ClCG06G009090 (gene) Watermelon (Charleston Gray)

NameClCG06G009090
Typegene
OrganismCitrullus lanatus (Watermelon (Charleston Gray))
DescriptionATP synthase mitochondrial F1 complex assembly factor 2
LocationCG_Chr06 : 14438704 .. 14454750 (+)
The following sequences are available for this feature:

Gene sequence (with intron)

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

mRNA sequence

AATGAATACCCCTTTGAGAAATTCCAAGGCCGACAGATAACAATATTGGTGGCTGCTGAGGGAGTTCATAAGCTGCCCACTATCAATGGCAGCAGGGACTTGAAGGAAGCTTTGCAGAAACTTGCATCCATCCCTTCCAGCAAAATATTGGCTGTTGAAGTTTTGTGGACACCACAGAATGAGAACGACACATTGTCTGAACGCGAACTCCTTGAAGATTACCCACTTTTAAGGCCTTTATAAGTACGTGCAAAAAAAAGTATTTTTACCATGCTTTACCGATTACATATAGATATAATGATTAGAATATAGAGCTGTCTTGACTTAGAAAATGTGTATATAATAACATAATTACAAATTTAGTTTTCATTTGGTTTTTCATTCATTTATTTGGTGGA

Coding sequence (CDS)

AATGAATACCCCTTTGAGAAATTCCAAGGCCGACAGATAACAATATTGGTGGCTGCTGAGGGAGTTCATAAGCTGCCCACTATCAATGGCAGCAGGGACTTGAAGGAAGCTTTGCAGAAACTTGCATCCATCCCTTCCAGCAAAATATTGGCTGTTGAAGTTTTGTGGACACCACAGAATGAGAACGACACATTGTCTGAACGCGAACTCCTTGAAGATTACCCACTTTTAAGGCCTTTATAA

Protein sequence

NEYPFEKFQGRQITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLEDYPLLRPL
BLAST of ClCG06G009090 vs. TrEMBL
Match: A0A0A0LY57_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_1G695400 PE=4 SV=1)

HSP 1 Score: 131.7 bits (330), Expect = 3.9e-28
Identity = 67/68 (98.53%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLPTINGS DLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE
Sbjct: 157 ITILVAAEGVHKLPTINGSGDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 216

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 217 DYPLLRPL 224

BLAST of ClCG06G009090 vs. TrEMBL
Match: V4V360_9ROSI (Uncharacterized protein OS=Citrus clementina GN=CICLE_v10001390mg PE=4 SV=1)

HSP 1 Score: 130.2 bits (326), Expect = 1.1e-27
Identity = 65/68 (95.59%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLP+INGS DLKEALQKLASIPSSKI+AVEVLWTPQNENDTLSERELLE
Sbjct: 330 ITILVAAEGVHKLPSINGSEDLKEALQKLASIPSSKIMAVEVLWTPQNENDTLSERELLE 389

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 390 DYPLLRPL 397

BLAST of ClCG06G009090 vs. TrEMBL
Match: A0A061F388_THECC (Myelin-associated oligodendrocyte basic protein isoform 2 OS=Theobroma cacao GN=TCM_026403 PE=4 SV=1)

HSP 1 Score: 129.8 bits (325), Expect = 1.5e-27
Identity = 65/68 (95.59%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEG+HKLP INGSRDLKEALQKLASIP+SKILAVEVLWTPQNENDTLSERELLE
Sbjct: 278 ITILVAAEGLHKLPPINGSRDLKEALQKLASIPTSKILAVEVLWTPQNENDTLSERELLE 337

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 338 DYPLLRPL 345

BLAST of ClCG06G009090 vs. TrEMBL
Match: A0A061F284_THECC (Myelin-associated oligodendrocyte basic protein isoform 1 OS=Theobroma cacao GN=TCM_026403 PE=4 SV=1)

HSP 1 Score: 129.8 bits (325), Expect = 1.5e-27
Identity = 65/68 (95.59%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEG+HKLP INGSRDLKEALQKLASIP+SKILAVEVLWTPQNENDTLSERELLE
Sbjct: 331 ITILVAAEGLHKLPPINGSRDLKEALQKLASIPTSKILAVEVLWTPQNENDTLSERELLE 390

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 391 DYPLLRPL 398

BLAST of ClCG06G009090 vs. TrEMBL
Match: B9RES7_RICCO (Putative uncharacterized protein OS=Ricinus communis GN=RCOM_1428510 PE=4 SV=1)

HSP 1 Score: 127.9 bits (320), Expect = 5.6e-27
Identity = 63/68 (92.65%), Postives = 66/68 (97.06%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           IT+LVAAEGVHKLPTINGS DLKEALQKL SIPSSK+LAVEVLWTPQNENDTL+ERELLE
Sbjct: 293 ITLLVAAEGVHKLPTINGSGDLKEALQKLGSIPSSKVLAVEVLWTPQNENDTLTERELLE 352

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 353 DYPLLRPL 360

BLAST of ClCG06G009090 vs. TAIR10
Match: AT1G54520.1 (AT1G54520.1 unknown protein)

HSP 1 Score: 113.6 bits (283), Expect = 5.6e-26
Identity = 55/68 (80.88%), Postives = 59/68 (86.76%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           +TIL+AAEG+HKLP ING+ DLKEAL KL SIP +KI+AVEVLWTPQNE D LSERELLE
Sbjct: 324 VTILMAAEGIHKLPPINGTTDLKEALLKLGSIPRNKIMAVEVLWTPQNEADALSERELLE 383

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 384 DYPLLRPL 391

BLAST of ClCG06G009090 vs. NCBI nr
Match: gi|449449537|ref|XP_004142521.1| (PREDICTED: uncharacterized protein LOC101210275 [Cucumis sativus])

HSP 1 Score: 131.7 bits (330), Expect = 5.6e-28
Identity = 67/68 (98.53%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLPTINGS DLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE
Sbjct: 339 ITILVAAEGVHKLPTINGSGDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 398

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 399 DYPLLRPL 406

BLAST of ClCG06G009090 vs. NCBI nr
Match: gi|659125607|ref|XP_008462772.1| (PREDICTED: uncharacterized protein LOC103501059, partial [Cucumis melo])

HSP 1 Score: 131.7 bits (330), Expect = 5.6e-28
Identity = 67/68 (98.53%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLPTINGS DLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE
Sbjct: 111 ITILVAAEGVHKLPTINGSGDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 170

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 171 DYPLLRPL 178

BLAST of ClCG06G009090 vs. NCBI nr
Match: gi|700211709|gb|KGN66805.1| (hypothetical protein Csa_1G695400 [Cucumis sativus])

HSP 1 Score: 131.7 bits (330), Expect = 5.6e-28
Identity = 67/68 (98.53%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLPTINGS DLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE
Sbjct: 157 ITILVAAEGVHKLPTINGSGDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 216

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 217 DYPLLRPL 224

BLAST of ClCG06G009090 vs. NCBI nr
Match: gi|567880971|ref|XP_006433044.1| (hypothetical protein CICLE_v10001390mg [Citrus clementina])

HSP 1 Score: 130.2 bits (326), Expect = 1.6e-27
Identity = 65/68 (95.59%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEGVHKLP+INGS DLKEALQKLASIPSSKI+AVEVLWTPQNENDTLSERELLE
Sbjct: 330 ITILVAAEGVHKLPSINGSEDLKEALQKLASIPSSKIMAVEVLWTPQNENDTLSERELLE 389

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 390 DYPLLRPL 397

BLAST of ClCG06G009090 vs. NCBI nr
Match: gi|590642849|ref|XP_007030634.1| (Myelin-associated oligodendrocyte basic protein isoform 1 [Theobroma cacao])

HSP 1 Score: 129.8 bits (325), Expect = 2.1e-27
Identity = 65/68 (95.59%), Postives = 67/68 (98.53%), Query Frame = 1

Query: 13  ITILVAAEGVHKLPTINGSRDLKEALQKLASIPSSKILAVEVLWTPQNENDTLSERELLE 72
           ITILVAAEG+HKLP INGSRDLKEALQKLASIP+SKILAVEVLWTPQNENDTLSERELLE
Sbjct: 331 ITILVAAEGLHKLPPINGSRDLKEALQKLASIPTSKILAVEVLWTPQNENDTLSERELLE 390

Query: 73  DYPLLRPL 81
           DYPLLRPL
Sbjct: 391 DYPLLRPL 398

The following BLAST results are available for this feature:
Match NameE-valueIdentityDescription
A0A0A0LY57_CUCSA3.9e-2898.53Uncharacterized protein OS=Cucumis sativus GN=Csa_1G695400 PE=4 SV=1[more]
V4V360_9ROSI1.1e-2795.59Uncharacterized protein OS=Citrus clementina GN=CICLE_v10001390mg PE=4 SV=1[more]
A0A061F388_THECC1.5e-2795.59Myelin-associated oligodendrocyte basic protein isoform 2 OS=Theobroma cacao GN=... [more]
A0A061F284_THECC1.5e-2795.59Myelin-associated oligodendrocyte basic protein isoform 1 OS=Theobroma cacao GN=... [more]
B9RES7_RICCO5.6e-2792.65Putative uncharacterized protein OS=Ricinus communis GN=RCOM_1428510 PE=4 SV=1[more]
Match NameE-valueIdentityDescription
AT1G54520.15.6e-2680.88 unknown protein[more]
Match NameE-valueIdentityDescription
gi|449449537|ref|XP_004142521.1|5.6e-2898.53PREDICTED: uncharacterized protein LOC101210275 [Cucumis sativus][more]
gi|659125607|ref|XP_008462772.1|5.6e-2898.53PREDICTED: uncharacterized protein LOC103501059, partial [Cucumis melo][more]
gi|700211709|gb|KGN66805.1|5.6e-2898.53hypothetical protein Csa_1G695400 [Cucumis sativus][more]
gi|567880971|ref|XP_006433044.1|1.6e-2795.59hypothetical protein CICLE_v10001390mg [Citrus clementina][more]
gi|590642849|ref|XP_007030634.1|2.1e-2795.59Myelin-associated oligodendrocyte basic protein isoform 1 [Theobroma cacao][more]
The following terms have been associated with this gene:
Vocabulary: INTERPRO
TermDefinition
IPR010903DUF1517
GO Assignments
This gene is annotated with the following GO terms.
Category Term Accession Term Name
biological_process GO:0008150 biological_process
cellular_component GO:0009507 chloroplast
cellular_component GO:0016021 integral component of membrane
cellular_component GO:0005575 cellular_component
cellular_component GO:0016020 membrane
molecular_function GO:0003674 molecular_function

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

Feature NameUnique NameType
ClCG06G009090.1ClCG06G009090.1mRNA


Analysis Name: InterPro Annotations of watermelon (Charleston Gray)
Date Performed: 2016-09-28
IPR TermIPR DescriptionSourceSource TermSource DescriptionAlignment
IPR010903Protein of unknown function DUF1517PFAMPF07466DUF1517coord: 13..80
score: 3.0
NoneNo IPR availablePANTHERPTHR33975FAMILY NOT NAMEDcoord: 13..80
score: 4.9
NoneNo IPR availablePANTHERPTHR33975:SF2SUBFAMILY NOT NAMEDcoord: 13..80
score: 4.9