
Lag0034235 (gene) Sponge gourd (AG‐4) 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.ATGGAACAATTTTTTGGATTAGTCAACACATTTCTGCAGAATCATCAGGACACGAAAAAGCGGAGACTAGGAATACGGACATACAAGGTGTCCTAAAAATTTTCCTGAACAGATTTGGATATTTTACCATAGCTTCAGAAAATTAGAAGATGAAGTTAAATTTGCCTGTAGCATAGAAGTTTAATTAAAAGTAAAAGTGTCATGTATATTTAAAAATTATTTCCATTTCTTTATCTTTCACATAATTAGTGTTCTATATATTTTTGAAGAATTTATATGAAATGGTTTTAGATGTTTATGTCTCCGACTCTTGAGCTTTAGAATCTTTCACTTTTCTTTCTTTAAAATTGACCTTTCAGCAAGCCGATTATTTAAATTGGCATGAGTCATCTTATCTTACAAATTAATGGCATCTTATATTAAGGTGTGAGAATGTTTTTATTAAGACTCCAAGTTTAGATTTGGGAGCGTGACATTTAAGTTGTAACCATAACTTTTTTTTCTTGTGGAGTTCAACAAATGGGAATTGAGATTCAATCCTTGACATTTTAATCAATGATACATGTATTAACTAGTTGAGTTATACTTAAGTTGGAAAATTGAGCTTTCTTTTTTATCTGCCTATATCAACAGTGGATTGTTACTTGCTAATAGAGTATATTTCTCTGTTACTTTCAACTATGTTAACATAAGAGTAAATTGATTTTACGAAATTTTGAACTTGTTCTCATCATCTGCAATGTGGAATCTTATAGAAGTATAATATATTTGTTTCAACGTGTAAATAATCCAATAATTTTTTTTTAAATTGATGAAACGTAATGTTATTTATCAATTAGGTTGTTCCCTTTACTCCAAGTGCTGGTGTTCTTGAATGGGTTGATGGAACTATTCCTCTTGGAGAATATCTTATAGGAAGGTTAGTAAATTCCAGTGGTTTTATTCGTTCTTGGAATTGGTTCTTTTAGTAATTAAATTCTCAAAACTTTTCAGCACCAGAAATGGAGGAGCTCATGGTCGCTACAGAATAGGAGATTGGTCATTTCTTGAATGCAGAGATTACATGGCAAAAGCAAGTACTCTATGCTTGTTCCTTATGTCATAGCATTGATCTCATTGTCTCTTTAATATATTTATTCTGCCGTATCTTCTCTATCCTCTTTATATAACTTTGACTAAAACACTTTCTAGTATAGATAAAATTTCATTTTATCATTGCATAGGTAATCTTTAGATGAGGTAAGACATTGTTCTGCCCTAATGAATTACTTCCCTTGTAAAACAAAGATTATAAGCAAGGACTATGGCTGCAACGCTGTTGCATTTAAAAGAAGCAATTGGACCAGAGAAAAGAATATGAACAAGTACAGTACAAGGCTTTCCCGACTACCTTTCACAATCTGACTCAATTCATGGGATGCGAGGGTGTCATGAATAAGCCTTAGGCATGATGTCAAATAGTACATGATGACAAGCCAAGATGGAGGGTCATGTAGCCAATAAAATGGATTCCAGAAGGCAAGTGATTCTCACTATATTTGATGTCAATATTGGTGAAGAACATGGTTAAAATTATAATAAAAAAATTTTTGAGTTTGGAGTGCCATGCTCCAATGAACTGACTGAATTTTTGAGTTCGGAGTGTCATGCTCCAATGAACTGATTGACTATGCCTCAAACTGAAAATAAGTATACAAGGGTGTTTGAGAGTAACATGTCTATAGAACTCTGGCAAAATGACTCGTTAACTTTGGAAGAAATGGTGCTTTCTCATCTTTTGAATAGGAAAGTGGTACATACAAGAGGGTGGCAACTGTTATCTAAAAGTAAAACATTAGGCTTTGCTAGGTGGTAATACTATAGATAAATTATCACACCTGCCAAGTGTTGGGTGCTTGCCTTGGAATATATTATGAAGAGGTATGGTGGTGGACCATGAGGCTTTTATGAGTCACTTTTTGTCACTACTATGCCAGGTGTCACGGTCGTACCTTTTCAACCGTGCGGCGCCATGATCTTGCACGCGACCATGGCCAGCCTTAAGGGTCATCTCTAACCCATAACACTTTTTCGCGGGACTTTGGTGCTTCATCGGACCTTAGGCGAGGTTCTTCATCCTCAACCGAACTCAAATCATCTTGCAGCGGAATACATTCGGTCAATACACGTCGCCCGTACGTGTATTTTCACTCATTCGCGACTCTAGCCGACTTGCCTCTACTCTAGGCCAAGTCCTAAGGCTCAACCTTGCCTCTACATCAGGCCAAGGTCATCTGAACGCAACATCGCATCTCATTTCATCATCTTCGATCTCGATAACACGGCCCACACGCTTCTACATCGATCCAGAACTTCGCCGGGATGTGTTCGGACCCTTCAACGGGTCAAAACGGCCTTAAAACGCTCAACCGGAGCTTACCGAGTGATTTCAGCACTTACCGGGACCTACCGGGGCATTATAACGCTTACCGGGGCTTATCGGGCCATTATAATGCTTACCGGGACATTTCGGGCAAATACCGTGCCAGCCGGGAACTATCGGGTTCCACCGATGCTTCACGATGCCACCCCGAGCCTCGGGATGTCATCTGACTTAACCGCTCACTCGGACCTGCTTCTCGAAAACGGACCCATGGGCTTTACTCATAATCGGGACTTCTCGGACATCCATCCATCCGGGCATATCGAGGCATGAACTCTTCCGAGACATGCCGAGTCATTTTCGTATAGCGTGCCGCAGCCCGGCCATATGGTGCAACCTCCAGCCCATGGGCGGGGGCGCAATGTCGGCACACCCGTGCTGCCCGACACTGTCCTTGGAAACCCATTCCCAAAGGAAGACGCCTAAGACACTCGTCTTGCAACGCTCGCCCACGCCATGACACACGCATGTGCCATGGGGTAGCTCACTTAGGCCACAGGGCCCAGGGGTGGTGGAGAGCTGACACCATGCCTCCCCCTATAGTACATTCTGAGGCATATTTTGTCGGACACCCTTGCACATCAAATTCACGAGGAGTCATACGCCAACGTGGAGCGTCCGTCTGGTGTCCGATTGACACGAAACTTTGCGGGCTTGCATACTTCACTCATATGCACTTAACTCCAGATTCGCTCGTCAAAACTCACGACGGAACCCCGACTTCCGAGGTTATGGCCCGGGGCCCCATCTGGTCCCCATCAAGCATACCACTGACGCGTCTGACGACACTGTTGCTTCTCAATATGCTTATGCCTTCTTGTGACATCAATGCCCACTCATCTTGGTGTGTTGGATGATGCATCGTCCTCCTCGATCGCATCATGGCACTTCTCTCTCTCGGCCCTCTGACATGGCCCGATGGGCGACACTCGACGTGCCACCACTTCACTGCCTTCTCAGTGAGGGTCACAACCTACTCTCTTCTAGTATGGTTGTGACATTCTCCCCCACTTAAACTGTCATCGTCCTCGATGACATACTCGGGGGCACAATCCACATCACTGCACGATTGGATTGCGACACTCTCCCCCATTTAATCTCGGCATCGTCCCGATGACGATCCGACTTCAGACTGGCTGCTGACGGACCCGCTGAAATATTGTGCATCAGAACGAATACGGAAACTGCGCACTACCTATGAGCTATCCCACCCACGGACCTAACTCACGCCCAACTTTAGGACTCGGCCCCGAGACTCGCAACATAGGCAAGGCAAAACAACCGCACACTATCTACGAGCTATCCCACCCACGGACCTAACTCACGCCCAACTTTAGGACTCGGCCCCGAGACTCGCAACGTAGACACGGCAAAAAGCACAATGCCTGCAGACTACCCCCTTCTCTGTGGACCTAACTAACGCCCAACTTTAGGACTCGGCCCGAGGATCTTCTAACAGAACACGGCAAAAGCTTCGGCATTCTCTTCGCCTCCGCTTGCGGGGAGCGCGCCCCGACTTTTCTTTTGGCACTCATGGCCACTTACACACATATTCTCTGAGCGGCACATAAAAAGGTGCACCCCGCGGGGTGAGGCTCGCAAGCCTACCACGGAATGGTCTCATCGTGGCACCGTCCCTTCTGGTGCGGACATCGGAAAGCATGACACAGCCCATTCTTTCTGTTGGCACTACCCTTCGGCCAACTCTCAACTGGCCACCTTCATTTGGCAATCGCTGCACCGATGCTTCTGTCGGAACTTGCAGCAACTTCTTCTTCTTTTTCTTCCCTGTCTCCAGCCTGGTGCTCCATCTCGAGCAAATTGCTGGTCTTGACATCTGTGAAGCCACCCACTTAGGCATGTGGAATGACTTAAGGGACACACTCGCTCGACACACGAGCGTCTTCACGGGACAAGCAACCCATTCTTGCGGGTGCTTTCCCAAACCTTGGCTCTACGCAGCCCAAATCGCCCACCCATATAGGCTTTCTTGATGCTCAACTCTGGCACTTGACCGGCGTATGTCACACTGACCCCCGCTATCTCTGCTTGCAACCCTTAACACTATCCCTCTGGCGGTAATGGTTCTTTCGAAGGCACCCTACCTGGTACACCTTCTGATTTTTCTCTCTTGCCCACAACTGATACCCAAGCCCTTGGCAAATGGACTTGGTTCTTGCACTCTGACGGGTTGGACTCCCTCAAGGAATCCGGCTTCCATACCCTTTTCTGTCTCTGATACAGACAACACAACTATCCTGCCGAAACTGGCACTCTTGACACAATCGTGAAGTCTTCAATCTGACCACAGGGTCTCTCTCTCTGTCTCATCCGACTACGGACACAAAGTGGGGCTCTGATCGTAGCCCAAAGCCTAAACTAGGCTCTGATACCAACTGTCACGGTCGTACCTTTTCAACCGTGCGGCACCATGATCTTGCACGCGACCATGGCCAGCCTTAAGGGTCATCTCTAACCCATAACACTTTTTCGCGGGACTTTGGTGCTTCATCGGACCTTAGGCGAGGTTCTTCATCCTCAACCGAACTCAAATCATCTTGCAGCGGAATACATTCGGTCAATACACGTCGCCCGTACGTGTATTTTCACTCATTCGTGACTCTAGCCGACTCGCCTCTACTCTAGGCCAAGTCCTAAGGCTCAACCTTGCCTCTACATCAGACCAAGGTCATCTGAACGCAACGTCGCATCTCATTTCATCATCTTCGATCTCGATAACACGGCCCACACGCTTCTACATCGATCCAGAACTTCGCCGGGATGTGTTCGGACCCTTCAACGGGTCAAAACGGCCTTAAAACGCTCAACCGGAGCTTACCGGGTGATTTCAGCACTTATCGGGACCTACCGGGCATTATAACGCTTACCGGGGCTTTTCGTCGCCTATCGGGGCTTATCGGGCCATTATAATGCTTACCGGGACATTTCGGGCAAATACCGTGCCAATCGGGAACTATCAGGTTCCACCGATGCTTCACGATGCCACCCCGAGCCTCGGGATGTCATCTGACTTAACCGCTCACTCGGACCTGCTTCTCGAAAACGGACCCATGGGCTTTACTCATAATCGGGACTTCCCGGACATCCATCCATCCGGGCATATCGAGGCATGAACTCTTCCGAGACATGCCGAGTCATTTTCGTATAGCGTGCCGCAGCCCGGCCATATGGTGCAACCTCCAGCCCATGGGCGGGGGCGCAATGTCGGCACACCCGTGCCGCCCGACACTGTCCTTGGAAACCCATTCCCAAAGGAAGACGCCCAAGACACTCGTCTTGCAACGCTCGCCCACGCCATGACACACGCATGTGCCATGGGGTAGCTCACTTAGGCCACAGAGCCCAGGGGTGGTGGAGAGCTGACACCATGCCTCCCCCTATAGTACATTCTGAGGCATATTTGGTCTAACACCCTTGCACATCAAATTCACGAGGAGTCATACGCCAACGTGGAGCGTCCGTCTGGTGTCCGATTGACACAAAACTTTGCGGGCTTGCATACTTCACTCATATGCACTTAACTCCAGAGCCGCTCGTCAAAACTCACGACGGAACCCCGACTTCCGAGGTTATGGCCCGGGGCCCCATCTGGCCCCCATCAAGCATACCACTGACGCGTCTGACGACACTGTTGCTTCTCAATATGCTTATGCCTTCTTGTGACATCAATGCCCACTCATCTTGGTGTGTTGGATGATGCATCGTCCTCCTCGATCGCATCATGGCACTTCTCTCTCTCGGCCCTCTGACATGGCCCGATGGGCGACACTCGACGTGCCACCACTTCACTGCCTGCTCAGTGAGGGTCACAACCTACTCTCTTCTAGTATGGTTGTGACACCAGGCATTGACAAGCATCAATAGTCAATTGAGCTTCTGGTGGCCTCCAATGAGTGTCTATGGATAGAGGTTGGCTCGGCACTTCCTCATGGGCTTGAGCTTCAAAACTAGGATTATGTGAAATTGCATTAATGAAAATAAAGAAAGGGACAGCAAATGATGTACCAACAAAGCATTACTGCTAGAGGAGGTGGATTTTTAAACCATATTTGACTCATGATCCTTGAAGGTCTTTATCAGGAACAATGTATGGAGTACTTGTTCGCACCATTGCTAAGACCCAAAGAAAAATTAAGAGACCTAGTCATTGGGATGTGCAAAACCAACCCCACAATGACAAAGGTGACTAAGGTGGTAGAGGCCAATGTGAATACTACACATCTACCACCCTAACATCCTTAGTTCTAGGTTACGGATTGTTCAGAAACTCCTTGAGTTATGATGCAATCAACTCTTGAGAAACATAATGTTCATTTGATTCATATCGCTCCTTACTGGAGACTATTACTGATTCTTGACTTATTTATTTTTTAATTATTTCTCCTATTAGGAGAAGAGAAAAGAAGAATAATAAAAATAACTGAATCAGAATTCTCTTGTCCTATTTGAAAGGATTTCATCTCAAAATTCTTCATGGTAAAGTTAAACTGTAATCATTTTCACAGAAGTTTTCCTTCTGCTCTTTTCTTTTTTCTTTTTATTTTTATTTTTTGCAGTAATCGGTTATATTTATTTGGATCACATACATCCCAGTCTTTGAGGTTTAAGTTGCATTTAGATGTTTGTTTTTAGACAACTATTTAGAATCTATTTTTATTCTGAAATTGATTCCATGTTCTATTAGGAGAAGGACAAGCGTAAAGCATTTCAGGAAGTTTCTGAAAATTTTAGGTTTGTATTTTTTTTTTTAGTAGAAACCATAGATTTTGCAGTTTATCCAATATTTGAAACTGATGTAACTCATGCAGGCCCGTCATGCATTACTTTTTTTTGGAGAGGTTCTTACAACCAGCTGATTGGTTTGAGAAGAGGCTTGCTTACACTCGAAGTGTGGCTGCTAGTTCAATGGTGAGCTCTTGCTCTGACATGATTAGTTGTTTAACTTAATTTCAGGAGGATTGAAATATCCTATCTTATTCTAGTATTTAGATGCTAGATTTTCTTATATAAAAGACTCATTACAAACAAGGAAAATAATAAAAATATAGACAACATAACTATTGGATACTAACAACTAATATTAATAAATAGAAAATCCAACTGCTTATTTTCATTTCATCATTTATTCTAAATTTTATTCCTGCTTCATGGCTGCTGGCATTTTATCACTATTTGGAAGCAAACTTCGACCAAATTAGTTTTGAATCTTTTGATTTAACCAAAACAAGTGGATGTAGTAAATAAACCGGAAAAAGGATTTACTTAAAAGGGGTCAGTTTAGTACACATTTATTTTCTTCAAAGTCTAATACTTTTTTTTAACCAAATTATCTGCCTTAATGCTAAAGAAAAATAAGTGCCTTCAATTTCATCTTCATAAATATTGGTGAAAATTACGGGAGGGAAATTTAGTAAAGAATTATATTTGACGTGTGATCTGGAAATGACGTTCCTCTGGTGTCAGTTCAAAAATAATTTGGTTGCAGAACTGAATGTTTCAATGGTTCAGGTTGGTTATATTGTTGGCTTAGGGGATCGACATTCCATGAACATTTTGATCGATCAAGCTACGGCTGAAGTTGTTCACATTGATCTGGGAGTTGCCTTTGAACAAGGCTTGATGCTTAAGACACCAGAGCGGGTATACCACACTACTAAAATTTATCCTTCTTTTTCTTTTTCTTTATACCAAGAACATGATCTTCATTCTTCGTTTGTTGCTTCAATCAATTATCTTAGGTTCCGTTCAGGCTTACAAGAGATGTGATTGATGGCATGGGTGTTACTGGAGTGGAAGGGGTTTTCAGAAGATGTTGCGAGGAAACTCTCTCTGTCATGCGGACAAATAAAGCAGCACTGCTAACCATCGTTGAAGTATTACTCATTTTCCCCAACAAAAAAAAATAATATTCAACACTTGGTACTTTTTCTATTTATAGACATGCAAAATGAATTCTGTGCAGGTTTTCATCCATGATCCACTGTATAAATGGGCTTTATCTCCTCTGAAGGCGTTGCAGCGTCAAAAGGTAGTACGTTAGTTTTAGACCTTAGGATACTACTGTAGAATGTAAAACCTGTGTGGGACGTAGACGTGCTCCAAACTCATGTTGGAGAAATGGTCAAGTTTTTTTTTCCTCCCTTTTTGGTAATTTTTGTCACTTTTGGGATATTTAGAGTCATGTCGGGATATGTTTTGGGTCATATAGAGGGCAAGCTAATTAGAGAAATTGAAGTCAAAGATATAAGACAATTATTTAGTTGAACCTAAAAGTATCTTGGAATATAAATATTTCAACTCAAAATATGTTGGAGATTTAGAGTGATGTGGGAAAATATGAGAAATGATATGAGTTGGAAGGTTTTGTTCGAGGAATAAGTATTATAGTAAAAGTAACCCATGTCATATTGGTAAGGCTAGGGAAATCAAAGTTATTTTGTCAATCTTCAAACGTTAAATGAAAAAGGGGAAACATAGGCCTTTATATGTAAGCTAGGCTCAAAAGGGAAAGGGTTAAAATTAACTAATTAACTTAGGGTAATCAAGACTTAACTATCCTAAACTTAAAATCAAATAATAGCAATTAGGAGGAGAGCACTAAAATTCCTTGCATCACATAGCAATGTAGTAGAATACCTTCGACGAAGCGGTACAGCTTTTGCTCAATTTCTCATGGCACCAGATTCTTTTTATGCAAGTTGAAAGAATGGTCATTGACCTCTAATTTCTGTTTAAAGGACATGGCGTCCATAAATACCTTCAATAAGCTTCTATTTGATGGATTGGATGTGTTGATATTTTCCACAAAACTCCCATTAAGTACACACTATTCCTAGTTTTTTAGTTCAATCAGTCATCGACGTCATCGCTACATAGATGGAGGATCATGATCATGTAGCATCACGAATAAGATTTAATTAAAAGACTTGCAACCCCGTAGATTGACATCACGAGCTTCATGGGAAAAGAAGAATATTTGCTGATTGAGACAGAAACACGGATATTAAATGCCTTATATTAGTTACTAAGATCATGCTTAGGGTTCATTTGGTATAATTACTACTTCTAGTGATGATTTCCCAGGCCAGAAAGGCCCTTGGGTCTCTGTGATAGTGATAATGAGGCTGAATCATTGGACTTGAATTGCTTTGTAGCTTGTATTAGAATTCATCATTGGAGGGTGCACATTTCTATGTTTATTGAACAAATGCTTACCTATATATCTCGATAGGAAACCGATGATGACCTGGAGACTAGTCTTGAAGGGTCAGAAGATGAATATGAAGGGAATAAGGATGCTGCACGTGCTCTGTTGCGAGTCAAACAAAAACTAGATGGATATGAAGATGGCGAAATGAGAAGTGTCCATGGGCAGGTAACTTCATATCTATCTTCATCAACAATGTGTGAACATTAAGAGAGTTTCTTCACATTCTAAGTTCGTTTATGATAAGGTGTTGAGGAATAAAACTTGTTTTATTGCACCTTGTTTTGGTTCTTACACACTAATAATTTTGATACCCCCGAAAACAATAGGTCCAACAGCTTATACAGGATGCTATCGACCCCGATCGTTTGTGTCACATGTTTCCTGGCTGGGGAGCATGGTTGTGA ATGGAACAATTTTTTGGATTAGTCAACACATTTCTGCAGAATCATCAGGACACGAAAAAGCGGAGACTAGGAATACGGACATACAAGGTTGTTCCCTTTACTCCAAGTGCTGGTGTTCTTGAATGGGTTGATGGAACTATTCCTCTTGGAGAATATCTTATAGGAAGCACCAGAAATGGAGGAGCTCATGGTCGCTACAGAATAGGAGATTGGTCATTTCTTGAATGCAGAGATTACATGGCAAAAGAGAAGGACAAGCGTAAAGCATTTCAGGAAGTTTCTGAAAATTTTAGGCCCGTCATGCATTACTTTTTTTTGGAGAGGTTCTTACAACCAGCTGATTGGTTTGAGAAGAGGCTTGCTTACACTCGAAGTGTGGCTGCTAGTTCAATGGTTGGTTATATTGTTGGCTTAGGGGATCGACATTCCATGAACATTTTGATCGATCAAGCTACGGCTGAAGTTGTTCACATTGATCTGGGAGTTGCCTTTGAACAAGGCTTGATGCTTAAGACACCAGAGCGGGTTCCGTTCAGGCTTACAAGAGATGTGATTGATGGCATGGGTGTTACTGGAGTGGAAGGGGTTTTCAGAAGATGTTGCGAGGAAACTCTCTCTGTCATGCGGACAAATAAAGCAGCACTGCTAACCATCGTTGAAGTTTTCATCCATGATCCACTGTATAAATGGGCTTTATCTCCTCTGAAGGCGTTGCAGCGTCAAAAGGAAACCGATGATGACCTGGAGACTAGTCTTGAAGGGTCAGAAGATGAATATGAAGGGAATAAGGATGCTGCACGTGCTCTGTTGCGAGTCAAACAAAAACTAGATGGATATGAAGATGGCGAAATGAGAAGTGTCCATGGGCAGGTCCAACAGCTTATACAGGATGCTATCGACCCCGATCGTTTGTGTCACATGTTTCCTGGCTGGGGAGCATGGTTGTGA ATGGAACAATTTTTTGGATTAGTCAACACATTTCTGCAGAATCATCAGGACACGAAAAAGCGGAGACTAGGAATACGGACATACAAGGTTGTTCCCTTTACTCCAAGTGCTGGTGTTCTTGAATGGGTTGATGGAACTATTCCTCTTGGAGAATATCTTATAGGAAGCACCAGAAATGGAGGAGCTCATGGTCGCTACAGAATAGGAGATTGGTCATTTCTTGAATGCAGAGATTACATGGCAAAAGAGAAGGACAAGCGTAAAGCATTTCAGGAAGTTTCTGAAAATTTTAGGCCCGTCATGCATTACTTTTTTTTGGAGAGGTTCTTACAACCAGCTGATTGGTTTGAGAAGAGGCTTGCTTACACTCGAAGTGTGGCTGCTAGTTCAATGGTTGGTTATATTGTTGGCTTAGGGGATCGACATTCCATGAACATTTTGATCGATCAAGCTACGGCTGAAGTTGTTCACATTGATCTGGGAGTTGCCTTTGAACAAGGCTTGATGCTTAAGACACCAGAGCGGGTTCCGTTCAGGCTTACAAGAGATGTGATTGATGGCATGGGTGTTACTGGAGTGGAAGGGGTTTTCAGAAGATGTTGCGAGGAAACTCTCTCTGTCATGCGGACAAATAAAGCAGCACTGCTAACCATCGTTGAAGTTTTCATCCATGATCCACTGTATAAATGGGCTTTATCTCCTCTGAAGGCGTTGCAGCGTCAAAAGGAAACCGATGATGACCTGGAGACTAGTCTTGAAGGGTCAGAAGATGAATATGAAGGGAATAAGGATGCTGCACGTGCTCTGTTGCGAGTCAAACAAAAACTAGATGGATATGAAGATGGCGAAATGAGAAGTGTCCATGGGCAGGTCCAACAGCTTATACAGGATGCTATCGACCCCGATCGTTTGTGTCACATGTTTCCTGGCTGGGGAGCATGGTTGTGA MEQFFGLVNTFLQNHQDTKKRRLGIRTYKVVPFTPSAGVLEWVDGTIPLGEYLIGSTRNGGAHGRYRIGDWSFLECRDYMAKEKDKRKAFQEVSENFRPVMHYFFLERFLQPADWFEKRLAYTRSVAASSMVGYIVGLGDRHSMNILIDQATAEVVHIDLGVAFEQGLMLKTPERVPFRLTRDVIDGMGVTGVEGVFRRCCEETLSVMRTNKAALLTIVEVFIHDPLYKWALSPLKALQRQKETDDDLETSLEGSEDEYEGNKDAARALLRVKQKLDGYEDGEMRSVHGQVQQLIQDAIDPDRLCHMFPGWGAWL Homology
BLAST of Lag0034235 vs. NCBI nr
Match: XP_038878895.1 (serine/threonine-protein kinase ATM isoform X1 [Benincasa hispida]) HSP 1 Score: 642.1 bits (1655), Expect = 2.5e-180 Identity = 310/315 (98.41%), Postives = 313/315 (99.37%), Query Frame = 0
BLAST of Lag0034235 vs. NCBI nr
Match: XP_038878897.1 (serine/threonine-protein kinase ATM isoform X3 [Benincasa hispida]) HSP 1 Score: 642.1 bits (1655), Expect = 2.5e-180 Identity = 310/315 (98.41%), Postives = 313/315 (99.37%), Query Frame = 0
BLAST of Lag0034235 vs. NCBI nr
Match: XP_038878896.1 (serine/threonine-protein kinase ATM isoform X2 [Benincasa hispida]) HSP 1 Score: 642.1 bits (1655), Expect = 2.5e-180 Identity = 310/315 (98.41%), Postives = 313/315 (99.37%), Query Frame = 0
BLAST of Lag0034235 vs. NCBI nr
Match: XP_023004525.1 (serine/threonine-protein kinase ATM isoform X2 [Cucurbita maxima]) HSP 1 Score: 639.8 bits (1649), Expect = 1.2e-179 Identity = 310/315 (98.41%), Postives = 312/315 (99.05%), Query Frame = 0
BLAST of Lag0034235 vs. NCBI nr
Match: XP_023004518.1 (serine/threonine-protein kinase ATM isoform X1 [Cucurbita maxima]) HSP 1 Score: 639.8 bits (1649), Expect = 1.2e-179 Identity = 310/315 (98.41%), Postives = 312/315 (99.05%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy Swiss-Prot
Match: Q9M3G7 (Serine/threonine-protein kinase ATM OS=Arabidopsis thaliana OX=3702 GN=ATM PE=1 SV=1) HSP 1 Score: 556.2 bits (1432), Expect = 2.3e-157 Identity = 265/315 (84.13%), Postives = 291/315 (92.38%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy Swiss-Prot
Match: Q13315 (Serine-protein kinase ATM OS=Homo sapiens OX=9606 GN=ATM PE=1 SV=4) HSP 1 Score: 360.5 bits (924), Expect = 1.9e-98 Identity = 179/331 (54.08%), Postives = 236/331 (71.30%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy Swiss-Prot
Match: Q62388 (Serine-protein kinase ATM OS=Mus musculus OX=10090 GN=Atm PE=1 SV=2) HSP 1 Score: 357.1 bits (915), Expect = 2.1e-97 Identity = 180/331 (54.38%), Postives = 235/331 (71.00%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy Swiss-Prot
Match: Q6PQD5 (Serine-protein kinase ATM OS=Sus scrofa OX=9823 GN=ATM PE=3 SV=2) HSP 1 Score: 352.1 bits (902), Expect = 6.7e-96 Identity = 175/331 (52.87%), Postives = 235/331 (71.00%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy Swiss-Prot
Match: Q5EAK6 (Serine/threonine-protein kinase ATM OS=Drosophila melanogaster OX=7227 GN=tefu PE=2 SV=1) HSP 1 Score: 293.9 bits (751), Expect = 2.2e-78 Identity = 149/318 (46.86%), Postives = 207/318 (65.09%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy TrEMBL
Match: A0A6J1KZU1 (Non-specific serine/threonine protein kinase OS=Cucurbita maxima OX=3661 GN=LOC111497793 PE=4 SV=1) HSP 1 Score: 639.8 bits (1649), Expect = 6.0e-180 Identity = 310/315 (98.41%), Postives = 312/315 (99.05%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy TrEMBL
Match: A0A6J1KZS2 (Non-specific serine/threonine protein kinase OS=Cucurbita maxima OX=3661 GN=LOC111497793 PE=4 SV=1) HSP 1 Score: 639.8 bits (1649), Expect = 6.0e-180 Identity = 310/315 (98.41%), Postives = 312/315 (99.05%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy TrEMBL
Match: A0A6J1KUU2 (Non-specific serine/threonine protein kinase OS=Cucurbita maxima OX=3661 GN=LOC111497793 PE=4 SV=1) HSP 1 Score: 639.8 bits (1649), Expect = 6.0e-180 Identity = 310/315 (98.41%), Postives = 312/315 (99.05%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy TrEMBL
Match: A0A6J1C052 (Non-specific serine/threonine protein kinase OS=Momordica charantia OX=3673 GN=LOC111007159 PE=4 SV=1) HSP 1 Score: 638.3 bits (1645), Expect = 1.7e-179 Identity = 309/315 (98.10%), Postives = 313/315 (99.37%), Query Frame = 0
BLAST of Lag0034235 vs. ExPASy TrEMBL
Match: A0A6J1C059 (Non-specific serine/threonine protein kinase OS=Momordica charantia OX=3673 GN=LOC111007159 PE=4 SV=1) HSP 1 Score: 638.3 bits (1645), Expect = 1.7e-179 Identity = 309/315 (98.10%), Postives = 313/315 (99.37%), Query Frame = 0
BLAST of Lag0034235 vs. TAIR 10
Match: AT3G48190.1 (ataxia-telangiectasia mutated ) HSP 1 Score: 556.2 bits (1432), Expect = 1.7e-158 Identity = 265/315 (84.13%), Postives = 291/315 (92.38%), Query Frame = 0
BLAST of Lag0034235 vs. TAIR 10
Match: AT5G40820.1 (Ataxia telangiectasia-mutated and RAD3-related ) HSP 1 Score: 218.0 bits (554), Expect = 1.1e-56 Identity = 117/314 (37.26%), Postives = 173/314 (55.10%), Query Frame = 0
BLAST of Lag0034235 vs. TAIR 10
Match: AT1G50030.1 (target of rapamycin ) HSP 1 Score: 161.0 bits (406), Expect = 1.6e-39 Identity = 87/236 (36.86%), Postives = 135/236 (57.20%), Query Frame = 0
BLAST of Lag0034235 vs. TAIR 10
Match: AT1G50030.2 (target of rapamycin ) HSP 1 Score: 161.0 bits (406), Expect = 1.6e-39 Identity = 87/236 (36.86%), Postives = 135/236 (57.20%), Query Frame = 0
BLAST of Lag0034235 vs. TAIR 10
Match: AT4G36080.1 (phosphotransferases, alcohol group as acceptor;binding;inositol or phosphatidylinositol kinases ) HSP 1 Score: 66.2 bits (160), Expect = 5.2e-11 Identity = 66/340 (19.41%), Postives = 142/340 (41.76%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (AG-4) v1
Date Performed: 2022-08-01
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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