Tan0021050 (gene) Snake gourd v1

Overview
NameTan0021050
Typegene
OrganismTrichosanthes anguina (Snake gourd v1)
DescriptionNOD26-like intrinsic protein 5;1
LocationLG07: 4295613 .. 4309914 (-)
RNA-Seq ExpressionTan0021050
SyntenyTan0021050
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
ATTTGAGCTATGTATATTCTCTAACTATGGTTTAAGTCATTTGATCACTTTTAAGCATCAAAGAGTATTTTTGCAACATAAAGGTATTCTCTGATCTTCTTCAATCCGAAAGCCTTTTTCTTTAGTATTGTTTTTGCATGGGCTTCACAATTTCGCATTTGTATGAAGTTAAGTTATTAGTTGATTGTTTAATTTAGTTCTCAACCAAACAACAGCTGTTTGGAGCGCTGGATGGATTATAATAACAGGAGGTTATAATAGTCTGTGGGTTATTATAATCGGTTAAACATATAATATTATTTAAAATGCAGAGCAGTAAAGTCTGGAGTTATAATAGTCTGTGTTTGGAGTGTAGAGTATTTCACAGGTTATTATAATACGGGTTATAATAACCAGTGGGCCAAACAGGCCTTTAGATGCAATGGTAAGAAAGATGTAAAATAATTATATCAATTAAATTAGAATATAAAAGTACTGAAAATATATAATGTTTAATTATTTTTCAAAATTAAAAAGTTCTAGTGGTACGGTTTGAAGCTTTTCTTCTTCTTCTCTTTGGGTTTTCTTACTAATGCCATTTGCAAGCATCTAAATTAGCTGTCTCTTCGTCTGATATAAAAAGCCTTCAAAACATGTAACTTAAATTCACTCACTTCGGTTCAGCCCCCTCTTAAAAAATTCATTAAAAGAAAAACAATAGAAATTTATTTAGAAGAATTATTTAGGACGAAATTCTTAGTGATTCAAAAAGTTGATATAAGATATTTAGCCAAAAACAAAATTGTATTCTATGATTTTACTATTTTTTTTTTAATATGTATGTTTGATAGGAGATTTAGAATTTAAAAATACTAAAAATATATAAATATTGTTTTTCAAAAGTTTTAGGGTTTGTTTGGTATGCCATCTGAATTCTGTTTTATGTTTCACTGAATTCAATGAATATGTGTTTTCAAAAATTGTTTTTGAATTCTAGGATCTAAATAGTAGAAATTTTGAAAACACATTTTTATGTTTTTATTATATCTAGATTCTGAATTTAAAATTTTAAAATGCAGAATTATATTTTAAAAAAGATAAAAATCTTAATAAATACAATATTTCTAATTATAAACGGATCAATTTACTTTTTGTTAAATTAAAATATGTATAATATAATATATTATAAATTATATAATATTATATTATAAAATTATAAAATCATGTTCTTAAATTAATTAATAATAACTTATATTCAATCTAATAAATAGTTTTGCAACTACAACTAATTTCATGATCTATAAATATGTTATAGGATACACTTTAAATAACGGTTTAGAATGGAACTAAATTTCTAAATCTACTACCAAACACATATCTGAAAACATGAAATACAATTTTGTTTTCATTGAATCCCTTATTTTTAAATTTCTATTGTCAAATTGCTTACCAAACAAGTCCCTACTTTCTAGTGACAAAATCCAAACATTGTTGTAAAAATTAAACCCACCAAACAAAAGTTTATTGACTCCACTTAATTTAATAAATTTGAAATTTGTTTTCATTCCTTTTTTTTTTCAAATTTCTATTTTCAGAAAGTCTAACAAACATGTCTCGCTTAAAGAGTTTTTTTTTTTTTTCTTTCTTCAGTAAAAGTTAAAACCTAGAGCTTTGTTTTTCCTCAATTTCGGCAACACTAGGAAGGCAAGGGAGAGTCATTGTGATACGATCAAAAGGCAATGTCCCAATTCGTTGACACTCCAAAGAGGAGCCAATCTCACATCTGTTTCACTCACTCTCATACTCTTCATGTCTCTCTCGCTCGAAAGGTACCTTTTTTTCATAGCTTCATGATAAAATCTTTTCTTTATTTGAATGTTTTGATTTATCTTTTTTAATTATTCTATAATTTTTTGATTTGGTTTTATTCGGTTTAGTAGGAAGGTCATTTTAGTCAACTGCTTAAAAAAATGGGTTGATCAATATATTTAGATTGATGTCATTTCCCTAATTTTTATATTTTATATATTAGACTTAAAATATAATAACTTTGTAATTAACAATAAGATTTATAGCTTTTTTTTAGATGAAAGTACCAAAAGGTACCACAAATGCGAAATGTATTTTTTTTAGTACAACATCATTTGGGGTGGAGATTCGAACTCATGACTTCTTGGTAATAAATCTTACTTTATACTAGTTGAACTATACTCTTATTGGCGATGTGAAATGTAGTTGAATTGAAATAATCCAATAGGTTTTAATTCAATTTGGTTTTAAAGAGAACCTAAAATACTATTACAAACATTTTTTTAGTATGTAATCACTAAACCAATCTAGAACTCAATAAAATCTTGCTCCAACGAGACAAGCCCATAGACTTTGTCTAGACTACTATTAGTGGTTGGGCCGGTTTGACTAGCCCAAACAATGATTTAAGGTCACTAGGCTTGTCCCTAGCCCAAGCATAGGCCTAAATTTCTTTGGATTGGGCCAACCAACTATGACTCAATGATGATGTCAATAATTTATGGGAGGAGCAATAAGAAAAAATGTCTAAATTTAACACATCTAATTCGAAAAATGACCACATAAATTTTCATTTGAAAATATGGCGACAACCATTTTTAACTAAAATCTACCAATTGCATTAGGACGAAAATACCCCTATTGAATATTTGTAATTTAATCTACCTAAAACAATTAACCAACAAAAAAGAGTGAGTAGATTTTTTCATATAACAAAATCTAAAATTGAAATTAAAAAAAAAATCTAAAGCTTGGGAGAGAGGTTACAAAAAAAAGTTCTAATAACCATGAATAAAATCTAGAGTTTGAGAATTTGAAAAAAAAAAGAATTAAAAAAAATTAAATTAAAATAATATATATACTAATTATATCTTGACACCATTAACGATCCACGTAAAAGTTTTTCTCTTTCTCTAAATCAATGAATATATAATAAATGAATAGATATTAATACGTATCGATCTACCCAACGTGCAAGAATAAACTAAATTCTAATTTACAACTCGTTCATTTTTCTCCAACTTAGTGTATACATTGGAATATACAACTCTATTTTTTTTTTTAATTTGATAAATAAGTAGAAATACGTATAAATACTCACCCATCATGTAAGAAAAAATATAAAAATTAATCCCCACCCACACCATACACCATAAGAAAAGGTAAATAGTTATAGTGAATTAAAACTCCTTCACATTTCTCCAACTTGTATATATGTTGTTTTTTAATGTAATAAATGAGTATAAATATGCACAAATACCTACCTAAATGGTATACTTATGATTTATATCTTATATGAACACAAAAAAAATCATGGGATTCTATATCATCGTAATGACTCTAATGCATAAGGTATTGAGGTGACCAAATATAGAAAACTGAAATAATATTGGGTCTTTGGAAGCTAGTTATAAGCACCCATCATTACGATTGTATCATTTTAAAAGATGTATATAAGGGTGTATACCTGAATTTTCACAATTTTAAATTGGTTGCAAATCTAGAAAGAAGAGCTTAAGAAATTTTCAGTGACCCTCGAGTATATTGAGCTACTTGTAAACCTTGTAATCATCGTCCTTATCCCACACAACATCAAACAAGACAAGAATGTTGTGAGAACTCATTTTAAACTAATACAACTCTACAAACTTGTAAAGCGTACCAATGAAGAGTCTAGAATGTGTACTTTGAGACCAAATGAGGAAGAGATTTCGTTTGGAACATATATTGTGAGACCAGTTAAGGAGACCGTGATAGCCTTAAGATAATCTTCATTATGCCTCCAAATTCGGTTGAATGAAGATTTTGTTAAAATAATAGAAAAATGTGAGTCGATTTCGGTTAGAAATGGTTGAATTTTTTTCAAAACAGAATCTGACTTGTTAGAAGGTTGTAAATACGATAATGACATGATTGTAATTACGAAGATATACCAAGGGCATCTAAGGAAATTAATATTATTATCAACTTCTTCTAAAATATTGTAGTCATATTGACAATATTGAAACTATTTAATTATTTTTCATTAGAATTAATTTTTTTTAGATATCACTCGCAATTCCCTCTTATGAAACTATCTCAATTACCCCTATTAATAACTTGTAGTTACAAATACAATAATCAAATGTGATTCATTGAATTTTTCCGAAATAGAATTTTATTTCTAACATAGTTTTGCTCTTTTTTATGAGGTTCCATAGTCAGCTAATTTAGGGGTAATTGAGATATCATCCAGCTGACTATTTGACTGATGTCCAGTTGGGAGCAGAATTTGTGGGCACGTTCATCCTTATATTTGCTGCAACCGCCGCACCCATCGTCAACCAAAAGTACAACGCCGCCGTGTCTCTGATCGGAAACGCCGTAAGCGCCGGCCTAGCAGTGATGATCGTAATTATGTCGACGGGCCACATCTCCGGCGCCCACCTAAACCCATCGCTCACCATTGCCTTGGCCGCCGTCCGCCACTTCCCTTGGGTCCAAGTCCCGGCCTACATCGCCGCCCAAGTCTCCGCCTCCATCTGCGCCTCCTTCGCTCTCAAAGGTGTTTTTCACCCTTTCATGTCCGGCGGCGTCACCGTCCCCTCCGTCGCCACCGGCCAGGCCTTCGCTCTTGAATTTCTCATCACCTTCAATCTCCTGTTTGTCGTCACTGCTGTCGCTACTGATGCTCGCGCTGTAAGAAAATCTCTCTTTTTTTTTAAGTTTTTTTTTTCTTTACAATGATATTCAACATTTAATTATCGCAGGTCGGAGAGTTGGCCGGAATTGCAGTTGGAGCTACAGTGATGCTCAACATTCTTATTGCCGGGTCAATATTTCTAATTTTATTCTTCTTTAATTTTCTGTCTTTTCATCTCTTTCAGTACGTAGTTCATTCAAACCATGCAAATTTACTTACTATATGAATGCATTGAACCATAACCATAGTACTCTAAGCAGAATCACTACGAAACCCTGAAGTAAAACGTGAAAATTTCCCATCCTTTTAAAAGTGAGATGGGTCTACTAGCATTAAAATCATATTTATGTAGGCAAAATTATAAGAAAATAAAGAGAGTCATTATTTGAATATTTTTGTTCAAGTAAAATAAATTTCAATGATTAAGCTTTTTGAAAATCAATAATATTTGTTTCCACCCGTAGTAACTCCCTTTATTTTAGTTCAATAATATGCAAGAGAAGAGATTCAAACTCATAATTTTTTTTTTATTTTTTAATTGGGAATATAGATCTTAATTAACCACATAGTTGTGGAATGAGTTTAACAATATAAATAAAAACAATAAATAGTGAAACTAGCTAGAAATGGGTATAGAACTTTTATGTGGTAACTCTTTCTTATATATAACCTTTTTTATTCTAACCTTAGGGATAAATTAGAAAGTAAGTTTTAAGAATAAACTTTTTAACCTATGATTTTTCAACACAGGATGAATGAAAGTCGGCAATTGCCAACTTTCTCATTTCTTCACTAACGCCATTTACTTGTTTAAGCTTTTAAGTTAAATAGTGATTTAACATGACATCAACAAGAGATTAATTATTTATTCTTTACTTAATAATAGTATTGATATAATCTCTTGTTCGTTGTAATAGAAATGCTACCCAAGCCTCAAATTAGTTAGGGTAGAGGAAAACCCATAGTAAATAATTGAAGATAATTATTTTCATTGGTATATAACCTTCAATGAAAACTAAAAGTAAAACCATGAAAGACTTATGCCTAAATTAGATAATATAATACTATAGTAGAAATATGGAGAGAGGTCTCCTAAACAATTAATCGTATAAGTAGAATCTTCAAGCGATCAAGTGTGGTTGGACAAATAATTGTTAGTGAACAGATATTATTTGAGAGGAGGTTTGATGGTACTTCAATAAAAAAAACAAAGTCTCGAGGGCTTATACTCATAATGAACAATATCATATCAGTTTAGAAATATAGAGAGGTCCCTTGTCCTTATGGGTCATACTGTCACCTATCAAATTAAGTTTATTTTTTACTTAGGGTGATTCGTGCTCTCATATAATTAAGGAAGAAGTTCCATGGAAACTTCTAACACTATTAAGACATCTCTTTTGTCCTTTTTATCTTTTTCATTGTACTTGGTTATCATTACTTAAGTTGTTTGTGGACTTAGCTTAACTTGTCTGATATTTCTGATTGTAAATTTCTATGAGGCCAGTCTTGTCCTAAAACTTTGGGGAGATTACACCCTTGTTAAATAGGGCTTCATCAAGCAATTAGAAGTATCGAGTGTTTCTCTCAAACTTGAGTTCTCTGTTATATTCTTCTTAATTTCTTATTCTCGTATCAGAGCCATCATGGCTTCTTCCACCTCTCTCGAAACTAACCCTAAACCTTCCAAAGATGCCACTGTAGAAGGAAACGTTCAAGAGGTATTGTCTCACTCAGCATTGGTTCAAAAGGAACCAAAACCTAAAGATCAAGAGAAGAAATATCAGTTCATGTACAAGAATGTTCTGATTGGAAATATTCCATTTACTAGCTTGATCAATCAAACTACGTCCATCAAGCTCGATCGCACGAATTTCCTGCTATGGCAGAGCATAGTCCTACCACTTCTCAAGAGCTACAAGCTCAATGGTCACCTAAATGGGAAAACACCCATTCTAGAACAGACCATCAACATTCCCTCTCCATACGAAGATCCTCAAGGTATATTCATGCCAAATTCTGAGTATGATGTATGGGAGTAGATTGATCAACCGATCGTGAGCTGGTTGTACAACTCTATGTCTCCAAACATGGCAGCTCAAGTGATGGGTCATGATTCCGCAAAATCCCACAAGCCATACAAGAACAGTATGGAGTTTATTCAAGATCTCAATAGGACTTCAATAGGCAAATGTTGCAGCAAACTCGGAAAGGGAACATAAAAATGGAGGAATACCTCCCCTTAATGAAAAGGTATTATGATAATCTCCAACTTGTTGGTTCAACTATGGATATTAAAAGCTTGGTCTCTTATGTTTTTGTGGGCTTAGATAAAGACTACAACTCTATTGTGTGTCTTAAGAAGCACTAACCTTCCTTGGAGAAATATGCAATGTGAACTACTTTCTTATGAACAGAGACAGGACAAACTTCAGGCCCTCAAAGGTAATATTTCTATTAATCAAGCTTCTGCTAACATTATTTATGCTGAAAGACTAAGAACTCCAAGCAAAAATCCTCGTTCAACAAATAGGGGAAGTCAACACTCCTCTCGGCGAGGAGGAAGGACCAGAGGAAGAAGAGAACACTCATTTTGCAGCTCCAACAGTAAACCAACCTGTCAGATTTGTGGCAAAACAGGGCATACAGCTGCCGTATGCTACCAAAGGTATGAGAAAATTGATTCTCAATCGTCTGTGAATGTTGCAAATACCACTGCTTCCCCAACAGGTTCCCCATTTGCGACTTTAATGGCTTATCCCGAGACTCTCCATGATTTAGCTTGGTACCTTGACAGTGGGGCTAGTCACCATGTCTATTCAGATATTTTCAAATTAAAACTAAAAGGTGAGACCTCATGTATAAAAATCGATTATGGTAGGAGATGGTACAAAATTGTTAATTGAAGGTCTTGGTTCCATATATCTAAATAATAAGAACCTACAACTGATTTTACAAGATGTTCTGAATGTGCCCCATATGAAGAAGAATCTTATTAGTATCTCACAGTTGACCAAAGACAATGAAATATCTGTTGAATTTTATGATATATTTTGTGTTGTTAAGGAAAAGAAGTCCAATGGAGCATGGGTGATAGGGAAGCTTGAGAATGGCTTGTACCGACTCGTTTTAAGTGAAGTGAAAGCCTCAAATCCAATCAATAAGGAAGCTAAAAGACAAGTTCCCATGAAGGTAGTTGCCCAAATGGAGAATTATCCTGATATGAATGCTAAGGATTTGCTCACTAAAGATGTTTTGCTTTTGTTTCTTGTACCAAGAGTGTATGGCATCAACGACTAGGTCCTCCCTCACCTAGAATTTTGAATCAAACCCTTGTTGAATGTAATGCTTCTGTTAATGGAAATGAAAAGAACACTTTTTTTAGGCTTGCAAATTTGGTAAAGTTCATAAGTTACCCTTTCCTCTTTCAGACAGTCGTGCCAAGAAACCTTTAGATTTAGTTCATATGGATTTATGAGGACCAGCACCTGTGCAATCTCGTAGTGGTTTTCGGTATTATATTGCCTTCCTAGATGATCACAGTCATTACACTTGGATCTTTCCATTAAAATAGAAAAGTGAAGCTGCAAACATCTTTAGACAATTCAAAAAACTTGCAGAAAACCAACATGGCAATACAATCAAACTTATAAGATGTGATGGAGGCGGAGAATTTATTCCAATAACTCAGTTTGCCAAGGAAAATGGAATAAAGGTTCAAGTGTCATGTCCTTATACTTCTTTACAAAATTGAAGGGTTGAAAGGAAGCATAAGCACTTGACAGAAACAGATCTAGCCCTCTTAGCTCAAGCCAACATGCCTCTTCACTTTGGTGGGAGGCCTTCCATACGGCTGTCTATCTCGTAAATCGGATGCCATCCCCAGTTATTAACCACAAAAGTCCTTACAACATTCTCAAGCATAAGACTCCTGATTATAAGCTCCTTCAAGTCTTTGGAACAACATGTTATCCTCACACCCGACCATTTGCTCACCAAAAGTTCAAATTTCATACAGAAAAGTGCATCTTTCTTGGTTATAGTGATCAACACAAAGGGTACCGCTGCCTAAGCTCTAATAAGAGAATACATCTCTCGCAATGTGTAAAAAACAGAGAATAAGCAATAATTCTAATTTAATTAGAGCATGGAACTAAGACATGTAAACATGCTGTGTAAAAATAATTAAACTAAAGGAAATTGAAAATTACCTTTGTAGTTTTTCAACAACAACTCCTTGCTCCAATTCACATAGCAACAAAGAGAATCTCATATGTTCTTTCTTCTCCACAGGGACAACACCACAAGGAAAACCTTCTATCATCTGAGTTCTTTTGATCAACCTTGGTAGGAAGGTTTTCCAACTTTTGGAGAGGAAGGGAATATTTTAGAGAGAGAGCATTTTGAGACCAATTCCACAAATTGCCAAAAAATGGAAATGATCGATCAATTAACCAACTTGTCTTCCTTCTCCCTGTTAATCTATCGATTAAGGAGAAGGAGAGGGATAGTGGGAACGTGTCTGGATGACACGTTCCCTTAATTTAATTAAAAAAATCTAATTATTATTTAATTAAATGAAATTAATAATATAATATAATGAAATCATATTTAATTATATAATTATCAATTTAAATCATATTTAATTAAATTGGATTAAATAACATTTATTAATTTTTTCCCTCTAACCTATAGTTTTAATGCACATCTAATGCACATTAAATTTTAACCTTTGAATCTCATTCACATTTAAAATAATATTTGAACTCTTTCAAATATTTAATTGTCTCACATAATTTAATATGGATCATATTCACATTAAATTTATAATATAAAGTTCCAAAACTTTATATTATAATGTATCTATATACATTAAATTTATTCCCTAAATGAATTTGAACAATTCAATCCAAACGATCTAAGAACCCTTTACGAGCTAGAAGGTGGACCTAATGGACCTACAGATAAGAAGTTCCAACGATACGAGATTACTCGGTTAATCTCATTAACCTCCTAATCAACATTCGTTAACTGCGGGAACACTCCACTAAAGTCCCGCAACTGCACTTTTCTCACTGCAGATATATTTCTGTGTGTACAAATATTGACAATAATAGCAAGTCAATCTTTCACGAATGTTCGTAACACCAACTGGGTCAAATTATCGTTTTACCCTTCGGTTACATCTTGTACCTTAAGTACCAGTGCTACTCTAATGAACAATTTGTTTGTGGTCATACCAACAAACAGAAGTTCCTCTCGGGCCAATGAGAGGGTCGGACCCTTTGTTCAAGTCATGGAAACACCTTTTAGGGGTCGTTTGGTGCAAGGTTTTGTGGATAAGAATGGGTAAGGGTTTTAAATCTCCTTGTTTGGAACAAGGTTTGCAAGCATGGGCATGGATATCACTTATTCACATGCATCACTTTTTCCCATGGTGGATGAGTTTCCTATACCCTTCAAGAATAATGAGTTTTCTTTATACTCATCCATCTCTCTCTTTCTCTCTCTTCTTTATTAATATTTATACATTTTTATTTATTTATTTATTTTCAATAATCATAATTAATTATTTAATTAAAAATATTTACAAATTAGTAATTTATTTTTATTAGTTGACATTAATTTTGATTATTAATAAAATAATGTTTTTAAGATTAATTTCATCAAACAAGCATAAATATTCATTATAAAATATTAAAATACTAATTATTATTATATTAATTAATTATTATTTTTAAATACATTTTTATTATTTTATTAATAATATATAATAATATATAAAATTTATAAGATAAATATCATAAAATAAATTTGCACATTATTTATTAGATCGTAAGTATATATTACATAAGTTTTATATATTAATTTCGTCAAATAAATATAAAATATCATTTTTTACATAAAAATCTGATAACATTCTCATGTATAACCAAACACAGTCATCTTATTCCCAGGCATTTATTATTCTCAGACATCTTATTCCCAGACATCTATTACCCATTCTCATCCAATAAAACCTTAAACCAAACGACCCCTCAAGGGAACATTCATCTACTTACCCTAATAGTCGAAAATGAGTGAATTCCATCTTGTTAAGCTAAGTCACCAACTGCTCACTCGGTCTTGTCCCCAAGAAGGTAGGTATATTGAGTCGGCGAATCTGGTCACTCTCACCCATACTAGTCAAAGAACAATCTCTCGCAAACAGGAGTTCGTAATTTGCTCAGGATTGAGATCAAGTTGCCTAGGTCATCCTAGTGAAATAGAAACCTAGCTAGTCAACGGAGTTACATCTAGTGGTTACTGTTTCGCGGTCCGGTCTTATGTAATCTCATTACATAGGATATTCCCTCTCACATGTCATCTACACGAACACGTTAGGATCATAGTGTTTGGATCATATACAAAGCGGGCCACATCCATAGTGTTACCAGGGTAAGGTACCCAAACTTTATCCCTTTACTATAAACCATTTAGGTTGTATCTCGAACCGAGATCCTTTATATGTACACTACATTCAGTTCAAGAGACATTTTACAGCCTTGGATGTTCAGTTTATTGGATTTAGGGTTAAAACAATGGCAATATCGTAAATAACGAACAATAACTCTTTATTACAAGAATTAGAACAAAATTACAAACTACGAGTTTTAGAGCACAAACCCGAAAACCTTCCTCACATGACCCCCATACTCCTATGTGGTTTCCCATACCGCCTACTCCACCCCTTAATGTATCCCAATCCAATCTGCCATTTGCGCCTTCATCCAATCAACATCTCTTGCCCCCTACACCACCCTTGTGCCCTTTACCATCTGTTGCCTCCTCACCTACCTTTACTCTTGTACCCTCCTCCCCTACTCCCACTTCTTCACCTGTTCTGACCACACCAATCCCTCTGCCTCTGCCTTACTCCCCTTCCCTCCCTTCTATTCCCACCAATTCTCATCGTATGACCACCCTGCCAAATTTGGGATCCATAGGCCTAAACTGCCATTTGGAGGGTTGATTCGCTTTTCTCCTATCGTGGACTGGGGTGTTATTGAACCACTTCGTTTTCGTGATGCCTATCCTATTCCTCAATGGAAAAAGGCTATGGATGAGGAGTTTGTTGCCTGAAAGCACAACAATACTTGGACCCTTGTCTCTTCTTCCTTTCATCAACATCTTATTGGTACTAAGTGGGTCTTTAAGATTAAAAGGGATGCCCATGGCTCTATTCAGTTGTACAAGGCAAGGTTGGTGCCCAAATGGTATCTTCAACAGCCCGGTCTTGATTTTGGCGAAACCTTCAGCCCTGTCATCAAACCCTCCACCATTCGGTTGGTCCTTACTATTGCCCATACTCACAAATGGTTCATTCGACAGTTAGATGTTTCAAATGCTTTTCTCCATGGTACATTGAAAGAGGAAGTCTATTCCACTCAACCTCTTGATTATGAAGATTCTCATCATCCCACTTATGTTTGCAAACTTTAGAATGCCTTATATGGGCTCAAACAAGCCCCCTGTGCGTGGTATGATGAATTGCGATCCTCCTTGGTTTCCTGGAAGTTTCGCCAATCCTTTGTTGATCATTCACTCTTTATTTATCAGTCCATGGTGCCACTATCTACCTGCTTGTCTATGTGGATGATCTCATTATAACAAGCACTAATGATCTTCTGATCCAGCGTTTTATATCCCAACTGCAATATGTTTTTGCTGTTAAGGATCTTGGCTCCCTCCATTATTTTCTTGGTGTTCAAGTTCATCTTACAAATTCAGGGGCCTTCCTCACTCAGACCAAGTACATACATAATCTACTTGTGAAGCTCTCTCTCTTCAGCATCTTAAGCCCGCTCCTACTCCCATGATTGCTGGTAAGCAACTATCCAAGTCTAAAGGTGCGTTTATGACTAATCTGCAGCTGTTCCAGAGTTCCTTAGGGTCTCTTCAATACCTTCAACACACTCGGCCTGACATCACCTTCTCCATCAATAAATTAAGTCAATATAATCAGGCTCCTTGTGATGGTCACTGGCATACTCTCAAACGCATACTCTGATATTTCCAGGGCACTCTCCAATATGGCCTATTGCTTCAACCAACTACCTTTCTTCAATTGACCAGCTTTTCTGATGCCGATTAGGCTTCCTTCCCATATGATCGTAAGTTTGTCAGTGGATACTGTGTGTTCTTCGGTTCTTCTCTTATCTCTTGGTCCTCAAAAAAATAGGTTGTGGCCGCTCGATCTATTACTGAGTTTGAATACCGTGCCTTGTCTCAAACTGCCTGCGAACTTATGTGGCTTCAATCTCTCCTCACTGACTTGATGCCACGCTCGCACCAAGCATATTGAACTTAATATTCATTTCATCCGGGATAGAGTGCTTTTCAATCAGCTTGAACTTCGATCGACATGTTCGTTCCCAAGATCAGTTAGCAGATTCCTTCACAACCGTTACCTCCCCAACAATTTCTGACTCTTCGTAACAAACTTAGACTTTTGTCTCTTGCGCCATCGTTTGAAGGGTTGTTAAGACATTTCCTTTGTCCTTTTTATCTTTTTCATTGTACTTTATTATCGTTACTTAAGTTACTTGTTGACTTAGCTTAACTTGTCTGATATTTCTGATTGTACATTTCTGTGAGGCCAGTCTTAATTATCCTAAAACTGTGGGGGAGATTACACCCTTGCAAAATAGGGCTTCATCAAGCAATAAGAAGTATCGAGCGTTTCTATCAAACTTGAGTTCTCTGTTTTATTCTTCTTAATTTCTTATTCAACACCGCTCGTAGAATTAGAAACCAGTCAGCTGAAGTCTCACCTAACATTCAACTAGTTAGAGTTTTTTCATAAAGGTTTCTGATTTAATGAAAAGAAAAATTCATTTTCCTTTCAAAAGGATGCAAATAATTGATACTAATTTTGGACATGACAGAGCATCCACCGGTGGTTCGATGAACCCAGTGCGGACTCTGGGTCCCGCCGTCGCCGCCGGAAATTACAGAGAACTGTGGGTGTATATGGTGGCTCCTACTCTTGGGGCTATTGTCGGCGCCGGAACCTACTTCGCCGTGAAGCTCAAAGATGACGAACTGAATGATTCCTCGCAGGTGAGGAGCTTCCGTCGATGAAAACGGATGGCATCTATGTTTTTATTTTATTTTATTTTGGGCAAAATACATTTTTAGTCATTGAGTTTTGAAGTTGATGTCTATTTGGTCCTAAAGTTTTAAAATGAACATTTTAGTCTCTCAAGTTTAGAAAATAATTCTAAATGGTCAAACCTCAGGAACTAAAGTGTTTATTTTGAAACTTCAGAGATTAATTAGACATCAACTTCAAACTTCAGGGACCAAAAGTATATTTTGCCTTATTTTTTTCTTATCTTCTTCTTCCTGCTGTATAAACACACCTTGGCTTTTTATTTATGTAGTTTTTTTTTCCATGGTGGAAAAAGAAGAAATTAGTATATTATCCCTTGAATTATGGATAAATAAGTACATTTTAACTCATGATTCATATGGTAGATATCTTGTCTTTGTGATGTGTTTTATTTACTTTCTCACGCTTGCATTAAGTTAACTGCATTACGTGGAATATCGCTGATTTTTGGAAATATT

mRNA sequence

ATTTGAGCTATGTATATTCTCTAACTATGGTTTAAGTCATTTGATCACTTTTAAGCATCAAAGAGTATTTTTGCAACATAAAGTAAAAGTTAAAACCTAGAGCTTTGTTTTTCCTCAATTTCGGCAACACTAGGAAGGCAAGGGAGAGTCATTGTGATACGATCAAAAGGCAATGTCCCAATTCGTTGACACTCCAAAGAGGAGCCAATCTCACATCTGTTTCACTCACTCTCATACTCTTCATGTCTCTCTCGCTCGAAAGTTGGGAGCAGAATTTGTGGGCACGTTCATCCTTATATTTGCTGCAACCGCCGCACCCATCGTCAACCAAAAGTACAACGCCGCCGTGTCTCTGATCGGAAACGCCGTAAGCGCCGGCCTAGCAGTGATGATCGTAATTATGTCGACGGGCCACATCTCCGGCGCCCACCTAAACCCATCGCTCACCATTGCCTTGGCCGCCGTCCGCCACTTCCCTTGGGTCCAAGTCCCGGCCTACATCGCCGCCCAAGTCTCCGCCTCCATCTGCGCCTCCTTCGCTCTCAAAGGTGTTTTTCACCCTTTCATGTCCGGCGGCGTCACCGTCCCCTCCGTCGCCACCGGCCAGGCCTTCGCTCTTGAATTTCTCATCACCTTCAATCTCCTGTTTGTCGTCACTGCTGTCGCTACTGATGCTCGCGCTGTCGGAGAGTTGGCCGGAATTGCAGTTGGAGCTACAGTGATGCTCAACATTCTTATTGCCGGAGCATCCACCGGTGGTTCGATGAACCCAGTGCGGACTCTGGGTCCCGCCGTCGCCGCCGGAAATTACAGAGAACTGTGGGTGTATATGGTGGCTCCTACTCTTGGGGCTATTGTCGGCGCCGGAACCTACTTCGCCGTGAAGCTCAAAGATGACGAACTGAATGATTCCTCGCAGGTGAGGAGCTTCCGTCGATGAAAACGGATGGCATCTATGTTTTTATTTTATTTTATTTTGGGCAAAATACATTTTTAGTCATTGAGTTTTGAAGTTGATGTCTATTTGGTCCTAAAGTTTTAAAATGAACATTTTAGTCTCTCAAGTTTAGAAAATAATTCTAAATGGTCAAACCTCAGGAACTAAAGTGTTTATTTTGAAACTTCAGAGATTAATTAGACATCAACTTCAAACTTCAGGGACCAAAAGTATATTTTGCCTTATTTTTTTCTTATCTTCTTCTTCCTGCTGTATAAACACACCTTGGCTTTTTATTTATGTAGTTTTTTTTTCCATGGTGGAAAAAGAAGAAATTAGTATATTATCCCTTGAATTATGGATAAATAAGTACATTTTAACTCATGATTCATATGGTAGATATCTTGTCTTTGTGATGTGTTTTATTTACTTTCTCACGCTTGCATTAAGTTAACTGCATTACGTGGAATATCGCTGATTTTTGGAAATATT

Coding sequence (CDS)

ATGTCCCAATTCGTTGACACTCCAAAGAGGAGCCAATCTCACATCTGTTTCACTCACTCTCATACTCTTCATGTCTCTCTCGCTCGAAAGTTGGGAGCAGAATTTGTGGGCACGTTCATCCTTATATTTGCTGCAACCGCCGCACCCATCGTCAACCAAAAGTACAACGCCGCCGTGTCTCTGATCGGAAACGCCGTAAGCGCCGGCCTAGCAGTGATGATCGTAATTATGTCGACGGGCCACATCTCCGGCGCCCACCTAAACCCATCGCTCACCATTGCCTTGGCCGCCGTCCGCCACTTCCCTTGGGTCCAAGTCCCGGCCTACATCGCCGCCCAAGTCTCCGCCTCCATCTGCGCCTCCTTCGCTCTCAAAGGTGTTTTTCACCCTTTCATGTCCGGCGGCGTCACCGTCCCCTCCGTCGCCACCGGCCAGGCCTTCGCTCTTGAATTTCTCATCACCTTCAATCTCCTGTTTGTCGTCACTGCTGTCGCTACTGATGCTCGCGCTGTCGGAGAGTTGGCCGGAATTGCAGTTGGAGCTACAGTGATGCTCAACATTCTTATTGCCGGAGCATCCACCGGTGGTTCGATGAACCCAGTGCGGACTCTGGGTCCCGCCGTCGCCGCCGGAAATTACAGAGAACTGTGGGTGTATATGGTGGCTCCTACTCTTGGGGCTATTGTCGGCGCCGGAACCTACTTCGCCGTGAAGCTCAAAGATGACGAACTGAATGATTCCTCGCAGGTGAGGAGCTTCCGTCGATGA

Protein sequence

MSQFVDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVRSFRR
Homology
BLAST of Tan0021050 vs. ExPASy Swiss-Prot
Match: Q9SV84 (Probable aquaporin NIP5-1 OS=Arabidopsis thaliana OX=3702 GN=NIP5-1 PE=2 SV=1)

HSP 1 Score: 364.0 bits (933), Expect = 1.4e-99
Identity = 195/244 (79.92%), Postives = 208/244 (85.25%), Query Frame = 0

Query: 12  QSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLA 71
           Q   CFT   +  VSL RKLGAEFVGTFILIF ATA PIVNQKY+ A +LIGNA  AGLA
Sbjct: 61  QHDTCFTDFPSPDVSLTRKLGAEFVGTFILIFTATAGPIVNQKYDGAETLIGNAACAGLA 120

Query: 72  VMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPF 131
           VMI+I+STGHISGAHLNPSLTIA AA+RHFPW  VPAYIAAQVSASICASFALKGVFHPF
Sbjct: 121 VMIIILSTGHISGAHLNPSLTIAFAALRHFPWAHVPAYIAAQVSASICASFALKGVFHPF 180

Query: 132 MSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAG 191
           MSGGVT+PSV+ GQAFALEF+ITF LLFVVTAVATD RAVGELAGIAVGATVMLNIL+AG
Sbjct: 181 MSGGVTIPSVSLGQAFALEFIITFILLFVVTAVATDTRAVGELAGIAVGATVMLNILVAG 240

Query: 192 ASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVR 251
            STGGSMNPVRTLGPAVA+GNYR LWVY+VAPTLGAI GA  Y  VKL D   +    VR
Sbjct: 241 PSTGGSMNPVRTLGPAVASGNYRSLWVYLVAPTLGAISGAAVYTGVKLNDSVTDPPRPVR 300

Query: 252 SFRR 256
           SFRR
Sbjct: 301 SFRR 304

BLAST of Tan0021050 vs. ExPASy Swiss-Prot
Match: Q0IWF3 (Aquaporin NIP3-1 OS=Oryza sativa subsp. japonica OX=39947 GN=NIP3-1 PE=2 SV=2)

HSP 1 Score: 341.3 bits (874), Expect = 9.6e-93
Identity = 181/245 (73.88%), Postives = 201/245 (82.04%), Query Frame = 0

Query: 13  SHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAV 72
           +H C        VSL RKLGAEFVGTFILIF ATAAPIVNQKY  A+S  GNA  AGLAV
Sbjct: 67  AHGCVVEIPAPDVSLTRKLGAEFVGTFILIFFATAAPIVNQKYGGAISPFGNAACAGLAV 126

Query: 73  MIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFM 132
             +I+STGHISGAHLNPSLTIA AA+RHFPW+QVPAY+A QV  SICA FALKGVFHPF+
Sbjct: 127 TTIILSTGHISGAHLNPSLTIAFAALRHFPWLQVPAYVAVQVLGSICAGFALKGVFHPFL 186

Query: 133 SGGVTV--PSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIA 192
           SGGVTV  P+++T QAF  EF+ITFNLLFVVTAVATD RAVGELAGIAVGA V LNILIA
Sbjct: 187 SGGVTVPDPTISTAQAFFTEFIITFNLLFVVTAVATDTRAVGELAGIAVGAAVTLNILIA 246

Query: 193 GASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQV 252
           G +TGGSMNPVRTLGPAVAAGNYR+LW+Y++APTLGA+ GAG Y AVKL+D+        
Sbjct: 247 GPTTGGSMNPVRTLGPAVAAGNYRQLWIYLIAPTLGAVAGAGVYTAVKLRDENGETPRPQ 306

Query: 253 RSFRR 256
           RSFRR
Sbjct: 307 RSFRR 311

BLAST of Tan0021050 vs. ExPASy Swiss-Prot
Match: Q9ATN1 (Aquaporin NIP3-1 OS=Zea mays OX=4577 GN=NIP3-1 PE=2 SV=1)

HSP 1 Score: 337.4 bits (864), Expect = 1.4e-91
Identity = 179/245 (73.06%), Postives = 201/245 (82.04%), Query Frame = 0

Query: 13  SHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAV 72
           +H C        VSL RKLGAEFVGTFILIF ATAAPIVNQKY  A+S  GNA  AGLAV
Sbjct: 58  THTCVVEIPAPDVSLTRKLGAEFVGTFILIFFATAAPIVNQKYGGAISPFGNAACAGLAV 117

Query: 73  MIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFM 132
             VI+STGHISGAHLNPSLTIA AA+RHFPW+QVPAY+A Q  AS+CA+FALKGVFHPF+
Sbjct: 118 ATVILSTGHISGAHLNPSLTIAFAALRHFPWLQVPAYVAVQALASVCAAFALKGVFHPFL 177

Query: 133 SGGVTVP--SVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIA 192
           SGGVTVP  +V+T QAF  EF+I+FNLLFVVTAVATD RAVGELAGIAVGA V LNIL+A
Sbjct: 178 SGGVTVPDATVSTAQAFFTEFIISFNLLFVVTAVATDTRAVGELAGIAVGAAVTLNILVA 237

Query: 193 GASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQV 252
           G +TGGSMNPVRTLGPAVAAGNYR+LW+Y++APTLGA+ GA  Y AVKL+D+        
Sbjct: 238 GPTTGGSMNPVRTLGPAVAAGNYRQLWIYLLAPTLGALAGASVYKAVKLRDENGETPRTQ 297

Query: 253 RSFRR 256
           RSFRR
Sbjct: 298 RSFRR 302

BLAST of Tan0021050 vs. ExPASy Swiss-Prot
Match: Q9SAI4 (Aquaporin NIP6-1 OS=Arabidopsis thaliana OX=3702 GN=NIP6-1 PE=1 SV=1)

HSP 1 Score: 310.5 bits (794), Expect = 1.8e-83
Identity = 168/232 (72.41%), Postives = 192/232 (82.76%), Query Frame = 0

Query: 24  HVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGHIS 83
           +VSL RKLGAEFVGT ILIFA TA  IVNQK + A +LIG A SAGLAVMIVI+STGHIS
Sbjct: 75  NVSLYRKLGAEFVGTLILIFAGTATAIVNQKTDGAETLIGCAASAGLAVMIVILSTGHIS 134

Query: 84  GAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFMSGGVTVPSVAT 143
           GAHLNP++TIA AA++HFPW  VP YI AQV AS+ A+FALK VF P MSGGVTVP+V  
Sbjct: 135 GAHLNPAVTIAFAALKHFPWKHVPVYIGAQVMASVSAAFALKAVFEPTMSGGVTVPTVGL 194

Query: 144 GQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGASTGGSMNPVRT 203
            QAFALEF+I+FNL+FVVTAVATD RAVGELAGIAVGATVMLNILIAG +T  SMNPVRT
Sbjct: 195 SQAFALEFIISFNLMFVVTAVATDTRAVGELAGIAVGATVMLNILIAGPATSASMNPVRT 254

Query: 204 LGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVRSFRR 256
           LGPA+AA NYR +WVY+ AP LGA++GAGTY  VKL +++     + RSFRR
Sbjct: 255 LGPAIAANNYRAIWVYLTAPILGALIGAGTYTIVKLPEED-EAPKERRSFRR 305

BLAST of Tan0021050 vs. ExPASy Swiss-Prot
Match: Q7EYH7 (Aquaporin NIP3-2 OS=Oryza sativa subsp. japonica OX=39947 GN=NIP3-2 PE=2 SV=1)

HSP 1 Score: 227.3 bits (578), Expect = 2.0e-58
Identity = 119/215 (55.35%), Postives = 156/215 (72.56%), Query Frame = 0

Query: 25  VSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGHISG 84
           V L +K+GAEF GTF LIF   +  I+++++    SL+G A SAGLAV ++++S  HISG
Sbjct: 91  VPLVKKVGAEFFGTFTLIFTVLSTIIMDEQHKGVESLLGIATSAGLAVTVLVLSLIHISG 150

Query: 85  AHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFMSGGVTVPSVATG 144
            HLNP+++IA+    H P   +  YIAAQ+  SI ASFA+KG++HP   G VTVP V T 
Sbjct: 151 CHLNPAVSIAMTVFGHLPPAHLLPYIAAQILGSITASFAVKGMYHPVNPGIVTVPKVGTV 210

Query: 145 QAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGASTGGSMNPVRTL 204
           +AF LEF+ TF LLF++TA+ATD  AV EL  +AVGAT+M+N L+AG STG SMNP RTL
Sbjct: 211 EAFFLEFVTTFVLLFIITALATDPNAVKELIAVAVGATIMMNALVAGPSTGASMNPARTL 270

Query: 205 GPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKL 240
           GPA+A G Y ++WVY+VA  LGA+ G G YFA+KL
Sbjct: 271 GPAIATGRYTQIWVYLVATPLGAVAGEGFYFAIKL 305

BLAST of Tan0021050 vs. NCBI nr
Match: XP_022957899.1 (probable aquaporin NIP5-1 [Cucurbita moschata] >XP_023534473.1 probable aquaporin NIP5-1 [Cucurbita pepo subsp. pepo] >KAG6605632.1 putative aquaporin NIP5-1, partial [Cucurbita argyrosperma subsp. sororia] >KAG7035542.1 putative aquaporin NIP5-1 [Cucurbita argyrosperma subsp. argyrosperma])

HSP 1 Score: 399.8 bits (1026), Expect = 1.7e-107
Identity = 213/251 (84.86%), Postives = 225/251 (89.64%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN A +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPVPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGAETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFFITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           +NIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAIVGAGTY AVKL+DDE+
Sbjct: 228 VNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIVGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. NCBI nr
Match: XP_008437497.1 (PREDICTED: probable aquaporin NIP5-1 [Cucumis melo])

HSP 1 Score: 399.4 bits (1025), Expect = 2.3e-107
Identity = 212/251 (84.46%), Postives = 224/251 (89.24%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN   +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGVETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF+ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFIITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAI+GAGTY AVKL+DDE+
Sbjct: 228 LNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIIGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
              SQVRSFRR
Sbjct: 288 EAPSQVRSFRR 298

BLAST of Tan0021050 vs. NCBI nr
Match: XP_022996063.1 (probable aquaporin NIP5-1 [Cucurbita maxima])

HSP 1 Score: 398.7 bits (1023), Expect = 3.9e-107
Identity = 211/251 (84.06%), Postives = 225/251 (89.64%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN A +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPVPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGAETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AG+AVMIVI+STGHISGAHLNPSLTIA AA+RHFPW+QVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGMAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWIQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFFITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           +NIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAIVGAGTY AVKL+DDE+
Sbjct: 228 VNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIVGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. NCBI nr
Match: XP_038875525.1 (probable aquaporin NIP5-1 [Benincasa hispida])

HSP 1 Score: 398.3 bits (1022), Expect = 5.0e-107
Identity = 212/251 (84.46%), Postives = 224/251 (89.24%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN   +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGVETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF+ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFIITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAIVGAGTY AVKL++DE+
Sbjct: 228 LNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIVGAGTYTAVKLREDEV 287

Query: 245 NDSSQVRSFRR 256
              SQVRSFRR
Sbjct: 288 EAPSQVRSFRR 298

BLAST of Tan0021050 vs. NCBI nr
Match: XP_004145889.1 (probable aquaporin NIP5-1 [Cucumis sativus] >KGN49946.1 hypothetical protein Csa_000397 [Cucumis sativus])

HSP 1 Score: 396.4 bits (1017), Expect = 1.9e-106
Identity = 210/251 (83.67%), Postives = 224/251 (89.24%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN   +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGVETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+ GQAFALEF+ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSIGQAFALEFIITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNIL+AG S+GGSMNPVRTLGPAVAAGNY+ LWVY+VAPTLGAI+GAGTY AVKL+DDE+
Sbjct: 228 LNILVAGPSSGGSMNPVRTLGPAVAAGNYKALWVYLVAPTLGAIIGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. ExPASy TrEMBL
Match: A0A6J1H3D6 (probable aquaporin NIP5-1 OS=Cucurbita moschata OX=3662 GN=LOC111459297 PE=3 SV=1)

HSP 1 Score: 399.8 bits (1026), Expect = 8.4e-108
Identity = 213/251 (84.86%), Postives = 225/251 (89.64%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN A +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPVPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGAETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFFITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           +NIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAIVGAGTY AVKL+DDE+
Sbjct: 228 VNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIVGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. ExPASy TrEMBL
Match: A0A1S3AU64 (probable aquaporin NIP5-1 OS=Cucumis melo OX=3656 GN=LOC103482897 PE=3 SV=1)

HSP 1 Score: 399.4 bits (1025), Expect = 1.1e-107
Identity = 212/251 (84.46%), Postives = 224/251 (89.24%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN   +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGVETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF+ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFIITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAI+GAGTY AVKL+DDE+
Sbjct: 228 LNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIIGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
              SQVRSFRR
Sbjct: 288 EAPSQVRSFRR 298

BLAST of Tan0021050 vs. ExPASy TrEMBL
Match: A0A6J1K9S5 (probable aquaporin NIP5-1 OS=Cucurbita maxima OX=3661 GN=LOC111491380 PE=3 SV=1)

HSP 1 Score: 398.7 bits (1023), Expect = 1.9e-107
Identity = 211/251 (84.06%), Postives = 225/251 (89.64%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN A +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPVPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGAETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AG+AVMIVI+STGHISGAHLNPSLTIA AA+RHFPW+QVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGMAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWIQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEF ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSTGQAFALEFFITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           +NIL+AG S+GGSMNPVRTLGPAVAAGNYR LWVY+VAPTLGAIVGAGTY AVKL+DDE+
Sbjct: 228 VNILVAGPSSGGSMNPVRTLGPAVAAGNYRALWVYLVAPTLGAIVGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. ExPASy TrEMBL
Match: A0A0A0KQH1 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G146190 PE=3 SV=1)

HSP 1 Score: 396.4 bits (1017), Expect = 9.3e-107
Identity = 210/251 (83.67%), Postives = 224/251 (89.24%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V+ P   Q H CFT      VSL RKLGAEFVGTFILIFAATA PIVNQKYN   +LIGN
Sbjct: 48  VNAPTWGQPHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAGPIVNQKYNGVETLIGN 107

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A  AGLAVMIVI+STGHISGAHLNPSLTIA AA+RHFPWVQVPAYIAAQVSASICASFAL
Sbjct: 108 AACAGLAVMIVILSTGHISGAHLNPSLTIAFAALRHFPWVQVPAYIAAQVSASICASFAL 167

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+ GQAFALEF+ITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 168 KGVFHPFMSGGVTVPSVSIGQAFALEFIITFNLLFVVTAVATDTRAVGELAGIAVGATVM 227

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNIL+AG S+GGSMNPVRTLGPAVAAGNY+ LWVY+VAPTLGAI+GAGTY AVKL+DDE+
Sbjct: 228 LNILVAGPSSGGSMNPVRTLGPAVAAGNYKALWVYLVAPTLGAIIGAGTYTAVKLRDDEV 287

Query: 245 NDSSQVRSFRR 256
           +  SQVRSFRR
Sbjct: 288 DAPSQVRSFRR 298

BLAST of Tan0021050 vs. ExPASy TrEMBL
Match: A0A5C7H036 (Uncharacterized protein OS=Acer yangbiense OX=1000413 GN=EZV62_022683 PE=3 SV=1)

HSP 1 Score: 394.4 bits (1012), Expect = 3.5e-106
Identity = 210/252 (83.33%), Postives = 225/252 (89.29%), Query Frame = 0

Query: 5   VDTPKRSQSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGN 64
           V  P   QSH CFT      VSL RKLGAEFVGTFILIFAATAAPIVNQKYN A +LIGN
Sbjct: 50  VTAPSWGQSHTCFTDFPAPDVSLTRKLGAEFVGTFILIFAATAAPIVNQKYNNAETLIGN 109

Query: 65  AVSAGLAVMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFAL 124
           A SAGLAVM++I+STGHISGAHLNPSLTIA AA+RHFPW QVPAYIAAQVSASICASFAL
Sbjct: 110 AASAGLAVMVIILSTGHISGAHLNPSLTIAFAALRHFPWAQVPAYIAAQVSASICASFAL 169

Query: 125 KGVFHPFMSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVM 184
           KGVFHPFMSGGVTVPSV+TGQAFALEFLITFNLLFVVTAVATD RAVGELAGIAVGATVM
Sbjct: 170 KGVFHPFMSGGVTVPSVSTGQAFALEFLITFNLLFVVTAVATDTRAVGELAGIAVGATVM 229

Query: 185 LNILIAGASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDEL 244
           LNILIAG S+GGSMNPVRTLGPAVAAGNY+ LW+Y++APTLGA+ GAGTY AVKL++DE+
Sbjct: 230 LNILIAGPSSGGSMNPVRTLGPAVAAGNYKSLWIYILAPTLGALAGAGTYTAVKLREDEV 289

Query: 245 ND-SSQVRSFRR 256
            D   QVRSFRR
Sbjct: 290 TDPPRQVRSFRR 301

BLAST of Tan0021050 vs. TAIR 10
Match: AT4G10380.1 (NOD26-like intrinsic protein 5;1 )

HSP 1 Score: 364.0 bits (933), Expect = 9.8e-101
Identity = 195/244 (79.92%), Postives = 208/244 (85.25%), Query Frame = 0

Query: 12  QSHICFTHSHTLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLA 71
           Q   CFT   +  VSL RKLGAEFVGTFILIF ATA PIVNQKY+ A +LIGNA  AGLA
Sbjct: 61  QHDTCFTDFPSPDVSLTRKLGAEFVGTFILIFTATAGPIVNQKYDGAETLIGNAACAGLA 120

Query: 72  VMIVIMSTGHISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPF 131
           VMI+I+STGHISGAHLNPSLTIA AA+RHFPW  VPAYIAAQVSASICASFALKGVFHPF
Sbjct: 121 VMIIILSTGHISGAHLNPSLTIAFAALRHFPWAHVPAYIAAQVSASICASFALKGVFHPF 180

Query: 132 MSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAG 191
           MSGGVT+PSV+ GQAFALEF+ITF LLFVVTAVATD RAVGELAGIAVGATVMLNIL+AG
Sbjct: 181 MSGGVTIPSVSLGQAFALEFIITFILLFVVTAVATDTRAVGELAGIAVGATVMLNILVAG 240

Query: 192 ASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVR 251
            STGGSMNPVRTLGPAVA+GNYR LWVY+VAPTLGAI GA  Y  VKL D   +    VR
Sbjct: 241 PSTGGSMNPVRTLGPAVASGNYRSLWVYLVAPTLGAISGAAVYTGVKLNDSVTDPPRPVR 300

Query: 252 SFRR 256
           SFRR
Sbjct: 301 SFRR 304

BLAST of Tan0021050 vs. TAIR 10
Match: AT1G80760.1 (NOD26-like intrinsic protein 6;1 )

HSP 1 Score: 310.5 bits (794), Expect = 1.3e-84
Identity = 168/232 (72.41%), Postives = 192/232 (82.76%), Query Frame = 0

Query: 24  HVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGHIS 83
           +VSL RKLGAEFVGT ILIFA TA  IVNQK + A +LIG A SAGLAVMIVI+STGHIS
Sbjct: 75  NVSLYRKLGAEFVGTLILIFAGTATAIVNQKTDGAETLIGCAASAGLAVMIVILSTGHIS 134

Query: 84  GAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFHPFMSGGVTVPSVAT 143
           GAHLNP++TIA AA++HFPW  VP YI AQV AS+ A+FALK VF P MSGGVTVP+V  
Sbjct: 135 GAHLNPAVTIAFAALKHFPWKHVPVYIGAQVMASVSAAFALKAVFEPTMSGGVTVPTVGL 194

Query: 144 GQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGASTGGSMNPVRT 203
            QAFALEF+I+FNL+FVVTAVATD RAVGELAGIAVGATVMLNILIAG +T  SMNPVRT
Sbjct: 195 SQAFALEFIISFNLMFVVTAVATDTRAVGELAGIAVGATVMLNILIAGPATSASMNPVRT 254

Query: 204 LGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVRSFRR 256
           LGPA+AA NYR +WVY+ AP LGA++GAGTY  VKL +++     + RSFRR
Sbjct: 255 LGPAIAANNYRAIWVYLTAPILGALIGAGTYTIVKLPEED-EAPKERRSFRR 305

BLAST of Tan0021050 vs. TAIR 10
Match: AT5G37820.1 (NOD26-like intrinsic protein 4;2 )

HSP 1 Score: 198.7 bits (504), Expect = 5.5e-51
Identity = 107/233 (45.92%), Postives = 152/233 (65.24%), Query Frame = 0

Query: 25  VSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGHISG 84
           V L +KL AE +GT+ +IF+     +VN  Y   ++  G  V+ GL VM++I STGHISG
Sbjct: 39  VCLTQKLIAEMIGTYFIIFSGCGVVVVNVLYGGTITFPGICVTWGLIVMVMIYSTGHISG 98

Query: 85  AHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVFH--PFMSGGVTVPSVA 144
           AH NP++T+  A  R FPW QVP YI AQ++ S+ AS  L+ +F+  P    G T P+ +
Sbjct: 99  AHFNPAVTVTFAVFRRFPWYQVPLYIGAQLTGSLLASLTLRLMFNVTPKAFFG-TTPTDS 158

Query: 145 TGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGASTGGSMNPVR 204
           +GQA   E +I+F L+FV++ VATD+RA GELAGIAVG T++LN+ +AG  +G SMNP R
Sbjct: 159 SGQALVAEIIISFLLMFVISGVATDSRATGELAGIAVGMTIILNVFVAGPISGASMNPAR 218

Query: 205 TLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVRSFRR 256
           +LGPA+  G Y+ +WVY+V P +G   G   Y  ++  D  L + ++  SF R
Sbjct: 219 SLGPAIVMGRYKGIWVYIVGPFVGIFAGGFVYNFMRFTDKPLRELTKSASFLR 270

BLAST of Tan0021050 vs. TAIR 10
Match: AT4G19030.1 (NOD26-like major intrinsic protein 1 )

HSP 1 Score: 196.8 bits (499), Expect = 2.1e-50
Identity = 112/240 (46.67%), Postives = 161/240 (67.08%), Query Frame = 0

Query: 22  TLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGH 81
           ++ V   +KL AEF+GT+ L+F   A+ +VN + +  V+L G A+  GL +M++I S GH
Sbjct: 48  SVSVPFLQKLIAEFLGTYFLVFTGCASVVVNMQNDNVVTLPGIAIVWGLTIMVLIYSLGH 107

Query: 82  ISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALK---GVFHPFMSG--GV 141
           ISGAH+NP++TIA A+   FP  QVPAY+ +QV  S  A+  L+   G+ H   SG   V
Sbjct: 108 ISGAHINPAVTIAFASCGRFPLKQVPAYVISQVIGSTLAAATLRLLFGLDHDVCSGKHDV 167

Query: 142 TVPSVATG---QAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAGAS 201
            + S   G   QAF +EF++TF L+F+++ VATD RA+GELAG+A+G+TV+LN+LIA   
Sbjct: 168 FIGSSPVGSDLQAFTMEFIVTFYLMFIISGVATDNRAIGELAGLAIGSTVLLNVLIAAPV 227

Query: 202 TGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVRSF 254
           +  SMNP R+LGPA+  G Y+ +W+Y+VAPTLGAI GA  Y  V+  D  L + ++  SF
Sbjct: 228 SSASMNPGRSLGPALVYGCYKGIWIYLVAPTLGAIAGAWVYNTVRYTDKPLREITKSGSF 287

BLAST of Tan0021050 vs. TAIR 10
Match: AT4G18910.1 (NOD26-like intrinsic protein 1;2 )

HSP 1 Score: 196.8 bits (499), Expect = 2.1e-50
Identity = 114/242 (47.11%), Postives = 161/242 (66.53%), Query Frame = 0

Query: 22  TLHVSLARKLGAEFVGTFILIFAATAAPIVNQKYNAAVSLIGNAVSAGLAVMIVIMSTGH 81
           ++ V   +KL AE +GT+ LIFA  AA  VN +++ AV+L G A+  GL VM+++ S GH
Sbjct: 45  SISVPFLQKLMAEVLGTYFLIFAGCAAVAVNTQHDKAVTLPGIAIVWGLTVMVLVYSLGH 104

Query: 82  ISGAHLNPSLTIALAAVRHFPWVQVPAYIAAQVSASICASFALKGVF----------HPF 141
           ISGAH NP++TIA A+   FP  QVPAY+ +QV  S  A+  L+ +F          H  
Sbjct: 105 ISGAHFNPAVTIAFASCGRFPLKQVPAYVISQVIGSTLAAATLRLLFGLDQDVCSGKHDV 164

Query: 142 MSGGVTVPSVATGQAFALEFLITFNLLFVVTAVATDARAVGELAGIAVGATVMLNILIAG 201
             G  T+PS +  Q+F +EF+ITF L+FV++ VATD RA+GELAG+AVG+TV+LN++IAG
Sbjct: 165 FVG--TLPSGSNLQSFVIEFIITFYLMFVISGVATDNRAIGELAGLAVGSTVLLNVIIAG 224

Query: 202 ASTGGSMNPVRTLGPAVAAGNYRELWVYMVAPTLGAIVGAGTYFAVKLKDDELNDSSQVR 254
             +G SMNP R+LGPA+    YR LW+Y+V+P +GA+ GA  Y  V+  D  L + ++  
Sbjct: 225 PVSGASMNPGRSLGPAMVYSCYRGLWIYIVSPIVGAVSGAWVYNMVRYTDKPLREITKSG 284

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
Q9SV841.4e-9979.92Probable aquaporin NIP5-1 OS=Arabidopsis thaliana OX=3702 GN=NIP5-1 PE=2 SV=1[more]
Q0IWF39.6e-9373.88Aquaporin NIP3-1 OS=Oryza sativa subsp. japonica OX=39947 GN=NIP3-1 PE=2 SV=2[more]
Q9ATN11.4e-9173.06Aquaporin NIP3-1 OS=Zea mays OX=4577 GN=NIP3-1 PE=2 SV=1[more]
Q9SAI41.8e-8372.41Aquaporin NIP6-1 OS=Arabidopsis thaliana OX=3702 GN=NIP6-1 PE=1 SV=1[more]
Q7EYH72.0e-5855.35Aquaporin NIP3-2 OS=Oryza sativa subsp. japonica OX=39947 GN=NIP3-2 PE=2 SV=1[more]
Match NameE-valueIdentityDescription
XP_022957899.11.7e-10784.86probable aquaporin NIP5-1 [Cucurbita moschata] >XP_023534473.1 probable aquapori... [more]
XP_008437497.12.3e-10784.46PREDICTED: probable aquaporin NIP5-1 [Cucumis melo][more]
XP_022996063.13.9e-10784.06probable aquaporin NIP5-1 [Cucurbita maxima][more]
XP_038875525.15.0e-10784.46probable aquaporin NIP5-1 [Benincasa hispida][more]
XP_004145889.11.9e-10683.67probable aquaporin NIP5-1 [Cucumis sativus] >KGN49946.1 hypothetical protein Csa... [more]
Match NameE-valueIdentityDescription
A0A6J1H3D68.4e-10884.86probable aquaporin NIP5-1 OS=Cucurbita moschata OX=3662 GN=LOC111459297 PE=3 SV=... [more]
A0A1S3AU641.1e-10784.46probable aquaporin NIP5-1 OS=Cucumis melo OX=3656 GN=LOC103482897 PE=3 SV=1[more]
A0A6J1K9S51.9e-10784.06probable aquaporin NIP5-1 OS=Cucurbita maxima OX=3661 GN=LOC111491380 PE=3 SV=1[more]
A0A0A0KQH19.3e-10783.67Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G146190 PE=3 SV=1[more]
A0A5C7H0363.5e-10683.33Uncharacterized protein OS=Acer yangbiense OX=1000413 GN=EZV62_022683 PE=3 SV=1[more]
Match NameE-valueIdentityDescription
AT4G10380.19.8e-10179.92NOD26-like intrinsic protein 5;1 [more]
AT1G80760.11.3e-8472.41NOD26-like intrinsic protein 6;1 [more]
AT5G37820.15.5e-5145.92NOD26-like intrinsic protein 4;2 [more]
AT4G19030.12.1e-5046.67NOD26-like major intrinsic protein 1 [more]
AT4G18910.12.1e-5047.11NOD26-like intrinsic protein 1;2 [more]
InterPro
Analysis Name: InterPro Annotations of Snake gourd (anguina) v1
Date Performed: 2021-10-25
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR000425Major intrinsic proteinPRINTSPR00783MINTRINSICPcoord: 68..92
score: 42.82
coord: 105..124
score: 29.07
coord: 180..202
score: 40.34
coord: 149..167
score: 30.68
coord: 217..237
score: 34.93
coord: 29..48
score: 34.64
IPR000425Major intrinsic proteinPFAMPF00230MIPcoord: 24..234
e-value: 2.9E-50
score: 171.1
IPR023271Aquaporin-likeGENE3D1.20.1080.10Glycerol uptake facilitator protein.coord: 2..250
e-value: 7.3E-66
score: 223.7
IPR023271Aquaporin-likeSUPERFAMILY81338Aquaporin-likecoord: 22..240
IPR034294Aquaporin transporterPANTHERPTHR45724AQUAPORIN NIP2-1coord: 11..252
NoneNo IPR availablePANTHERPTHR45724:SF11AQUAPORIN NIP5-1-RELATEDcoord: 11..252
IPR022357Major intrinsic protein, conserved sitePROSITEPS00221MIPcoord: 86..94

Relationships

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

Feature NameUnique NameType
Tan0021050.1Tan0021050.1mRNA


GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0090502 RNA phosphodiester bond hydrolysis, endonucleolytic
biological_process GO:0055085 transmembrane transport
cellular_component GO:0016021 integral component of membrane
cellular_component GO:0016020 membrane
molecular_function GO:0015267 channel activity
molecular_function GO:0003676 nucleic acid binding
molecular_function GO:0004523 RNA-DNA hybrid ribonuclease activity