MELO.jh019144.1 (gene) Melon (Harukei-3) v1.41

Overview
NameMELO.jh019144.1
Typegene
OrganismCucumis melo var. reticulatus cv. Harukei-3 (Melon (Harukei-3) v1.41)
DescriptionThreonine-tRNA ligase
Locationchr08: 29770312 .. 29783604 (-)
RNA-Seq ExpressionMELO.jh019144.1
SyntenyMELO.jh019144.1
Sequences
The following sequences are available for this feature:

Gene sequence (with intron)

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

mRNA sequence

AGTGCAACCAAACCTCTGGCATCTTCATTTCGAAGTTGGAGCTTTCGCAACAATGGCGGAACCACATGGTGGAGGCAACCACGATCTCGAGCAGACCTTGAAGCCCTTCTTTCAAAGGGCTTCTCAAGCCGAGGATCGTTTGTCAAGATTAGAAGCTGCTCTCTTGAGTAAGAAAGATGACCATAACGAAGAACATCTCAAAACGATAAGTGAACTCCAGACAAAGCTAGACAGCGCAAACAATGCACTAATCGAAGAACGGAAAAAGGCAAGTATAATTGGTGCACCATGTTTGTGTTTCACCTTGACTAGATGGAAAGGTTCAAGCGGAGAGATTTCAAGGTTATTTGATTCTTTTGCAGGCTGAGATGGTTGCTGAAGAAAATGCTAAGCTTCAGTATCGCATAATTCATCTTGTGAGAACAGCTAGGGAAACCCATTAAAAGTTGGAGCTTGAATCACGTTTTTTTTTCTAGTTAAGAGAATTGGATAGTTTAAAATTTTATACTCTTTTATAATTTCCTTTACAGACCTTTGGAAAATTGAAATTGCAAAAATGTGAATTGAATTTTTGATGTCCCAACCTAGAGTTGGATTTTTTTTTTTTCCAGATTATAAGGTCAGGATGGGGATGGGATGAAAGATCAAACAATCGAATTTTAGAAGGATAGTTGGTGTTCTATCCATGGGCTTGAGTAGATTGTTGGCAGTAATTAGATTTTGTTTGCTTGCCATGTAGTTTATTTTATTCAAAATTATGTCATTGAACTGAGTGATAAATGCAATATAATATGTGGTTTTGGAATC

Coding sequence (CDS)

ATGGCGGAACCACATGGTGGAGGCAACCACGATCTCGAGCAGACCTTGAAGCCCTTCTTTCAAAGGGCTTCTCAAGCCGAGGATCGTTTGTCAAGATTAGAAGCTGCTCTCTTGAGTAAGAAAGATGACCATAACGAAGAACATCTCAAAACGATAAGTGAACTCCAGACAAAGCTAGACAGCGCAAACAATGCACTAATCGAAGAACGGAAAAAGGCAAGTATAATTGGTGCACCATGTTTGTGTTTCACCTTGACTAGATGGAAAGGTTCAAGCGGAGAGATTTCAAGGTTATTTGATTCTTTTGCAGGCTGA

Protein sequence

MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLDSANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG
Homology
BLAST of MELO.jh019144.1 vs. NCBI nr
Match: XP_008464608.1 (PREDICTED: uncharacterized protein LOC103502450 isoform X1 [Cucumis melo])

HSP 1 Score: 209 bits (532), Expect = 4.20e-68
Identity = 104/104 (100.00%), Postives = 104/104 (100.00%), Query Frame = 0

Query: 1   MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
           MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD
Sbjct: 1   MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60

Query: 61  SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG 104
           SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG
Sbjct: 61  SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG 104

BLAST of MELO.jh019144.1 vs. NCBI nr
Match: XP_008464609.1 (PREDICTED: uncharacterized protein LOC103502450 isoform X2 [Cucumis melo])

HSP 1 Score: 145 bits (366), Expect = 7.23e-43
Identity = 73/76 (96.05%), Postives = 75/76 (98.68%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD
Sbjct: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60

Query: 61 SANNALIEERKKASII 76
          SANNALIEERKKA ++
Sbjct: 61 SANNALIEERKKAEMV 76

BLAST of MELO.jh019144.1 vs. NCBI nr
Match: XP_022966502.1 (uncharacterized protein LOC111466136 [Cucurbita maxima] >XP_023518486.1 uncharacterized protein LOC111781969 [Cucurbita pepo subsp. pepo])

HSP 1 Score: 123 bits (309), Expect = 3.49e-34
Identity = 63/78 (80.77%), Postives = 71/78 (91.03%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG+HDLEQTLKPF+QRAS+AEDRLSRLEAALLSKKD H+EEHLKTISELQ+KLD
Sbjct: 1  MAEPLSGGSHDLEQTLKPFYQRASEAEDRLSRLEAALLSKKDAHDEEHLKTISELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI E+KKA ++ A
Sbjct: 61 SANEALIAEQKKAEMVAA 78

BLAST of MELO.jh019144.1 vs. NCBI nr
Match: XP_022925102.1 (uncharacterized protein LOC111432443 [Cucurbita moschata])

HSP 1 Score: 122 bits (305), Expect = 1.42e-33
Identity = 62/78 (79.49%), Postives = 71/78 (91.03%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG+HDLEQTLKPF++RAS+AEDRLSRLEAALLSKKD H+EEHLKTISELQ+KLD
Sbjct: 1  MAEPLSGGSHDLEQTLKPFYRRASEAEDRLSRLEAALLSKKDAHDEEHLKTISELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI E+KKA ++ A
Sbjct: 61 SANEALIAEQKKAEMVAA 78

BLAST of MELO.jh019144.1 vs. NCBI nr
Match: KAG6595681.1 (hypothetical protein SDJN03_12234, partial [Cucurbita argyrosperma subsp. sororia])

HSP 1 Score: 122 bits (305), Expect = 1.42e-33
Identity = 62/78 (79.49%), Postives = 71/78 (91.03%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG+HDLEQTLKPF++RAS+AEDRLSRLEAALLSKKD H+EEHLKTISELQ+KLD
Sbjct: 1  MAEPLSGGSHDLEQTLKPFYRRASEAEDRLSRLEAALLSKKDAHDEEHLKTISELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI E+KKA ++ A
Sbjct: 61 SANEALIAEQKKAEMVAA 78

BLAST of MELO.jh019144.1 vs. ExPASy TrEMBL
Match: A0A1S3CM07 (uncharacterized protein LOC103502450 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103502450 PE=4 SV=1)

HSP 1 Score: 209 bits (532), Expect = 2.03e-68
Identity = 104/104 (100.00%), Postives = 104/104 (100.00%), Query Frame = 0

Query: 1   MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
           MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD
Sbjct: 1   MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60

Query: 61  SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG 104
           SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG
Sbjct: 61  SANNALIEERKKASIIGAPCLCFTLTRWKGSSGEISRLFDSFAG 104

BLAST of MELO.jh019144.1 vs. ExPASy TrEMBL
Match: A0A1S3CLW0 (uncharacterized protein LOC103502450 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103502450 PE=4 SV=1)

HSP 1 Score: 145 bits (366), Expect = 3.50e-43
Identity = 73/76 (96.05%), Postives = 75/76 (98.68%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD
Sbjct: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60

Query: 61 SANNALIEERKKASII 76
          SANNALIEERKKA ++
Sbjct: 61 SANNALIEERKKAEMV 76

BLAST of MELO.jh019144.1 vs. ExPASy TrEMBL
Match: A0A6J1HN54 (uncharacterized protein LOC111466136 OS=Cucurbita maxima OX=3661 GN=LOC111466136 PE=4 SV=1)

HSP 1 Score: 123 bits (309), Expect = 1.69e-34
Identity = 63/78 (80.77%), Postives = 71/78 (91.03%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG+HDLEQTLKPF+QRAS+AEDRLSRLEAALLSKKD H+EEHLKTISELQ+KLD
Sbjct: 1  MAEPLSGGSHDLEQTLKPFYQRASEAEDRLSRLEAALLSKKDAHDEEHLKTISELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI E+KKA ++ A
Sbjct: 61 SANEALIAEQKKAEMVAA 78

BLAST of MELO.jh019144.1 vs. ExPASy TrEMBL
Match: A0A6J1EAW7 (uncharacterized protein LOC111432443 OS=Cucurbita moschata OX=3662 GN=LOC111432443 PE=4 SV=1)

HSP 1 Score: 122 bits (305), Expect = 6.88e-34
Identity = 62/78 (79.49%), Postives = 71/78 (91.03%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG+HDLEQTLKPF++RAS+AEDRLSRLEAALLSKKD H+EEHLKTISELQ+KLD
Sbjct: 1  MAEPLSGGSHDLEQTLKPFYRRASEAEDRLSRLEAALLSKKDAHDEEHLKTISELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI E+KKA ++ A
Sbjct: 61 SANEALIAEQKKAEMVAA 78

BLAST of MELO.jh019144.1 vs. ExPASy TrEMBL
Match: A0A6J1DM00 (uncharacterized protein LOC111021288 OS=Momordica charantia OX=3673 GN=LOC111021288 PE=4 SV=1)

HSP 1 Score: 118 bits (296), Expect = 1.92e-32
Identity = 62/78 (79.49%), Postives = 68/78 (87.18%), Query Frame = 0

Query: 1  MAEPHGGGNHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHLKTISELQTKLD 60
          MAEP  GG HDLEQ+LKPFFQRAS+AEDRLSRLEA LLSKKD  +EEHLKTI+ELQ+KLD
Sbjct: 1  MAEPLRGGGHDLEQSLKPFFQRASEAEDRLSRLEATLLSKKDTWDEEHLKTIAELQSKLD 60

Query: 61 SANNALIEERKKASIIGA 78
          SAN ALI ERKKA I+ A
Sbjct: 61 SANEALIAERKKAEIVAA 78

BLAST of MELO.jh019144.1 vs. TAIR 10
Match: AT3G57320.1 (unknown protein; Has 30 Blast hits to 30 proteins in 13 species: Archae - 0; Bacteria - 0; Metazoa - 2; Fungi - 0; Plants - 28; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). )

HSP 1 Score: 52.0 bits (123), Expect = 3.4e-07
Identity = 29/65 (44.62%), Postives = 45/65 (69.23%), Query Frame = 0

Query: 9  NHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHL-KTISELQTKLDSANNALI 68
          +H L + LKPFF RA++A++RL++LEAAL S K D  +  L +   +LQ+KL+ AN  + 
Sbjct: 4  HHHLPENLKPFFHRATEAQERLAKLEAALASTKTDIPDAKLVEENKQLQSKLEEANATVK 63

Query: 69 EERKK 73
          +E+ K
Sbjct: 64 QEQTK 68

BLAST of MELO.jh019144.1 vs. TAIR 10
Match: AT3G57320.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: cellular_component unknown; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; Has 17 Blast hits to 17 proteins in 7 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 17; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). )

HSP 1 Score: 52.0 bits (123), Expect = 3.4e-07
Identity = 29/65 (44.62%), Postives = 45/65 (69.23%), Query Frame = 0

Query: 9  NHDLEQTLKPFFQRASQAEDRLSRLEAALLSKKDDHNEEHL-KTISELQTKLDSANNALI 68
          +H L + LKPFF RA++A++RL++LEAAL S K D  +  L +   +LQ+KL+ AN  + 
Sbjct: 4  HHHLPENLKPFFHRATEAQERLAKLEAALASTKTDIPDAKLVEENKQLQSKLEEANATVK 63

Query: 69 EERKK 73
          +E+ K
Sbjct: 64 QEQTK 68

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
XP_008464608.14.20e-68100.00PREDICTED: uncharacterized protein LOC103502450 isoform X1 [Cucumis melo][more]
XP_008464609.17.23e-4396.05PREDICTED: uncharacterized protein LOC103502450 isoform X2 [Cucumis melo][more]
XP_022966502.13.49e-3480.77uncharacterized protein LOC111466136 [Cucurbita maxima] >XP_023518486.1 uncharac... [more]
XP_022925102.11.42e-3379.49uncharacterized protein LOC111432443 [Cucurbita moschata][more]
KAG6595681.11.42e-3379.49hypothetical protein SDJN03_12234, partial [Cucurbita argyrosperma subsp. sorori... [more]
Match NameE-valueIdentityDescription
Match NameE-valueIdentityDescription
A0A1S3CM072.03e-68100.00uncharacterized protein LOC103502450 isoform X1 OS=Cucumis melo OX=3656 GN=LOC10... [more]
A0A1S3CLW03.50e-4396.05uncharacterized protein LOC103502450 isoform X2 OS=Cucumis melo OX=3656 GN=LOC10... [more]
A0A6J1HN541.69e-3480.77uncharacterized protein LOC111466136 OS=Cucurbita maxima OX=3661 GN=LOC111466136... [more]
A0A6J1EAW76.88e-3479.49uncharacterized protein LOC111432443 OS=Cucurbita moschata OX=3662 GN=LOC1114324... [more]
A0A6J1DM001.92e-3279.49uncharacterized protein LOC111021288 OS=Momordica charantia OX=3673 GN=LOC111021... [more]
Match NameE-valueIdentityDescription
AT3G57320.13.4e-0744.62unknown protein; Has 30 Blast hits to 30 proteins in 13 species: Archae - 0; Bac... [more]
AT3G57320.23.4e-0744.62unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biologic... [more]
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
Date Performed: 2021-10-25
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
NoneNo IPR availableCOILSCoilCoilcoord: 45..72
NoneNo IPR availableCOILSCoilCoilcoord: 23..43
NoneNo IPR availablePANTHERPTHR38377THREONINE-TRNA LIGASE 2coord: 9..74

Relationships

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

Feature NameUnique NameType
MELO.jh019144.1.t1MELO.jh019144.1.t1mRNA