CmoCh11G017010 (gene) Cucurbita moschata (Rifu) v1

Overview
NameCmoCh11G017010
Typegene
OrganismCucurbita moschata (Cucurbita moschata (Rifu) v1)
DescriptionAuxilin-related protein 2 isoform X2
LocationCmo_Chr11: 12048251 .. 12067147 (-)
RNA-Seq ExpressionCmoCh11G017010
SyntenyCmoCh11G017010
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.
CGCGGGGATCATATATATCGCTCCCGCATCCACACACTCTTCTTCGGGTCACATTCTCACACTAGAATCAGAGCGCTCCATCAACGGCCTCTTCCCTTCTGAACGTTCCTTGCCGAATTCAACCGCTAGATAATTACCAAGCAATCGGAGGAAGAGAGAGCAGAATCGAAAGGAGTTTCTCGCCTGATCCCGATGATGAAAAATAGAGGTAATGTAAGATTGACTACTCTGTTCTGGGTTGAAATTTTGGAGGCACAGTCGGCCATTCCGATTTAGGGGTTTATTGGAGAATTTTAGAGATTATTCTGATTTAGGGGTTTATTGGAGAATTTTAGAGATTATTCTGATTTAGGGGTTCACTCGAGCAACTTCAGAGGTTAATCGAACGATCGGATCGTTCTTTTTCCTTTTTTGCCTGTTATCGACACCTTTTGTATTTTTCGTGGTTTCGATTATGGAGGATTAGGGCGTTTTTAGTAGGTTCATTGTTCGTTTCCATGGTAACGTGATTATTGTCTTGGATTATTCTTCGTTTCATTCCCATCATCTTCTATTTCTTCTCTGTGTGAGGAGCCAGGGAACAAACCTGATATTCAAATTTATGTGTTGGCAGAAGAGAAGAGAACGGCGAACTCTTATGTCATTGCGATTGGTTCCGATAACAGAGTGGGGAAGAACAAAGCAGGTGCTCTTGATGAAGTGATTGCTTGGGCAAAAGAAAAACAGTTGGTCCTGTCAATTCAGGCCGGTGGGAGGTTTTCGCATCTGCTAGGATTACTGGTATGATTCCAAGCCCAAGACTGTAGGAAGTAATTGTTGTTTATAAGTTTATTTTTAGTTTCATTATTTGTTGGCTGTGAAGTCGTGAATTGTAGCTTTAGCTGCTTTATTCTTGAAAAAAGATGTACCGAAAGTAAATGATGAATCAAAAAGCCTAATATCATGAAAGTCCTTTTTCTTGAGGAAGAAGTTCTGCAGGGGCCTCCCTTGCTCAATGAAGAACCATGGAATTACTGTCTTTTTATCTTCCATAAGTTCTTCACCATATTTTTTGAGGCAGCAATTAAGAAAGCTCCAAAATGTAATTGTTGCTAGCTTGGGTTGCAATGAAATAAACTCTATTACAGAATATAGAATCTTATCGACACAGTTACCATTCTGTCGAGCCAGTTTAGACAATACTTCTTATAGAACTTAGCCAGAAGGAAAAAACAGTTGACTTGTATTGTAAAATTTAGTGTCATGCACAATTGTTGTCTGCTTATTGATCTTTGGTTTACAATTGTTTGCTTATGGATTATATCAGCATCTGACTGAAAGTTCTGGAAAGTTCGATTTTGAGATGTTATAGTTTTCAGTATTTGCTTGTCTTTCAATGTTAGTGTGTCCATATTTCTTACAATAGTATTCCATTTTCTGAACTTGCACAGATTTGCGTTTAGATTCATCTAAAAGATCAAGCTCTTCTCCACTTTTAAACAATGTCGACTATGTTCACGTTCATAATATTTGGGAGTCTGTATGAGTATTTATAGCTTTTTTTCCAGCTAGTGGATGATTTGATGCACCTTTTTTTTTTTTTAAATTTGCATGTGATTTCAACATAAATGAAGGGTTTCATTTTGCTTTTCAACCACTTGAGTTTTTGAGATTGAGCTTTTGGATTCTGAATTTTCTCTTATGAACATTCCTCTAGGTCATGATGATTGAATGGACGATATGAGATATATACTAGTGTCTGGATCAATTTTTGAGACTGATTTGAGTCTGGGGCAAAATGATGGCAATCAATTTGTTGAAATCGAAGGTACTTTCTTTGTTCAACTTAATCATTTGATCAATGCATAATTATTTTTTTTCATTAATAATATCATGCAGGACGGTCCGGTTCATGTAAAGTTTGTTGTAAACAATTAGGGATGCATGAAATATAACCACACAACCCACTACGGTAAGCTATTGCTTTTACAAAACTTTTATCATTCTATTTACCGGTCAAACTTCAACAAAAATAGTTTATGTTCACTTTTAATGGTTTCAAATTATCCATATCTCATTGGTTTGACATTATTGTTCATATTTCCTTTGCTATTGGAGAAGATTTTGATTAATAACCATGTTACGAAAATTTCAGATGGAAATGGAGGACATAGATCTAATAAAGTTGTGTTCAAGGAATCCAACTCTGGTTGCTACATTCAACACTCCATCAAGTAAGAAATTTTCTATTTGACATCATAAACTACCTTATGTGTTGCCTAGATCTCAGGAGAATTACGTTATTGGCAATGTTGTGGTCCTAATAATGTTAAATTCCTATATTTAATCTTTATTATATCTTTGTTTTTTGTTTTTGATGTTACTTGTGTTCTACCGATATCATGTTTTTGGTTCAAGAGTAAACGACTGAATGTTAAAGTTGAAAGGGTTCATGAGTAAGAAATTAAATTATGTTTTTCTATTTTATGAGTGTTTTAGGTAGTTAGTGAAACCGAGTGAAAAGCCAGACTTCTGCAATTATAATAAACCCCATGAATCTATCTCAACGTTCCAATTTCCATAGAGACAATGTAAAACTCAATGATCAAAGAATCCCATTTAAAATCAATCAAACAACTAAGAGCACATCATTGGTCATTACATACTCCACATTCGGCAATAAGAGAAACCGTGCCACAACATATAGGCGAATTGCCCACAAAAGTTGTAGAAAACAAACCGATCCAAGTAACAAAACGAACAAGAACAAAGAAAAAAAAAAAAACTAAATTCAGAAGAATCGTTCATGAATAAAAGGCAATGATGAGTGGTGAGGTGAAGAAAGAGAGAAATAGGAGAAAGGGGTGGAAGATTAGGGCTGGTGCAGGCTCATCTGGGTATGTGGAAGGGAAGGCTCAGAGTATAGAGAGCACTCTGAGTTTGTCATTTCCCTCTCCATTTCAGTTTCATTGCCCCTCATTTTGCTTGTTTGACTTATGACTAGGCTTTCTCCAATGTTTTATTGCCACATCATCAATATAACAATTTAGTCTCATTATCCTTCGAGGGTCAAGGATTAAGATTGCAAAACCAAGAAAAGAACTTAAGACCGAAAGTACCCGCCTTATACAAGAAGGAACAAAATGAACATCTAAGATACGACCTTGAAGGAACAACCTTAATTATGTCAAGGTTTATTGAACATAAAGATGATAAGCTATACACAAGGATGGCCAAGAAAGACTTGTCAATCTCAACCAAGGATGTTGAGAAGACATTCAAAAGGAACAAATGCTGGAACTAGAAAACGCCTTAAGGCATAAGTTAAGGAACAAATGCTGGTCATCCTTAAGGCATAAAGATTATGGAAGGCCAAAGGTATTGCAAGACTTTCAAGAAAAGAAACTTAAGAACTAAAAAAACATGCCTCGTACAAGAAGGAATAAAAGGAACATATAAGATAAGACCTTGAAAGGTGATAAACTTTACGATTTAAGGAAACATAAGGATGACCAAGGACGACTTGTCAATCTCAACAAAGGATGTTAAGAAGACGCTCAAAAGAAACAAATGTTGGAACTGGAAAACGAGATTAAGTTAAGAACTAAAGGTATGATTATAAGGATTATGGAAAGCCAAGAGTAGTTACAAGGATTAAGAAAAGCCTAGTAATACCGACAAAAGAACTTAAAACCCAAACAACCTAAGACTTATCAATTTCAACAAAGGATGTTGAGAAGACACAAACAACCTAAGACTTGTCAATTTCAACAAGGATGTTGAGAAGACAGTTAAAATGAACAAATGCCGGAACGAGAAAATGTCTTAGGGAATAAGATAAGAACTAAAGGCTACAAGGGCAAATTGTAAGGATTATGAAAGGCCAACGGTAGTTACAAGGATTAAGGAAAGACTTTAATATCAAGAAAAGAAGAACTTAAGACCAAAAGAACCCATGTTATACAGAAAGGAATAAATACATCTAATATAAGACATGATAATCTCAACAAAGGATGTTGAGAAGACAATCGAAAGGAACAAATCTTGGAACCAGTACATGCCTTAAGACTTGTTAAGAACTAACGGCGACAAGGACTTAATTATAAGGATTATGAACGACCAAGGGATGTTATAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAAACCCTCCCTTGTACACGCCTTAGGACATAAGTTAAGAACAAAGGCCACTAGGGCTGACTATAAGGATTATGGACGACCAAGGGATGTTACAAGGATTAAGAAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACATGCCTTGTACACTGCTTAAGAAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACATGCCTTGTACACTGCTTAAGACATAAGTTAAGAACTAACGGCCACCAGGGCTGATTATAAGGATTATGGACGACCATGGGATGTTACAAGGATTAAGGAAGAACTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACCTGCCTTGTACACTGCATAAGACATAAGTTAAGGACTAACGGCCACCAGGGCTGATTATAAGGATTATGGACGACCCAAAGAACCTGCCTTGTACACTGCATAAGACATAAGTTAAGGACTAACGGCCACCAGGGCTGATTATAAGGATTATGGATGACCAAGGGATGTTACAAGGATTAAGGAAGATCTTGCAATACCGAGAAAAGAAGAGCATAAGACCCAAAGAACCTGCCTTGTACACTACTTAAGACATAAGTTAAGAACTAACGGCCACCAAGGCTGATTATAAGGATTATGGACGACGACTAAGAGATGTTACAAGGATTACGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACCTGCCTTGTACACGCTTTAAGACATAAGTTAAGAACTAACGGCTACAAGAGCTGATTATGAGGATTATGGACGACCAAGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAAACCCAAAGAACCCGCCTTGTACACGCCTTAAGACAGAAGTTAAGAATTAACGGCCACAAGGGCTGATTATAAGGATTATGGACGACCAAGGGATGTTACAAGGATTAAGAAAGACCTTGTAATACCGTAAGAACTAACGGCGACAAGGGATGATTATAAGGATTATGGACGACCAAGGGATGTTACAAGAATTAAGGAAGACCTTGTAACACCGAGAAAAGAAGAGCTTAAGACTCAAAGAACCTGCCTTGTACACGCCTTAAGACATAAGTTAAGACCTAACGGCCACCAGGACTTATTATAAGTATTATGGACGACCAAGGGATGTCACAAGGATTAAGGAAGACCTTGTAATAACGAGAAAAAAAGAGCTTAAGACCCAAAGAACTTGCCTTGTACACTGCTTAAGACATAAGTTAAGAACCAACGGCCACCAAGGCTGATTATATGGATTATGGACGACCAAGGTATGTTACAAGAATTAAGGACCTTGTAATACCAAGAAAAGAAAAGCTTAACCCAAAGAACTTTCCTTGTACACTCCTTAAGACATAAATTAAGAACTAACGGCGACAAGGGCGGATTATAAGGATTATGGATGACCAAGGGATGTTACAAGGATTAAGAAAGACCTTTTAATACCGAGAAAATAAGAGATTAAGACCCAAAGAACTTGACTTCTACACAGCTGAAGAAATAAGTTAAGAATTGACAGCCACCAGGGCTGATTATAAGGTATATGGACGACCAAGGGATGTTACAAGGATTAGGGAAGACCTTGTACTACCCAGAAAAAAAGAGCTTAAGACCCAAAGAACCTGCCATGTACACGCCTTAAGACATAAGTTAAGAACTAACGGCCTCCAGGGCTGATTATCAGGGTAATGGACGACCAAGGGATGTTACAAGGATTAAGGAAGACTTTGTAATATCGAGAAAAGAAGAGTTTAAGACCCGAAGAACCTGCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACGATCTCCAGGGCTGATTTGAAGGATTATGGACGACCAAAGGATGTTAAAAGGATTAAGGAAGACCTTGTAATACCGTAAGAACTAACGTCGACAAAGGCTGATTATAAGGATTATGGACGACCATGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACCTGCCTTGTGCAATGCTTAAGACATAAGTTAAGAACTAATGGCCACCACGGCTGATTATAAGGATTACGGACAACCAAGGTATGTTACAAGGATTAAGGAAGACCTTGTAATACTGAGAAAAGAAGAACTTTAGACCGAAAGAACCTTCCTTGTACACGCCTTAAGAGATAAGTTAAGAACAAACGGCCACTAGGGCTGATTATAAGGATTATGGACGACTAAGGGATGTTACAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAATTCCCAAAGAACCTACGTTGTACATACCTTAAGACATAAGTTAAGAACTAACGGCCACCAGGGCTGATTATAAGGATTATGGACGACCAAGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTAGAGTCCCAAAGAACCTGCCTTGTACACTGCTTAAGACATAAATTAAGAACCAACGGCCACCCAGGCTGATTATAAGGATTATGGACGATTAAGGGATGTTACAAGAATTGAGGAAGACCTTGTACTACCGCGAAAAGAATTGCTTAAGACCCAAAGAACTTGCCTTGTACACTGCTTAAGACATAAGTTAAGAACTAACGGCCATCGGAGTTGATTATAAGGTTTATGGACGACCAAGGGATGTTACAAGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCCAAAGAACTTTCCTTGTACACTCCTTCAGACATAAGTTAAGAACTAACGGCGACAAGGGCGGATTATAAGGATTATGGACGACCAAGGGATGTTACAAGGATTAAGAAAGACCTTTTAATACCGAGAAAATAAGAGCTTAAGACCCAAAGAACTTGCCTTGTACACTGCTTAAGAAATAAGTTAAGAACTGACAGCCACCAGGGCTGTTTATAAGGATTATGGACGACCAAGGATTGTTACAAGGATTAAAGGATTAAGGAAGACCTCGTAATACCGTAAGAACTAACGGCGACAAGGACTGATTATAAGTTTTATGGACGACCATGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAATAGAAAAGCTTAAGACCCAAAGAACCTGCCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACAGCGACAAGGGCTGATTATAAGGATTATGGACGACTAAATGAAGTTACAAGGATTTGGGAAGACCATGTAATACTGAGAAAAGAAGAGCTTAAGACCCAAAGAACCTGCGTTGTACACGCCTTAAGACATAAGTTAAGACCTAACAGCCACCAGGGCTGATTATAAGGATTATGGATGACCAAAGGATCTTACAAGGATTAATGAAGACCTTGTAATACCGAGAAGAGAAGAGCTTAAGACCCAAAGAACCTACCTTGTACACGCCTTAAGACATAAGTTACGAACTAACGGCCACCAAGGCTGATTATAAGGATTATGGACGACCGTGAGATGTTACAAGGATTAAGGAAGATCTTGTAATACCGAGAAAAGAATAGCTTAAGACCCAAAGAACCTTTCTTGTACACGCCTTAAGACATAAGTTCAAAACTAACGGCCACCCAAGCTGACTATAAGGATTATGGACGACCATGGAATATTACAAGGATTAAGGAAGACATTGTAATACCGAGAAAAAAAGATCTAAGATCTAAAGAACCTGCCTTGTACATGTCTTAACACATACGTTAAGAACTAACGACGACAAGGGCTGATTATAAGGATTATGGACGTCCATGGAATGTTACAAGGATTAAGGAATACCTTGTAATACTGAGAAAAGAAGAGCTTAAGACCCAAAGAATTTTCCTTGTACAAGCCTTAGAGGTAAGTTAAGAACTAATGGCGACTAGGGCTGATTATAAGGATTATGGACGACCAAGGGACGTTACAAAGCTTAAGGAAGACCTTGTAATACCGAGAAAAGAATAGCTTTAGACATAATTTAAGAACTAACGGCCACCAGGGCTGTTTATAAGAATTATGGACGACCAAGCGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAGACCTAAAGAACCTGCCTTGTACACGCCTTAAGACATATAAGTTAAGAACTAACGGCCACCAGGGCTGATTATAAGGATTATGGACGACCAAGGATTGTTACAAGGATTAAGGAAGACCTTGTAATACCGTAAGAACTAACGACGACAAGGGCTGATTATAAGGATTATGGACGACCATGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGTAAGAACTAACGACGACAAGGGCTGATTATAAGGATTATGGACGACCATGGGATGTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAAAGAAGAGCTTAAAGACCTGAAGAACCTGCCTTGTACACATCTTAAGACATAAGTTATGACCTAACGGCCACCAGGGCTGATTATAAGTATCATGGGGACGACCAAGGGATGTCACAAGGATTAAGGAAGACCTTGTAATAACGAGAAAAAAAGAGCTTAAGACACAAAGAACTTGCCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACGGCAACTAGGGCTGATTAAAAGGATTATGGACAACCAAGGGATGTTACCAGTATTAAGGAAGACCTTTTAATACCGACAAAAGAAGAGCTTAAACCCCAAAGAACCTGCCTTGTACACTGCTTAAGACATAAGTTAAGAACTGACAGCCATCAGGGCTGATTATAAGGATTATGGATGACCAAGGGATTTTACAACGATTAAGGAAGACCTTGTAATACCAAAAAAAGAAGAGCTTAAGACCCAAAGAACCTGCCTTGTACACACCTTAAGGCATAAGTTAGGAACTAACGGTGACAAGGGCTGTTGATAAGGATTATGGACGACCAAGTGATGTTACAAGGATTAAGAAAGACCTTATAATATCGAGAAGAGAAGAGCTTAAGACCCAAAGAACCTGTCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACGGCCACCAGGGCTGATTATACGGATTATGGACGACCAAGGGATGTTACAAGGATTATGGAAGACCTTGTAATACCGATAAAAGAGCTGAAGACCCAAAGAACCTGCCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACGGCAACAAGGGCTTATTATAAGGATTATGGACGACTAAATGAAGTTACAAGTATTTGGGAAGACCATGTAATACCGAGAAAAGAAGAGCTTAAGACCAAAGAACCTGCCTTGTACACGCCTTAAGACATAAGTTAAAACCTAACGGCCACCAGGGCTTATTATAAGGATTATGGACGACTAAGGGAAACAAGGATTAAGGAAGACCTTGTAATACTGAGAAAAGAAGAGCTTAAGACCCAAAGGACCTACGTTGTACACTTCTTAAGACATAAGTTAAGAACTAACGGCCACCCGGGCTGATTATAAGGATTATGGATGACCAAGGGATCTTACAAGGATTAAGGAAGACCTTGTAATACCGAGAAGAGAAGAGCTTAAGACCCAAAGGACCTGCCTTGTACACTGCTTAAGACATATGTTAAGAACTAACGTCCACCAGGGCTGATTATAAGGATTATGGACGACCAAGGGATTTTAGACGACCAAGGAAGACCTTGTAATACCGAAAAAAGAAGAGCTTAAGACCCAAAGAACCATCCTTGTACACGCCTTAAGACATAAGTTAGGAACTAACGGTGACAAGGGCTGTTGATAAGGATTATGGACGACCAAGTGATGTTACAAGGATTAAGAAAGACCTTATAATACCGAGAAAATAAGAGCTTTAGACCCAAAGAACCTGCCTTGTACACGCCTTAAGACATAAGTTAAGAACTAACGACGACAAGGGCTGATTATAAGGATTATGGATGATCAAGGGATGTTACAAGGATTAAGGAAGACCTTGTAGTACCGAGAAAAGAAGAGCTTAAAACCCAAAGAACCCGCCTTGTACACGCCGTAAGACATAAGTTAAGAACTAACGGCGACAAGGGCTTATTATAAGGATTATGGACGACCATGGGATGTTACCAGGATTAAGGAAGACCTTGTAATACCGAGAAACGAAGAGCTTAAGATCCAAAGAACCTGTCTTGTACAAGAAGGAACAAAAGGAACAAATGTCGGAACAAGTATATGCTTTAGGCATGAATTAAGGACTAAAGGCCACAAAGGCTGATTTTAAGGATTATTGACGACCAAGGAATTTTATAAGGATTAAGAAAAGCCTTGTTATACCGAGAAGAAAACTTAAGATCCAAAGAACCTTCCTTGTACAAGACGTTACAAAAGGAACATCTAAGCTACGACCTTGAAGAAAAAAACATTGATTATGTTAAGGCCTCTTAAACATAAAGACGATAAGATCTACGATATAGGGAAACACAAGGATGACCAAGAAAGACTTGACAATCTCAACAAAGGATGTTAAGAATATAGTTGAAAGGAACAAATGTCGGAACAAGTACATGCCTGACGGTATAAGTTAAGAATTAAATGCCATAAGGGCTAATCATATGGATTATGGTGTCCAGGAATGTCACAAAGATTAAGGAAGGTAGTTACGTTGAGAAAAGAAGAACTTAAAACCTTAAGAACCCGCCTTGTACAAGAAGAAACAAAAGAAACATCTAAGATAAGACTTTACAATCTCAACAAAGAATGTTGAGTAGACCGTCAAAAGAACCAAATGTCGGAACAAGTACATGAATTAAGGCATAAGTTAAGAACTAATGGCCACAAGGGCTTATTTAGATTATGGATGGCCAAGAGATGTTATAATGATTAAGGAGGAAGGCCTTGTTATACCGAGAAAAGAAGAACTTAAGTCCAAAACAACCCGCTTGTACAAGAAGGAACAAAAGGATTATCTAAAATAAAACTTCAAATGTCGGAATAAATACATGACTTAATAACATAAGTTAAGGACTAAAGGCCACAAGGGCTGATTATAAGGATTGTGGAACAGTCAAGAAATGTTACAATGATTAAGGAAGGAAGGTCTTGTTATATCGAGAAAAGAAGAATTTAAGACCTGAAGAACTTGCCTTGTACAAGAATGAACAAAATGAAGATCTAAGATAAGACTTGACAATTTCAACAAAGGATGTTGAGAAGCTATTTAAAGGGAACAAATGTCGAAACAAGTACATGCCTTAAGACATAAGTTAAGAACTAAAGGCCACAAAGGCTGATTATAAGGATTATGGACGGCCAAGGGATGTTACAAGGATTATGGACGGCCAAGAGATGTTACAAGGATTAAGGAATGCTTTGTTATACCGAGAAAAAAAGAACTTAAGACTCCACAATCCTTAAGACATAAGTTAAGAACTCAAGGCCACAAAGGCGGATTATAAGGATTATGGACGGCCAAGAGATGTTACAAGGATTATGGACAGCCAAAGGATGTTACACGGATTAAGGAAGGCTTTGTTATACCGAGAAAAAAAGAACTTAAGACCCCACAAGGATGACCAAGGAAAAGTTGTCAATCTCAATAAAGAATGTTGAGAAGACAGTCAAAAGTAACAAAGGCGGGAAGAAGAAAATGCATTGAGGCAAAAGTTAAGAACTAAAGGCTATAAGAGCTGATTATAAAGATTATGGAAGACCTAGAGTAGTTACAAAGATCAAGGAATAAAAGGGACGAATAAAAGGAACATCCAAGATACGACCTTGAATGAACAATGTTGGTTATGTCAAGGTTTGTTGAACATAAAGATAATATGCTCTACGATACAAGGAAACACAAGAATGAAGAAGGAAGACCCATCAATCTCATTATAGGATGTTGAGAAGACAACGAAAAAGAATAAATGCCACAACTAGAAAATGCCTTAAGGCATAACCAAAGAACTTTAGGCCACAATGGCGGATTATAAGGATTATGCAAGGCTAAGGGTAGATACAAAGATGAAGGAAGACCTTGTAATATTGAGAAAATAAGAATTTAAGTCCCAAGAACCCACCTTGTACAAGAAAGAACAAAACGAACATATAAGGTACAACCTTGGAGGAATAACACTGATTATGTTAAGACTTGTTAAATATAAAGACGATAAGCTCTACAATACAAGGAAACACAAGGATGACCGTTGATGACTTGATAAAATGCAAAAATGTCATTTCCTACAGCTTTTAAACGAGATCTCTAACAAGTCTCATAAAGTATTCAAGAGTTGAAGTTGGCCGAAACAAGTTTCCCTAATTCAAGTTCCATGACCCATGGAGGGAAGAATTTTTGAAGTCACATCCCTTGTTTTCCTTAAAACCTTCGAGAGTGGTTCTCCTGGAAGTTCTTTTTAGTTCCTGAAAATAGACTGAAAAGTGGACTTACAAAAAAAAATTAGGAGCAATTTGGATATCGAAAGCTTGAGAACCAAGAACCCGACCGTCAATGATGAGGTACGTAGCCACTTTGGACTTTTCTCAAGTTATACTTATAGGAATCCTTAGGTGAAGTATGATTTAAAGGAATATGGAAGAAATAGGTCAAAAATCAAAAGTGCAGACCTAAACCAACGTTTTTCTCAAAAATCAAGTAACGTTAAAATAACTCTCTAAGTAGACTCCGCTGCTCATGATCTTTTAATAGAAGGCTTATAAGATGACATGTTAAGGATACCAGGATTAAGGAAGGCCTTGTAATATCGAGAAAAGAAGAACTTAAGATCCAAAGAACCACTATACAAGAAGACATTGTTATACCGAGAAAAGAACTTAAGACACAAAGAACTCGCCTTGTACCAGAAGGAACAAAAGGAACATCTAAAATAAGACTGAACAATCTCAACAAAGGATGTTGAGAAGACAGTCAAAAGGAACAGATGTTGGAACAAGTACATAACTTAAGTAATAACCAAAGAACTTAAGGCCACAAGGGCTTATTATAAGGATTATGTAAGGCCAATGATAGATACAAGGATTAAGGAAGACTTTGTAATATCGAGAAAGAAGAACTTACGACCCAAAGAACCCGCCTTTTACAAGAAAGAATAAAAGGAAAATTTAAGATACAACCTTAAAGGAACAACGTTATTATGTTAAGGCTTGTTAAACATAAGACGATAAGTTCTACGATATAAGGAAACACAAGGATGACCTAGGAAAACTTGACAAACTCAACAAAGGATGTTAAGAAGACATTCAAGAGGAACGATAAGTTCTACGATATAAGGAAACACAAGGATGACCTAGGAAAACTTGACAAACAAGGATGACCTAGGAAAACTTGACAAACTCAACAAAGGATATTAAGAAGACATTCAAGAGGAACAAATGTTGGAATTAGAAAATGTCTCGAGGGATAAATTTAGAATTAAAGGCCACAAAGGCTGATTATAAGGATCATGGACGGTCAAGGGTAGTACAAGGATTAAGGAAGACCTTGTAATACCGATAAAAGAAGACTTCAGATCCAAAGAACTCGCCTTGTACAAGACGGAAAAGAAGGGAAAAATTACAAAAAATGAACAAACTATTTTTAGAAACAATTTGGATTTTTCAAAATAAAATATTCAAAAAGTGGCAAATACCAAAATACTCATGTTGTTCCAATTATTTACAATAATACCCTTGGCCAGAAAATCTTTCCTAGATTAAGGTCAGCTGGACAAAATCTTCCATATCTCAACATTCAATCAACCATATGATTTACCCTAAATTTGGATAAAATCTAGAAGACTCAGATATCTTCAGATCCAACAGTTGGTGTTCAAGGATGATGTCGGGAACACCCTCGTCGGAGTAGATTATTCCTACCTGCCAGAATCATTAAATATAAATTCAGCATCATTATGGATGTTTTAAGGTTGATGCAAGCTTTATCTACAAATAAGAAGATATGGGCAACATTTAGGGACAAGAGTGAGGGCTTGAGAGTACGAGGATTAATAAAGGGTAAGAGTAATTACAAGGATTAAGGAAGACCAAGGAAAGAACTTAAGACCCTAAGAACCCGCTTGGTACAAGAAGGAACAAAAAGACCCTCTAAGATAATAGAACCTTGAAGGAACAAGGTTGATTATGTCAAGGCTTTTTGAACTTAAGAAAGAAGATAAGGTCTAGGATATAAGAAAACGTAAGCATAACCAAAGAAAACTTGTCCATTTGAACAAAGGATGTTTAGAAGACATTCAAAAAGGGAAAATATTGGAACAAGTACATGGCCAAGGCATAAGTTACAAACTAAAGGCTATAAGGGTAGATTACAATAACATGCTGGAAAAGGACAAACCTATAAAAGGACCCTCAAGCAATATGAAAGGACATAATGAAGGACAAATGCCCCAAGGCAAAGTAAGAACAACAAACTTTTGAGAATAAAAGTTCTTAAGAGGGGGAGAATTTATGAGACCCCAAGTAGGTTAAGACACTCAAGTAAGTTTAAGGTGCTTAAGAAAGGTTAAGGGGCCAAGGAAGAGATTCTCAATGCCCTAGCAAAGTTTCATAAGCATCCAAAACCTTGGGAAAAGGTTTGGAAAAGAAATAGTAATCATAAAAGGGAAAAATGTCAGTTTTCCAATTTTAAGTAAAGTCTCGAGTTTTTCATTTCTTAAGTAGAAGGAATTTCAAGATGTTCAATGACCAAAATTAGGTAAAGAATGTTTAGAAAAAGTATGGATGGGTCGGAATAAAAATTTGAAATGTGATAAATTATGAAAGTACCCTAATGTTCAATTATCCATGAAATATCCATGCCCCGAAAAATCTTCCAACATTCGTTTTCAGTATGGGTCAGCTGGAAAAAATCTTCCATATCTCTAGATCCGACCGTTGAGTTTACCCCAAATTTGGATATGATCTAGAAGACTCAGATATCTTTAGATCTAACGGTTGGTGTTCAAAGTTGAAGTCTGCAGCACCTTCATCGGAGTAGATTTTTTCGCTGGACCTTCCAGAATTTTCAAGTTTAAAATCAACACCATTCGAGATGTAAGGTTGGTGCAAGCTTCATCTACAAGTAAGGTTGGTGCAAGCTTCATCTACAAATAACGTGACGTGGGCAATGTATAGGTACAAGGGTAGAGGCTAGAGAGTACAAGGGTGGTTATAAGGATTAAGGAAGACCTTGTAACACCAAGGAAAGAAGAACTTAAGACCCTAAGAACCCGCCTTGTACAAGAAGGATTAAAAGAACTACGGTTATTATGTCAAGGCATGTTGAACATAAGGAAGAAGATAAACTCTAAGATATGAGGAAATGCAAAAATGACAAAGGAAAACTGGTCAATCTCAACCAAGAAAAAGGGGCAAATGCTAGAACAATTAAATTTAAGGCATAAGTTAAGAACTAAAGGCCAAAATGGTAGATAATAAGGACATATCAAAGAATGAAAACCCTATATAAAAGGGACATGTCAAAGAATGAAAACCCTATAAAAGGATCCTCTAGGAAACTTGGAATGTTCTAACGAAGGGGAGAATTTGCAAGACTTCAAGTAAGGTTAAGACACTCGAGTAAGGCGACCCAAAAAAGAGATTCTCAATGCCCTAGCACGGTTTGATAGGGATGGAAAAGGTTTGGACAGGAAATAGTTAACTTAAAAGGTAAAAAGGTTGTAACACCAAGAAAAGAACTTAAGACCCTAAGAACCCGCCTGGTACAAAAAGGAACAAAATGAACCTCTAAGATACAACCTTGAAGGAACAACGTTCATTATGTCAAAGTTTGTTGAACATAAAGAATAAGATAAGCTCTAAGATATAAGGAAACAAACGGATGACCAAGGAAGACTTGTCAATCTCAATAAAAGATATTGAGAAGGCAGTCAAAGGGGGCAAATGACTTAAAGCATAAGTTAAGAACTAAAGGCCACGAGGGAAAATTATAAGGATATGTTGGAGAAGTTCAAACTTATAAAAGGACCTTCAAAAAACTTGGAAGGACATAACTGAGGACAAGTACTCTAAGACAAGGTAAAAACAGTGAACTTTCAAGGACGAAAGTTCTCAAGAGGTAAGGTGTGCAAGAAAGATTTAAGGGATCAAAAAAAAAAAAAAGATTAAGAGACCAAAAGAAGGCTAAGGGGTCCAAGGAAGAGATTCAATGTGTTACAAGCAGCATCCAAGCCTAAGGGAAAAATGACCAAAAATGGTAAATAGTTTTTGGAAAGTGTTTGGATTTTCAGAATAAAAAATTCAAAAGGTGGCAAATTACCGAAATACCCCAAGCTTCCAATTATATACAAAAATGCCCCTGACTAGAAATCTTTCCAGATTGGTTTACAGCAGGGGTCATCTGGACAAAATCTTTCATATCTCATAGATTCAACTATTGGATTTGTCCCAAATTTGGATATGATCTAGAAGACTCATATATGTTCAAATCTAATGGCTGATGTTGAAAAATGACGTCGGAAACATCTTCATCGAAGTAGATTTTTCCAATGGACCTTCTAGAAGTTTCAAGTTTAAATCAGCACTATTCTGTAGGTTTCTAGTTCGTTGCAAGCTTCATCCACAAATAAGAAAATGTGGGCAACATTTAGGGACAAGAGTGGAGGCTCAAGAGTACAAGGATTAAGGAAGGCCAAGGGTAGTTACAAGTTTAAATCAGCACTATTCTGTAGGTTTCTAGTTCGTTGCAAGCTTCATCCACAAATAAGAAAATGTGGGCAATGTTTAGGGACGAGTGGAGGCTCAAGAGTACAAGGATTAAGGAAGGCCAAGGGTAGTTACAAGGATTAAGTACAACACCAAGAAGAACTTAAGACCCTTAGAACCCCTTTTGTACAAAAAGAAACAAAAGGAACATCTAAGATACAACCTTAAAGGAACAATGTTGATTATGTCAAGACTTGTTGACCATAAGAAGATAAAGCTCAAAGATATAAGGAAACTCAAGGCTGACCCAGACTTTTTAATCTCAACAATAAATTATCACGATAGAAATATGGTACATTTTTAGAACGGTCTATAGGTTTCCTTGACGAATTAAATGAGATGATATCCTTTCTTTAATAAGAAAAAGATCTACTTAATGGTAAATAAAAGACTATATGTTCGAATAGATAATAGGAAAGCGAAGAATTGTTGGAAAGGAAGGAAGGAAGATAAGTTTGGGTTCAAGTTCTTTGTTTACTTCATAATCTGAGAAAGAAAGTGTGCATTTTTCAATTAAATTCTAGGGACAGTTAGCTACCTTGTGTGGAAGTCATGGCTTGGTCACCTTGATGAATACAAACCAATTTGTCATGTGAGCAAGAAATTATTTGGCAATGTTAGAAAGGGAAAGAGAGAGAAAATGAGGTCTTTCGAGAAAACCAAAAGCAAAACTACGAGAACTTTATGCTTAAAGTGGACAATATCATACCATTGTAGAGGTTGGGGTTCCTAACACACCGGTCATAAAGGCTTCAACCCCAATCTGCATAAATATGCTATAATTTGAGAATCACATTATTTAGGTTTGCATAAACCATGTTTTGAAGTTTCTTTTAGATATCTCAGTACTCTTTTAGATATCTCAGTACTCTTTTGACTGCCGTAATCGAGTGGGATTCTTCAAATATCAACTCAGTTTGCTAATAATGCATGAAATCTCTAGATGTGTCTTGTTGAGCCCCAATTGCACTTATATAAACTTGTGTTTGAGCTGAGATCCTAGGAGTGGTAGCTTCAATTGACAGAGACTTTTATATGTTGTGTGTTGACCTTTTCTGAAACATTTCCTATTGTTTTTGTAGACGGAGATAGATTGTTAGAGCTGATGTTTTTTTTCGAATAGCATAATCAAAGTGTAGTGTTGAACAGGTCAGCGTAACTATTGAGTTTTATGGTGTACTCAATGGAGTTCGTCATTGATTTTGCAACTATGAGACATAACTGATGTGTTTGAGCTGTGAGATCCTAGGAGTGGTAGCTTCAATTGATAGAGACTTTTGTATGTTGTATGTTGACTTTTTCTGAAATATTTTCTATTGTTTTTGTAGACGGAGATAGATTGTTAGAGCCGATGTTCTTTTTCGAATAGCATAATTAAAGTTTAGTGTTGAATAGGTAAACGTAACTATTGAGTTCTATGATGCACTCAATGGAGTTCGTCATTGATCTTGCAACAATGAGACATAACTGATGTGTTTGAGCTGAGATCCTAGAAGTGGTAGCTTCAACTGGTAGAGACTTTTGTATGTTGTATGTTGATCTTTTGTGAAACATTTCCTGTTGTTTTTGTAGACGGAGATGGATTGTTAGAGCCGATGTTCTTTTTCGAATAGTATAATTAAAGTTTAGTATTGAACAGGTCAGCGTAACTATTGAGTTCTATGATGCATTCAATGGAGTTAGCTTCAATTGATAGAGACTTTTGTATGTTGTATGTTGACCTTTTCTAAAACATTTCCTATTGTTTTTGTAGACGGAGATGGATTGTTAGAGCCGATATTCTTTTTCGAATAGCATAATCAAAGTTTAGTGTTGAACCGGTCAGCTAAATCCCAGGTACTCATACATCTTGATTGACCCATGGTTAGTTCCCTTTGTATTTTGCATTATTTTTATGAATTTATAAACTTTATAGTGGCTCGATAAGCTGTGTGTTGTTAAAGAGTTGAATTAGCAATATTTTTATAATCGAGTTTTCTCGTTTATTTTTTTTTTAATGATACAAAGAG

mRNA sequence

CGCGGGGATCATATATATCGCTCCCGCATCCACACACTCTTCTTCGGGTCACATTCTCACACTAGAATCAGAGCGCTCCATCAACGGCCTCTTCCCTTCTGAACGTTCCTTGCCGAATTCAACCGCTAGATAATTACCAAGCAATCGGAGGAAGAGAGAGCAGAATCGAAAGGAGTTTCTCGCCTGATCCCGATGATGAAAAATAGAGAAGAGAAGAGAACGGCGAACTCTTATGTCATTGCGATTGGTTCCGATAACAGAGTGGGGAAGAACAAAGCAGGTGCTCTTGATGAAGTGATTGCTTGGGCAAAAGAAAAACAGTTGGTCCTGTCAATTCAGGCCGGTGGGAGGTTTTCGCATCTGCTAGGATTACTGGTCATGATGATTGAATGGACGATATGAGATATATACTAGTGTCTGGATCAATTTTTGAGACTGATTTGAGTCTGGGGCAAAATGATGGCAATCAATTTGTTGAAATCGAAGGACGGTCCGGTTCATGTAAAGTTTGTTGTAAACAATTAGGGATGCATGAAATATAACCACACAACCCACTACGATGGAAATGGAGGACATAGATCTAATAAAGTTGTGTTCAAGGAATCCAACTCTGGTTGCTACATTCAACACTCCATCAAACGGAGATGGATTGTTAGAGCCGATATTCTTTTTCGAATAGCATAATCAAAGTTTAGTGTTGAACCGGTCAGCTAAATCCCAGGTACTCATACATCTTGATTGACCCATGGTTAGTTCCCTTTGTATTTTGCATTATTTTTATGAATTTATAAACTTTATAGTGGCTCGATAAGCTGTGTGTTGTTAAAGAGTTGAATTAGCAATATTTTTATAATCGAGTTTTCTCGTTTATTTTTTTTTTAATGATACAAAGAG

Coding sequence (CDS)

ATGATGAAAAATAGAGAAGAGAAGAGAACGGCGAACTCTTATGTCATTGCGATTGGTTCCGATAACAGAGTGGGGAAGAACAAAGCAGGTGCTCTTGATGAAGTGATTGCTTGGGCAAAAGAAAAACAGTTGGTCCTGTCAATTCAGGCCGGTGGGAGGTTTTCGCATCTGCTAGGATTACTGGTCATGATGATTGAATGGACGATATGA

Protein sequence

MMKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQAGGRFSHLLGLLVMMIEWTI
Homology
BLAST of CmoCh11G017010 vs. ExPASy TrEMBL
Match: A0A6J1ING1 (uncharacterized protein LOC111478006 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111478006 PE=4 SV=1)

HSP 1 Score: 69.3 bits (168), Expect = 7.0e-09
Identity = 34/52 (65.38%), Postives = 42/52 (80.77%), Query Frame = 0

Query: 1   MMKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQAGG 53
           ++KNREE++T NS VI IG+DN  GKN+  ALDEVIAWAKEKQ VLS++  G
Sbjct: 174 VVKNREERKTTNSDVIEIGADNGEGKNETVALDEVIAWAKEKQFVLSLRLDG 225

BLAST of CmoCh11G017010 vs. ExPASy TrEMBL
Match: A0A6J1IL14 (uncharacterized protein LOC111478006 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111478006 PE=4 SV=1)

HSP 1 Score: 67.4 bits (163), Expect = 2.7e-08
Identity = 33/49 (67.35%), Postives = 41/49 (83.67%), Query Frame = 0

Query: 1   MMKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQ 50
           ++KNREE++T NS VI IG+DN  GKN+  ALDEVIAWAKEKQ VLS++
Sbjct: 174 VVKNREERKTTNSDVIEIGADNGEGKNETVALDEVIAWAKEKQFVLSLR 222

BLAST of CmoCh11G017010 vs. ExPASy TrEMBL
Match: A0A6J1IJU2 (putative tyrosine-protein phosphatase auxilin isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111477754 PE=4 SV=1)

HSP 1 Score: 53.9 bits (128), Expect = 3.1e-04
Identity = 27/39 (69.23%), Postives = 30/39 (76.92%), Query Frame = 0

Query: 4   NREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEK 43
           + EE    +SYVI IGSDNR G N+A ALDEVIAWAKEK
Sbjct: 270 SEEEDEVMSSYVIEIGSDNREGTNEAVALDEVIAWAKEK 308

BLAST of CmoCh11G017010 vs. ExPASy TrEMBL
Match: A0A6J1IM87 (putative tyrosine-protein phosphatase auxilin isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111477754 PE=4 SV=1)

HSP 1 Score: 53.9 bits (128), Expect = 3.1e-04
Identity = 27/39 (69.23%), Postives = 30/39 (76.92%), Query Frame = 0

Query: 4   NREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEK 43
           + EE    +SYVI IGSDNR G N+A ALDEVIAWAKEK
Sbjct: 270 SEEEDEVMSSYVIEIGSDNREGTNEAVALDEVIAWAKEK 308

BLAST of CmoCh11G017010 vs. ExPASy TrEMBL
Match: A0A6J1CXD8 (uncharacterized protein LOC111015698 isoform X3 OS=Momordica charantia OX=3673 GN=LOC111015698 PE=4 SV=1)

HSP 1 Score: 53.1 bits (126), Expect = 5.2e-04
Identity = 26/42 (61.90%), Postives = 31/42 (73.81%), Query Frame = 0

Query: 1   MMKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEK 43
           ++   +E    +SYVI IGSDNR G N+A ALDEVIAWAKEK
Sbjct: 268 VLAEEDEDEVMSSYVIEIGSDNREGTNEAVALDEVIAWAKEK 309

BLAST of CmoCh11G017010 vs. NCBI nr
Match: KAG6589135.1 (DDB1- and CUL4-associated factor 13, partial [Cucurbita argyrosperma subsp. sororia])

HSP 1 Score: 78.6 bits (192), Expect = 2.4e-11
Identity = 39/49 (79.59%), Postives = 45/49 (91.84%), Query Frame = 0

Query: 1   MMKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQ 50
           +MK+REEKRTANS+VI IGSDNRVG+NKA  LDEVIAWAKE QLVLS++
Sbjct: 612 VMKSREEKRTANSHVIEIGSDNRVGRNKAVTLDEVIAWAKEDQLVLSLR 660

BLAST of CmoCh11G017010 vs. NCBI nr
Match: KAG7022833.1 (hypothetical protein SDJN02_16569, partial [Cucurbita argyrosperma subsp. argyrosperma])

HSP 1 Score: 78.2 bits (191), Expect = 3.1e-11
Identity = 39/48 (81.25%), Postives = 44/48 (91.67%), Query Frame = 0

Query: 2  MKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQ 50
          MK+REEKRTANS+VI IGSDNRVG+NKA  LDEVIAWAKE QLVLS++
Sbjct: 1  MKSREEKRTANSHVIEIGSDNRVGRNKAVTLDEVIAWAKEDQLVLSLR 48

BLAST of CmoCh11G017010 vs. NCBI nr
Match: KAG6600176.1 (hypothetical protein SDJN03_05409, partial [Cucurbita argyrosperma subsp. sororia])

HSP 1 Score: 75.1 bits (183), Expect = 2.6e-10
Identity = 41/57 (71.93%), Postives = 44/57 (77.19%), Query Frame = 0

Query: 6   EEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQAGGRFSHLLGLLV 63
           EE RT NSYVI   SDNR GKNKA  LDEVIAWA EKQ VLS++  G FSHLLG+LV
Sbjct: 196 EESRTTNSYVIEFCSDNREGKNKAVVLDEVIAWATEKQFVLSLRLVG-FSHLLGILV 251

BLAST of CmoCh11G017010 vs. NCBI nr
Match: KAG7030840.1 (hypothetical protein SDJN02_04877, partial [Cucurbita argyrosperma subsp. argyrosperma])

HSP 1 Score: 74.3 bits (181), Expect = 4.5e-10
Identity = 40/59 (67.80%), Postives = 46/59 (77.97%), Query Frame = 0

Query: 6   EEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQAGGRFSHLLGLLVMM 65
           EE RT NSYVI   SDNR GKNKA  LDEVIAWA EKQ VLS++  G FSHLLG+L+++
Sbjct: 196 EESRTTNSYVIEFCSDNREGKNKAVVLDEVIAWATEKQFVLSLRLVG-FSHLLGILLLV 253

BLAST of CmoCh11G017010 vs. NCBI nr
Match: KAG6600651.1 (hypothetical protein SDJN03_05884, partial [Cucurbita argyrosperma subsp. sororia])

HSP 1 Score: 72.4 bits (176), Expect = 1.7e-09
Identity = 41/60 (68.33%), Postives = 46/60 (76.67%), Query Frame = 0

Query: 2  MKNREEKRTANSYVIAIGSDNRVGKNKAGALDEVIAWAKEKQLVLSIQAGGRFSHLLGLL 61
          MK REE+RT NSY+I IGSDNR GKNKA A D VIA  KE QLVLS++  G FSHLL +L
Sbjct: 1  MKKREERRTTNSYIIEIGSDNREGKNKAVAHDGVIAQEKENQLVLSLRPVG-FSHLLRIL 59

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
Match NameE-valueIdentityDescription
A0A6J1ING17.0e-0965.38uncharacterized protein LOC111478006 isoform X2 OS=Cucurbita maxima OX=3661 GN=L... [more]
A0A6J1IL142.7e-0867.35uncharacterized protein LOC111478006 isoform X1 OS=Cucurbita maxima OX=3661 GN=L... [more]
A0A6J1IJU23.1e-0469.23putative tyrosine-protein phosphatase auxilin isoform X2 OS=Cucurbita maxima OX=... [more]
A0A6J1IM873.1e-0469.23putative tyrosine-protein phosphatase auxilin isoform X1 OS=Cucurbita maxima OX=... [more]
A0A6J1CXD85.2e-0461.90uncharacterized protein LOC111015698 isoform X3 OS=Momordica charantia OX=3673 G... [more]
Match NameE-valueIdentityDescription
KAG6589135.12.4e-1179.59DDB1- and CUL4-associated factor 13, partial [Cucurbita argyrosperma subsp. soro... [more]
KAG7022833.13.1e-1181.25hypothetical protein SDJN02_16569, partial [Cucurbita argyrosperma subsp. argyro... [more]
KAG6600176.12.6e-1071.93hypothetical protein SDJN03_05409, partial [Cucurbita argyrosperma subsp. sorori... [more]
KAG7030840.14.5e-1067.80hypothetical protein SDJN02_04877, partial [Cucurbita argyrosperma subsp. argyro... [more]
KAG6600651.11.7e-0968.33hypothetical protein SDJN03_05884, partial [Cucurbita argyrosperma subsp. sorori... [more]
Match NameE-valueIdentityDescription
Relationships

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

Feature NameUnique NameType
CmoCh11G017010.1CmoCh11G017010.1mRNA