
PI0021875 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGAATATCATAGCTAATATCCTCATTGTTGCTCTATCACTCCACATAATTTGGCTGCTATTTCTTAGCAAACCATGCAGTGCTTTGGCACCTAAAACTTCTCGATCATTTCTCGCCATTCTCATATTCGGTGATTCTACGGTAGATACTGGAAATAACAACTTCATCCCCACTATTTTCAAGGCTAATTATTGGCCATACGACAAAGATTTCCCTGGTAATGTTGCCACTGGAAGATTTAGTGATGGAAAACTCATTCCTGACAAGGTAGCATCTAAGTTGAGGATAAAGGAGCTTGTTCCTCCATTTTTGGATCCTGAACTCACAGATGATGACGTGAAAACAGGGGTCAGTTTTGCATCCGCCGGTACGGGAGTCGATGATCTAACAGCTGCTATATCTAAAGTCATTCCTGCGATGAAACAAATTGATATGTTCAAGAACTACATTCAAAGGCTTCAAAGAATTGTGGGTGTGGATGAAAGTAAGAGGATTATTGGCAGTGCTTTGGTTGTCCTTAGTGTAGGAACCAATGACTTAACCTTCAATTTCTACGACATTCCAACCAGGCAGTTGCAATTCAATATTAGCGGTTACCAAGATTTTCTACAGAATAGGCTACAAAGCTTGATCAAGGTAAATGATATGCAATATCCACTCATTAATCTTCTTGACCGATATTTAGTACTTATAACAAATACTCCTATTCCTAAACTTTGTTTTTGCTTTGAAAAATACCCTTGATTTTTTCAAAAGTTGCAACGTTAGACTTGGCCTCGCATTAACATGTCAGAACTAGAAATCCTTTAGAATGTGGAGACCATTAGGATCCAAAAATAATGTGGCAATGACTTAAAACGAAAATTTAGATTGTTACACCATTTCAAATCTCGATTTTCATTAGGTAGTTTTGTAAACTTTATGAAAGTTAAAAAATAATATTGTAATTTTGAAAGAGTAAAGGTGAGAGTATTATTTACAATTTAGCCTTGACATGATAATCACACTCTTTCAATTATAAGTTCCACGTCATAAGTTTTGTAAACTTTAGTTCTATTCTTGAAAAGTTTTTGTTATTCTATGAAACTTTTCAACTACTTGCTACTTGAAATGAACACTTTTTAACTTTGTTTTACGATGAACAGGAAATTTACCAACTTGGATGTCGCACTATAGTGGTCGCAGGGCTCCCTCCAATTGGTTGTCTTCCCATTCAAGAGACCATATCATTCCTAATTCCCCTAAATCGAAGATGTTTGGAAGATCAAAACAAAGATTTTGAAACCTACAATCAGAAGCTTTCAAAGTTGTTAAGCAATTTACAATCCATCTCCCAGGAAGCACAATTTTGTATGCTGACATTTACACCCCTCTCATGAACATGATCAATAACCCTAAAAAAATATGGTAAGCCAGTAAAAATATTTAAGGGAAAAAGTTATGAAAAGAAAATCAATTTAATTAACCTGAAAATTTGATTGGGACATTTCGTCAAACAGGTTTTGAACAGACGTACATAGGTTGTTGTGAAACTGGATTGGCTGAAGCAGGACCTCTATGTAACAAAGTAACTCCAACGTGTGAAGATCCATCAAAATTTATGTTCTGGGATAGTATTCATCCAAGTGAAGCAACTTACAAATTCATCACAGAGTCACTTCTCAACCAATTTTCCGATCGGTTGAATTGAATCAGAAGTGAAGGCTTTTGAACTTAATTCGAGGCTCAAAAGGCTTAAAAATCTTTATTTAATTTGTTCTTCATTGTATTCGCAATATTTGTGATACAATATTTGTTTTAAGTTACTCATAAAGAGAGAACTCACTCTATAGATTCAAAGCTTGAAGTTCAAATTGAATGGCCAACTATTTTTGAAGTTGCATGTGTTTTTCTAATGACGTGAAATAAGATGGACATTAACATGTGAAAAATAGTTATTTTAGTGAAAAAGAGTCCAAAAGTTGCGAAACTGGATATTCTCTATGCAACAATAGTTAGGGACTTGTTATGTGATCCCAATCATATCTTATCAAATCACAAATTACTATTAATCTTTTCTTTCAATTATTTTAGGTTAAATTATAAAAGTATGTGAAACTTTATATTAAAAATACTTTTAAACCTTCAAAAACAGTTTGAAACTATTCTTATTGTTAGTTTTGAATGAAAACTGTTTAAGTTTTGTTTTTAAAATGTTTCTAAAAAGTTTAAAAAGTACCTTTAAACTTAAAAGGAAAAAAAAAATACTCTCGCAACTAGTATATGAACAAAAACTTTAGTGAAAAGTGACCATTTACCAAAATGAGTATGGTCATCAAGAGTTAAAGAGGATTGAATCTCTATCACCTCTAATTGAATCACAACAATAGGAAAAAATGTGAACGAGATATAGAGATTGTATGAGCTTGAAAGTTGCAAGTTGTTTAGCATTTGCTAGTACTCTTGTGGAAGTGGTATTATTTCTGATTTATTAGTAATAAATATCAAATCGCTTGAAGTTGTGCCCAATGTTTTCGACTCAAAATATAACACGGACATTTATAACTATTTATAACCTACAATCAACTACTGTAAATACTAGTTCAAAAGTGAAGTCTCTTTTGTTGCGTAGTGTTTATTATTTTTCATTTGTCCACTCCCTCCTTATTTCAACATTTAAAAGAAAGATAAAACGTTATCTAAGTATAGTCTAATGAGTAAATTATCACTTCTATCAAAATTTTGCAACTAAGTGTTTTTTTAAAATAATAATAATACATAAATATTAGTGACAAAAACAATAAGTTAAGCTTGTTACATCATTACCTTCATTGAACCCATATTTTGTAAACCCAAAAATAAAATAATAATAAAACTCATCTTACGTTAAATTGCTCCATTGATTAAAAATTTGAAATTTTAGCACGAAGTTAAAAAGACATATGCTCTACCAGCCCATAAGTTATATATTTGAATTCTCACCATACTAACTTATAAAACAATAATGATAATGTTGTTGTGAATTAAAAGTAAAAAATTCATTGATGTGGTAATATTATCAAGTGTTAATTCGAACATAGCGGAGAGACATATATAATCAATAAATATTAGGTCCAAGGTTCACTTACCATATTATCGATCATCCATAACATTACATCCACTTAGCCAATTAAAGCTTAAACAATTGAAAAAATATATATATTCTTGATAAAATCAAGAACAAAAAAAAAAAAAAGAGAAAAACCCCAATTACAAGAGAAAACTTTGGTTTTCCTATTTATTTGATATTGCATTCAATCATATAAATAGAAAAACGGGGGGGGGGGGGGGGGGGGGGGGAACTCTCACAATATACACCCACATCGGATTAATACCTCAGATATAATATTCTAGAAATGGGCCAAGGAGAATAATGGACCAAACAATGGGCCAAAATACAAAATAGGAACTCATAAAATGTAGACTAATGGGCTATCTTAACACCCCCTGCAAACCTATATCTGTTGCATCAAACACAGTCAATTTGTGTTTGAGTTTGTGGAAATTTGTGGCAGATAAAGGTTTGGTGAGGATATATGCAACTTGTTCTGAGGCTGGAAGATGCTGAACAATAAGTTTCTGATTTTTGACAAGGTCCCGAACAAAGTATATATTGAGTTCAACATGCTTTGTCTTGGAATGCATTATTGGGTTTGCACTCAAGTGTACTGCACTTAAGTTATCACACCACATAATAGGAGGATAAGGTATGTTAATACATAAATCATGTAAAAGAGAGTGAATCCATACCAACTCAGTTGCAAGAAGAGCAAGGCATCTATATTCAGCTTCTATACTGGAGCGTGAAATGATGGACTGCGTTTTGAAGCCCCAAGCAACAATATTATCATCAAAATAAACATAGAAACCTGAAGTTGATTTTCGATCATTTGGGTCAGATGCCCAATCAGCATCAGCAAAGCCTACTAAGTTCAAATTATGGGATTTTCGTAACCATAGTCCATAAGACATAGCACCTTTCAAATATCTAAGAATTCCTTTGACTAACTGCCAGTGAGTAATTTTTGGTGAATGCATAAACTGACATGTTTTGTTAACACAATAGGATATTTCAGGATGAGTAAGAGTAACATATTGTAAAGCACCAACAGTACTTCTATATAAGTAAGTGCCAGAGAAATTTTCACCTTGTTAAGCAGATAAAATAGGACCACTTACCATTGGAGTGGCAATTGATTTAGCCTCAAACATCTTTGCTTTGTGCAGTAAATCAGATATGTATTTAGTCTGAGATAAAAACAGTCCACCTTTGTCTGGATATGACACCTCCACACCCAAAAAGTAACTAAGAGGGCCAAAATCTTTGAGAGCAAATTTGATGTTTAACACACTAATAAGAGTGTCTATTTCTTTGGTAGAGTTACCCATAATGATAAGATCATCAACATAAACCAGTATATAGCAACAAGATTTATCAGTTAGGTGAAATAGTAAGGAGGGGTCTACTTTTGAAGTTTTAAAAAACCAAGTGAGTTCAAGCTAGTACTCAACTTTTCATACCAAGCTCTAGGAGCTTGTTTTAGTCCATATAAAGCTTTTTTTAGGTGACATACCAATGGTTGATCACTTTGCACTTCGAATCCAAAGGGTTGATCCATATAGTCATTTTCCATAAGATTTCCATGAAGGAAAGCATTGTTAACATCAAGTTGTCTTATAGACCACCCTTTCATAATAGCAATAGTTAAAAGTATACGTATAGTAACTGGTTTAACTACTGGGCTAAATGTTTCATTGTAATCAATGTTTGGTGTTTGATGGAATCCTTTAGCAACTACACGTGCTTTATATTTAGCAATTGATCCATCAGAGTTCCTTTTGATTTTAAAGACCCACTTGCATCCAACTATTTCTAATTAGTGAGTTTTGATGTTAATACTCAAGTATTATTCTGTTGTAAGGCTTTAAATTCATCCTCCATAGCTTTCTTCTAGTGAGGATGTGATAGTGCTTCTTTTTCACTATTTGGTTCATGTTGAGCATAATCAACTAAATATACTTTGGATTTAAAAATTCCATTCTTACCTCAGGTTATCATTGGATGAGTTGGAGCTGTTGGATGGTGATGACTAGGATCAGCAGGAGCAGCAGACTGTGAATTTGTGGGTATATCCTGAGAGCTGGTTTCTGCTTGATTTTCTTTAGTTTCAGTTTCAGTGAATGAGCTACCTTGGGTACCTGTCTCTAAAGGATACACAATAGTAGGATTTAGATGATCAGTAGTATCAGAAAATGTTTCAGTGAATTGCCTTTCTACACTGAGAAGTGTGTTTATAGAATGTCATTGGACTACTGATTGTGTTTTTGGTTGAGAGTGTTTAAGGAATGAGGCATATGGGAAGGAGTTTTCATCAAATAAGACATGTCTGGATATGTAAATTTTGCCATTAGAGGATAGACATTTGTACCCTTTGTGTGATGTACTATATCCAATGAATGTACATAGTTGGGATCTGAGGGAAAGTTTGTGGGATTGGAAGGGTCTTAGATATGGGTAACATTTACATCCAAATATCCTTAGTGAAGGATAGTTATGTTTTCGACCGAATAGCTTCTCCAAGGGACTGTGATTTTGTTAGATAGGAATGAAGAGTCTATTGATGAGATAGATATTTGTGGAAAAGGCTTCATCCCAGAAATTTAAGAGTAGGGTGGCTTGAGATAGAAGGGTGAGTCTTATGTCCATGATATGTCTGTGTTTTCTTTCTACTATTCCGTTTTGTTGTGAGGTATGGGGACAAGTTATTCTATGTTCAATTCCATTTTGTTTAAGAAAGGGAATAAAGAGTTTGAACTCACTGCCTCCATCAGTTTGTAGAGACAGGATGAACTTATTTAGAGGTTTTGCAACTTGTGTTTTGAATTTTTGCAAAGCAGAGAATCAGTCGGATTTGGAGTTCAAAAAATAAATCCAAATGTATCTACTGTATGCATCTACAAAACTAATATAGTATCTAAAGTCGTTTCTGGAAGTATTATAGGCAGGTCCCCATAGGTCATATTCAACAAGTTGTAATGGATAATTATAACAAGTATTAGAGTTATGAAAAGGTAAGGTATGGTGTTTGCCTAATGCACAAACTTCACAGAAAATCAATTTATTATTGATAGTAGGATGTATAATATTTTTCATAGCATGTTTAATAACAGAGATATGGGGATGACCTAGTCTTTTATGCCAAATGTCAATAGAAACAGTAGAAAAATAGTTAAAGCTTCAGGTCTTGGAATGGATGGTTGGATGTATGGATGGTTGGATGTTTGGATGTTAAACTTGTATAGTCCATTGCTAGGAACTCCTTGGAGAAGAATTCAACTAGATTCCTGATCCTTCACATAACAGACAGATATTGGAGTGAAATTCAAAGAATACATTGTTGTCTTTAGCAAATTAAGATACACTAATTAGATTCTTTGTTATAGATGGAATATAAAGCAAGTTAATGAGTGTTAGAATTTTTTATGGATTTGTTTTAGAATCAAAGGTTAAGGAATCATAGTGTAGTATAGGCAAACCTGAAACATTTGTTGAATATATTTGATTTCCTCCTCCATACTCAGATCCAATAGATAGGTTGCCCATGGAATATGTGAGGTGGTTGGTAGCTCCCGAATTAGGGTACCAATTGCTGTCAAGGTTCAGGTCTGGTGAAGCAAGAATGACATTCATCTGTGAATGAACAGAGTTATTATTAAATTGTGGAGGTATGGGATTTTGAGGAAAACCTGGTGGTGGATTGGATCTTGGTACATATCGAAAATAGCATTGATCTGCCATACGACCAAACTTAGTACATATTTGGCATGGGGCTTGTTTCATCCAATTCTACCTCCTATGTTTGTTTTTCCAGCTTGACCTCCTCTTTGGTTGTATTGATTGTATTGTTGATTAGGGTTGGATGAATTTTGGTTTGATCTTCTAGAGGAATCTCCTTCTTTTTCTGGTGCTTGGATAGTAACATTTATAGTAGGAAGTGATGATTCAGTGGTGATTTTATTTTCATTGTGAGCTTCTTGAGTAAGTAATAGAGAAGTAACCTCTTGGATAGAGGGAGAGTCAGTTCTAGCAGAGATTACAGAAATCATAGATTGAAATTCAGATCCAAGTCCAACAAGTATATATAAAATGTGATCATCTGTAGATATTGGTTTATTAATTGAAACAAGTAAATCAACGCATTGTTGAATTTTCATAAAGTATTCTTTGAGATCCATACCTCATTTCTTCAGATTATGGAGTATGTTTTTTTATTTGCATTGTTTAAGCTAAGTATCGAGAAGAGTAGGTACCTTGGAGTGTTTGCCAAATTTCTTTGGCAGAGGTACAATGTAGCATTTGATTTAAGATTTCTTCATTCATCGAGCCCAGGAGCCAGGATGAGATAAAACGATCTTATCGTTTTCATTTTGCGTATTCAAGGTTGGGGTTTTGTGTGGTATTGGTGGGTGGTGTGGTTGAGGTTTGTATTGGAAGGAGTTTGGGTGGTGGTTCGGGATAAAAGTTTCGAGGTCATACGCTTCTAGGGCAGTAAGTATTTGGAATTTCCACAGTAGGAAATTCTCATCTCCTAGTTTGACAACAGAGATTTTGTTGCCAGAGGCGAAGTTTTGTGAGGTTGATGAAGAGGAGTTATCCGTGGAATTGGTTCTGAGAAGCGACGAGGTGGTTGTCATCGTGAAGAAGATGATTGTGCCGTTCGAAGAACAAAAAAAAACCCTAGTATTTAGCGGTGGAGGTTAATTGCATTGTGAGATTGGTATGCTCTGATACCATGATAAAATCAAGAACAAAGAAGACCTATTTATTTGATATTGCATTCAATCATATAAATAGGGGGGGGGAACTCTCACAATACCACACCCACACTGGATTAATACCTCAGATATAATATTGTAGAATAATGGGCCAAAATACAAAATAGGAACTCATAAAATACAGACTAATGGGCTATCTTAACAATTCTCGATTAAAAAATTTGAGATTTCAAACCATATATCTTGAACCAAAGAGAGGTTAGCTCAACCGTAATTGACCTTCTTCCTTTCAAAAGTTCGATTCTCCAACACCTCACTTGTACCTAAAAAAAATATGAATCTTTAAACCGAAAAAAAAAATTGTCCACGTTGGATGAAATATTTAGAGCAGGGCAAGATTAACAAATAAAATTAAATCAGTAGTGAAAAAAAAACATAAAATCCAAATAAACATAATTGCTTGAACCAATAACCACGTTCAAACATATGGCTTTCATTGGCTTTAAAATCCCATTAATGGTTAGGAGTTATACAATAACTCAGCCTTTTAGTAAAAGAATTATCATTCGTTTCAACCGTTTCTTTGTAAAAACCATAATGATCTTAGTCTTATATCCTTCAAACACGATAAATACATCAACCAATGTGCAAGCATGAATATATCAAACACAAGAACTTGAAGAACACCAACAATGACAAGAGCAACTTACCACATTGCTGCTCTATCAGTACTCCCTCCACGTGATTTGGCTGCTATTTTTTAGCAAACCATGCATTGCTTTAGAGCCAAAAATTACTCGATCTTTTCTCTCCATTCTCATATTTGGTGATTCCATAGTCGATACTGGGAATAACAACTTCATTTCCACAATTTTTAAGGCCAATTACTCTCCATATGGCACAGATTTTCCTGGCCATGTTGCTACTAGAAGGTTCGGCGATGGAAAATTCATTCCTGATATGGTGGCCTCTAAAGTTAGGGATAAAGGAGCTTGTTCCTCCATTTTTAGATCCTAAATTATCAGACGACGATGTGAAATCGGAGTTAGTTTTGCATCTGCTGGCTCGGGCTTCGACGAACTCACTGCCTCTGTATCCAATGTAATTCCTGTGATGAAGCAAATTGATATGTTCAAGAATTACACTCAAAGGCTTCAAAGGATTGTAGGCTTGGATGAAAGTAGGAAGATCCTTAATAGTGCTTTGGTTGTTATTAGTGCAGGAACCAATGACGTAAACATAAATTTCTATGACCTTCCCATAAGGCAGCTACGGTATAATATTAGTGGTTACCAAGATTTTCTATAGAATAGACTACAAAGCTTGATCAAGGTAAGTTAATATGCACTCTCTATAGTTCTAAATCAATATTTGGCATAATAATGAAGAACCAAGAAGCACGAACATGGACACGTTGGGGATACACTCTTTTTTATTGTTACTTTTTTAGGATGTATATAAATTTAGCATAAAATATTAAATGCACTTCACTTAAAAAAAACCATAAAATGTCAAGTTAAAAAAACCATAAAATGTCAAGTTAAAAAAACCATAAAATGTCAAGTTAATTAATAATTAGAGGAGATGAAATGTTTAGGGTTTCTAACTTAATTTTCCTTTTTCTTTTTTTTGGTTAAAAGAAACGGGGTTCCCTTAAATTTAACATATTATTGATTTGAGCTTTAAACTTGAGCCCTACATGAAAAGTTGGCCTATCCTAAATATGTCCCACATGTTTGAAATTAAAAAGAAATTTAAAAAAAAAAAAAAAAAAAGAATAATAGGACATAGAAATTTGCTTGTTGGACATGTACCCAAAGCATGTCCAGACATGTATGTGTTTGACATGAACACTTTGCCTAAAATGAAGTGTTTGTGCTTCATAGACAAAGAAAAAGGTTAGATTGTTAGTTTAAACATGTTTCTTTATGATTGTACCACCAAACCCCTGAATGTAGAACACTTTTTAACTCATCTTTTGTTCCAAAATTGGATAGGAAATTTACCAACTTGGATGTCGCACTATAGTGGTAGCTGGGCTTCCTCCAGTTGGTTGCCTTCCAATTCAAGAGAGCATAGCATTTAAAAAACCCCAAGATCGAAAATGTTTGGAAGAACAAAACTCAGATTCCAAAGCCTACAATCAGAAGCTTGTAAATCTGCCGAGAATTTACAGCCACAGCTTCCTGGAAGCACAATTCTATATGCTGACATTTACACTCCCCTCATCGACATGGTCAATAATCCTCACAATTACGGTAAGCCAATAAATCATTTAAGGAAAACCAGGTACTGAATCACATTTTTACCTGAATTTTCTCATTGGAACATTTTGTCGAACAGGTTTTGAGCACATTAACGTAGGCTGTTGTGGTATTGGGATGGTAGAAGCAGGACCATTATGTAACAATAAAACAAGTACAATATGTGAAAACCCATCAAAGTTTATGTTTTGGGATAACATTCATCCCACTGAAGCAGCTTACAAGTTCATCACAAAATCGCTTCTCAAGCAATTTGCTGATCGTCTTAATTAG ATGAATATCATAGCTAATATCCTCATTGTTGCTCTATCACTCCACATAATTTGGCTGCTATTTCTTAGCAAACCATGCAGTGCTTTGGCACCTAAAACTTCTCGATCATTTCTCGCCATTCTCATATTCGGTGATTCTACGGTAGATACTGGAAATAACAACTTCATCCCCACTATTTTCAAGGCTAATTATTGGCCATACGACAAAGATTTCCCTGGTAATGTTGCCACTGGAAGATTTAGTGATGGAAAACTCATTCCTGACAAGGTAGCATCTAAGTTGAGGATAAAGGAGCTTGTTCCTCCATTTTTGGATCCTGAACTCACAGATGATGACGTGAAAACAGGGGTCAGTTTTGCATCCGCCGGTACGGGAGTCGATGATCTAACAGCTGCTATATCTAAAGTCATTCCTGCGATGAAACAAATTGATATGTTCAAGAACTACATTCAAAGGCTTCAAAGAATTGTGGGTGTGGATGAAAGTAAGAGGATTATTGGCAGTGCTTTGGTTGTCCTTAGTGTAGGAACCAATGACTTAACCTTCAATTTCTACGACATTCCAACCAGGCAGTTGCAATTCAATATTAGCGGTTACCAAGATTTTCTACAGAATAGGCTACAAAGCTTGATCAAGGAAATTTACCAACTTGGATGTCGCACTATAGTGGTCGCAGGGCTCCCTCCAATTGGTTGTCTTCCCATTCAAGAGACCATATCATTCCTAATTCCCCTAAATCGAAGATGTTTGGAAGATCAAAACAAAGATTTTGAAACCTACAATCAGAAGCTTTCAAAAACAAAACTCAGATTCCAAAGCCTACAATCAGAAGCTTGTAAATCTGCCGAGAATTTACAGCCACAGCTTCCTGGAAGCACAATTCTATATGCTGACATTTACACTCCCCTCATCGACATGGTCAATAATCCTCACAATTACGGTTTTGAGCACATTAACGTAGGCTGTTGTGGTATTGGGATGGTAGAAGCAGGACCATTATGTAACAATAAAACAAGTACAATATGTGAAAACCCATCAAAGTTTATGTTTTGGGATAACATTCATCCCACTGAAGCAGCTTACAAGTTCATCACAAAATCGCTTCTCAAGCAATTTGCTGATCGTCTTAATTAG ATGAATATCATAGCTAATATCCTCATTGTTGCTCTATCACTCCACATAATTTGGCTGCTATTTCTTAGCAAACCATGCAGTGCTTTGGCACCTAAAACTTCTCGATCATTTCTCGCCATTCTCATATTCGGTGATTCTACGGTAGATACTGGAAATAACAACTTCATCCCCACTATTTTCAAGGCTAATTATTGGCCATACGACAAAGATTTCCCTGGTAATGTTGCCACTGGAAGATTTAGTGATGGAAAACTCATTCCTGACAAGGTAGCATCTAAGTTGAGGATAAAGGAGCTTGTTCCTCCATTTTTGGATCCTGAACTCACAGATGATGACGTGAAAACAGGGGTCAGTTTTGCATCCGCCGGTACGGGAGTCGATGATCTAACAGCTGCTATATCTAAAGTCATTCCTGCGATGAAACAAATTGATATGTTCAAGAACTACATTCAAAGGCTTCAAAGAATTGTGGGTGTGGATGAAAGTAAGAGGATTATTGGCAGTGCTTTGGTTGTCCTTAGTGTAGGAACCAATGACTTAACCTTCAATTTCTACGACATTCCAACCAGGCAGTTGCAATTCAATATTAGCGGTTACCAAGATTTTCTACAGAATAGGCTACAAAGCTTGATCAAGGAAATTTACCAACTTGGATGTCGCACTATAGTGGTCGCAGGGCTCCCTCCAATTGGTTGTCTTCCCATTCAAGAGACCATATCATTCCTAATTCCCCTAAATCGAAGATGTTTGGAAGATCAAAACAAAGATTTTGAAACCTACAATCAGAAGCTTTCAAAAACAAAACTCAGATTCCAAAGCCTACAATCAGAAGCTTGTAAATCTGCCGAGAATTTACAGCCACAGCTTCCTGGAAGCACAATTCTATATGCTGACATTTACACTCCCCTCATCGACATGGTCAATAATCCTCACAATTACGGTTTTGAGCACATTAACGTAGGCTGTTGTGGTATTGGGATGGTAGAAGCAGGACCATTATGTAACAATAAAACAAGTACAATATGTGAAAACCCATCAAAGTTTATGTTTTGGGATAACATTCATCCCACTGAAGCAGCTTACAAGTTCATCACAAAATCGCTTCTCAAGCAATTTGCTGATCGTCTTAATTAG MNIIANILIVALSLHIIWLLFLSKPCSALAPKTSRSFLAILIFGDSTVDTGNNNFIPTIFKANYWPYDKDFPGNVATGRFSDGKLIPDKVASKLRIKELVPPFLDPELTDDDVKTGVSFASAGTGVDDLTAAISKVIPAMKQIDMFKNYIQRLQRIVGVDESKRIIGSALVVLSVGTNDLTFNFYDIPTRQLQFNISGYQDFLQNRLQSLIKEIYQLGCRTIVVAGLPPIGCLPIQETISFLIPLNRRCLEDQNKDFETYNQKLSKTKLRFQSLQSEACKSAENLQPQLPGSTILYADIYTPLIDMVNNPHNYGFEHINVGCCGIGMVEAGPLCNNKTSTICENPSKFMFWDNIHPTEAAYKFITKSLLKQFADRLN Homology
BLAST of PI0021875 vs. ExPASy Swiss-Prot
Match: O22927 (GDSL esterase/lipase At2g30310 OS=Arabidopsis thaliana OX=3702 GN=At2g30310 PE=2 SV=1) HSP 1 Score: 346.7 bits (888), Expect = 3.4e-94 Identity = 185/361 (51.25%), Postives = 237/361 (65.65%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy Swiss-Prot
Match: O22918 (GDSL esterase/lipase At2g30220 OS=Arabidopsis thaliana OX=3702 GN=At2g30220 PE=3 SV=1) HSP 1 Score: 343.6 bits (880), Expect = 2.9e-93 Identity = 181/358 (50.56%), Postives = 231/358 (64.53%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy Swiss-Prot
Match: Q9SIQ3 (GDSL esterase/lipase At2g31540 OS=Arabidopsis thaliana OX=3702 GN=At2g31540 PE=2 SV=1) HSP 1 Score: 337.4 bits (864), Expect = 2.1e-91 Identity = 177/361 (49.03%), Postives = 238/361 (65.93%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy Swiss-Prot
Match: Q9SIQ2 (GDSL esterase/lipase At2g31550 OS=Arabidopsis thaliana OX=3702 GN=At2g31550 PE=3 SV=3) HSP 1 Score: 337.4 bits (864), Expect = 2.1e-91 Identity = 178/362 (49.17%), Postives = 236/362 (65.19%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy Swiss-Prot
Match: Q9LMJ3 (GDSL esterase/lipase At1g06990 OS=Arabidopsis thaliana OX=3702 GN=At1g06990 PE=2 SV=2) HSP 1 Score: 335.9 bits (860), Expect = 6.0e-91 Identity = 168/369 (45.53%), Postives = 233/369 (63.14%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy TrEMBL
Match: A0A0A0KF79 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G180980 PE=3 SV=1) HSP 1 Score: 625.5 bits (1612), Expect = 1.4e-175 Identity = 313/373 (83.91%), Postives = 331/373 (88.74%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy TrEMBL
Match: A0A5D3C8T5 (GDSL esterase/lipase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold852G00280 PE=3 SV=1) HSP 1 Score: 615.5 bits (1586), Expect = 1.4e-172 Identity = 308/373 (82.57%), Postives = 327/373 (87.67%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy TrEMBL
Match: A0A1S3CK41 (GDSL esterase/lipase At2g30310-like OS=Cucumis melo OX=3656 GN=LOC103501877 PE=3 SV=1) HSP 1 Score: 615.5 bits (1586), Expect = 1.4e-172 Identity = 308/373 (82.57%), Postives = 327/373 (87.67%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy TrEMBL
Match: A0A5A7UVN0 (GDSL esterase/lipase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold852G00270 PE=3 SV=1) HSP 1 Score: 596.7 bits (1537), Expect = 6.9e-167 Identity = 290/369 (78.59%), Postives = 325/369 (88.08%), Query Frame = 0
BLAST of PI0021875 vs. ExPASy TrEMBL
Match: A0A1S3CKL4 (GDSL esterase/lipase At2g30310-like OS=Cucumis melo OX=3656 GN=LOC103501878 PE=3 SV=1) HSP 1 Score: 596.7 bits (1537), Expect = 6.9e-167 Identity = 290/369 (78.59%), Postives = 325/369 (88.08%), Query Frame = 0
BLAST of PI0021875 vs. NCBI nr
Match: XP_004143225.1 (GDSL esterase/lipase At2g30310 [Cucumis sativus]) HSP 1 Score: 625.5 bits (1612), Expect = 2.9e-175 Identity = 313/373 (83.91%), Postives = 331/373 (88.74%), Query Frame = 0
BLAST of PI0021875 vs. NCBI nr
Match: KAE8646939.1 (hypothetical protein Csa_021052 [Cucumis sativus]) HSP 1 Score: 622.1 bits (1603), Expect = 3.2e-174 Identity = 311/372 (83.60%), Postives = 330/372 (88.71%), Query Frame = 0
BLAST of PI0021875 vs. NCBI nr
Match: XP_008463828.1 (PREDICTED: GDSL esterase/lipase At2g30310-like [Cucumis melo] >KAA0059943.1 GDSL esterase/lipase [Cucumis melo var. makuwa] >TYK07588.1 GDSL esterase/lipase [Cucumis melo var. makuwa]) HSP 1 Score: 615.5 bits (1586), Expect = 3.0e-172 Identity = 308/373 (82.57%), Postives = 327/373 (87.67%), Query Frame = 0
BLAST of PI0021875 vs. NCBI nr
Match: XP_008463830.1 (PREDICTED: GDSL esterase/lipase At2g30310-like [Cucumis melo] >KAA0059942.1 GDSL esterase/lipase [Cucumis melo var. makuwa] >TYK07587.1 GDSL esterase/lipase [Cucumis melo var. makuwa]) HSP 1 Score: 596.7 bits (1537), Expect = 1.4e-166 Identity = 290/369 (78.59%), Postives = 325/369 (88.08%), Query Frame = 0
BLAST of PI0021875 vs. NCBI nr
Match: XP_016902930.1 (PREDICTED: GDSL esterase/lipase At2g30310-like [Cucumis melo] >KAA0066338.1 GDSL esterase/lipase [Cucumis melo var. makuwa] >TYK00940.1 GDSL esterase/lipase [Cucumis melo var. makuwa]) HSP 1 Score: 566.2 bits (1458), Expect = 2.1e-157 Identity = 285/372 (76.61%), Postives = 308/372 (82.80%), Query Frame = 0
BLAST of PI0021875 vs. TAIR 10
Match: AT2G30310.1 (GDSL-like Lipase/Acylhydrolase family protein ) HSP 1 Score: 346.7 bits (888), Expect = 2.4e-95 Identity = 185/361 (51.25%), Postives = 237/361 (65.65%), Query Frame = 0
BLAST of PI0021875 vs. TAIR 10
Match: AT2G30220.1 (GDSL-like Lipase/Acylhydrolase family protein ) HSP 1 Score: 343.6 bits (880), Expect = 2.0e-94 Identity = 181/358 (50.56%), Postives = 231/358 (64.53%), Query Frame = 0
BLAST of PI0021875 vs. TAIR 10
Match: AT2G31540.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 337.4 bits (864), Expect = 1.5e-92 Identity = 177/361 (49.03%), Postives = 238/361 (65.93%), Query Frame = 0
BLAST of PI0021875 vs. TAIR 10
Match: AT1G06990.1 (GDSL-like Lipase/Acylhydrolase superfamily protein ) HSP 1 Score: 335.9 bits (860), Expect = 4.2e-92 Identity = 168/369 (45.53%), Postives = 233/369 (63.14%), Query Frame = 0
BLAST of PI0021875 vs. TAIR 10
Match: AT2G24560.1 (GDSL-like Lipase/Acylhydrolase family protein ) HSP 1 Score: 328.6 bits (841), Expect = 6.8e-90 Identity = 175/355 (49.30%), Postives = 233/355 (65.63%), 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 Position : 0 Zoom : x 1
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.
|