Pay0021013 (gene) Melon (Payzawat) v1
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.CTATTTTCCAAGTATATTATCCCCTCTCATTTTCTCTATAGGTAAGTTATAACACTTCTAATTTTCTTTTATCTCTTTCTTTTTAAATTTTAAAAATAGCATATAAATGGTAATATCATTTCGTCTCAACTTTCATTTTGATTTTACTAGGGGCCTAATATTTAGCTTTATTCGAGATTAAGTTCTGCATATGTATATATCTCATTTTCATGTGTTTAAATTGATCAATAAAGCTGTTTTTGTTTTTGATTTGTAGAATTTTGCTACTATTGTCATAAAGTTTAAAATTGAAAACGATAAAGCTTATATTTTTGTTGTTTAATTACGCGTAGCAGTTAAAGTACTTCCAATATTGAATGACCCACGCCAATTGAAGTGGCAAAGTTTGGCCATTGCTTTACTTTTGATTGAGATATATTGCAACTTGCAACTCTTCGAGTTATCCATTTATAAAGTAAGTATTATCACTTACGTACCTTTTCTTTTCTAAATTTAATTTATAGGTGCAACATTATATTTAGTGATAGGTTTTTTTTCTCTATTTTTTGCCGGAAATTTTTCTTTTTTTCTTTTTTAAAAAAATGTCTTTAAATTTTTGGGGGAAGTTGGTTTCTTTGGGAATATTTGAACAGTGTGATGTTTTATTTATTTATTTATTTTTTCTTATTTTCAATTCCTTTTAGAAACACAAGTCACTTTTTAGTTCGGTTCGTTTTGAAAATAGTAAATACAAAAGGTTCGAAGTGTATTTGGAGTTCTAAGGTTTCAAAGACAAATTCTAAAAGTAGTTCAAATCGAAAGTAAAAATATACCATTTATTTTTCTTTTTTTATATATATATAACATGTATGATAGTTGGGATATTGATTTTAGAAAAAGAGATTTCGTTACAATTAATTTCTTAAAATTGATTTTTAAACAATTACATTTATAATATGTTTAGTATCAACTCTTCAAACTGATTTTTATATATTTAAAATTGATTTTTAATCATTATAGATTGCTCCGAAAATTAATTTAGAGTTACTTAATTAGTAATTTAATTAAATTATTTCAATTTGAGAAACAATTATTTAATTAAATAATTATCGTAAGTACCTATTTCTATTTGTATTGTTGTTAAATTTTTATATACGCAGTTTGTATATAAATATTGAAATATTATCGTTATCTATTCTTTTATATATTTTTTAGAGTTGAATTGTAACGACCCAACTTTCCGGACTAAGCTGAGGTCACTACTCAATACTAAGACTCGACCACACAATACAAAATTCATAATAGACCAGTTACAATTTCTTAAAACGTTAGGAATAAAACAACAAAACAGTATCGGGCCCTATTTCAAATCACAGTTACAAAAGTTTTGAATAAAATCTCAAATCATCAAATCCAAAATCCTCAAAACAAATACTCTAACCAAAATACATCAGCGGAAGCGAAAATAAAATCGGACACGTCCATATGGCCTTCACGCATCCTTTCTGCCCCTCGTCGGTCTGCCCCTAGCCGTGCCCTTACCTGAAAAGTTAAGAAGAGAAAGGGTGAGTATAAACATACCCGGTAAGTATAGGTTCAAACAACTACACCCTCAGTTGCTATACGCGTCACCAATTCGCACACCATTAGGGAAAACCCTAGACCCAATCAACTAACCAACCAAAACCGGACTCACTGTCCTTCCCCGTCCAAACTCCATGATCAACATCCAGACCAATGATTACTACATACTGAACCGTAACTTCAAGGTCCATCAATATAGAATCCCAATCTACAATTAGCAGTCACAGTACCTTTACATCAGACAAAATATAATAACAGTGCTTAACAGTCAACACACATACAGTTATTCAGTACAGTCACTAACGTGAAATCCACTGTGGATTACTACGTTTTCAGCCTCGATCCGAGGTCCAGTAGTAGGGAAAACCCTTACCTGAATACTCGGTTATGCCCCTCGATCGAATCCACGCTCAACGGATCAACCTAAACGAAAATACAAAGGTTTTAGTTGATGACTCTAGTAGAAGTCGTTTTAAAAGGTCCGAAACGACACCCGTTGACTTACCCAAGGAAAGGAAAGCTATCTCCAAACAAGCCTGCCGCGATATCCGAGAACTTAAGCGTCAACTCCTTACTACCTTCAGGGGAGAAAAGTAGGGCCATATCTTATTCCAACATTCAAACTCGAATTGGATGTGGTAACATTAAGGAATTCATCAAAACAATCCTTACCGAAGACTCACCGTGACCCGAAGTGGAGGGAGGAAGGCTTAGGTGGCTCGGCTCGGCTCGGCTCACTCTCGGCTCGGCTCGGCTTGGTCTCGGCTCACGGCTCGGCTCACTCTCGGCTCGACTCGGCTTGGCCTCGGCTCACAACTCGGCTCAACTCGGCTCGGCTCGGCTTGGCCTCGGCTCGGCTCGGCTCAACTCGGCTCGGCTCGGTCTTCGGCTTGTCTCGGCTCGCGGCTTGACTCGGCTTGGTCTTCGGCTTCCCTCGGCTCGCGGCTCGGCTCGCGGCTCGGCTCGCAGCTTGACTCGGCTTGGTCTTTGGCTTGCCTCGGCTCGCGGCTCGGCTCGCGGCTCGCGGCTTGGCTCGGATCGCTACTCGGCTCGGCTGGATTTGCTTGCGGCTCGCGGCTCGGCTGGAAATGGTCTTGGGTCGGGTCAGCTTGGAAATGGGTTCTCGGGTTGGCTTCACTTCACGGCTCGTGTATTCCTTCCCCCTTCCGGCGACGACGGCGCTTCCCTCTGTGTTCTGTCGGCGTCGAAAACACGAGATGAGAACGGAGAGGATGCCGACGGTGGCAGAAACGAAGAGAGAGAGAGGGAGAAACGTCGGCTGTAGGTGGACGGCAGGCGGCGCGACTTGCGGATGGTGGCTGCGGCGAACGTCCGGCGAAGCTAAGAACGCCGACGGAGATGGAGATAGGGACAGAGGACGGAGACGGAGAGGATGGAAGAGAGGTGGTGGCGGACACGGTCGGAAGGAGAAGAGAATGAAGAGGAAGAGACGAGGCGGCGCGCGGGGAAGAAAAAAAAAACGAAGGAAAAAAATGGATGGGGGGTCTGTGTCGCGCGGTTTAGGGTTAGGTTTAAAAATAAATTTTTTATTATATATATATATATATATATATATAACTCTTAATACTTATATAATATTAATAATAATAATATAAAGTAAAATAATAATATATAATAATATTAATATTAAATAAAAATAAATTAATATTATGTAATAATAATGTTATTGTTTTAAAATAATAATATTACTATAATATTAAATAATAATAATAATTATAATATTAATATTATAATAAATAAAATAAATATTAATAATAATAATATAATTAATATTATATTATTATTATATCAACTTACACCAACATTTTTGATTTCCGAATAATTTACATAAAACGAGAAAATTTTTACCTCGAATTTTCGGGGCGTTACATGAATGAACTAAAACTTTTTATATTTATAAATATTTTCAATAGTTTTGTGACTTAAAAAGTATTTTTAAATCGTAATTATCTCAATTTTTACGTGTCTTAAATTTATTACATACCAGAGTTTTTTAAAATTTTATGTTTCCTCATTTCTTGTTTCTAAGAAAGTTTCAAAATTAATATTTTCAAATTGTTGAAACAATATGCTTGATAATTTTTCCTTATAAAATGGATAATAAATACTAAAAAGGTAAAATAATAGTTATGAAAATTTTATTTCATAAAATATTTTTTTTTCATCTATAACATGAATTTTTTTTTTAATTTCAATCTTTTGAAGTATAAGAAACAAACAAGGGTTACCAAAGTTTTTTTCCAATAAAAAAAGGACAAAGATAAAATAGCAAAATGCAATTATCAAACGAAAAAATTTGATTTTCATAAGAAATAGAAAACAGATTAACCATAAATGAAAATATATTAGTTCCTTATATTTTTTACGGTTTTTAAAATAAAAATAAAAAAGTTATTTGAAATATTTTGAAATATATATAAGAAAAAGAATCAAATATTTACAAAAATATAGTAAAATCTATAGTAATATATACATACATGCTAATAGATATTAACACTTTTACCGATGTCTATCAATATTATTAATAGAGACAGAAAAGTTGTTTATCATTAATAAATTTTAATTTTTAATTTTTTTTAATATTTTCAACACAACTTTTTAAAACTATACCATCTTTTTTAAAATGTAAAAAAATGCATAAGAAAAAAATTAAAAAATAATAAATATAGCATACTAATTTTAAATTATCATTTTGGTAGTAAATTTTCGTTTCTGAAATTTAATTTTGTGACAATTGAATAATAAGGGAAGCAAATCCAAATTGGTATTAAACAAATATTTTTTTACATACAAATGGAAGAAACAAACAGTAACTACCAAACAACTTTTTGTTCTTTTGTGAAAAGAAAATATAAATATACATATATATATATATATATTTGAGAGAAAATAAATTATCCGACTCTTTTTCTTCCTCAAGGATTGATTACTGCAATAGCATAATTGATTAAGATGGTGAGTAATAGAAAGATTGATCTACGTTCTGACACGGTGACAAAACCGACCGAGACAATGCGAGCTGCAATGGCGATGGCCGAGGTAGACGATGATGTGTTGGGTAATGACCCAATTGCCCTCGAGTTAGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTACCATCAGGCACGATGGGGAATCTAATAAGTGTTCTTGTGCATTGTGAAATTAGAGGGAGTGAAGTGATTGTTGGAGATAATTCTCATATTCATATATATGAAAATGGAGGAATTGCAACTATTGGAGGAGTCCATTCAAGAACAGTTAAGAACAAAGATGATGGAACAATGGACATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAGCTATTCTTCCCAACAACAAGGCTCATTTGTTTAGAGAATACTCATGCAAAGTAAGTTCCAATTGTACATATACTTAGGCCTTACATTTTATTTTAAATATAATTCACGTACGTCCTTCTTCATATTTATATCCATTTAATTCCTTTTTTCTCACCGTTTCTTAATCATTATTTTCATTTTTTTTTAATAAAATTATTGGAACAAAAATAAGTTTTCAAAAAGTATTTTGTTTAGTTTTTAAAGGAGGATTTCCATCTTGAAAACAACAGCAAAAATCTCATAACAAAATAAATATAAACAAAAATAATATATAATATATATGTATAATATGTATATATGTATGTATATATATATATTTTTGTTTAGAGTCGTAAAGTTTTTAATAATCTCATAGATTCATGCTTAAATCATTTTATTTAATTTATCTTTAAATTAACATAATATTCTATCCCATGATTTTTTCGTACACATTGAAGACATTTTAATCATGGGCATCCGTTCATATTATTAATATAGCTTAAGTCACTTATGTGTGATTATTTTAAAAAGAAAAAAAAAGTGATTTATATATATGTAGTGGATAAGTATCACCCTAAGGATAAAGATATATAACTTTTAGAACTGGACATTTAAAATTTGTCTTGAATTTGTTATGAAATTAAAAAGAGATAATGATAAAAAGAGAAAGAGGTTTTTTTAAAAAAATAATAATAAAAAACAAACTATTTATACTTGAGGCCAAAAAGAAAAACTATTAAAAGGTTAGCCCAACTACACTTAATTTTGCTATAAATGGCACATATTTTACATATTTTACCATTTTTGACCATTTTTGAAAAGAAAAATAAATGTATGAACTGAGAAGAGAGTTTTGAAACATAGAACTTTCAATTATTAATTGAGATGGTGACATAAAGTATCATTCTACGAAAGAAGAGTTGTTTTCTTTTTCTTCTTTCTTTACAAATGAAAGGAAAAGATGATTTGTGGTAATTTAATATTAAGTGTTGTTTTGTTTTGAATTTTATAGTAGCGGTGGAAGATGCCTTTGTGTAGAATATATTGACAAAGTTGGGGAGTTAGCTAAGAAACATGATTTGAAACTTCACATCGACGGAGCCCGTATTTTCAATGCCTCCGTGGTTAGTACTTAGTACTCTTAACTTCACTAATTTCCACAAAAACCCTACTGTCCCTATATAATACATTCTAATTTATTACTTTCTAACTTTTCACAATTTTGTTTCAGTTTTTAGACACATTTTTCTTTAGCATAGAAGAATAATCATCAAATAAAATGAGTTTCATATATTCACAAAAGTTTTCTTTCTAGGCTACGGATGTTTCAGTTGATCGATTGGTACAAGTTGCTGACTCAGTATCGGTAGGTCTATCTCATATTGTGTTTTATTTTCCCAACTTAAATGCTAAAATAGAGTGGTTTAGTTATATTGGCAAAAGAAAATATAACTATTTTATTTTTGGTGTCGTATCTCTTCATGATTAACTTCATGTCTAATTCTTTTGATAATCCCTTCTCCTTTAATTAAGTATATTGCTCTCCTTTCTTGTTCTCACACTCTCACTAAATGTGTTATTGATCTTTTTCTTATTCTCTCGATTAATGTCTCATTTATGCTCTTCCTCTCACTATTTTCCTCGTACGATCTCTCTTTATTTCAAATAATAAAAGTTTTTTTTTTGTTATTTTATTTATTAACTACTGTGTTCTTATTAAACTTTTCTGGTCGGTAAATATATAGTTGTTATATTCGTCGGAAATTTTGAAAATTTTATGAATTTGAAAACTTTATAATGTATATTGTCCGCATCAATCAAACAAAAGGGATAATAACATATAAAGTAGCATGTGAATTCAAAACAGGAAATAAGATTTTATAAGATTCAAAAAGTTTGTTGTGCTCTTCATAGATATATGTCATAATAGTCGAAAACATTTACATTGAAGATGGCTATCTTACTCAGCCCTTGATCTCCATCTCGCTCTCTAATTCCATTACGCTAACAACCCTTTGATTTTTGCTAATTTGTCTTCTAACTTTCCAACAATTTACCCATGATTTTCTAATTAAGACCACTCAAATTTGACCACACTTAATCCACATATTCTATACGTAAAAAACTTATTAAAACTTCCTTTTATACAATGTGTCTCTCTTTGATGTTTGGACTTAGGTATGCTTGTCAAAAGGTCTAGGCGCACCGGTTGGTTCCGTTATTGTTGGTTCCAAAAGCTTTATTTCTAAGGTAATTAAACATTTTAACTTTTCCATATTGATATTAATTTTTCTAGACTGTTCTAAGAATTTTAACCATATGAGAATACAGTTATTGGAAATTCTACTGGAGTCAGAATTGAAAGTTTTATATAGTGTAATTTATGGTAAATTGTCCAAAGAGGAAATTGAGACCAGAATTTAACTTTTTATATCTACGGAGATCAGGCTAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGCATCCTTTGTGCAGCTGGACTTGTAGCTCTTAAAGAGAATGTTCAAAAACTTGAAGCTGATCATCACAAAGCCAAGCAACTAGCTAGTAATTAACATCAATTCTTCACTATATAATTTATAATTAATAATATCTATATATTCAATTATTTTTCTTTTATATTTTTGTTCTCTCTTATTTATTTGTGAGAATATAATTTAGGTGGATTGTGCCAAATTAAAGGAATAAAGGTGGATCTAAAATCAGTTGAGACAAATATTGTGAGTATCCATCTTTATTCCAAAAATACATTATAGAATTAATTTGTTTTTAATGATTTTACTTTTATTCTATGAGTAGATATTTTTTGAAATTGAAGAGGACTCCCAAATCTCAGCAAAGTTATTGTGTAAAAGCATGGAGGAGCATGGAATTCTTTTGATGCAAGAAAGCTTATCAAGGTCTATTCTAAAACCTCAATAACGTTATTTTTAATCTTAAAAGGAAATAATATCTGTATGCATTTTAGAAGAAACAAACAATACTTTATTTTACTTTTCATCAAACAAGAAACAAGCATGAGTGTTCCATCGTCTGCATCCTTCCAATCTCTACACATTATAAATATTTTAATAAAAAAAATATAATTATTTCATATATATTTGTATTTAAGAAAATAAATACTATAAATAATGATTTTGGCAGAAAAATGTGCAATTTTTTTATTAAAAGAAGTGTCATTAAAAATATCTAAAGATCTTATTTTTCTACGTTTTAGTAGTCAGGTACGTTTAAGCTAGTGCATGAATAAAAAAATGACTTTAAAAGAAAACTAAAAAAAACAAAGAAAAATGTATACAAATGTCGTTTTTATTGCTTTTTTTAGAATAAGTGTACGTGGTTATTAACGTTTTAAATTATGCATTTTAGTTTCATGAATTGGTTTAAAAAAGACTAATACAACCATTAAATTTCGACGACTAAATTATATATTAATTTTTTTTCCTCCACTCTATTCCCTTCTCTATTATTTTTCTTCTTCGATTCCACCTTTCCATCTTTCACCTCTCTTTCTCTCTTTAATTCTTCTATGGAATTAATATTTCCTTCCGTTAAGTTGTGGCCATTATTGTTATGAATTAGTTACGTTTTAACTGATTTTCCAAAGAGAAATACACTCAACTCCACAGCTACCACAAGCTGCTAGCTACTAAAACCACCAGATTCGTCCATATCAGTAAAGTGAATTTTATCAAACACCATGTGTTCATCTTTCATACACTTCAATCAACTTATTGTTCACTTCCACATGATCTCTACCAAACTTTGTCCCCTTCAACACTCCATCCGGCATCCACCCTTTATGTGCATATTAAACTATATGGTAGTATATTAAATTTCTGTGTATATATAAATATTTTGGTATTTTTTTAAAATAAAAATTTATATTATTTTGCAGGATTAGAATCGTTCTTCATCATCAGATATCAACAAGTGATGTGGAGTACACTTTGAAGTGCATGAAGGTGATGATGAATTATATTAATCCCAATTTGTTCCTTTAAACTTGATTATTTATTATAATCTCTCAAATACCCTCTCCATTTTGGCCCTTTTGCAGCAATTTCTCTGTGGGGTTCCAGCACTTCAAAATGGCAACTAATTCGTAATCACAACTCAAGTTTAGTGTCGAACAGGACCGGATTTATTAAGGAGCCAGCGGGTTACGTGCCCCCCTCACATTATCGACTTTTGTATTTTAATATTAATTTTGAAGTACCAGACTATAATATATATTAAACAATACTTTATTTTTTCAAATTTTTTTTTTGGTGTAGTGGCTATGATCTCATTTTGTAACCTCTAAATTAGAGGTTTGAATCCTACGGATTGCAATCATTTTTATTAATTAATTTTATTCCAAATATCAATATTTTTGTTTCCCAAATATCAAATTTATTTCCAAAG CTATTTTCCAAGTATATTATCCCCTCTCATTTTCTCTATAGTTAAAGTACTTCCAATATTGAATGACCCACGCCAATTGAAGTGGCAAAGTTTGGCCATTGCTTTACTTTTGATTGAGATATATTGCAACTTGCAACTCTTCGAGTTATCCATTTATAAAGATTGATTACTGCAATAGCATAATTGATTAAGATGGTGAGTAATAGAAAGATTGATCTACGTTCTGACACGGTGACAAAACCGACCGAGACAATGCGAGCTGCAATGGCGATGGCCGAGGTAGACGATGATGTGTTGGGTAATGACCCAATTGCCCTCGAGTTAGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTACCATCAGGCACGATGGGGAATCTAATAAGTGTTCTTGTGCATTGTGAAATTAGAGGGAGTGAAGTGATTGTTGGAGATAATTCTCATATTCATATATATGAAAATGGAGGAATTGCAACTATTGGAGGAGTCCATTCAAGAACAGTTAAGAACAAAGATGATGGAACAATGGACATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAGCTATTCTTCCCAACAACAAGGCTCATTTGTTTAGAGAATACTCATGCAAATAGCGGTGGAAGATGCCTTTGTGTAGAATATATTGACAAAGTTGGGGAGTTAGCTAAGAAACATGATTTGAAACTTCACATCGACGGAGCCCGTATTTTCAATGCCTCCGTGGCTACGGATGTTTCAGTTGATCGATTGGTACAAGTTGCTGACTCAGTATCGGTATGCTTGTCAAAAGGTCTAGGCGCACCGGTTGGTTCCGTTATTGTTGGTTCCAAAAGCTTTATTTCTAAGGCTAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGCATCCTTTGTGCAGCTGGACTTGTAGCTCTTAAAGAGAATGTTCAAAAACTTGAAGCTGATCATCACAAAGCCAAGCAACTAGCTAGTGGATTGTGCCAAATTAAAGGAATAAAGGTGGATCTAAAATCAGTTGAGACAAATATTATATTTTTTGAAATTGAAGAGGACTCCCAAATCTCAGCAAAGTTATTGTGTAAAAGCATGGAGGAGCATGGAATTCTTTTGATGCAAGAAAGCTTATCAAGGATTAGAATCGTTCTTCATCATCAGATATCAACAAGTGATGTGGAGTACACTTTGAAGTGCATGAAGCAATTTCTCTGTGGGGTTCCAGCACTTCAAAATGGCAACTAATTCGTAATCACAACTCAAGTTTAGTGTCGAACAGGACCGGATTTATTAAGGAGCCAGCGGGTTACGTGCCCCCCTCACATTATCGACTTTTGTATTTTAATATTAATTTTGAAGTACCAGACTATAATATATATTAAACAATACTTTATTTTTTCAAATTTTTTTTTTGGTGTAGTGGCTATGATCTCATTTTGTAACCTCTAAATTAGAGGTTTGAATCCTACGGATTGCAATCATTTTTATTAATTAATTTTATTCCAAATATCAATATTTTTGTTTCCCAAATATCAAATTTATTTCCAAAG ATGGTGAGTAATAGAAAGATTGATCTACGTTCTGACACGGTGACAAAACCGACCGAGACAATGCGAGCTGCAATGGCGATGGCCGAGGTAGACGATGATGTGTTGGGTAATGACCCAATTGCCCTCGAGTTAGAAGAAGAGATGGCAAAGATAATGGGAAAAGAAGAAGGGTTATTTGTACCATCAGGCACGATGGGGAATCTAATAAGTGTTCTTGTGCATTGTGAAATTAGAGGGAGTGAAGTGATTGTTGGAGATAATTCTCATATTCATATATATGAAAATGGAGGAATTGCAACTATTGGAGGAGTCCATTCAAGAACAGTTAAGAACAAAGATGATGGAACAATGGACATTGATTTGATTGAAGCTGCCATTAGAAATCCAAAGGGACAGCTATTCTTCCCAACAACAAGGCTCATTTGTTTAGAGAATACTCATGCAAATAGCGGTGGAAGATGCCTTTGTGTAGAATATATTGACAAAGTTGGGGAGTTAGCTAAGAAACATGATTTGAAACTTCACATCGACGGAGCCCGTATTTTCAATGCCTCCGTGGCTACGGATGTTTCAGTTGATCGATTGGTACAAGTTGCTGACTCAGTATCGGTATGCTTGTCAAAAGGTCTAGGCGCACCGGTTGGTTCCGTTATTGTTGGTTCCAAAAGCTTTATTTCTAAGGCTAGAAGGGTTAGAAAAACATTGGGTGGAGGAATGAGGCAAATTGGCATCCTTTGTGCAGCTGGACTTGTAGCTCTTAAAGAGAATGTTCAAAAACTTGAAGCTGATCATCACAAAGCCAAGCAACTAGCTAGTGGATTGTGCCAAATTAAAGGAATAAAGGTGGATCTAAAATCAGTTGAGACAAATATTATATTTTTTGAAATTGAAGAGGACTCCCAAATCTCAGCAAAGTTATTGTGTAAAAGCATGGAGGAGCATGGAATTCTTTTGATGCAAGAAAGCTTATCAAGGATTAGAATCGTTCTTCATCATCAGATATCAACAAGTGATGTGGAGTACACTTTGAAGTGCATGAAGCAATTTCTCTGTGGGGTTCCAGCACTTCAAAATGGCAACTAA MVSNRKIDLRSDTVTKPTETMRAAMAMAEVDDDVLGNDPIALELEEEMAKIMGKEEGLFVPSGTMGNLISVLVHCEIRGSEVIVGDNSHIHIYENGGIATIGGVHSRTVKNKDDGTMDIDLIEAAIRNPKGQLFFPTTRLICLENTHANSGGRCLCVEYIDKVGELAKKHDLKLHIDGARIFNASVATDVSVDRLVQVADSVSVCLSKGLGAPVGSVIVGSKSFISKARRVRKTLGGGMRQIGILCAAGLVALKENVQKLEADHHKAKQLASGLCQIKGIKVDLKSVETNIIFFEIEEDSQISAKLLCKSMEEHGILLMQESLSRIRIVLHHQISTSDVEYTLKCMKQFLCGVPALQNGN Homology
BLAST of Pay0021013 vs. ExPASy Swiss-Prot
Match: Q8RXU4 (Probable low-specificity L-threonine aldolase 1 OS=Arabidopsis thaliana OX=3702 GN=THA1 PE=1 SV=1) HSP 1 Score: 503.1 bits (1294), Expect = 2.7e-141 Identity = 246/344 (71.51%), Postives = 300/344 (87.21%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy Swiss-Prot
Match: Q9FPH3 (Probable low-specificity L-threonine aldolase 2 OS=Arabidopsis thaliana OX=3702 GN=THA2 PE=1 SV=1) HSP 1 Score: 488.8 bits (1257), Expect = 5.3e-137 Identity = 244/344 (70.93%), Postives = 292/344 (84.88%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy Swiss-Prot
Match: O07051 (L-allo-threonine aldolase OS=Aeromonas jandaei OX=650 GN=ltaA PE=1 SV=1) HSP 1 Score: 290.8 bits (743), Expect = 2.1e-77 Identity = 166/346 (47.98%), Postives = 227/346 (65.61%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy Swiss-Prot
Match: Q21890 (Uncharacterized protein R102.4 OS=Caenorhabditis elegans OX=6239 GN=R102.4 PE=3 SV=3) HSP 1 Score: 281.6 bits (719), Expect = 1.3e-74 Identity = 157/353 (44.48%), Postives = 226/353 (64.02%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy Swiss-Prot
Match: P75823 (Low specificity L-threonine aldolase OS=Escherichia coli (strain K12) OX=83333 GN=ltaE PE=1 SV=1) HSP 1 Score: 246.5 bits (628), Expect = 4.5e-64 Identity = 138/344 (40.12%), Postives = 207/344 (60.17%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy TrEMBL
Match: A0A1S4DV13 (probable low-specificity L-threonine aldolase 1 OS=Cucumis melo OX=3656 GN=LOC103487298 PE=3 SV=1) HSP 1 Score: 704.1 bits (1816), Expect = 2.9e-199 Identity = 360/360 (100.00%), Postives = 360/360 (100.00%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy TrEMBL
Match: A0A0A0LY20 (Beta_elim_lyase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_1G680120 PE=3 SV=1) HSP 1 Score: 594.3 bits (1531), Expect = 3.3e-166 Identity = 306/325 (94.15%), Postives = 317/325 (97.54%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy TrEMBL
Match: A0A6J1HTZ7 (probable low-specificity L-threonine aldolase 1 OS=Cucurbita maxima OX=3661 GN=LOC111466135 PE=3 SV=1) HSP 1 Score: 592.0 bits (1525), Expect = 1.6e-165 Identity = 299/355 (84.23%), Postives = 326/355 (91.83%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy TrEMBL
Match: A0A6J1F4V7 (probable low-specificity L-threonine aldolase 1 OS=Cucurbita moschata OX=3662 GN=LOC111440845 PE=3 SV=1) HSP 1 Score: 589.7 bits (1519), Expect = 8.1e-165 Identity = 297/355 (83.66%), Postives = 324/355 (91.27%), Query Frame = 0
BLAST of Pay0021013 vs. ExPASy TrEMBL
Match: A0A1S3BXZ8 (probable low-specificity L-threonine aldolase 1 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103494316 PE=3 SV=1) HSP 1 Score: 585.9 bits (1509), Expect = 1.2e-163 Identity = 298/357 (83.47%), Postives = 324/357 (90.76%), Query Frame = 0
BLAST of Pay0021013 vs. NCBI nr
Match: XP_016899824.1 (PREDICTED: probable low-specificity L-threonine aldolase 1 [Cucumis melo]) HSP 1 Score: 704.1 bits (1816), Expect = 6.1e-199 Identity = 360/360 (100.00%), Postives = 360/360 (100.00%), Query Frame = 0
BLAST of Pay0021013 vs. NCBI nr
Match: XP_031745918.1 (probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >XP_031745919.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Cucumis sativus] >KAE8637485.1 hypothetical protein CSA_016967 [Cucumis sativus]) HSP 1 Score: 655.6 bits (1690), Expect = 2.5e-184 Identity = 335/360 (93.06%), Postives = 349/360 (96.94%), Query Frame = 0
BLAST of Pay0021013 vs. NCBI nr
Match: XP_031737786.1 (probable low-specificity L-threonine aldolase 1 [Cucumis sativus]) HSP 1 Score: 653.3 bits (1684), Expect = 1.2e-183 Identity = 334/360 (92.78%), Postives = 348/360 (96.67%), Query Frame = 0
BLAST of Pay0021013 vs. NCBI nr
Match: XP_031745920.1 (probable low-specificity L-threonine aldolase 1 isoform X2 [Cucumis sativus]) HSP 1 Score: 649.4 bits (1674), Expect = 1.8e-182 Identity = 334/360 (92.78%), Postives = 348/360 (96.67%), Query Frame = 0
BLAST of Pay0021013 vs. NCBI nr
Match: XP_038877079.1 (probable low-specificity L-threonine aldolase 1 isoform X1 [Benincasa hispida] >XP_038877080.1 probable low-specificity L-threonine aldolase 1 isoform X1 [Benincasa hispida]) HSP 1 Score: 635.2 bits (1637), Expect = 3.5e-178 Identity = 325/360 (90.28%), Postives = 340/360 (94.44%), Query Frame = 0
BLAST of Pay0021013 vs. TAIR 10
Match: AT1G08630.1 (threonine aldolase 1 ) HSP 1 Score: 503.1 bits (1294), Expect = 1.9e-142 Identity = 246/344 (71.51%), Postives = 300/344 (87.21%), Query Frame = 0
BLAST of Pay0021013 vs. TAIR 10
Match: AT1G08630.3 (threonine aldolase 1 ) HSP 1 Score: 503.1 bits (1294), Expect = 1.9e-142 Identity = 246/344 (71.51%), Postives = 300/344 (87.21%), Query Frame = 0
BLAST of Pay0021013 vs. TAIR 10
Match: AT1G08630.2 (threonine aldolase 1 ) HSP 1 Score: 503.1 bits (1294), Expect = 1.9e-142 Identity = 246/344 (71.51%), Postives = 300/344 (87.21%), Query Frame = 0
BLAST of Pay0021013 vs. TAIR 10
Match: AT1G08630.4 (threonine aldolase 1 ) HSP 1 Score: 503.1 bits (1294), Expect = 1.9e-142 Identity = 246/344 (71.51%), Postives = 300/344 (87.21%), Query Frame = 0
BLAST of Pay0021013 vs. TAIR 10
Match: AT3G04520.1 (threonine aldolase 2 ) HSP 1 Score: 488.8 bits (1257), Expect = 3.7e-138 Identity = 244/344 (70.93%), Postives = 292/344 (84.88%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Payzawat) 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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