Cmc10g0279841 (gene) Melon (Charmono) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTGTCAAATAAACTATTTAGTTTCTTCCCATATAATTTCTCGGTGCTTTCTTGTTTTATTGATGTTTGTATTCATGCTTGGATGAACGGCAGCAAGGAAGAATATTTTCATGGCGATTTTTCTTCTCATTTTCTTATTCCTATTCACTAATTTGAGAGCCGAAGAGCGACCATTCGATGTAAAGCAACATCTGTCCACGGTTACCAGGTTTTCTTGACGATCTCTCTCATCTATTTTTGTGGGTTTTGTGCTGTCTGAATTGGCTGTTTTTTTCAATATACCTTCATGATTTGTTTTGTTTTGTTTTGTATTGATTTAGTTATTTATGTGAATGATTGAGATTTAATTCATGGGCAACATCTCTGTGTTTGTATGAAACATGTTTTAAACATTTATGTTTCTGATCAGACAATTGAAATCGAAATTTAGAATTCCTGTATATTAAAATTTTGCTTCATCTCTTTCCACGAATCCACGTGAGAAATTGACTAGAAAGTCAATGGCCTGAACATGGTTTTTTTTCTTTTTAATGATTTTTAAACGTTTGTGGTTGGACTGTGCAAGCGATTATAGGTTTCCACAGCTTGATGTTAGATTACCACTATATGGAGCTTGAACTGTGATTGTCTTCGGGATGATTTTTTCTTTTAAATTAATTAAAGAACGGAAACTGGCCTCTTTGTTGAAATAATGAAATGATACTAATGGTCAAAATACTTAATAGGAGACAAAAATAGGAAAAAAGAAACTAACCAGCAATGCAAGAACAATGTCAAACGTGTTAACAAGAGAAAACAATCTAACTTGTAGAGAAAGAGGAAATAAGAGCATTACGAATTAAGCTAATGTCTTGAATCAAATAATCTGAAAAAAAATCTTGGAAAGAGAGCATCAAGAGGAAGCTTTGACTCAAACAATCACAAAATGGTCAAACCAATGAAATGACTTTTCTTGTAAGTTGCTGTTTCCTTTCAAACCAAATCTTTGAAAGAATGGGTTTGACGGCATTAACCTACAACTGATGCGAATGTGCTTTTAAGGACCGGCGCGATTAAGAGCTGAGACACATTTTATGTAAAGCTATTACAAAAATCCTGATGAAGGTTAAACAATGAGAATAGCCTTCTCCACAATTCTTTTGAGAAGCGACAATAAAAAAACATATGCTGACAATCTTCACCATCTCTTTAAGCATAATGGGAAAATTGAGGCAAAAAAGAACTATTTGGCAGCTACCCTTGGAAGGATCTTTGCACAATTAAGAGGCCCAATAATCATAACCCAAATGACGATGTTATCTCTTCTTGGACACCTATATTTCCATAGGTTTTTGAAAAGTTTGCTATGAATTGAAGAGGAAGAAGCCAAATGTCTAACTAAAGACTTTTGTGAACACTCCTGAAGTATCCAATGTCCATATTCTGGAATCTTGCCTTTCTACCACTCTTTGACCATCTAACATTATCAAAAGTTTCTTAAATCCAGCATCTCTTCTTCTTGTAGTGATCTTCTAAGATTGATTGCCCATGATAAAGTATTCAGGTTCCAATGATAAAAAAAATTGATCCTTAGGATTCGTAGTAAACCTGCATAATCTTGGAAAGAATGAACTCAAGGAAGAAGAATTCAACCATTTGTTATGCCAAAAAGAGATTCTAGCACCTCGGCCTAGATTGAAGGAGGCATAAGATTCAACTTTTAACAAAGTTTGAGAGAGGTTGATCCAAGGGCTTCGAAGGATTTTTCCAACTTTTCCAGACGTGTGCCAATCGAAGGAGCCACTCCCATGGATACTCCTTAGAACTTTGTATCAACGAGCTTTCTCTTCATGAATAAATCTTCAACCCCATTTTGCCAATAATGCCATGTTTCTGTTTTTTATCTCACCAAAACTGAGACCTTCTTGTGTTTGCAGTTTGGAAACCAACCCACTTGACGAGGTGATTTATCTTTACAAAAAAATCCTGCATTATCTTTTCTATTTCTGCAAGCACTTTGGAAGGCATTGTAAAGGAAGACATATAATCAATTGGGAGATTAGAAAGAACTGCCTTATTCAAAGTGAGCCTCCCTCTAGATGGATTAAAGTGTCTCCTTCTATCCAACTTCTTTTGGATTTTATCAATGACTGGCTGGTGGCTGCCAAAAGGAAACCTTTCTTGGGTAGCCTTGAAGAGGAAGCCCAAGATACATAAACGGTAATGACTCCGCTTTACAGTTCAAACTTGATGCAGTTGCCAACAGCCTATTTTTTGCAATATTCACTTCACAAGGTTTAGATTTTTCCCAATTAATATTTTGCCTCGAGCACCATTGGAAGAGCTCAATGATTGGTATTAAAGCTTTCAAACTTTCATCATCATTTTTACTAAAAAACAACATATCATCAGCATATTGAAGGACTGAAACATGGACTTCATTCTTGCCAAAATTGAAGCCTTAGTAAACTCCTTTCTCATGATTTGAGTTCAACAAGAATACTTAGAAGTTTGCTTACCAAGAGGACTAGAAAGCGGGAAACTAATACCCTTGAAGCGAGAATTTTTCCACGTGGTTTTCCATTGATAAAAATTGAAAATTTTGGATTTTTCACACACCCAATAATCCGTTGGATCCATTTGGCAGTGAAACCTTTTACATTCAGCACATTTTCTAAGAATTCCCAATCAATACGATCAAAGGCTTTTTTTTCTCTATATTCTTCCACCACTTCATTTGCGATGAGGATTGGGTCTAGGGCACTTTGAGAAGGGTAGATGAGGCTTGGTATTACCTTTTCCAATATGTTTGCTTAGACCATTGACACTTTTTTCTGTAAACTAAGTAGTTAGGCTGATTGGCCTAAAATCTTTTACAAAAACAACACAATCTTTTTTCTGGATCAAACAAATGAAGTTCTCCTTGATGCAAGCATTGAGTCTTCCATTACCATAGAATATGTACTTAGAGCCCACTGCCCTCTTAATTTCATCCAAAGAAAGAGCAATAAGAGCTTGATTATGAATTATCAAGACTTGAGCCCATTGTAAATTCAAGGGATTGTGACCAATAACCAGGGCATTTCTGATACAAATTATTGAAAATCCCAGAATTTCTTGTTCTGTTTCTCTGAAGAAAAAACTGGAAGACCACTGCTTGAGATCGGCTCTTGTGATGAGATTTTCCTGCACTAGTAGTTGTTTTACAGCAGCTCGAATATCAATTTCTAGTGCAGAGAATTCGTTTATTTATTATTATTATTTTATTTATAGAAACTGGCAACTTTCATTGAGAAAGAACGAAAGAATTATAAGGGCATATAAGAAAACCAAGTCCACCAAAGAACAAGCCTTCTACAAGAAAGGATTCCAACTTAATAAAATGTTACCCAAGGGAATAATTACAAAAAAAAGGGGTAAACCCCAACTGGGGCCCATGGAGATTAACCTACTTCCCTTTAATTTGGCAGATGTAAACATAAGTAGAGAGAGAAAAAAGGGTAAATCCCCTTTAATTAGAGAAGAAAGTTCCGTAGGCTTACTACTTCTTGAGAGAGAAAAGAGTGAGTTCTGAGTTCATTGAATTGAGTTTCACTCAATTCCATCACATTGTTTTGTTCATAATTCATCAATAAAGTGGGGAATTACTTTCCTCAAGTTGAGATCTATCGTAGATTTGATTTATGTAGTTAATAGAGAAGAAAAATCCCTAATTATTACTATTTTTTTTAAAATAATGAAAAAGACCCGAGGTGCAGCTCTTTGAGCTTTGGGGCTTCACAAAAGGTGTGCGGTTGAGGCATACCTTATTTTGTGAGCCTTGCCTTGAAGGTGAGGCGCAGAGGGCTTTTTAAAATACTGGTCACACTTATTGAGCAAGAAAAGAAGCGAGGCTACTTCCCTATTGGATGAGTGACGGTGGAACCTGAAAGAAAAGACATTGAACTTCCTCCTAAACCAAAAAATTAGAGATTAAATGATTTTTAAGAGAGGACAAATGATGATAAAGATGAGGAAAGGTAGAGCAAAGGGGGCTATCCCCAACCTACTTATCTTCCCAGAAAAAACGTCTCCTTGGCATCTCCCACAATGCATCTTATTAAACTACCAATTCACCCAAAAGCTTAAGCTAGTGGTTGAAGGAAAATTTAATTATATATCACCAACACTCTCCCTCACTTGTGGACTTGAAATATTTGAAAGGCCCAACAAGTAGAAATCAATTTTAATTGGGGAGGAAACGAAAATGCAAGGGCCTGAACATAGGACCTTCCTGAACCAGTTGCTCTGATACCATATTAAACCACAAATTTACCCAAAAGCTTAAGCTAGTGGTCAAATGCAAATTTAATTATATATCACTAACACATCTAACCCAAGAAGACAAAGAAGGGAGCTCAAGCGAGATGTCCTTCCCAAGGAGTACGATGTGTGCCTTTAATCCCTTTAAGGAGCAGAGTCATGCTTGCTCACAAGGATCCTATGCCACAAAGATTCAGGTTCAAGGGCAAAACGTCAAAGCCACTTAGCCAACAAGGCTTTGTTACGCAGCCTTAAGTTACCAATCTCCAACCCTCCCTGATTCATAGGGCGCCAACAGCTTGCCAGCTAACCAAATGAGATCCCTTCCTTTTTCATCTATTCCTTCCCAAAGAAAATCTCTCATAAGCTTCTCGATACTTTTGCAGATAGAGCTAGGAGCTTTAAATAAGGAGAAGCAGTAAACAGGAATACCGCTAAGCATAGATCTACTAGAAGATAATCTACCACCCTTAGAGAAAAAAATTTTGTTCCAAGAAGCTAACTGTTCATTTGCTTCTACCTGGCATTAAAATACTCAAGTTCTGCCAATAGACCTTTTTCTTTCTCAAAATCAGGAAACCAAGACTTTTTACAGTATCTTTTATCCTTCTGAGTTTGGAACTAATAAAAAAACCAACTCAACCTTGTACCCTAAATCAGTAACTGAGGCTTTGATCTTTTCACAACATTCCTTTTGTAACAACCCACTATTGCAAAATCGAAAAGGAGGACCCCATAACAACAAGCTCTTTGGAATTTGGCATGATGTTCTATTTTTCTAATTGGAGAGCCAGCTTTAGTCGTTTTTTTTTTCCTGATCTACAAAGTTATTGAGTCAATGGGATTATGTAATTGGTAAGCTTTCTTATAATGTTAGGCTGCAAGTTTGATTTGTCTGGACTTGCTAGTTCGATATTCAGTTTTTTTTTTTTTTTTTTTCATTCTTGTACTTTTGTATTCTTAGGCTCCAAGCAGTTTGCAGGCAGCCTAGAGGGGGTTTTGTGTCTATTGTTCTTGTTTCTGTTCAAATATCGACAAAAGAGTTGTTCTTGTTTCTTATTAGGGGAAAAAAATGACAATGCCCTATGTTTTCTGTGCAAGTGTGATGCAGTTTTGAATAGTCATGAAGGACAATGTCATGGTATAAGAAGAATACTTCTAATCTTGATCTTTGTGGACAGATATGGTGCAGCGAAAGGTGGTCGTCATAGTAATTATGTTCCCGCTCCTGATGGATGCATTCCAATCCATTTAAATCTTGTGGTAAGTATATTCCAAACTTGTTGGTTTCCAAAAAACCAACTTGGTTAATAGCTTTCATGATGTTTTTTGATGGGAGTTATTGTCTTTATCGAGCGTGAATGAAATAGGTGGAAGTAAAAAATCTATATTTCAGAATTTTATCGATAGATCATGAATGAGATTGGGTTGTATCATGTATGCCCCCATTTAAGATTAGTTTTCCATTTTTGGATCGTTTCACTTGACTCCTCCATTTCCTCTTTGTCAATATCTATTAGGTTGCTTGTATGAACTTAAATGGAAAGTTATATCTTTAAACCCTCTTACAGAAGGGGAGGCACGCAAGGTTGCTTTCTTGCCACGGATTCTAGCAGAGTATATGTTTCTTTTCGGCCGTGTATGTAAATGTATCAATGCTTTGTTGCACAGTTTGGGATTATATACCAGATTTTTGCATGGCTTATTTGCAAGCTTTTTAATAACAGTACTTGATTTGACTATTTGTAATTTTTTTAAAGCTAAAGATTCCAAAGAAACGAATAGATTTAATGGTTTATTTTTTCTCAGGCTAGGCACGGAACTCGTGCTCCAACCAAAAAACGGATCAAAGAGTTAAACAACTTGGAGAAACAATTAGAGATGCTTTTAAGTGCTGCTGCAAGAAATGGTTTGTCCCTGCATAAAGTTCCTTCCTGGTTGAAGGGATGGAAATCTCCTTGGAGAGAAAAAGTGAATGGAGGAGAATTAATTCCTGAAGGAGAGCAAGAATTGTATGATCTTGGAATTAGAACAAGAAAATTGTTTCCTGACTTGTTGAGCGACGATTATCACCCCGACATATATACAATCAAAGCAACTCAGGTTATTTCTGCTTTTGGCATTGTTTGTGTTGTCGGTTGTGCACCTCTAATTTTTAACTGTGCAGATTGGAAGGATATAGACTTGGAGTTTTGTTTATTTGTTTTGAAAACAAACTGTCTGATTATGTTCGTTCCTCCGCAACTAATTAGATTCCTCGGGCATCAGCTAGTGCTGTGGCATTTGGTATGGGGCTATTCCGTGGGAGAGGAAGCCTTGGATTAGATCGTCATCGAGCTTTTTCTGTTGTTAGTGAGAGTCGTGCCAGTGATACAATGCTTAGGTTTTTCGACTGCTGTCAGAGATATGAGGTAATTATGAATTCTTAATATCTTCTACTTTCTGTGTTTTATATTTGCCAAAATTTGATTACATATTACTATTTTCATTAAAATCATACTTTTTGTTTACTGTTTTGCACTTTAATTATTGTTATGAGTTAGTTTGTGCATGGAAATTAGATCAAAAGTATTAAATATACGAATTCATTGGACATTGACATCAATCACACCCATCTCGTGTTCATCATTGTTCTTGAATTTTCTGAATGTTAAACTGTAATTCTAAAACATCAATCGATTTATTTCTACCAGTTTAACTTTCAGTAGGTCAACCATATGACAAAGTTATTTTCAACCCTTAAATCTGCCATGATTAATAAAGATGTTTAATGGTTGACTGGTTGCTGTCATTCATCACTACCAATTTTCAATGCAGGATTACAGGAAGAATCAGGAACCTGAAGTTGAGAAGCGTAGGGAACCTGTACTTGATGATATTTCTAAGTCACTCACTGAACGTTATGGTCTAAATTTTACCTGGCAACACATTTCATCTCTTTGGTTTCTCTGTAAGCAGGTGATTCTTCATTCATATACTTGGAATATGGCGAATGCCAAAATTCCGCATAAAATATTCAGGTTCAAGGATCTTGAGAATGGATTTTGAAATTTTACAGTCAATTGTTTTCTCTAGGGATATGCACTTGCAAAGTAGCAAGTTAACCTTTTAATTGGCGATGATATTGAAAACGGGATTTTTCTAAGAGAACGTTTATGATTCTAAGAGAACACCTCCTTCATCTGCAGGAGGCATCCTTATTGGACATAACAGATCAAGCTTGTGGAATGTTCAGCCTGTCTGAGGTACTTGAATTATTGGTCTTATTATTTGCTGTCATGTAAATGGTATGGTTTGGTTTTAAATGCATGTCACAGGTCCTTAGATTTCATGGAGCAAGTATAACTTATTACTTCTCATCTCATTATGTATATATCTAACTAAATTTAGCTTTTATTAAAAGGAACAGAAAATATGGATATGTATTTATGTATGCCTTCATACGAATCTGAAAAGGGTTGAATGGGAATTCAAGCTAGAAAATACATTTTCTTAAAAGAACAGAGGGTTTGAGAGAAATGAGATGGGCATTAATTTGATATATAATATATGTACATACTCACATACCTACATATAGGTTATAGCTTGAATAGTCAGTGAGCTCATATACGAGGTTAGCTTGTACCACAGAATATTTATCCATCAAGATGATCAGACTTTTGAGTTCTTTCTAATCCACTTATATAGAATCTTTCGTTGAATGATTTTGGTTCAGCTGAGCAAGCTGCAGTTAACATGTTTGGTAGGTTCTGCATTTCTTGATTCTCAGCTTTTGCTATCTGTGTTTTGTGTCCTCAGGTTGCTTTGTTGGAGTGGACGGATGATATGGAGGTGTTTATATTGAAGGGTTATGGCAATTCATTAAACTATAGAATGGGAGTTCCTTTGTTGCAAGATATTGTTCAATCCATGGAGAAAGCTATCACAGCCAAAGAAGGTACACACACTCATCTTAAAGGCCAATGCTGGAAGTTATATTTACTATGTTCCATTTTTCTATTGGCAGAAAAACAAGTTCCTGGCAGCTATGAGAAGGCAAGACTTCGTTTTGCTCATGCTGAAACTGTGCTTCCATTCACATGTTTGCTGGGGCTCTTCCTTGAAGAAGGACATCATGGTAAGCGTTTTTCTTTCTTTCTTTCTTTCTTTCTTTCTTTTTTTTTTTTTTTTTTTTTTTTTTTTGTATGAGTAAAGCACTTCTAAACTTATGCTTTCTCAATTTTGGATTTTATTTTTTTAACATCTGAATATAACAGGATTTAAACAAATACAAAGGGAGCAGTCTTTGCAACTTCCTCCACGGCCTCCAGCTACTAGAATCTGGAAGGGAAGTGATGTTGCACCTTTTGCTGGGAATAACATGCTGGTTCTCTATAGCTGCCCCGCCACTAACTTGTCGGACGAGTACTTTGTGCAAGTCTTGCATAATGAAGAACCCATAGCAATGCCGGTTAGCGCTCTCTTACCATTTCTTATTTATAGCTCATGTTTGGGCTTCCATAAAAATTTCTTTCTTACGTCTTTTAATGCATAAAATTTCTAAAACAAAGGCTATATTTTTTTTGTTTTTTGTTTCTTTTCTAAATAAGCTTTAGAAACACCATTCGACCCTTTCAAGTTTCTATATGAAGAAAAATTATTGTTTTTAGAATTTGACAAAGAATTTAAATGGTTTTTTAAGAAATGTGAAAACAATAATAAGGAAACTATGGGTAAACAAATATCGATTTCAACAACAAAAAACTAAAAGTTAAACCATTATCTAATGAGATCTTAATGTTATTTTGTTTGAAGATCTACATTTATAGACGATTCTAAGGTTGGAATTTCATCTGAAAGTTTTCTGTTCTTCACATTTCTTGCTGATTTTGTAGCTTGTTCATATTACAAGTTATGAATGAACTTATGATGAATTTGTTAGAGCACTAGTTATAGGTTTATATGTAAGATTAGTATGGTATTAGTAAGGGGTATTATTATGGGTAAATCTGTAGTAGTGTCTTGGTTATAAATAAGGGGAGTTATGGACCTTAGAGGGTTTGTGGATGGTTTTGGTGGGAGTTTCCATCGGGAGAAAGATAGCCCTCTCGAAAGACTACTGGTGTATTGTAACCGTGCTTGATATTGCAATATACTACTGTCTTTGTGCTCTTCTTGATTTCTTTGAGTTTTTTCGTGAGTTGGGATCCTAACAGAATATTTTTGTACTTGGATGAATAGGGTTGTGATGGTTTGAATTTTTGCCCCTTCCAAATGTTCAAGGTAGAATTTACCGCTTCATTTTGAATTACACAGAAGTATTTTTATTAGTACAGAATGATAATATCTTAAAATTGTGATCTTTTGTAGGATAAAATTGTGGCCCCTCATCTTGAACATGATTTCGACACGTTGTGCACAGTGAATGTGGAAGAACCAACACCACCCACACCACCGCCTGAACCGAGTAAGTTATCACTGTTCCGTTGGCTCTTCTCGCTGTGGAATGACGATAAACAACCTCGAACAGATGAATTGTAATCAAACAATGCTTACTAACTAATTCAATTTTTGTTGTTGACATTGTTTCCTTAATGTGTATATCATCAACAGGCACAGACGCTGAGTTCACGTTTTATTACATGTAGGGAGGAGTGACTCGTTTTTCGTGCTAATTTCGAGTTTTGTTTTAACCTCATCTTGAGCTTCCATTGTTTCACACTTCTCTTTCATTTGAAGATTTAGACTCAAATACAATATTGGCTTTTGCTTGATGTTTTACTACAAAAGGCAAGTGCTTCTTTCTTTTTTTTTTTTTTTTTTTTTGTATTAGTTCAAGAT TTGTCAAATAAACTATTTAGTTTCTTCCCATATAATTTCTCGGTGCTTTCTTGTTTTATTGATGTTTGTATTCATGCTTGGATGAACGGCAGCAAGGAAGAATATTTTCATGGCGATTTTTCTTCTCATTTTCTTATTCCTATTCACTAATTTGAGAGCCGAAGAGCGACCATTCGATGTAAAGCAACATCTGTCCACGGTTACCAGATATGGTGCAGCGAAAGGTGGTCGTCATAGTAATTATGTTCCCGCTCCTGATGGATGCATTCCAATCCATTTAAATCTTGTGGCTAGGCACGGAACTCGTGCTCCAACCAAAAAACGGATCAAAGAGTTAAACAACTTGGAGAAACAATTAGAGATGCTTTTAAGTGCTGCTGCAAGAAATGGTTTGTCCCTGCATAAAGTTCCTTCCTGGTTGAAGGGATGGAAATCTCCTTGGAGAGAAAAAGTGAATGGAGGAGAATTAATTCCTGAAGGAGAGCAAGAATTGTATGATCTTGGAATTAGAACAAGAAAATTGTTTCCTGACTTGTTGAGCGACGATTATCACCCCGACATATATACAATCAAAGCAACTCAGATTCCTCGGGCATCAGCTAGTGCTGTGGCATTTGGTATGGGGCTATTCCGTGGGAGAGGAAGCCTTGGATTAGATCGTCATCGAGCTTTTTCTGTTGTTAGTGAGAGTCGTGCCAGTGATACAATGCTTAGGTTTTTCGACTGCTGTCAGAGATATGAGGATTACAGGAAGAATCAGGAACCTGAAGTTGAGAAGCGTAGGGAACCTGTACTTGATGATATTTCTAAGTCACTCACTGAACGTTATGGTCTAAATTTTACCTGGCAACACATTTCATCTCTTTGGTTTCTCTGTAAGCAGGAGGCATCCTTATTGGACATAACAGATCAAGCTTGTGGAATGTTCAGCCTGTCTGAGGTTGCTTTGTTGGAGTGGACGGATGATATGGAGGTGTTTATATTGAAGGGTTATGGCAATTCATTAAACTATAGAATGGGAGTTCCTTTGTTGCAAGATATTGTTCAATCCATGGAGAAAGCTATCACAGCCAAAGAAGAAAAACAAGTTCCTGGCAGCTATGAGAAGGCAAGACTTCGTTTTGCTCATGCTGAAACTGTGCTTCCATTCACATGTTTGCTGGGGCTCTTCCTTGAAGAAGGACATCATGGATTTAAACAAATACAAAGGGAGCAGTCTTTGCAACTTCCTCCACGGCCTCCAGCTACTAGAATCTGGAAGGGAAGTGATGTTGCACCTTTTGCTGGGAATAACATGCTGGTTCTCTATAGCTGCCCCGCCACTAACTTGTCGGACGAGTACTTTGTGCAAGTCTTGCATAATGAAGAACCCATAGCAATGCCGGGTTGTGATGGTTTGAATTTTTGCCCCTTCCAAATGTTCAAGGATAAAATTGTGGCCCCTCATCTTGAACATGATTTCGACACGTTGTGCACAGTGAATGTGGAAGAACCAACACCACCCACACCACCGCCTGAACCGAGTAAGTTATCACTGTTCCGTTGGCTCTTCTCGCTGTGGAATGACGATAAACAACCTCGAACAGATGAATTGTAATCAAACAATGCTTACTAACTAATTCAATTTTTGTTGTTGACATTGTTTCCTTAATGTGTATATCATCAACAGGCACAGACGCTGAGTTCACGTTTTATTACATGTAGGGAGGAGTGACTCGTTTTTCGTGCTAATTTCGAGTTTTGTTTTAACCTCATCTTGAGCTTCCATTGTTTCACACTTCTCTTTCATTTGAAGATTTAGACTCAAATACAATATTGGCTTTTGCTTGATGTTTTACTACAAAAGGCAAGTGCTTCTTTCTTTTTTTTTTTTTTTTTTTTTGTATTAGTTCAAGAT ATGGCGATTTTTCTTCTCATTTTCTTATTCCTATTCACTAATTTGAGAGCCGAAGAGCGACCATTCGATGTAAAGCAACATCTGTCCACGGTTACCAGATATGGTGCAGCGAAAGGTGGTCGTCATAGTAATTATGTTCCCGCTCCTGATGGATGCATTCCAATCCATTTAAATCTTGTGGCTAGGCACGGAACTCGTGCTCCAACCAAAAAACGGATCAAAGAGTTAAACAACTTGGAGAAACAATTAGAGATGCTTTTAAGTGCTGCTGCAAGAAATGGTTTGTCCCTGCATAAAGTTCCTTCCTGGTTGAAGGGATGGAAATCTCCTTGGAGAGAAAAAGTGAATGGAGGAGAATTAATTCCTGAAGGAGAGCAAGAATTGTATGATCTTGGAATTAGAACAAGAAAATTGTTTCCTGACTTGTTGAGCGACGATTATCACCCCGACATATATACAATCAAAGCAACTCAGATTCCTCGGGCATCAGCTAGTGCTGTGGCATTTGGTATGGGGCTATTCCGTGGGAGAGGAAGCCTTGGATTAGATCGTCATCGAGCTTTTTCTGTTGTTAGTGAGAGTCGTGCCAGTGATACAATGCTTAGGTTTTTCGACTGCTGTCAGAGATATGAGGATTACAGGAAGAATCAGGAACCTGAAGTTGAGAAGCGTAGGGAACCTGTACTTGATGATATTTCTAAGTCACTCACTGAACGTTATGGTCTAAATTTTACCTGGCAACACATTTCATCTCTTTGGTTTCTCTGTAAGCAGGAGGCATCCTTATTGGACATAACAGATCAAGCTTGTGGAATGTTCAGCCTGTCTGAGGTTGCTTTGTTGGAGTGGACGGATGATATGGAGGTGTTTATATTGAAGGGTTATGGCAATTCATTAAACTATAGAATGGGAGTTCCTTTGTTGCAAGATATTGTTCAATCCATGGAGAAAGCTATCACAGCCAAAGAAGAAAAACAAGTTCCTGGCAGCTATGAGAAGGCAAGACTTCGTTTTGCTCATGCTGAAACTGTGCTTCCATTCACATGTTTGCTGGGGCTCTTCCTTGAAGAAGGACATCATGGATTTAAACAAATACAAAGGGAGCAGTCTTTGCAACTTCCTCCACGGCCTCCAGCTACTAGAATCTGGAAGGGAAGTGATGTTGCACCTTTTGCTGGGAATAACATGCTGGTTCTCTATAGCTGCCCCGCCACTAACTTGTCGGACGAGTACTTTGTGCAAGTCTTGCATAATGAAGAACCCATAGCAATGCCGGGTTGTGATGGTTTGAATTTTTGCCCCTTCCAAATGTTCAAGGATAAAATTGTGGCCCCTCATCTTGAACATGATTTCGACACGTTGTGCACAGTGAATGTGGAAGAACCAACACCACCCACACCACCGCCTGAACCGAGTAAGTTATCACTGTTCCGTTGGCTCTTCTCGCTGTGGAATGACGATAAACAACCTCGAACAGATGAATTGTAA MAIFLLIFLFLFTNLRAEERPFDVKQHLSTVTRYGAAKGGRHSNYVPAPDGCIPIHLNLVARHGTRAPTKKRIKELNNLEKQLEMLLSAAARNGLSLHKVPSWLKGWKSPWREKVNGGELIPEGEQELYDLGIRTRKLFPDLLSDDYHPDIYTIKATQIPRASASAVAFGMGLFRGRGSLGLDRHRAFSVVSESRASDTMLRFFDCCQRYEDYRKNQEPEVEKRREPVLDDISKSLTERYGLNFTWQHISSLWFLCKQEASLLDITDQACGMFSLSEVALLEWTDDMEVFILKGYGNSLNYRMGVPLLQDIVQSMEKAITAKEEKQVPGSYEKARLRFAHAETVLPFTCLLGLFLEEGHHGFKQIQREQSLQLPPRPPATRIWKGSDVAPFAGNNMLVLYSCPATNLSDEYFVQVLHNEEPIAMPGCDGLNFCPFQMFKDKIVAPHLEHDFDTLCTVNVEEPTPPTPPPEPSKLSLFRWLFSLWNDDKQPRTDEL Homology
BLAST of Cmc10g0279841 vs. NCBI nr
Match: XP_008454817.1 (PREDICTED: multiple inositol polyphosphate phosphatase 1-like isoform X1 [Cucumis melo] >XP_008454818.1 PREDICTED: multiple inositol polyphosphate phosphatase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 1027.3 bits (2655), Expect = 4.3e-296 Identity = 495/495 (100.00%), Postives = 495/495 (100.00%), Query Frame = 0
BLAST of Cmc10g0279841 vs. NCBI nr
Match: XP_008454819.1 (PREDICTED: multiple inositol polyphosphate phosphatase 1-like isoform X2 [Cucumis melo]) HSP 1 Score: 977.6 bits (2526), Expect = 3.9e-281 Identity = 473/481 (98.34%), Postives = 476/481 (98.96%), Query Frame = 0
BLAST of Cmc10g0279841 vs. NCBI nr
Match: KAA0035877.1 (multiple inositol polyphosphate phosphatase 1-like isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 954.1 bits (2465), Expect = 4.6e-274 Identity = 463/491 (94.30%), Postives = 465/491 (94.70%), Query Frame = 0
BLAST of Cmc10g0279841 vs. NCBI nr
Match: XP_011655004.2 (multiple inositol polyphosphate phosphatase 1 isoform X1 [Cucumis sativus]) HSP 1 Score: 949.9 bits (2454), Expect = 8.7e-273 Identity = 462/495 (93.33%), Postives = 473/495 (95.56%), Query Frame = 0
BLAST of Cmc10g0279841 vs. NCBI nr
Match: XP_011655005.2 (multiple inositol polyphosphate phosphatase 1 isoform X2 [Cucumis sativus] >KAE8648032.1 hypothetical protein Csa_005879 [Cucumis sativus]) HSP 1 Score: 902.9 bits (2332), Expect = 1.2e-258 Identity = 438/464 (94.40%), Postives = 448/464 (96.55%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy Swiss-Prot
Match: Q54ND5 (Multiple inositol polyphosphate phosphatase 1 OS=Dictyostelium discoideum OX=44689 GN=mipp1 PE=1 SV=1) HSP 1 Score: 189.9 bits (481), Expect = 6.9e-47 Identity = 131/462 (28.35%), Postives = 211/462 (45.67%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy Swiss-Prot
Match: Q9Z2L6 (Multiple inositol polyphosphate phosphatase 1 OS=Mus musculus OX=10090 GN=Minpp1 PE=1 SV=3) HSP 1 Score: 135.6 bits (340), Expect = 1.6e-30 Identity = 103/389 (26.48%), Postives = 181/389 (46.53%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy Swiss-Prot
Match: O35217 (Multiple inositol polyphosphate phosphatase 1 OS=Rattus norvegicus OX=10116 GN=Minpp1 PE=1 SV=3) HSP 1 Score: 135.2 bits (339), Expect = 2.0e-30 Identity = 101/388 (26.03%), Postives = 182/388 (46.91%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy Swiss-Prot
Match: Q9UNW1 (Multiple inositol polyphosphate phosphatase 1 OS=Homo sapiens OX=9606 GN=MINPP1 PE=1 SV=1) HSP 1 Score: 132.9 bits (333), Expect = 1.0e-29 Identity = 105/393 (26.72%), Postives = 181/393 (46.06%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy Swiss-Prot
Match: Q5R890 (Multiple inositol polyphosphate phosphatase 1 OS=Pongo abelii OX=9601 GN=MINPP1 PE=2 SV=1) HSP 1 Score: 129.0 bits (323), Expect = 1.5e-28 Identity = 102/389 (26.22%), Postives = 177/389 (45.50%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy TrEMBL
Match: A0A1S3BZJ9 (multiple inositol polyphosphate phosphatase 1-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103495130 PE=4 SV=1) HSP 1 Score: 1027.3 bits (2655), Expect = 2.1e-296 Identity = 495/495 (100.00%), Postives = 495/495 (100.00%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy TrEMBL
Match: A0A1S3BZG1 (multiple inositol polyphosphate phosphatase 1-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103495130 PE=4 SV=1) HSP 1 Score: 977.6 bits (2526), Expect = 1.9e-281 Identity = 473/481 (98.34%), Postives = 476/481 (98.96%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy TrEMBL
Match: A0A5A7T2S9 (Multiple inositol polyphosphate phosphatase 1-like isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold56G00410 PE=4 SV=1) HSP 1 Score: 954.1 bits (2465), Expect = 2.2e-274 Identity = 463/491 (94.30%), Postives = 465/491 (94.70%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy TrEMBL
Match: A0A0A0KM02 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G211580 PE=4 SV=1) HSP 1 Score: 951.0 bits (2457), Expect = 1.9e-273 Identity = 463/495 (93.54%), Postives = 473/495 (95.56%), Query Frame = 0
BLAST of Cmc10g0279841 vs. ExPASy TrEMBL
Match: A0A5D3E4X3 (Multiple inositol polyphosphate phosphatase 1-like isoform X1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold344G00930 PE=4 SV=1) HSP 1 Score: 888.6 bits (2295), Expect = 1.2e-254 Identity = 439/491 (89.41%), Postives = 441/491 (89.82%), Query Frame = 0
BLAST of Cmc10g0279841 vs. TAIR 10
Match: AT1G09870.1 (histidine acid phosphatase family protein ) HSP 1 Score: 596.3 bits (1536), Expect = 2.3e-170 Identity = 296/484 (61.16%), Postives = 369/484 (76.24%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Charmono) v1.1
Date Performed: 2022-10-13
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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