CSPI02G07920 (gene) Wild cucumber (PI 183967)
The following sequences are available for this feature:
Legend: five_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGTGTTGGGGCTTTGTGCTCTTTTAATCTTAACATACGTGGCTTTCTGGAATGATTTCAAAGTTAATTTGGCTCCTTGTTAGTGAATCAGGGATGCTTTTATATGAGCTATTTCCTTATAATCCATTCTTGTGGAGGGGGAGGTTTTTTAGGATAAAGTTGCTTCGTAAGAGCAGTTTTGGAGTGCCTGCACACTATAATGCTTCTTTGTGGCATCTATATCTCCTGTTTGTAGTCCTCCCTTTTTTATTGTTGCAAAAGGGAAGGCGTTACCACCACTTCTTGCCTTTTATTTTTTTTGTAGTTGGGCACTTTATTGAAATAAGGAAACCCTTCCAATTTCAATCAGGATGGGTTTTCCAAGCGCATGGAACAAAGAAGACTTTAAAGTGATTTTTAGCCAATGTTGATTATTAGGTTAGTAGTACCACACTTTCGAGACCTTTTAATTTAATATATACCAACAATAACGTCCATTATAAACTATTTGAAGGAAGTTTCTCCACCTTCTGATCTTGAGTATGCAAAGTCTTATCTGGATTTTCCTAATGAACATCATTGGATTTTTGTTTTTTCAGGTTATACTGAATGTGTAGATGATAACATCGAAATTTTGGTCCCTGATGATGATGATGGCCTGTATGCGATTGATATTTTAGATCCATCTTCGGTGAGATAACATGAAAATTTCTAGTTGATTGCTAATCAAATTACATCGATGCCTTTATAACTTGTTCTAATAGGAATGCTATTGGGAAATGATTAGACTATTAAGGGTTTATGTTTCATGTATCCCATGGGTTTCGGTTTCGAAGTTTTTTGTTTTGTTTTGTTTTTTTTTCTAAAGGGACAACCCACCTGACCCTACAACAGTTCGGTGTTAAGGAAAATCATAGGAAATCAATTCCTTGGTAGGTGGCCACCATGGTTTGAACCCATGACCTCTTAGTCAGTTATTAAGATATGTGTCCTTTTTTTTACCACTAGGCCAACCACGATGGTTGTTTTGAAACTTTTTTGTAATTATTCACTTAGTAAGAATCCCTTTAGTAGGGATGTTTTGGTGGACTTTTTTTTGAATGCCCTTACATTCTTCTTTCATTTTTTTCCATGAAAGTTGTTGAGTCTACTAGAAAGAAAAAAAAGGTATTTTCTATAATTTAGCTTTTTTAAAAATAAGAATGAAAAAAAATAATAGTTACCAAACACAAGTGTGTTTTTGTTTTTTAGTTAAAAAAGAAACAAAATGAATTCCTACCAAACACAGAAAACAAGAACTAAGAGACAAACAAGAAACAAAATGATGCCAAAAAGACTAGAAAGTTGCATTGTATTTGGTATTGAGGATATTTATCTGAAGAATTTTATAGATCTGTTTGATCAATATTTAAACCTTTTACCTTATACTTTATCATTTACTCTTTAGCAGTAGGCTTGAGTTGGACTGCCTAAGTCTGCCTTCCCATCTTTTTATGTTTTTTGTGTGTATTACTTATTAAACCACCAATTCACCCAAAAGCTTAAGCTGGTGGTTGAAGGCAAATTCAATTATATTTCACCAACACTCCCCCTCACTTATGGGCTTAAAATATTTGAAAGGCCCAATAGGTGGAATCAATTTTATCTCACTTTTGGGCTGAAATATTTGAAAGGCCCAATAAGTGGAAACCAATTTTAATTGGGGAGGAAACGACAATGCAGGGACTTGAACACAACCTCCATGGACCTGCTCTGGTACCATATTAAACCATCAATTCACTCAAAAGCTTAAGCGGGCGGTTGAAGGAAAATTTAATTATATATCACCTACATTACTCTAATTATAAAACGAGAAGAAATCATGTACCATAAGTAGAATGTTATACAACGAGAAGAAATCATGTACCATAAGTAGAATGTTGTAAGTGCATCAGCTTTGTCTGAATTGTTTTTTCTCCATTGTCATTACAAAAGATATATATATCATATATTCATATATAGTACTTTATACAGAGGGCTTGTATCGATCACATCTTTTCTGACAAATGTAGAAGGAAAAGATAGATTACAAGTGTAGAACTACTTTTGAAGTTTTTGATTTGGTTGGCTTCATAGTTTCTATTTGGTGCTCTTTGCCTAAATTCTTCCCTCTCTTGTGTACACCCATTGGAGCACCTTTTTTGTATTCACCCTATTTGCTTGGACTTTGGGTGAATATCTTGCCCCTATCGCCTTCCTTCTCTTGAGTTTTCCTTTTACTGTTCCAGATGGTCAAATGCCTCCATGTGGATGATGTGTATCATTTTCATGATATGATTGATATGCTTGTTGGATGTGGGTACAAGAAGGGAACCACATTGTTTGGTTTTGGTTATGACTTTCGGCAGAGTAATCGGTAAATCATTCCTCCTCTATGAGTTTATTGTAATTTCAAGTAGCTAAGGTTGTTTTAGGTACTGCAAATTTTTGATTATTTGGATGAATAAAAATTGATATAGGAACATTGATTGTTCTTAATGTCAGAATTGGCAAGGCTATGGATGGTCTTAAAGCGAAGTTGGAAACTGCCAGTAAAGCTTCTGGGGGTAGAAAAGTGAATTTAATATCTCATTCCATGGGTGGGCTACTAATTTCATGTTTCATGTCACTCCATAATGATGTGCGCACATACCCTCTTACTAACTCGTTGAAACTTTGCACTGATGTGATGAACTTATTCTTAGAGATTCGGCCTAATGTGATTATTGTTGTTTGGCAGACTTTTTCCAGATATGTAAATAAGTGGATCTCTATTGCTTGCCCTTTCCAAGGTAATTCACACCCATTGCTTCTTCTCTCCTTTCATCAATTGCTATGATCTAAATCCAAGTCTAAATTCTTGTTCTTTGCTAGAAGATTGCCCATTTGGAATTTTTTGTTTATTGGGCGTTATTTTAAGGATTGGTCACTTTTATCTTTCATTTTGTTCTTGCTCTTATATTTTCTATATTGTATTTTGAGCATTAGATTCATTTCGTTAATTCAATGAACAAGTCATGTTTCCGTTCAAAAAAAGAAAAATAAATTGCTATAATTTAAATCTGGTTCAAACTTTTCCATCTGTGGGCTTCCTTCACTCATGTTGTCATGTACCGACTACATCCTTCTAAGTTAGCTCCTCGTTATCAGGTAATCAACATTAATTACATTTGTTCCAAAACTGAAGGAAGGAGATTGTGCACCTCTTTCTGAACAATCACAAGCAAGAGCTTAGAAGAGTCCCAATACAAATAGATAACAAAAGAAGAATTTTTTTTCCAAATATTAGCATGAGTTAGAACATAGAGAATCTATATGCTGTATATTCTCTTTAATGGACATAATAATAATTGGTAAGTTGTTACCTGCCTCCTTCCTTATGTTATCCTAAAGTTTGTCATGAAGCTGGGTGTGTTAATCATTTTACAAAATTTTTTTTGAAACGGTACAAACTTTTTATTGAAAAAATGAAAAGAGAATAAGGTTATTCATTGTACAAATGATTGACAGGTGCTCCAGGATGCGTCAATGATTGTCTGTTGACTGGATTGCAATTTGTTGAAGGCTTTGAAAGCCAATTTTTTGTATCTCGATGGACGTTTCACCAGCTGGTAACTATATTCTTATCAGTGTTTAGGTGGTTATATACACCTAAAATAAGAACAGTCATTTATCATTTCTACCATCTGGTTGAACAATTCCTACAAGTGAAAATTTTACAATTTTACAACATTTATCATACTACAATTATTATAATTTGGTATTTTAAATAATAATAGGAATAATAATAATTATTTTTAGTATTTTACTTAGTTCGTCCCCTTTCTTTTAGCTGCGATGTTTTCTTAGGCTGGCTTCCTTTTTTGTTTGCTCTTGTATTCTTTCGTTCTTTCTTAATGAAAGTTCTTTTAGTTGGGGTGTTTTGTTGGGCGGCTTCTATTTTTGTATGTCCTTGTATTCTTTCCTTCTTTCTCAATAAAAGTTGTTGATTTCATTAAAAAAAAATTGTTTCTTTCCTATCTTTCTATGGGTTTACCTCCTACAACAAATTCTGGAAATTTTCTTTTCAAATTGAATAAAGGTTGCTTGTGACTCCTGTCACCTAGATAGTGCATTTCTCAAGGTAGAAAAAAGGACAAATTTCCACTTTCTTCTTGCTCCACTGGGATCTTTTAAAATATTTGTACGACTTATTGGTGATTTCCTTGTAATATAGGAGACTTCTGAAATCAGATGTTGTGTAGTTGCCTTTTAGAAGATGAAGTTAAGATTTTCTTTCTTAAAGCAACTAGGGTCACTTTATGGAGAGTAGGTTTATAAATGAATAAGAAACCTTGCCAAGAACTTGATTAGAAGATTTGTGGGTTTTGAGCTAGTATACTTCTGTTTTTCTTTTAGAGTTTCTTAGCCATGAACTTTTATAATCTCTCTTCCTTTTTCATGAAGAGTACTTTTTATAATTTGTGAGGCCTTGTATAATGAAAGTTTATGAAAGAAAGAAGTGCAAGATGGGAATTGCTCAAGCAAGAGGACCTTAGTTTTACCAACCAAAGAAGTGTTCTTGTGATGATGGAGGAGTCCCTCCTTCGTCTGCCTTTCCGAGGGAAAGGCCATTGTTTGTGGCTTGCCGGAGTCTGTGCTGTGATTTGGGATATGTGGGAGCAGAGGAATAATCAGGGGTTTAGAGGTAGGGAAATGGACCCTTGTGAGTTCTGGTCCTTGGTTAGATTTCATTTGTCTTTTTGAGCTTCAATTTTGAAGGCTTTTGTAACTATTCCCATGGTAACATTTTACTTTTACTTAGTTGTAACTCATTCTCTCAAGTGAGGTGTTTCGGTGTGATTGTTTTTGATATGCCCTTGTATTCTTTCATATTTTTCAATGAATGTTACTTTTCTCAAAAGAAAAAGAAAAAAGGTTAGCAGGGACCATTTGAGCAATCTGTTGATCTAGATGGTGGGGGGACTAGAATCAGAGGAGAATGAGAATATTTTGGGAGGGATAGCCCAAGGATAGGAGAGGTGACTCTCTCAAATAGCAGATTGTCTTGGTGTGTTCTTTTCTTATTTTCTCTTTATCGTTCTTGCTGGTTTTAGTGTTATTTTGGACTCATCGATCTTGAACTTTGAACACCATTTGTAAATATATAATAGAATTGGACAGGGAGGCTGATTTATCCTGTTTAGTGGTGTTTATGTGTTCTTTTCAGGCGTGTTTGTGTATTTCCTCTGTGCAGGAATTTGGATACTTGACATAATGTTTATTAATTAGTTGGATACCTTATGGACCATTTTTTCATCAATGGTATCATGCCTTCTGTAATCAAAGAAAAGAAGTGACGGTGACACTACTTTTTTTGTGTATGTTATATATCATTGTTATAGGTCTACCATTTATTTTTATGTGCAGTTGGTTGAGTGTCCTTCAATTTATGAAATGCTGGCAAGTCTAGGATTCAATTGGCATGCACAACCACATATCCAAGTCTGGCAAAAGAGTTCTGTAGATGGGGAAACTTCTGTTAATTTGAAGTCGTATGGCCCAACTGACAGTATTGCTTTATTCGAAGAAGCATTAAGAAATAACAAGGTACTATGCTTCAGTTTGATTTCTGTTCGTTTTGTTTTATATTTTGAGTTTTGCGCAACTGAAGAGGGAAAACTTCTGTTGGTTTGAAGTCATCTGGCCCAAATCTTAATGAAGATGCTTGTTTCCTTTTTAAAAATAAACTTCTTTTCATATCTTTTCTTTTCCTTTGTGTAATTAAGAAATCTGTTCTCTGTAGAGAGAAGAAATCTTATACTTCTCAACTACCTCACTGGGCTTAGTTATAAAACGCTCACTGAGTAGTCAAGCAATCCTCTATGGATAATAAATCATATTTGTACATAGAGCATCATTACACAAATTCAAAAATATAAGGAGTCCTCGAAGAAATCGTTTACAAACAAATCTCATCTGAAGCACAGAGAAACAAAGGAGATCATTATCTAGCATTAGCTTCCCTAGGTCAATTTGGCGATAATCCATTTCTACTCTTAAACTGTTTTCTCTTTATCTCTCTGTTTATTTTTTTTGAATGTTACTCTTAAACTGTTGAATTCAGCTGCTTCTGTGAACATATAGAAGAATCAAGGAAACCTTGCCACTAGGAAAGTTTTTACTCTCCTTACTGATGAAGGCAAATAAATGCTGTTTGATTATTTTCCTCACATGACAGGAATAGATAATCTTTAAGGTATCCTTAAAGAAGTTTAAAGTTGTACTATAAGTTGTAGCTTTCTTCTTCTTCTTCTTTCTTTCTTTCGTCCACATAATCATCACTTCTGTATTTATTTATTTATAATAATTATTTTTGTTACTATTTTTTTTAGCTAAATATTTTTGAAGGTTCATCCTGCCACACGTGAAAGAATTTTATTTTCAATTATTGCAGATTAAATTTCATGGAAAGACCATTCCTTTGCCCTTCAACTTTGATATTCTCAAATGGGCTACTGGTACTCGCCAAGTAATTGATAGTGCAAAACTACCAGATGGAATCTCCTTCTATAATATTTATGGAACATCATTTGATACACCTTTCGATGTGTGGTATGTTTATGAACTAGAGTTTGAATTGTGTAACAATGTGCTAGAATATTAGGAAATATAGTATTTTCCGATTTTTCTATCTGCACGGTGCTTAAAGACTGAACTTCAATCCTTATTTTGAGTTCATTTTGATAGGGTCTTGCAAATTGCATTTATGACCGATTTTATAACTAGTGCTGCTTATTTAGTTGTTAGTCAAAACACTCTTGGTTCTACATCAAATGTAATTCTCTTACATTAGATGTAATTCTGTTGTAAGTGACTGAATAACTTATTGACTTTATGTTCGCCTGGTTTCATTTGATCAAAATCTCCAATTTTCAATGCAAAATTTTAGATAGTCTCCACTAGATATGAAATATTATTGTAATGATAATTGATGAATGGGTCAGTTTAGTAGTCCAGAGGTATGGCTGTTTTACCATTTCTCTGCACAACTTATGTTGCCAATTCATTGTTGCTAATGTCTTTGTTTCTAATTATTATGAACATATTGTATTTTAATTATGATGCAGCTATGGCTCAGAGTCTTTGCCGATTGAGGACTTGTCTGAAATCTGCCAAACTTTGGTGAGTGATTTAATTTCTTTTCTAAATCATTTAGGACGTCAGAGTCATCTAGTTTGAATATTTTGGATGTTCTCATTACCCGAATTCCTTCTTAGAATGTAACCTTAATTTGAAACCTCTAGAAATTGCTGAGGCATTGCCTTATTATAATTGTATCATGGTACTCTAAGATTGAAAAGCTTCTGCATATTTGAAATGTAAGTTGCCATACTCATAAAATTTGTGACTGCCTATTAATTGTATTCTTAGTTTTATCCTCATTGATGTACAAAGATTCACAGACAACTGAATTCTGTTGGAATCCAAATGCCCAGTGTTGATTCTGTGGTAGCTTTCCTTCTTCCTATCTTGGTTTGCCCCTTTGATTCCGTAGTGGACAAAGTGAGAAATCAGTTAGCCTCTTGGAGAAAAGGCTTCTTCTTTGTAAAGCATAGCGTTCTACTTGATTCTTGTTGAGTGAAATTCCTATTTACTTCTTATCCCTTTTTAGAGCTCCATGCAAGTTTTGTCAAAACTTGTAGAGGTAAATGTGGTTATTTTCTTTAGGAAGGGGTTGAAGAAGGAAAGGGGTATAGATAGGGAATTTAGCCAAATAACTTTACCGTTGGATTATTTGCTAGTAATCCTGGCATCCACCCTTTGAGTAGTTGTCTTAAAGGGTTAAAGGTTCTCACTGAAACTCGTGGAAGATCATTTTGAAAGATTTCCCTTCCTTTATTCTTTTGTCCTTTTGTGGTGGGGGAGGAGAGAGACTTATTTTTGTGGAAGATCATTGGGGTGGGGGAGATGTCTCTCTGTTCTTTGTTCCCTTGCTTTTATCATTTGTATGCTCTCAAAAATCCTCGTTGTTGATTTTCTTGTGTGGACTGGGGATTGTGTGCCTATTCTTTTGGGTTCATTGTTTTTATTTTTTATAAATATTGAAGCGATAGAGGTAACTGATTGTATTTCTTTATTTGAAGGCCCCCCTTTTAGGTGTAGGAGAAGAGATATGGGGATTTGGAACCCTAACGCTTTTGAGGGGTTTTTGTGCAAGTTTTCTTTCCTAATTTGGTTCATCGTTTTCTTTTTCTTTTTTCCTTCGTTTTTTTGAAAAACAAATGAAAGAATATAGAATATACAGAAAAAGCCCACAAAAGCACCCTCTCTAAAGAAAGAATTTCCAAGTAAGTAAGATGTTACCTAGAGAATTATTACAAAAAAGCTTCGAAACCGAAGTCCAAAACGAAACATGAAACCTCCTTGAGATCCCAAGATCCTCCTTTAGGGTTTTTGTTTTTGGTGTTTTGAAGGATTAAGATTCCTAGAAATGTGTGGTTCTTTACTTGGCATGTTTTACATGGCTGTGCTAGCACGATGAATTGGCTCAAATAGAAGTTTTCCTCGCTTTGACTGACTGCTTATTCTTTTTGGTGTATATTAACTACCATTATATGCACTTGTTCTCTAAATGGCTGACTGCTTATTGCACTTCTCCCCCCTCCCCAGCCTCAGTATTCCTATGTGGATGGAGATGGTACAGTTCCTAGTGAATCAGCCAAGGTATGCTATCTGACCATTTTAGTTCTTTTTAGCTTTAAAATAAAGGAAGGACTATGTAGGTACACGAGGACAGTGTGGTATTGAAGTTTGCAAGGGGAATTTTGCTTCTTTGAGAATCCTAATCTTTTGTTTACTTTCAAAGAAGTAAGAAGGTTAATTTTGTTATGGTTCAAATCCAGTTTTGATTATAAACTTTTAAGATTTCAATTTGGTCTTAGACTTTCAAAATTCCAATTTTAATCTTCGAGTTTTTTTTTTAAATCACAATTTTGGTGCTTTTTTGGCGACTCTCTTCTCGTTCAGTTGGTTTGTAGATTGCGGATGATGTGACCTAGAATTTTTGTTTTACTTTACTTAATATACATTGAAATCATATATAAGTTTGTTGAAGCAGTTATCAAGTGGGTAGGTATTGGTTACTAAAAAAGAAAGCATTTTCTGTCACATTAAATAGAGTTTGATTCTACCCCGAAAGAAATGAGGAAAACTGAGGAGGGACTTGATGGCAGAACAAAATTGACAAATGATTACCTTTGAAAGTTTGGAATATACTAGACACCAACGAAATTTAGGGACTACAACGTGATTTAGAAAATGCAATCTATCTAGATTTATTGTAGTCTAATAAAACCAAAATGGATGATAAGAATTCTTAAAGAAATTAGAAATATAGAAGTAAAAAGAAATTTGAACTGTATTATTCACCATATCTTATTTGTTAGTTTGTTTTCTTGGGGAGGCCCTCTCGTCCCTTGCCAGACTTTTCTCTTTTATTCTCATGAATATATCCGTTTCTTATCCAAAAAAATAAAATAAAATTATTCACCATACTATAGTCAGTTTCTAAGCCATTCCAACTTTAGAGTATTAATAGAGGTCGTAACAACTAAACGGAGAAGGCTCGGCTGTCCACTGCACAAGTTTTATTGAGTAACTCCATATGTTTGACAGATACTTTACATGTAAAATTATGTGCTAGACCAGTATGGAGAGCTTTGGCATCTTCCCCTCCAAAAAAAAAAAAAAAAAAAAAAGCCATGTTTTGACACCCTTTTGCCTTTTTGGTCTCATTATTTCATCCTTCTAAACACCAAGCTGCATTGTAATGAAGAGAATCTGTTTTAATTATGTGTCCTTGAGTTCTTATAGCCTATGCTCTTGACAAGAACAACAAAAAACTTTTTCATGGTCATTTGTCAGTGTTTGTGTGCATGTGGATGCTACTCATTTATTTATTTAATCTTCATTTTTCTTTTGTTTTTTTCTTTGTGCTGTTGTGGAAGGCTGATGGTTTTGAAGCAACTGAGAGAGTCGGAGTCGCAGCGAGTCATCGAGGACTTTTGAAGGACAAAACAGTGCTTCAATATATTCAGAAGTGGTTGGGAGTTGAGCAGAAGGTTGGTAAGCACCTGACAACTTCCAAAGTGGTCGATGCTTCTCTGAAGTAGAATTAACAAGTGAAAGTTTAAAAAGACCACAGAAATATGTATTTTATCCTTTTTTTTAGTTGATGTTGGAATGAAGAGGAACTGATTCATGTTCCTTTTGAGTTTCTGTAATATACTCTGACAATGTCTCATTGTCATAGAAACTTGAAGTTGATGCTTTAATTAATAGTAATTTAAAATCTTGAAGGCTGCTCTAAAGTGTCCAATAAATGTGTCACAAGGGCTGTGGAAATAGAATGATAAAGATTGTGAAGGCTTTGCTGG ATGGTCAAATGCCTCCATGTGGATGATGTGTATCATTTTCATGATATGATTGATATGCTTGTTGGATGTGGGTACAAGAAGGGAACCACATTGTTTGGTTTTGGTTATGACTTTCGGCAGAGTAATCGAATTGGCAAGGCTATGGATGGTCTTAAAGCGAAGTTGGAAACTGCCAGTAAAGCTTCTGGGGGTAGAAAAGTGAATTTAATATCTCATTCCATGGGTGGGCTACTAATTTCATGTTTCATGTCACTCCATAATGATACTTTTTCCAGATATGTAAATAAGTGGATCTCTATTGCTTGCCCTTTCCAAGGTGCTCCAGGATGCGTCAATGATTGTCTGTTGACTGGATTGCAATTTGTTGAAGGCTTTGAAAGCCAATTTTTTGTATCTCGATGGACGTTTCACCAGCTGTTGGTTGAGTGTCCTTCAATTTATGAAATGCTGGCAAGTCTAGGATTCAATTGGCATGCACAACCACATATCCAAGTCTGGCAAAAGAGTTCTGTAGATGGGGAAACTTCTGTTAATTTGAAGTCGTATGGCCCAACTGACAGTATTGCTTTATTCGAAGAAGCATTAAGAAATAACAAGATTAAATTTCATGGAAAGACCATTCCTTTGCCCTTCAACTTTGATATTCTCAAATGGGCTACTGGTACTCGCCAAGTAATTGATAGTGCAAAACTACCAGATGGAATCTCCTTCTATAATATTTATGGAACATCATTTGATACACCTTTCGATGTGTGCTATGGCTCAGAGTCTTTGCCGATTGAGGACTTGTCTGAAATCTGCCAAACTTTGCCTCAGTATTCCTATGTGGATGGAGATGGTACAGTTCCTAGTGAATCAGCCAAGGCTGATGGTTTTGAAGCAACTGAGAGAGTCGGAGTCGCAGCGAGTCATCGAGGACTTTTGAAGGACAAAACAGTGCTTCAATATATTCAGAAGTGGTTGGGAGTTGAGCAGAAGGTTGGTAAGCACCTGACAACTTCCAAAGTGGTCGATGCTTCTCTGAAGTAG ATGGTCAAATGCCTCCATGTGGATGATGTGTATCATTTTCATGATATGATTGATATGCTTGTTGGATGTGGGTACAAGAAGGGAACCACATTGTTTGGTTTTGGTTATGACTTTCGGCAGAGTAATCGAATTGGCAAGGCTATGGATGGTCTTAAAGCGAAGTTGGAAACTGCCAGTAAAGCTTCTGGGGGTAGAAAAGTGAATTTAATATCTCATTCCATGGGTGGGCTACTAATTTCATGTTTCATGTCACTCCATAATGATACTTTTTCCAGATATGTAAATAAGTGGATCTCTATTGCTTGCCCTTTCCAAGGTGCTCCAGGATGCGTCAATGATTGTCTGTTGACTGGATTGCAATTTGTTGAAGGCTTTGAAAGCCAATTTTTTGTATCTCGATGGACGTTTCACCAGCTGTTGGTTGAGTGTCCTTCAATTTATGAAATGCTGGCAAGTCTAGGATTCAATTGGCATGCACAACCACATATCCAAGTCTGGCAAAAGAGTTCTGTAGATGGGGAAACTTCTGTTAATTTGAAGTCGTATGGCCCAACTGACAGTATTGCTTTATTCGAAGAAGCATTAAGAAATAACAAGATTAAATTTCATGGAAAGACCATTCCTTTGCCCTTCAACTTTGATATTCTCAAATGGGCTACTGGTACTCGCCAAGTAATTGATAGTGCAAAACTACCAGATGGAATCTCCTTCTATAATATTTATGGAACATCATTTGATACACCTTTCGATGTGTGCTATGGCTCAGAGTCTTTGCCGATTGAGGACTTGTCTGAAATCTGCCAAACTTTGCCTCAGTATTCCTATGTGGATGGAGATGGTACAGTTCCTAGTGAATCAGCCAAGGCTGATGGTTTTGAAGCAACTGAGAGAGTCGGAGTCGCAGCGAGTCATCGAGGACTTTTGAAGGACAAAACAGTGCTTCAATATATTCAGAAGTGGTTGGGAGTTGAGCAGAAGGTTGGTAAGCACCTGACAACTTCCAAAGTGGTCGATGCTTCTCTGAAGTAG
BLAST of CSPI02G07920 vs. Swiss-Prot
Match: LCAT3_ARATH (Phospholipase A(1) LCAT3 OS=Arabidopsis thaliana GN=LCAT3 PE=1 SV=1) HSP 1 Score: 488.0 bits (1255), Expect = 8.3e-137 Identity = 229/341 (67.16%), Postives = 277/341 (81.23%), Query Frame = 1
BLAST of CSPI02G07920 vs. Swiss-Prot
Match: LCAT4_ARATH (Lecithin-cholesterol acyltransferase-like 4 OS=Arabidopsis thaliana GN=LCAT4 PE=1 SV=1) HSP 1 Score: 366.7 bits (940), Expect = 2.8e-100 Identity = 168/319 (52.66%), Postives = 227/319 (71.16%), Query Frame = 1
BLAST of CSPI02G07920 vs. TrEMBL
Match: A0A0A0LHR5_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G093800 PE=4 SV=1) HSP 1 Score: 713.0 bits (1839), Expect = 1.8e-202 Identity = 341/342 (99.71%), Postives = 342/342 (100.00%), Query Frame = 1
BLAST of CSPI02G07920 vs. TrEMBL
Match: I1N411_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_18G244500 PE=4 SV=2) HSP 1 Score: 564.3 bits (1453), Expect = 1.0e-157 Identity = 257/337 (76.26%), Postives = 295/337 (87.54%), Query Frame = 1
BLAST of CSPI02G07920 vs. TrEMBL
Match: G7KSE0_MEDTR (Lecithin:cholesterol acyltransferase family protein OS=Medicago truncatula GN=MTR_7g080450 PE=4 SV=1) HSP 1 Score: 560.8 bits (1444), Expect = 1.1e-156 Identity = 260/337 (77.15%), Postives = 291/337 (86.35%), Query Frame = 1
BLAST of CSPI02G07920 vs. TrEMBL
Match: A0A072UC29_MEDTR (Lecithin:cholesterol acyltransferase family protein OS=Medicago truncatula GN=MTR_7g080450 PE=4 SV=1) HSP 1 Score: 560.8 bits (1444), Expect = 1.1e-156 Identity = 260/337 (77.15%), Postives = 291/337 (86.35%), Query Frame = 1
BLAST of CSPI02G07920 vs. TrEMBL
Match: A0A151TB13_CAJCA (Group XV phospholipase A2 OS=Cajanus cajan GN=KK1_018784 PE=4 SV=1) HSP 1 Score: 560.1 bits (1442), Expect = 1.9e-156 Identity = 255/337 (75.67%), Postives = 293/337 (86.94%), Query Frame = 1
BLAST of CSPI02G07920 vs. TAIR10
Match: AT3G03310.1 (AT3G03310.1 lecithin:cholesterol acyltransferase 3) HSP 1 Score: 488.0 bits (1255), Expect = 4.7e-138 Identity = 229/341 (67.16%), Postives = 277/341 (81.23%), Query Frame = 1
BLAST of CSPI02G07920 vs. TAIR10
Match: AT4G19860.1 (AT4G19860.1 alpha/beta-Hydrolases superfamily protein) HSP 1 Score: 366.7 bits (940), Expect = 1.6e-101 Identity = 168/319 (52.66%), Postives = 227/319 (71.16%), Query Frame = 1
BLAST of CSPI02G07920 vs. NCBI nr
Match: gi|449442247|ref|XP_004138893.1| (PREDICTED: phospholipase A(1) LCAT3 [Cucumis sativus]) HSP 1 Score: 713.0 bits (1839), Expect = 2.5e-202 Identity = 341/342 (99.71%), Postives = 342/342 (100.00%), Query Frame = 1
BLAST of CSPI02G07920 vs. NCBI nr
Match: gi|659082295|ref|XP_008441766.1| (PREDICTED: phospholipase A(1) LCAT3 [Cucumis melo]) HSP 1 Score: 695.7 bits (1794), Expect = 4.2e-197 Identity = 333/342 (97.37%), Postives = 336/342 (98.25%), Query Frame = 1
BLAST of CSPI02G07920 vs. NCBI nr
Match: gi|356568525|ref|XP_003552461.1| (PREDICTED: phospholipase A(1) LCAT3 [Glycine max]) HSP 1 Score: 564.3 bits (1453), Expect = 1.4e-157 Identity = 257/337 (76.26%), Postives = 295/337 (87.54%), Query Frame = 1
BLAST of CSPI02G07920 vs. NCBI nr
Match: gi|1009118245|ref|XP_015875755.1| (PREDICTED: phospholipase A(1) LCAT3 [Ziziphus jujuba]) HSP 1 Score: 562.8 bits (1449), Expect = 4.2e-157 Identity = 259/342 (75.73%), Postives = 299/342 (87.43%), Query Frame = 1
BLAST of CSPI02G07920 vs. NCBI nr
Match: gi|922344917|ref|XP_013449377.1| (lecithin:cholesterol acyltransferase family protein [Medicago truncatula]) HSP 1 Score: 560.8 bits (1444), Expect = 1.6e-156 Identity = 260/337 (77.15%), Postives = 291/337 (86.35%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of cucumber (PI183967)
Date Performed: 2017-01-17
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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