PI0008649 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GGTCAAACTAGTAAAGGTATTTAATACGAAGGGTCCAGATTTAAAACTACACAAAACATAAAAAACGCGTACATTGTTTTTATAACGCCAATTTTTCCATCTCTCCGTCTAACCTCGTGACTCACTTCCCCCTTTCCTCTTCCCGCTCGAACAATTAAAACCAAACAGAGCAACTAAAAAAATTCTCCCTCGCTGTCGCCGCCGTCAGTTTCTCCTCCCTTTCCGGCGTCTCTATATCCAAACACCGAACCAGCTTCCCTGAGATTGCGAAACATCGTTGCCTCTAATTGAAAAAAGGAGAAAAAAATCCAGACGTGAGAGAGAAACAGAGGATAACGTCTGATCGTCCGATCGACTGATCGATGGATCGATGCTGAGGTTGAGGTGTAGTGGATGAGAGATTTGGAGAAACGGAACGAAGACGATGGGTTTCAACGGAGTATTGAGGATTTCAGCACTGCTTTTTGTGCTGGTGTTTGCGACGGCGGTTGTTGAAGAATCAGTAGCGGAGTATACGAAGATGAAAACGAAAACGATAAAGCATAGAAACGCTTATGCATCGATGATGTATATGGGAACGCCTAGGGATTATGAGTTCTATGTAGCGACGAGAGTGTTGATTAGATCGCTTGTGAAGCTTAACGTGGATGCTGATCTCGTTGTCATTGCGTCTCGCGATGTGCCCGTCCGTTGGGTTCGTGCTCTGTAAGATTCCGAATCTCTCTCTCTTTCTCTCTTCTGTATCTTTCTCTCTCTTCTTCTGTTTTTGAATTTTCATTTTCTTTTTTCTGTTTTCTGAAGCGATTTTCGGTTTTCTTTTTCCGTATGCTTTTCTTTTGCTTGCGCTGTTGGCTGAAATTGACGTTATTAGTAATAATTTTCCATTTCGGATTTGACCTTACGGCGGCGGGTCCGGCGGAGGGAGGGCCTGTTAGAGCTTAAGAAGTAGGGACGAATTGTGGTGTTTCTGTTTAATCTTGTCCGTTAGATTGAATCAGTAGTCGTTGAACTAACGGTGTGATTGGTGGAAAGTTGTTTTTAACTTTCGTAGTCTTTTTAACACCGGAACATTTCTCTCTCTCGTTTCCGGCTTCTTCTCCGGTCGACTTGGATTGGACGGCCGATGGACGGCGGCCGTCCGCCGGCCTATTTGATTCTTTTTCGGCTTTAGTCTTGACATACGAATACAAGAGTCCTCTTGGATCGTCTTGGTTTTGACATCTATAAATTCAAAATATTATTAAAATTATAAGTTTCTTTATATTTTATTTGAGTTTTTAGATAGGAGATTGAACCACGTAACTTTGTCGCAGATCTATTCAGCTATGCTTTGTTGGCAATTTGAAGTTTTCTTTTTCTCTGATGTAAACCATCAACATCTAAATGATAAGTTTTGTGGTTTTTTAACTTCTAAAATTTTAAATTTATTTCTTCAACTTTTGGAACTCAATAAATGTATTTGATAACTTATTTAATTTTTAAAAAAACAAAGAGAAAATTATTTTTCAAATTGGGCAGGAAAACTAAAAATGAAAAAAACAAATTTGTTTATAAATTGGTTACCAAACAATTTAAAAACAGAATTTAAAAAACAGAAAAAGAAAACAAAAAGTCGAATGGTTACCAAAAGAATTTTGGAATATTCATTACATTTTAAAGATGTATTAGAGTTGTGAATTGTGAATTTAATTTTCTATTCAATTCAAGATTTTTGTTAGTGGACTAAAATATTGATACATTCCACAACTACACTCATTTTTCAAATAACTCCTAAAATTTAAGTCAACAAATAGATATAAAGTTTTTTTCTCTAATTGAAACATTGTATTAAATTTGAATGTAAAGTTTTGTCTCATCTCTAATTTAAGTTTTTTTTCGTTGAATTTGTAATTTAAGAGTTATTAAACTATTTTCAACCATTTTAAAATTTACTTTTTTTTTAATATTTTACTCCATCTAAACTTTAATAAAATCGACATGTAGAATCATTTATATATATATATATATATATATTTCATGAGTATTTATAAAAAAATATTGAATATTATGTTGTGGTAGTCCTGTTCTTCCTTTTTAAAAGTCGCCATAGTAAGGTTTGGGAATAGGATATAGCCGGCCAGTAAGGAAAATGACGTGGCCGTATAAAAAGATGACTCGTGGATAATCTAGAATATGAAAAAGGATCATGCATTGGCGTTTAAGATCTTTATTTTTATCTTTTTATGCTTGAATTTGGACGGATCGATAGGGTTTCCCGATGCCGAGGGTACTAAAAAGGGGTCTGAGCGACTTTATCCAATTGTCGCTCAGCTTGAAATAATAATACAGAATACAGATAAGCTTTAGAGCATTTTCTTAAATACCCCTCTCTTTGTCTCTTCTTTCAAGGATTTATAGCCCACTCTTGGGAGAGAGATGTAAAATAAGAGGGGAAAAAAATGATTGAAAGGATGGGTATGATATGATTGGATACAAATTCAAAATTTTATTTCTACTTTAGTTTTAATTATCTGATTTTAGTTTTGAGTTTCGGTAAATTTTATATTCACTGTTTACCGTTAGTTTATTCTTGATTTTCTTTTATTAATTAACATTTTTACCATTTAAATTTTGAAAACATATTCACATATTTTATTCCAAAATTACATAAATTAGAATTGAATCATTGAAAATACGGAGATTAATTATTATTTTAATACAAATTTATATGAAAATCATTATGTGTTGATCTAAGTGTAAAATAAGAGATACATTCAATCCACAGTGGCCTGTATTGATATTGAAATTTATAGATTTTAATTTATAATGTAAGCATACATTTTTTGTCTCTCTTTGGGCTTTCGAAAGTCAACTATGACTTTTGAGATAATAAAATTCTTTTAAGATAATTGTTTTTAGTAAGCTAGCTAGACTTCCCTCTAGACATATCAAGCCCTTATATTGAGTGCAGCTTTATTTGAGTAAAACCTATGATATTTATGTCAAGATTTAAGGTTTTGGATATAGGATTAAAATTTATTTATTAATTATTATTTTTAATTTTTTTTATCTTTTCATATAAATTTATGTAGAATTATGTTGTACAAATACTATCAGTTGAACTATGCTCATGTTAACTATAAATACTATTTTTAAAAATTTAGATTTACGTAGATTCTTTATCTTTTAGATTTTAAAATATACGACTAACATCCATCAATGAGTCAAACGTCTTTCGAAGCTTTGAAAATTTTTAAATTTGTAAGTAGAAGTTTGATATTTTCTTTAATTTATTTATTTATTGGTTTGTATTAGGTGTTTAAAATCAAGATTAGATTGTTTAAAAAAGAAGGGGAAATAATATAGGATAAAGTCAGCTAGATTTCGAAAAGTTGATTTTAAAGTGTGACAAGGCATTTAAAGAAAGAAAGCATATACCAATGTGGTGGGATATGGACTTAGTAGGGTTCGCAGAAGCTTCTTGCCTTGTTTTCCATCGCCTAATGGCTTGGTTTTATAATCATTACTTTTTTGTCATCTTAGTGGAACAAATCATAATTACCCTTTTAGCTAATGTTTGAATTTTATTTTAATTAATTGTAAATTTTTCTATTGGCTACTTGATAAATATCTTGATTTATGGTAGAACTTGGCACGTGGGTTCCAACCACCTTGCTAATATGCATCTACTTCTTAGATAAACAGGGAAACTAGGAAGTTGAATGTATTACTAAAAAAGTTAGTGAAGAAGGAGTCAATATGGTTGGCATAAATGATGAGTTCTTCCAACCTTAAGATATAAAATAAACATAGATCACGCAATTCAAATAAGATAAATCTTAAGGATATGAAAGTTATTATCTATATTTTTCTTATTGATCACTGAATCAAATTAATTCTAGAACTAAACACACTTAGCTCGAAACAATTCTGTCTTTAGTGATCTTTAGAAAAATTTCCTATAAAATATATGAGTGAAGATAAAGTATGCTAAAAAAATCGTATTGATTTGTGGGAATAGTTTAAGACAAATTATAAAGATAGTTTATGACACAGAAAAAAATTGTTTGAAAGCCGCCCCTAGTTTCTGATCTAAAAGTAGGAGATTTTTGAACTAGATGACGTGGACTGTTTTTTGAAGGACCACTATGAGTGATCTTGGTGACCATTAGTTTGTTGGCGCGCATTAATATAAGATGGTATGATTTGAGCTGCTTTTTATTTTTGTATATCATTGGCTTTCTCTCCTATTTTCTTTTAACAATAATGAACAGATTTAGAATAGTTTTTAAAGTAATCACCAAGTTGTTTTGATCATTTCTTTATTTTTTTTTTTTAAAAACCCTTTGTTTGTCATTTGACTTGCAACTATCCGTCACTTTTTAGTTTGTGCAGCAACTGATATTTGATTAATCATGACTATTGATTCCCATATATTTTATTATTTCAATCATCTATTTAATATATATATATTTGTAATATCTGTATCAACTTATATGCACCTCCGCTAATCTTATGGACTAAACTCTACAATATTTATTTGAGTGTCAAGAAAACTTATAAAAAATTAATTTTTCGGTAGGTGACCAAACCAATAATCTCTTTGTTATTGAAATTGTCTCTATTTTACAACTAGGTCAATTCATAATGGTTATATATATATAATCAATAAATTTTCTTCATTCTCTATTTTTGTCACCATTTTTATTTGGTGGGAAGATGGATGGTTATTGGTGGGAAAAAAGGACTAGGAAGGAAAATGTTGATGGGGTCGTTTTGTCCAGAATTTAGAACAATGACTTTTTGAAACATTTAGGCCAACAACCTCTTTTTCTTTCTCTTTCTCTGTCTTTCTTATTTATTTATTAGTTATTACTATTGTTGTGTTTTTCAAATATTAATTAATTTGTTTGGCCAATGTTCAGAGTTTTGGCTTGTGGTGAGGATTGAGGAAGTTCCTATCCACATGGGTTTGGAGGGAACAACTTTTTTTCTCTCTCTCTCTTATTTGACTTTTTCAACCATGGAAAGTTGTCGGGTTTCGTGTAATCTAAATTCTGAAATTAAGTATCTAATAAATAGAATAGTCTCTAGAGTCTACCTAGGAGAGATTAGGGGACAAGTTTATGATTCTTCTGTTCCAACTTTGAAATTATGGATTTTCCTTATTTAAAAAGAATTAAATTTTTATTTCTTAGTCGAATTGAAAACACAGACAACATTTTAAAAACCACTTTTTCTTTTTCAAAATTTTGTTTGATTTTTTTAACATCAGCGAAAAGTGGATGGCAAAACGTAGAAACTTATTAAGAGTATTGATTCATGACACTTATGAAAATAGTTAAAACACTTTTTTTAGATTCATTAGGTTATTGAGAATATTAGGATGTTAAATATATTGTTAAATATGTGCTGTTTATTTGATGATGAGTATTGATTCGTTTATTTCTGCTGCATAATTTTCCTCGAATAAGTGTGTGAAGTTTTCCAACTCTTTTAACTTATAGCTTTGTTAATCGTGTGTAGGAAATTTTGTGGGTAGAAAAATGAAATTTGTTATGATGAGTATTGGATAGATGAATGAGTTTTCATGATAGTCGTTTGCAGAATTTTTTTTATAGCTTTGTAAGTTGAATTATAATTGAAGTCGCTAGTGCAGGGAAGAAGAAGATGGAGCAAAAGTGGTGAGCGTTGATAACGTAAACAACCCATACAGGAACCAATCGAACTTCGATGGAAGGTTCAAGCTAACATTGAACAAACTATACGCATGGAGCTTAACAGACTACGACAGAGTAGTGATGTTAGATTCCGACAACCTCTTCCTCCAAAAGACCGACGAGCTCTTCCAATGCGGTCAGTTTTGTGCAGTCTTCATCAACCCTTGCGTCTTCCACACCGGCCTCTTCGTTCTTCAGGTAAGTCTCAACCGTTATAAAGATATAAACTCTCTCAAATAAATCTAGATACAATGCATGTAATATAGTTGTGTTCCGTTGAGATATATAATTAAATTATCTTCATCCACTATTTAAGTTTTTGGGTCAATTGGTAATTTAGGATGATATTAGAATAGGTGGTCCAGGAAGGCCCAATTAAGCTTTTAGGTCCACTAGTGATTTAAGATGTTTGTGTCATGTTCATTGTACGAACTAAATATTATTTTTCTAAAAGAAATAGTTGATTTTGATTTGAATATGGATGTGGCAGCCATCGAAGAGAGTATTTGATGACATGATGAATGAGGTGAGAGTAGGGAGAGAGAACCCAGATGGTGCAGATCAAGGGTTCATTGGGAGCTACTTCCCTGATTTGCTCAACCAGCCTATGTTCTATCCTCCTTCTAATGGCTCAATTCTTGATGGCAACTTTAGACTCCCCTTGGGCTACCAAATGGATGCTACTTACTATTGTAAGTCCTTAACTTCTTAGACCATATGGGTTGTTGAAACAAAGCCATAAACTATTACAATTTCCTATGCTTATAAGTTTTGAGGAAGTTATATTTTTCCAACTAAATAGGAATAAGCTCAACTTTTACTTCTTTGGATTATACTAAGCTAAACAGAAGCACACAAATTTTTAATATGTATATTAAAATCGCAGGAAAATCGACATTTTTAGTATTTGATTTTGAAGAACACGTATGTTTGGTTTCTGAGTTTTTGAAACATACATTTTTAGTACTTGGCTTCTATTAGAATATATTTTGTTTTCAAAGTTTTAAAATATACAAATTTATTGTTCAAATTTTTAAGAATAAGTTTTTAAAATATAATTATATGAAATTTGAATAATTATAAAAAAATGTTTCGATAATCTTTTAACCTATTTTTTAAAAATGTATACAGAAAATATAAAAGCAAATGCATCTATTAATAGAAAATTGGGAGGGACAAGTGAACGATGAAAGAGTAAAAGAGTAATTTAGTTGAAAAGTATATTATGGGCATGAATTTGATGAATGATTATTGTAAAACAGATTTAAGATTGCGATGGAGCATCCCTTGTGGTCCAAATAGTGTGATAACATTTCCAGGGGCACCATGGTTGAAGCCATGGTATTGGTGGTCATGGCCTATACTACCTCTCGGCCTCCAATGGCATGAACAACGTCGCCACACTCTCGGGTAATCAAATTCTCTCCCTTCTCATCCAATTAAAATTCATTTTTTATATTACATTTTAACCTTGAATTTATTCTTCACATTTTAAATAGTTTTTCATTAATATATATATAGTGAAAAAATATCACTTTTTTATCTTTAGATTTTGTATCTGATTTTTATCCATTTTAATATTTTAAAATTTTACATATTTAATTTTCATTTCATCTTGTGATTTTAAAATTTTATATTTTTTACTTGGTTCTTTAAAATGTTTTAAAGTTTTTCCTTTGAGTTTTTTCTATTGATTTTAGCTCTAAGTTAATCACTTTTTAAAATGAATTATGATAGGGAAATTTCTAATTAATTTAAATATCAATTGAAATTCGGTGAATATTTGAATTAATTAAGGACAAAAACCAATTAAAAGTATAAACTTTGAGTGACAACACTAAATGAAAATAAAACACAAAATTCAAAGATAAAAATGTGGATATTGTTTAGTATATTTTCTCTTAATCTTTTATAATACTTGACATTTTCCAATCTAATATAATTAAATTTTTAGTCAAACTTAAAAGAAGAAAACAAATTTTTTGAAGAGTTATTTTCAAATATAGAAAAATAAACAAAAATTATACAAATGTGGAATAAATTTACATGCTCACTGATCAAGTCTTATTGTTTAAAATTATTATCATCTTTTAAAACTATTTTATTATTTAAAATTTGACTTCGATTTTTAAAGAAGTTAGTAAAAAAAAAAAAAGACATTAAAATGATGACTAACAAATGACTCAAATAATTACCGTAATTTGAAAGAAATTGTCATACATAGCAAAAAGTTGAAAAACTTAAAGTATAAAAAATGGGATAGATTGATTTTGTTCTAATAACATTATTATTATTATTATTTTGGCTATATTTAAAAATGATTTAAAAACATATATTATATATTTGGATATTTGGAATAAAATTGAAAAGCTAAAATGTGAGGAATCCTCCTAATACAGGTACGGAGCAGAAATGCCATTAGTTCTAATCCAAATCCTACTCTATTTAGGCATTCTCGCCATGATCCATCTCGCCCGCCCTAATCTCACAAAACTCTCTCACCGCCGATCAGAAAAACCCACCGCCTCTTTCCACTCTGCCTTAAAACTCGCTGCCTTCTGGTCCATCCTCGCCGCCTACACCCTTCCCTTCTTCATTATCCCTACCACCATCCACCCTCTCCTCGGCTGGGGCCTCTACTTACTCGGCTCCTCCACCTTCTCCTTCCTCGCCTCCACCGTCTTCCTCCTCCCTCTACTCCCCCTCCTCCTCCCCTCCATCGGAATCCTCGGCGCCCTTCTCGTCATGGCCTTCCCCTTCTACTCTGACGGCGTCGTCCGTGGACTCTCCATCTTCCTCTACGCCTTCTGCGCTGCGCCGGTTGTTTGGTCGGCTGTGGTGAGGACGGCGGTGGCGATTCAGTCGTCGGCGTTCTCCGTAGTGAAATCCGGTGAGACTTTGCCGTCTTCTAGGTTTAATAAATGGTGTTGAGGGGTATTTTTTTTAAGATATTTATTTTTGGGGGATAGAATTGGAAATTGGAAAAGGTTTGGTTTGGTGTAAGAAAAATTTGTGTTTATACTCAATTTTTATACAGGGAAAGAGTATATAGTTTTTTGTTTCGTTTTTATTGTGATGGAATTTTGTTTATAAATTATTAATCAAATTATATTTTTTCTAGAAATGATTTCAATTTTGTTTTCTTTCAACATGTTTGATTTGAATGATTTGAATTTGAGTTACATTTTTAAAAGTCTTTGATTAGGGTCCACTCGATAGACCGAAATCTAATCAATGGTTTGATTGAAGAAGAGGGTTCTGTCAGTGTCTGACTGACAAAAACCAATCGAACAAATTTTCAAAAAGTATATCAAAAAATAAAACTGACCTACTTTTATTACTCGACGGTTGAGGATAATTTAAACATTTATCAAATCGACCAAAATCAGTTTGATGGTGGTTTGGTAAGAAAAACTCTAATTGATTGTTGCAC GGTCAAACTAGTAAAGGTATTTAATACGAAGGGTCCAGATTTAAAACTACACAAAACATAAAAAACGCGTACATTGTTTTTATAACGCCAATTTTTCCATCTCTCCGTCTAACCTCGTGACTCACTTCCCCCTTTCCTCTTCCCGCTCGAACAATTAAAACCAAACAGAGCAACTAAAAAAATTCTCCCTCGCTGTCGCCGCCGTCAGTTTCTCCTCCCTTTCCGGCGTCTCTATATCCAAACACCGAACCAGCTTCCCTGAGATTGCGAAACATCGTTGCCTCTAATTGAAAAAAGGAGAAAAAAATCCAGACGTGAGAGAGAAACAGAGGATAACGTCTGATCGTCCGATCGACTGATCGATGGATCGATGCTGAGGTTGAGGTGTAGTGGATGAGAGATTTGGAGAAACGGAACGAAGACGATGGGTTTCAACGGAGTATTGAGGATTTCAGCACTGCTTTTTGTGCTGGTGTTTGCGACGGCGGTTGTTGAAGAATCAGTAGCGGAGTATACGAAGATGAAAACGAAAACGATAAAGCATAGAAACGCTTATGCATCGATGATGTATATGGGAACGCCTAGGGATTATGAGTTCTATGTAGCGACGAGAGTGTTGATTAGATCGCTTGTGAAGCTTAACGTGGATGCTGATCTCGTTGTCATTGCGTCTCGCGATGTGCCCGTCCGTTGGGTTCGTGCTCTGGAAGAAGAAGATGGAGCAAAAGTGGTGAGCGTTGATAACGTAAACAACCCATACAGGAACCAATCGAACTTCGATGGAAGGTTCAAGCTAACATTGAACAAACTATACGCATGGAGCTTAACAGACTACGACAGAGTAGTGATGTTAGATTCCGACAACCTCTTCCTCCAAAAGACCGACGAGCTCTTCCAATGCGGTCAGTTTTGTGCAGTCTTCATCAACCCTTGCGTCTTCCACACCGGCCTCTTCGTTCTTCAGCCATCGAAGAGAGTATTTGATGACATGATGAATGAGGTGAGAGTAGGGAGAGAGAACCCAGATGGTGCAGATCAAGGGTTCATTGGGAGCTACTTCCCTGATTTGCTCAACCAGCCTATGTTCTATCCTCCTTCTAATGGCTCAATTCTTGATGGCAACTTTAGACTCCCCTTGGGCTACCAAATGGATGCTACTTACTATTATTTAAGATTGCGATGGAGCATCCCTTGTGGTCCAAATAGTGTGATAACATTTCCAGGGGCACCATGGTTGAAGCCATGGTATTGGTGGTCATGGCCTATACTACCTCTCGGCCTCCAATGGCATGAACAACGTCGCCACACTCTCGGGTACGGAGCAGAAATGCCATTAGTTCTAATCCAAATCCTACTCTATTTAGGCATTCTCGCCATGATCCATCTCGCCCGCCCTAATCTCACAAAACTCTCTCACCGCCGATCAGAAAAACCCACCGCCTCTTTCCACTCTGCCTTAAAACTCGCTGCCTTCTGGTCCATCCTCGCCGCCTACACCCTTCCCTTCTTCATTATCCCTACCACCATCCACCCTCTCCTCGGCTGGGGCCTCTACTTACTCGGCTCCTCCACCTTCTCCTTCCTCGCCTCCACCGTCTTCCTCCTCCCTCTACTCCCCCTCCTCCTCCCCTCCATCGGAATCCTCGGCGCCCTTCTCGTCATGGCCTTCCCCTTCTACTCTGACGGCGTCGTCCGTGGACTCTCCATCTTCCTCTACGCCTTCTGCGCTGCGCCGGTTGTTTGGTCGGCTGTGGTGAGGACGGCGGTGGCGATTCAGTCGTCGGCGTTCTCCGTAGTGAAATCCGGTGAGACTTTGCCGTCTTCTAGGTTTAATAAATGGTGTTGAGGGGTATTTTTTTTAAGATATTTATTTTTGGGGGATAGAATTGGAAATTGGAAAAGGTTTGGTTTGGTGTAAGAAAAATTTGTGTTTATACTCAATTTTTATACAGGGAAAGAGTATATAGTTTTTTGTTTCGTTTTTATTGTGATGGAATTTTGTTTATAAATTATTAATCAAATTATATTTTTTCTAGAAATGATTTCAATTTTGTTTTCTTTCAACATGTTTGATTTGAATGATTTGAATTTGAGTTACATTTTTAAAAGTCTTTGATTAGGGTCCACTCGATAGACCGAAATCTAATCAATGGTTTGATTGAAGAAGAGGGTTCTGTCAGTGTCTGACTGACAAAAACCAATCGAACAAATTTTCAAAAAGTATATCAAAAAATAAAACTGACCTACTTTTATTACTCGACGGTTGAGGATAATTTAAACATTTATCAAATCGACCAAAATCAGTTTGATGGTGGTTTGGTAAGAAAAACTCTAATTGATTGTTGCAC ATGGGTTTCAACGGAGTATTGAGGATTTCAGCACTGCTTTTTGTGCTGGTGTTTGCGACGGCGGTTGTTGAAGAATCAGTAGCGGAGTATACGAAGATGAAAACGAAAACGATAAAGCATAGAAACGCTTATGCATCGATGATGTATATGGGAACGCCTAGGGATTATGAGTTCTATGTAGCGACGAGAGTGTTGATTAGATCGCTTGTGAAGCTTAACGTGGATGCTGATCTCGTTGTCATTGCGTCTCGCGATGTGCCCGTCCGTTGGGTTCGTGCTCTGGAAGAAGAAGATGGAGCAAAAGTGGTGAGCGTTGATAACGTAAACAACCCATACAGGAACCAATCGAACTTCGATGGAAGGTTCAAGCTAACATTGAACAAACTATACGCATGGAGCTTAACAGACTACGACAGAGTAGTGATGTTAGATTCCGACAACCTCTTCCTCCAAAAGACCGACGAGCTCTTCCAATGCGGTCAGTTTTGTGCAGTCTTCATCAACCCTTGCGTCTTCCACACCGGCCTCTTCGTTCTTCAGCCATCGAAGAGAGTATTTGATGACATGATGAATGAGGTGAGAGTAGGGAGAGAGAACCCAGATGGTGCAGATCAAGGGTTCATTGGGAGCTACTTCCCTGATTTGCTCAACCAGCCTATGTTCTATCCTCCTTCTAATGGCTCAATTCTTGATGGCAACTTTAGACTCCCCTTGGGCTACCAAATGGATGCTACTTACTATTATTTAAGATTGCGATGGAGCATCCCTTGTGGTCCAAATAGTGTGATAACATTTCCAGGGGCACCATGGTTGAAGCCATGGTATTGGTGGTCATGGCCTATACTACCTCTCGGCCTCCAATGGCATGAACAACGTCGCCACACTCTCGGGTACGGAGCAGAAATGCCATTAGTTCTAATCCAAATCCTACTCTATTTAGGCATTCTCGCCATGATCCATCTCGCCCGCCCTAATCTCACAAAACTCTCTCACCGCCGATCAGAAAAACCCACCGCCTCTTTCCACTCTGCCTTAAAACTCGCTGCCTTCTGGTCCATCCTCGCCGCCTACACCCTTCCCTTCTTCATTATCCCTACCACCATCCACCCTCTCCTCGGCTGGGGCCTCTACTTACTCGGCTCCTCCACCTTCTCCTTCCTCGCCTCCACCGTCTTCCTCCTCCCTCTACTCCCCCTCCTCCTCCCCTCCATCGGAATCCTCGGCGCCCTTCTCGTCATGGCCTTCCCCTTCTACTCTGACGGCGTCGTCCGTGGACTCTCCATCTTCCTCTACGCCTTCTGCGCTGCGCCGGTTGTTTGGTCGGCTGTGGTGAGGACGGCGGTGGCGATTCAGTCGTCGGCGTTCTCCGTAGTGAAATCCGGTGAGACTTTGCCGTCTTCTAGGTTTAATAAATGGTGTTGA MGFNGVLRISALLFVLVFATAVVEESVAEYTKMKTKTIKHRNAYASMMYMGTPRDYEFYVATRVLIRSLVKLNVDADLVVIASRDVPVRWVRALEEEDGAKVVSVDNVNNPYRNQSNFDGRFKLTLNKLYAWSLTDYDRVVMLDSDNLFLQKTDELFQCGQFCAVFINPCVFHTGLFVLQPSKRVFDDMMNEVRVGRENPDGADQGFIGSYFPDLLNQPMFYPPSNGSILDGNFRLPLGYQMDATYYYLRLRWSIPCGPNSVITFPGAPWLKPWYWWSWPILPLGLQWHEQRRHTLGYGAEMPLVLIQILLYLGILAMIHLARPNLTKLSHRRSEKPTASFHSALKLAAFWSILAAYTLPFFIIPTTIHPLLGWGLYLLGSSTFSFLASTVFLLPLLPLLLPSIGILGALLVMAFPFYSDGVVRGLSIFLYAFCAAPVVWSAVVRTAVAIQSSAFSVVKSGETLPSSRFNKWC Homology
BLAST of PI0008649 vs. ExPASy Swiss-Prot
Match: Q8VZP6 (Putative glucuronosyltransferase PGSIP8 OS=Arabidopsis thaliana OX=3702 GN=PGSIP8 PE=2 SV=1) HSP 1 Score: 624.8 bits (1610), Expect = 8.1e-178 Identity = 291/408 (71.32%), Postives = 347/408 (85.05%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy Swiss-Prot
Match: F4JMI5 (Putative glucuronosyltransferase PGSIP7 OS=Arabidopsis thaliana OX=3702 GN=PGSIP7 PE=3 SV=1) HSP 1 Score: 607.1 bits (1564), Expect = 1.7e-172 Identity = 287/414 (69.32%), Postives = 338/414 (81.64%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy Swiss-Prot
Match: Q8GWB7 (Inositol phosphorylceramide glucuronosyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=IPUT1 PE=1 SV=1) HSP 1 Score: 120.6 bits (301), Expect = 4.9e-26 Identity = 89/293 (30.38%), Postives = 147/293 (50.17%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy Swiss-Prot
Match: Q8GWW4 (UDP-glucuronate:xylan alpha-glucuronosyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=GUX2 PE=2 SV=1) HSP 1 Score: 79.0 bits (193), Expect = 1.6e-13 Identity = 51/190 (26.84%), Postives = 101/190 (53.16%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy Swiss-Prot
Match: F4HZC3 (Putative UDP-glucuronate:xylan alpha-glucuronosyltransferase 5 OS=Arabidopsis thaliana OX=3702 GN=GUX5 PE=2 SV=1) HSP 1 Score: 77.4 bits (189), Expect = 4.8e-13 Identity = 38/115 (33.04%), Postives = 68/115 (59.13%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy TrEMBL
Match: A0A1S3BLA3 (putative glucuronosyltransferase PGSIP8 OS=Cucumis melo OX=3656 GN=LOC103490886 PE=4 SV=1) HSP 1 Score: 920.6 bits (2378), Expect = 2.6e-264 Identity = 458/473 (96.83%), Postives = 461/473 (97.46%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy TrEMBL
Match: A0A5A7TDP1 (Putative glucuronosyltransferase PGSIP8 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold477G00620 PE=4 SV=1) HSP 1 Score: 918.7 bits (2373), Expect = 1.0e-263 Identity = 458/473 (96.83%), Postives = 460/473 (97.25%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy TrEMBL
Match: A0A6J1KZQ0 (putative glucuronosyltransferase PGSIP8 OS=Cucurbita maxima OX=3661 GN=LOC111500305 PE=4 SV=1) HSP 1 Score: 840.1 bits (2169), Expect = 4.5e-240 Identity = 416/477 (87.21%), Postives = 441/477 (92.45%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy TrEMBL
Match: A0A6J1E970 (putative glucuronosyltransferase PGSIP8 OS=Cucurbita moschata OX=3662 GN=LOC111431047 PE=4 SV=1) HSP 1 Score: 838.6 bits (2165), Expect = 1.3e-239 Identity = 415/477 (87.00%), Postives = 440/477 (92.24%), Query Frame = 0
BLAST of PI0008649 vs. ExPASy TrEMBL
Match: A0A6J1KZ14 (putative glucuronosyltransferase PGSIP8 OS=Cucurbita maxima OX=3661 GN=LOC111498393 PE=4 SV=1) HSP 1 Score: 811.2 bits (2094), Expect = 2.2e-231 Identity = 405/477 (84.91%), Postives = 431/477 (90.36%), Query Frame = 0
BLAST of PI0008649 vs. NCBI nr
Match: XP_008448849.1 (PREDICTED: putative glucuronosyltransferase PGSIP8 [Cucumis melo]) HSP 1 Score: 920.6 bits (2378), Expect = 5.4e-264 Identity = 458/473 (96.83%), Postives = 461/473 (97.46%), Query Frame = 0
BLAST of PI0008649 vs. NCBI nr
Match: KAA0041088.1 (putative glucuronosyltransferase PGSIP8 [Cucumis melo var. makuwa]) HSP 1 Score: 918.7 bits (2373), Expect = 2.1e-263 Identity = 458/473 (96.83%), Postives = 460/473 (97.25%), Query Frame = 0
BLAST of PI0008649 vs. NCBI nr
Match: XP_004147207.2 (putative glucuronosyltransferase PGSIP8 [Cucumis sativus] >KAE8650059.1 hypothetical protein Csa_009486 [Cucumis sativus]) HSP 1 Score: 918.3 bits (2372), Expect = 2.7e-263 Identity = 457/473 (96.62%), Postives = 460/473 (97.25%), Query Frame = 0
BLAST of PI0008649 vs. NCBI nr
Match: XP_038905290.1 (putative glucuronosyltransferase PGSIP8 [Benincasa hispida]) HSP 1 Score: 879.4 bits (2271), Expect = 1.4e-251 Identity = 438/478 (91.63%), Postives = 450/478 (94.14%), Query Frame = 0
BLAST of PI0008649 vs. NCBI nr
Match: XP_023552292.1 (putative glucuronosyltransferase PGSIP8 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 840.1 bits (2169), Expect = 9.3e-240 Identity = 415/477 (87.00%), Postives = 442/477 (92.66%), Query Frame = 0
BLAST of PI0008649 vs. TAIR 10
Match: AT2G35710.1 (Nucleotide-diphospho-sugar transferases superfamily protein ) HSP 1 Score: 624.8 bits (1610), Expect = 5.7e-179 Identity = 291/408 (71.32%), Postives = 347/408 (85.05%), Query Frame = 0
BLAST of PI0008649 vs. TAIR 10
Match: AT4G16600.1 (Nucleotide-diphospho-sugar transferases superfamily protein ) HSP 1 Score: 607.1 bits (1564), Expect = 1.2e-173 Identity = 287/414 (69.32%), Postives = 338/414 (81.64%), Query Frame = 0
BLAST of PI0008649 vs. TAIR 10
Match: AT2G35710.2 (Nucleotide-diphospho-sugar transferases superfamily protein ) HSP 1 Score: 531.6 bits (1368), Expect = 6.6e-151 Identity = 244/346 (70.52%), Postives = 291/346 (84.10%), Query Frame = 0
BLAST of PI0008649 vs. TAIR 10
Match: AT5G18480.1 (plant glycogenin-like starch initiation protein 6 ) HSP 1 Score: 120.6 bits (301), Expect = 3.5e-27 Identity = 89/293 (30.38%), Postives = 147/293 (50.17%), Query Frame = 0
BLAST of PI0008649 vs. TAIR 10
Match: AT2G35710.3 (Nucleotide-diphospho-sugar transferases superfamily protein ) HSP 1 Score: 97.8 bits (242), Expect = 2.4e-20 Identity = 47/62 (75.81%), Postives = 56/62 (90.32%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25
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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