  KVKTTDARKYCVRPNKGIINPLSNCKVTFTMQAQKMAPPDMKCKDKFLIQSTIVPIEANL 99

Query: 62  ----------FGKN-NSKNIEERKLGTIIIVRPSKSPTVEA--VGVSEQSNVKQIEELKT 77
                     F KN N  NIEERKL TI++   + S T+EA  VGVS QS  KQIEELK 
Sbjct: 100 HEDMTSTYNLFEKNGNKNNIEERKLSTILVKASAASSTIEALSVGVSNQSKDKQIEELKL 159

BLAST of Lsi06G001800 vs. ExPASy TrEMBL
Match: A0A6J1HZ48 (vesicle-associated protein 2-2-like OS=Cucurbita maxima OX=3661 GN=LOC111467925 PE=4 SV=1)

HSP 1 Score: 59.3 bits (142), Expect = 1.0e-05
Identity = 49/142 (34.51%), Postives = 65/142 (45.77%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  +KY V PNMGII+PL++CE                                  
Sbjct: 40  KVKTTNVKKYCVRPNMGIIKPLNSCEVIFTRQAQSVAPLDMVCKDKFLIQSTVVPIETNV 99

Query: 62  --------FGKNNSKNIEERKLGTIIIVRPSKSPTVE------AVGVSEQSNVKQIEELK 96
                   FGK+ SKNIEE KL TII+     SP VE      A+ V +QSN +Q+EELK
Sbjct: 100 DDITSTTMFGKSGSKNIEETKLNTIIV-----SPNVEPLRKEMAIEVLDQSNDEQMEELK 159

BLAST of Lsi06G001800 vs. ExPASy TrEMBL
Match: A0A6J1HCB9 (vesicle-associated protein 2-2-like OS=Cucurbita moschata OX=3662 GN=LOC111462044 PE=4 SV=1)

HSP 1 Score: 57.0 bits (136), Expect = 5.0e-05
Identity = 47/138 (34.06%), Postives = 65/138 (47.10%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTC----------------------------------- 61
           +VKTT  +KY V PNMGII+PLS+C                                   
Sbjct: 40  KVKTTNFKKYCVRPNMGIIKPLSSCLVTFTMQAQSVAPLDMVCKDKFLIQSTVVPTETTV 99

Query: 62  -------EFGKNNSKNIEERKLGTIIIVRPSKSPTVE--AVGVSEQSNVKQIEELKTQLE 96
                   FGK+ SKNIEE KL TII++ P+  P  +  A+ V +QSN +Q+EELK ++ 
Sbjct: 100 DDITSTTMFGKSGSKNIEETKLNTIIVI-PNVEPLRKEVAIEVLDQSNDEQMEELKLKI- 159

BLAST of Lsi06G001800 vs. ExPASy TrEMBL
Match: A0A6A4LET9 (MSP domain-containing protein (Fragment) OS=Rhododendron williamsianum OX=262921 GN=C3L33_14886 PE=4 SV=1)

HSP 1 Score: 54.7 bits (130), Expect = 2.5e-04
Identity = 32/85 (37.65%), Postives = 43/85 (50.59%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE-----------------------FGKNNSKNIEE 61
           QVKTT P+KY V PN GII+P S C+                       F K+N KNIEE
Sbjct: 77  QVKTTSPKKYCVRPNNGIIKPKSKCDFTGSTSAPSDLQCRDKFLVQSTVFAKDNGKNIEE 136

Query: 62  RKLGTIIIVRPSKSPTVEAVGVSEQ 64
            KL  ++I  P     +++ GV++Q
Sbjct: 137 SKLRVVLISPPQSPVLLQSNGVTKQ 161

BLAST of Lsi06G001800 vs. NCBI nr
Match: XP_031736065.1 (vesicle-associated protein 2-1-like [Cucumis sativus])

HSP 1 Score: 67.4 bits (163), Expect = 7.6e-08
Identity = 48/123 (39.02%), Postives = 58/123 (47.15%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  QKY+V PN+GII PLS CE                                  
Sbjct: 40  KVKTTNVQKYYVRPNLGIINPLSNCEVTITMQAQQMAPPDMKCKDKFLIQSTIVPIETNL 99

Query: 62  -----------FGKNNSK-NIEERKLGTIIIVRPSKSPTVEA--VGVSEQSNVKQIEELK 77
                      F KN SK NIEER+L TI++   S SPT+E   VGVS QS  K+IEELK
Sbjct: 100 HEDYVTSTYNLFEKNGSKNNIEERRLSTILVKDESSSPTIETLNVGVSNQSKDKEIEELK 159

BLAST of Lsi06G001800 vs. NCBI nr
Match: XP_031736025.1 (vesicle-associated protein 1-3-like [Cucumis sativus] >KGN66550.2 hypothetical protein Csa_006961 [Cucumis sativus])

HSP 1 Score: 65.5 bits (158), Expect = 2.9e-07
Identity = 50/133 (37.59%), Postives = 60/133 (45.11%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  QKY V PN G+I PLS CE                                  
Sbjct: 40  KVKTTNAQKYCVRPNKGVINPLSNCEVTFTMQAQKMAPPDMKCKDKFLIQSTIVPFEANL 99

Query: 62  ----------FGKNNSKNIEERKLGTIIIVRPSKSPTVEA--VGVSEQSNVKQIEELKTQ 89
                     F KN SKNIEER+LGTI++   S SPT+E   V VS QS   +IEELK +
Sbjct: 100 HEDLTSTYNLFEKNGSKNIEERRLGTILVKAESTSPTIETLRVEVSNQSKDTEIEELKLK 159

BLAST of Lsi06G001800 vs. NCBI nr
Match: XP_038878617.1 (LOW QUALITY PROTEIN: vesicle-associated protein 2-2-like [Benincasa hispida])

HSP 1 Score: 61.2 bits (147), Expect = 5.5e-06
Identity = 54/132 (40.91%), Postives = 64/132 (48.48%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  +K  V PN GII+PLS CE                                  
Sbjct: 40  KVKTTDARKLCVRPNKGIIKPLSNCEVNVTMQAQKMAPPDMKCKDKFLIQSTIVPIETTA 99

Query: 62  --------FGKNNSKNIEERKLGTIIIVRPSKSPTVEA--VGVSEQSNV-KQIEELKTQL 89
                   FGK+NSKNIEER L T I+V PS S TVEA  VGVS +S+  KQIEELK ++
Sbjct: 100 EDITSTNLFGKDNSKNIEERIL-TTILVSPSSSLTVEALSVGVSNKSSSDKQIEELKLKI 159

BLAST of Lsi06G001800 vs. NCBI nr
Match: XP_008450732.1 (PREDICTED: vesicle-associated protein 1-3-like [Cucumis melo])

HSP 1 Score: 60.5 bits (145), Expect = 9.3e-06
Identity = 46/122 (37.70%), Postives = 55/122 (45.08%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  +KY V PN GII PLS C+                                  
Sbjct: 40  KVKTTDARKYCVRPNKGIINPLSNCKVTFTMQAQKMAPPDMKCKDKFLIQSTIVPIEANL 99

Query: 62  ----------FGKN-NSKNIEERKLGTIIIVRPSKSPTVEA--VGVSEQSNVKQIEELKT 77
                     F KN N  NIEERKL TI++   + S T+EA  VGVS QS  KQIEELK 
Sbjct: 100 HEDMTSTYNLFEKNGNKNNIEERKLSTILVKASAASSTIEALSVGVSNQSKDKQIEELKL 159

BLAST of Lsi06G001800 vs. NCBI nr
Match: XP_023545322.1 (vesicle-associated protein 2-2-like [Cucurbita pepo subsp. pepo])

HSP 1 Score: 59.7 bits (143), Expect = 1.6e-05
Identity = 48/138 (34.78%), Postives = 66/138 (47.83%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT  +KY V PNMGII+PLS+CE                                  
Sbjct: 40  KVKTTNFKKYCVRPNMGIIKPLSSCEVTFTMQAQSVAPLDMVCKDKFLIQSTVVPIETTI 99

Query: 62  --------FGKNNSKNIEERKLGTIIIVRPSKSPTVE--AVGVSEQSNVKQIEELKTQLE 96
                   FGK+ SKNIEE KL TII++ P+  P  +  A+ V +QSN +Q+EELK ++ 
Sbjct: 100 DDITSTTMFGKSGSKNIEETKLNTIIVI-PNVEPLRKEVAIEVLDQSNDEQMEELKLKI- 159

BLAST of Lsi06G001800 vs. TAIR 10
Match: AT1G08820.1 (vamp/synaptobrevin-associated protein 27-2 )

HSP 1 Score: 45.1 bits (105), Expect = 3.8e-05
Identity = 35/120 (29.17%), Postives = 48/120 (40.00%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT P+KY V PN+G++ P STCE                                  
Sbjct: 40  KVKTTSPKKYCVRPNVGVVAPKSTCEFTVIMQAFKEPPPDMVCKDKFLIQSTAVSAETTD 99

Query: 62  -------FGKNNSKNIEERKLGTIIIVRPSKSPTVEAVGVSEQSNVKQIEELKTQLEHDS 81
                  F K   K+IEE KL  + +V PS SP +  +   +Q  V +   LK +L   S
Sbjct: 100 EDITASMFSKAEGKHIEENKL-RVTLVPPSDSPELSPINTPKQGAVFEDSILKDRLYSQS 158

BLAST of Lsi06G001800 vs. TAIR 10
Match: AT1G08820.2 (vamp/synaptobrevin-associated protein 27-2 )

HSP 1 Score: 45.1 bits (105), Expect = 3.8e-05
Identity = 35/120 (29.17%), Postives = 48/120 (40.00%), Query Frame = 0

Query: 2   QVKTTQPQKYFVGPNMGIIEPLSTCE---------------------------------- 61
           +VKTT P+KY V PN+G++ P STCE                                  
Sbjct: 40  KVKTTSPKKYCVRPNVGVVAPKSTCEFTVIMQAFKEPPPDMVCKDKFLIQSTAVSAETTD 99

Query: 62  -------FGKNNSKNIEERKLGTIIIVRPSKSPTVEAVGVSEQSNVKQIEELKTQLEHDS 81
                  F K   K+IEE KL  + +V PS SP +  +   +Q  V +   LK +L   S
Sbjct: 100 EDITASMFSKAEGKHIEENKL-RVTLVPPSDSPELSPINTPKQGAVFEDSILKDRLYSQS 158

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
B9DHD75.3e-0429.17Vesicle-associated protein 2-2 OS=Arabidopsis thaliana OX=3702 GN=PVA22 PE=1 SV=... [more]
Match NameE-valueIdentityDescription
A0A1S3BPU64.5e-0637.70vesicle-associated protein 1-3-like OS=Cucumis melo OX=3656 GN=LOC103492223 PE=4... [more]
A0A6J1HZ481.0e-0534.51vesicle-associated protein 2-2-like OS=Cucurbita maxima OX=3661 GN=LOC111467925 ... [more]
A0A6J1HCB95.0e-0534.06vesicle-associated protein 2-2-like OS=Cucurbita moschata OX=3662 GN=LOC11146204... [more]
A0A6A4LET92.5e-0437.65MSP domain-containing protein (Fragment) OS=Rhododendron williamsianum OX=262921... [more]
Match NameE-valueIdentityDescription
XP_031736065.17.6e-0839.02vesicle-associated protein 2-1-like [Cucumis sativus][more]
XP_031736025.12.9e-0737.59vesicle-associated protein 1-3-like [Cucumis sativus] >KGN66550.2 hypothetical p... [more]
XP_038878617.15.5e-0640.91LOW QUALITY PROTEIN: vesicle-associated protein 2-2-like [Benincasa hispida][more]
XP_008450732.19.3e-0637.70PREDICTED: vesicle-associated protein 1-3-like [Cucumis melo][more]
XP_023545322.11.6e-0534.78vesicle-associated protein 2-2-like [Cucurbita pepo subsp. pepo][more]
Match NameE-valueIdentityDescription
AT1G08820.13.8e-0529.17vamp/synaptobrevin-associated protein 27-2 [more]
AT1G08820.23.8e-0529.17vamp/synaptobrevin-associated protein 27-2 [more]
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (USVL1VR-Ls) v1
Date Performed: 2021-10-18
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR000535Major sperm protein (MSP) domainPFAMPF00635Motile_Spermcoord: 2..37
e-value: 6.0E-6
score: 26.1
IPR000535Major sperm protein (MSP) domainPROSITEPS50202MSPcoord: 1..91
score: 8.658076
IPR013783Immunoglobulin-like foldGENE3D2.60.40.10Immunoglobulinscoord: 1..88
e-value: 8.9E-7
score: 30.8
IPR008962PapD-like superfamilySUPERFAMILY49354PapD-likecoord: 3..27

Relationships

The following mRNA feature(s) are a part of this gene:

Feature NameUnique NameType
Lsi06G001800.1Lsi06G001800.1mRNA