CSPI05G02820 (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.GTTTTCTAAGAGTGTAGATGTGAAGAAGAAGAGAGAAAAAAAAAGGGGTCTACAAGGGTACTTTTATTTATTTATTTTTCAGTATTGAAAACCGTCAAGTCTATTGAAATAAGACGACTGGAGGAAGGGGGACGTGGCGGCACAATGCCAGGAAGATGGAGGCGGAGTAAGAGACTGATGGCTCAGGCCGATGCTCACGCTCATATTCCTCCCCTACTTCCGCTTACCACATCTCGCAAAGGTCTCTCAAATTCCATTTCCTGCTGGTACTGCGATTATAAGATCACCTCGTTCAACGAACTCATTTTCCAATTTGGACGAAGGCATGCCAGGTTTCTCTTTCAATTTCCAACGTCTTTTTTTTTATGCTTTTGTTCGTCCAGCAAGCTGTTATTATTATTTTTTATTGTTTGTTCAGCAGTATCGTCATCTTTTTTCTATTAGACTCAGCTGATCCCGAATTGTTTGCTTATTTGTTTTACATTTGTGTAATATATTGCAGGGTTCTGAGAACGTGGTTCTCGATTGGGATTGGTTTCTCTCTTGCCGCTCTTGCTGTTGTTGCCACGGTTTCTGCCGACGCTTTCTTTTTGTTGTTTATTCTTTATATATAGTTTTAATAACCATCTTGTTATTCTATGCTTTCTTTTCCGTTTTTCAAACGACAATCTAACTCGAAATGTCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAACTAGAGATAGCTGGGTCATAATAGGAGTAAGAAACGGAGGTACTCACACGGAAATTATCACAAGAAGCAACACTTCTTTTTTTATTGAAAAAGTGTTCAGGAATCAGCCTTCATATATAGGTGGCAATGGCTACAGCAGAAGCGAGATAATTAAGTTCAAATTAGTTATATTACAACAAAATGGCAGCTCATTTGCTGGATGTCTTAATATCCCCTGAAAGCCAATGTCTGAATCTTCTCAAACAAGAAGTTTCTCACGGAGAGGTAGAAAAGCGATCTGACAGTGATTTGGTAAATATATCAGCTACTTGTGGCTTGATCTGTTGCTGGGAGATGATGAACAATGAGTTTATGAAATTAATGACCTATCCTATATGTTAAGTCTGAGAAGACAATATATTGACACTAAGATGAACCACTATCAAGTTATCATACCATACTATGGGCGGCTTGGAATGAGAAATATGGTCTTTAAGCAAAAGATACCCAAATTAACTCCAAAGCAGTGTGTTAGGCTTCTAGTCTCCCTGCCTCGTAAAACCCAACAAGGATAGACAAGGAGGAAATTACCTGTTGATTATTTCCTTTATCATTAATATTTTCATTGTATTTATGATATATTTGTGTATTTATTTTCTCCTAATTTTCTCAAAAACTAAAAAAGCCTAGTTTGCCGCCGCCGCCTTGGACCTCCATCATCGTTGCTGGTCCTTTAGAGATTGTTGGCCACCACTTCTCTGTCGGAATCGCCGCTCGGGCTTATTACTTTGATGAAGTTTCAGTTAGTTTTAAGCTTGCTCAGGGTTTGAGTAGTGTTTGTTCTTCTTCTATAAAGAAACTATAATGCTTTGGCATCGTAGATTAGGGCATCCAAATTTCTTTAACTTGAAGTATTTGTTTCAAAACCTATTTAAAGATTTTGATTGTTCAATTTTTCAATGTAAAAGTTGCATTTTTGCTAAACATTATCAATCAAGCTCCAAATTGATTCTTACAGTTCACTCTGGACTCTATTTTTATTGACGATTGTATTTGAAATAGGTTTCCTATGAAAAAACTAACTCCCTAATGGGTTTTTTTTGCTCATTTCCTATGTAATTTTTCTATGTTCTATTCTTTCTTTATTTCCCTTTTAGAGTTTGTATCTTTTGATTAATTTACTTTTAGAGAAGTTAGACTTGACGTTAAAAAACCCAAAAAAAGAAAGGAAAAGGAAGAAGACCAACACCTGACTGTGCTAGCAAGCAAGAAAGCAATTACTGCAATAACTTCTATTATTAAGTGTGCTATTTGCTGTTTGTCTGGGCAAGTAATTTTCTTTCTTGTATTAGTTTATGTTAATAACTAACTAAATTCTTTATTTTTCAGGTTCTCTTTCGGGAACTTACAATCGTCATGCATATTTTTGGCAATAGCAATGTGATTCGTGGACTTCCTATTTCCTGTTCCTCGTTATTTGGTCTTCCTTCGTTGGTTCATATACAATATCTTTCAATATTTTGTTCCATTATCAATAGAATTACGTCTCATTCTTCAATTTTTCTGCGCCAATGTGTCATACCTGCTTCTCATTACATTTTTTCTTCTACACTAGATTTCCAGCTGTAGTCTTTTCCCTGCTGGTGCTGGATACATAATTATCTCTACCTTAATATCTGTAGCTTTTCATGAATTTGGTCATGCTGCTGCTGCTGCAAGGTGTGTTCCTTTCTACATCATCGATTCTGATTTTTATTTCTTTTCAATTGACATTTGTTTAAAAGTGTGTGTGTTAATTTAACTAATTTGTATCAAATGTAATACCTGGAAAGTCAGATGATCTTTATTTTAGATCTCACAATGTAGTGGACTAGATTATCATTCCTCACTCTGTAAACTTTACGTGGATGGCAGTGAGGGCGTGAAATTGGAGTATATTGCTGTTTTTATTGCACTACTTTTCCCTGGTGCTTTGGTGGCTTTCAATTATGATGCACTGCAGGATTCATCATGCTTCAATGCTCTTCGAATCTACTGTGCTGGTATTTGGCACAACACAGCTGTAAGCTCTAATTGTGTTATTGGCTGGCTGTTTCCTTTTGCTTAATCTCCATTCTAGTTCAGGACGTGGGTCTGACTGTGATTGCTTCAGTAGTTTTCTATCTTAGAAAAGATATGTCTAAATGTGCAATGTCTCTCTAGCTTTCTGCAGCTTCTGGATTGATATTATTCTTCCTGCCACTGATTTTGTTTCCTCTTTACATACCTGGCCAAAGTCCCACGGTACGTCAACATTTTGTATGTGCATCAAATTATTTCATAAAGTCAAATGAAGAATTTTATTTTTCATTTTCTTCTCTTGACTGAATCCTATAAATTGTGATAGGTTCTGGATGTTCCTTATACTTCGCCATTGTCTAGTTATTTGTCCCATGGTCATGTAATTCTGTCATTGGATGGCATGCATGTTCACAGTGTGGATGATTGGATCAATCTATCGGCTCAAATAAGTGATTTAACATTTCAAAATGAAACCCACTCCAGGCTTGTTGAAAACAACCAAATGGCCAATGGCAGGAGAGGATATTGTTTTCCAAATTTTATGTTGAAGGAAAGCAATAAAGTTCAGTTCACACATGATCAGTCAACTTGTTTTGGCGACTTTACTTCTTTTACTTCTATTCCTTGTGTTAGTTCTGCTGGTTTAATTGATGGTTACACAGAAGATAACTATTCTAACCGCAAAGAAGGGATATATTGCTTAAATGTCAATGATGTTATGAAGCTTAATAAGTGTTCTAGTTGGGATAATGCAGCAATCAATGATAACACTAGCTCCTGTATGTGTTCACAGGTAAGCACTTGACCTTTGGTGAGCATTATGCATTTTTGCAAGTTCTCTTTGTTGGCTTTATCTTGTCACCACTTTTTTGAAACTCTAATTCGCAGGATGAAACTTGCTTAAGTCCAGTTCAAATGCCTGGTTTGGTATGGGTTGAGATTACATATCTAAACCCCTATTCCTCAGACTGTTCCTATTCCAGAGAATATCCACTCCCAAGTTCAAATTGTAGTGAAACTTTTATTTTTGTTGGTGATGTGGTCTCGATGGCGCGCTCTATTCAGCTGACCATGTACCGACCACGATTGGATTTTCATTTTGCTATATATCTTCCGGATGTACTGGAAAAGATTTTATCGTGCTTATTTCATACCTCTCTTGCACTAGCCCTTCTCAACAGTTTGCCGGTAAGTTCTAATTCACCATTTTATAAGCTGTTTTCATATTTAGTTCATGGGGTAATATCAAATGAGGTTTAGGATTTAGTCTATTCTTCAAATCACGTGCTTTGCAGAATATTTGTGGATATATCTGCAGTTCGGAGTTTTGGAATTTTTTAAGTATTTTTGATGAAGAGCTTCCCCTTTTATCTTTACTTGGATTAAGTGCCTATCAATCTCTAGATTCTGTGTTGTGATGAACACAATCTTTTCAATATTGATAGTGACTTGATTGTCACATTTAGGAATCTGAATTCGTAAGAGATCCTTTTTAGTTAATATTTTCCATATCTGGTAAACCATAGTATGAATCGCTTCAGCACTTCTCCTGGATACCAAAGTTTTCTTCTACTAGTTTCCCCAAACATAGGTCATGTGAAACCTCCAATTTTCTCTCAACTTCAAAATCAGCCTCACTGGCCGTTGTTACAACTTTATATATAGGCTGGACAGTGGCCTAATGGCATATTTTTAGGCCTTCTAACCATTTTTGGATAGTCAGTTTAGGGAGTTCAATTATGCATTTTGGGCGATTCATCTCGGGTGTTCATTTTTTCTTATTTTTCTTAACAGTTCATCCTCAGTTCAACACTCAAATTGAGCCAAACCAAACTGATTACACCCCTATCATGTAACATCGATCTCCATTGTGATTTGTGGACTGCTTGTAACTTATACTTTCTCCTATCATGTAGAAATAGATTATGATAGCAGTGAAAACCTTGTTCTCACAATTGATCTGTGTAGGTGTCTTTTGGAACAATTTTAATTCAAGTTAGGATGGAGAAAACAATCCCAAAAACTGTGCCAAGTTGCTAACCGATGAAAATCAATCAAACCAACTTCGGTTAGTCGGTTTTGGTTTTATTTGTTGTTGGTTTTTTATTTTGAACCGACAGTTGGTCGGTAGAGATGTCCACAAGGCGGGGTGGGGCCAGGGATGCCACTCCCTGCCCCCTATCCAATTCCCCATCCCCACCAATTTCCCCGCGGGGAACAGGGCAGGGATTGTCTGTGGGGATCAGGTTGTTTTCTTTAAGTATTTTAACAAAGTCTTCAATTACATCATATTTTTTAAGACACAACATATTTTTTTGTTGGGGTTTCCCTGTCCCCGAGTTGCCAATGGTGGAAAAAAAATTCCACTCCCTCCCCCATTCCCCGTGTATTTGAGGATTCCCAGTCCACGGGTTAAATGGACAATGAACATCTCTATTGGTTGAATCAGTGAGCCCAGAAAGGGCTCAACAACTGGTTGACCGATCTATATATACATGATAAAAGGTTCACACCAACTAGTTTGAAACTGCAGCCTACTTCTAGTAGGTAATCATTGCTTATTTACTTTTACTATTTTCCCAAATTCTTTGTCACTTTCTCTCCCTACAACGTTTCATTTTCCTTTTTGTCCTCTCTTCATTTTCTTTCCTTCCCAAGTTCATTTTCATTTTTCTCTTCCTTCATTCCATGTTCTCTTCTTCTGATAAATTTTCTCCCTTCTTCGGATTTCTCCTAAACAACACTGTCATCCACCTCCATGGAGTCATGGAGCAACATTTTTTCTTTCTTCTTCCTCATTTTTCCTCTCTTTCTCCTATTCTCTTCTCCCACTTTGTTTTCTTTAACCAAAAATGTACTCACCGGAGCCAAACATCATCCAATTAGCACGATTGGAGCAAAGATCACTCTCAAAACTGAACGATTGTTCATATAACGATCAATCGGTTCCAAAAACCCTGCCAAAACCTTGCCAATTGAACAATGATCACCCCCAAAAATATCTATTAATACTTGTACTTTCACAAATTTCATGCACTTTTAAATTATGTTTTAACAAGAGCTTAGCCCAACTGATATCCAAGTGTACCAGTAACCACAAGGTCTTTTATTGGAAATTTGGAATCCTTCAACCTCAATTGTTGTACTAAAAAAATATCTTATTTTATTTTTCACTTTGCCATGGCTAAATTTCGTCCAACAAAGAAGTACATTTTTTTAAATCATTTTGTTTTGTTTTGTTTTTTATTTTGATTTTTTAATCATAAAAAAATAGAATAAAAGTAAAGAAAAGAAAACCAGAGGTTGATTTTTCATAGTAGTTCTTCTAGCCCCTTCCATTTCGATATACACTTCAATTTGAATATGATCATGTTCAAAAAACTAGATGCCTGAAGTTCCGTTACAAAAGAATCCAAGATTCTATACACAACTTTATAATGAGTGGGTCCAGGTGAATGCATATGACTAGTCTAACCATACTTGCAGCAAATGTTGTATTTGGACATTTGTTAGATAAATAGATTTGTCTACCCAAATATTTGGTATTTGCCTTTGTCATTTACTTCAGCTTTTGCAAATAGTAACTTATATTTGGTTTAGTAGGAGTTTCTACTGTCTGTCAATCGAGTAAAAATGCTTATTGAAGTAGATCAATTACAACTAAATACTCTTCTTAGATCTCATAAGCTTCATCCCTAAAAAAGTACTTTTAAGGCTCTCACATTTTTTCTGAAGCTTGCAAATTTGTTCTCAAGATCATCAAAACCACCTTCATTATTACATGTGAGAACTATACCTTAGCTCTTATATTGATTACATGCATTCACCTAAATTCACTCACAGCAAAGTTGTGTACCAACCAAAGTTTAGCTCAACTGACATCTATATGTGCTAAGGACCAAGAATTTCATGGTTCGAATCTCCTGCCCTCAACAATTTGTATTAGAAAAAATTCATCAATTTATGTTTAAAAATATTAGATTTTTGTGTTCTGGGAGTATGTAGAAAATTGAACAACTGCTTTGACTTTGAAAGTATCTATAGCAATAGTGACTGCTTTTTCAAAGCATCTGAAAATCAAGTTATTTATTTATTTTTAAAGATTATTACTCATTGTGTATTTTTATAGGTATATTGTTTAGATGGTGAATCTATTCTGGAGATAATTATTTTCCAACTCACCTCATTGAGCCCGAGGAACAAGGAAAAAGTTCTTCGATCTTTTCTGATGGGAGGGACACTCATCTCAATCTTTTTACTGCTGAGGATTTTCTTCCATTTATTAGTCAGCTGATAGTAATCTGTAACAGTGATGTTTTGTTTTGGTTTATCTTGAGCATTGTAGGTTGCTACTAATTTCTAACTGCATTGGTTGTAAAGTTGTTTTATTGTTTGTATATATAAGTTAGCTATGTTTCTCC ATGCCAGGAAGATGGAGGCGGAGTAAGAGACTGATGGCTCAGGCCGATGCTCACGCTCATATTCCTCCCCTACTTCCGCTTACCACATCTCGCAAAGGTCTCTCAAATTCCATTTCCTGCTGGTACTGCGATTATAAGATCACCTCGTTCAACGAACTCATTTTCCAATTTGGACGAAGGCATGCCAGGGTTCTGAGAACGTGGTTCTCGATTGGGATTGGTTTCTCTCTTGCCGCTCTTGCTGTTGTTGCCACGGTTCTCTTTCGGGAACTTACAATCGTCATGCATATTTTTGGCAATAGCAATGTGATTCGTGGACTTCCTATTTCCTGTTCCTCGTTATTTGGTCTTCCTTCGTTGATTTCCAGCTGTAGTCTTTTCCCTGCTGGTGCTGGATACATAATTATCTCTACCTTAATATCTGTAGCTTTTCATGAATTTGGTCATGCTGCTGCTGCTGCAAGTGAGGGCGTGAAATTGGAGTATATTGCTGTTTTTATTGCACTACTTTTCCCTGGTGCTTTGGTGGCTTTCAATTATGATGCACTGCAGGATTCATCATGCTTCAATGCTCTTCGAATCTACTGTGCTGGTATTTGGCACAACACAGCTCTTTCTGCAGCTTCTGGATTGATATTATTCTTCCTGCCACTGATTTTGTTTCCTCTTTACATACCTGGCCAAAGTCCCACGGTTCTGGATGTTCCTTATACTTCGCCATTGTCTAGTTATTTGTCCCATGGTCATGTAATTCTGTCATTGGATGGCATGCATGTTCACAGTGTGGATGATTGGATCAATCTATCGGCTCAAATAAGTGATTTAACATTTCAAAATGAAACCCACTCCAGGCTTGTTGAAAACAACCAAATGGCCAATGGCAGGAGAGGATATTGTTTTCCAAATTTTATGTTGAAGGAAAGCAATAAAGTTCAGTTCACACATGATCAGTCAACTTGTTTTGGCGACTTTACTTCTTTTACTTCTATTCCTTGTGTTAGTTCTGCTGGTTTAATTGATGGTTACACAGAAGATAACTATTCTAACCGCAAAGAAGGGATATATTGCTTAAATGTCAATGATGTTATGAAGCTTAATAAGTGTTCTAGTTGGGATAATGCAGCAATCAATGATAACACTAGCTCCTGTATGTGTTCACAGGATGAAACTTGCTTAAGTCCAGTTCAAATGCCTGGTTTGGTATGGGTTGAGATTACATATCTAAACCCCTATTCCTCAGACTGTTCCTATTCCAGAGAATATCCACTCCCAAGTTCAAATTGTAGTGAAACTTTTATTTTTGTTGGTGATGTGGTCTCGATGGCGCGCTCTATTCAGCTGACCATGTACCGACCACGATTGGATTTTCATTTTGCTATATATCTTCCGGATGTACTGGAAAAGATTTTATCGTGCTTATTTCATACCTCTCTTGCACTAGCCCTTCTCAACAGTTTGCCGGTATATTGTTTAGATGGTGAATCTATTCTGGAGATAATTATTTTCCAACTCACCTCATTGAGCCCGAGGAACAAGGAAAAAGTTCTTCGATCTTTTCTGATGGGAGGGACACTCATCTCAATCTTTTTACTGCTGAGGATTTTCTTCCATTTATTAGTCAGCTGA ATGCCAGGAAGATGGAGGCGGAGTAAGAGACTGATGGCTCAGGCCGATGCTCACGCTCATATTCCTCCCCTACTTCCGCTTACCACATCTCGCAAAGGTCTCTCAAATTCCATTTCCTGCTGGTACTGCGATTATAAGATCACCTCGTTCAACGAACTCATTTTCCAATTTGGACGAAGGCATGCCAGGGTTCTGAGAACGTGGTTCTCGATTGGGATTGGTTTCTCTCTTGCCGCTCTTGCTGTTGTTGCCACGGTTCTCTTTCGGGAACTTACAATCGTCATGCATATTTTTGGCAATAGCAATGTGATTCGTGGACTTCCTATTTCCTGTTCCTCGTTATTTGGTCTTCCTTCGTTGATTTCCAGCTGTAGTCTTTTCCCTGCTGGTGCTGGATACATAATTATCTCTACCTTAATATCTGTAGCTTTTCATGAATTTGGTCATGCTGCTGCTGCTGCAAGTGAGGGCGTGAAATTGGAGTATATTGCTGTTTTTATTGCACTACTTTTCCCTGGTGCTTTGGTGGCTTTCAATTATGATGCACTGCAGGATTCATCATGCTTCAATGCTCTTCGAATCTACTGTGCTGGTATTTGGCACAACACAGCTCTTTCTGCAGCTTCTGGATTGATATTATTCTTCCTGCCACTGATTTTGTTTCCTCTTTACATACCTGGCCAAAGTCCCACGGTTCTGGATGTTCCTTATACTTCGCCATTGTCTAGTTATTTGTCCCATGGTCATGTAATTCTGTCATTGGATGGCATGCATGTTCACAGTGTGGATGATTGGATCAATCTATCGGCTCAAATAAGTGATTTAACATTTCAAAATGAAACCCACTCCAGGCTTGTTGAAAACAACCAAATGGCCAATGGCAGGAGAGGATATTGTTTTCCAAATTTTATGTTGAAGGAAAGCAATAAAGTTCAGTTCACACATGATCAGTCAACTTGTTTTGGCGACTTTACTTCTTTTACTTCTATTCCTTGTGTTAGTTCTGCTGGTTTAATTGATGGTTACACAGAAGATAACTATTCTAACCGCAAAGAAGGGATATATTGCTTAAATGTCAATGATGTTATGAAGCTTAATAAGTGTTCTAGTTGGGATAATGCAGCAATCAATGATAACACTAGCTCCTGTATGTGTTCACAGGATGAAACTTGCTTAAGTCCAGTTCAAATGCCTGGTTTGGTATGGGTTGAGATTACATATCTAAACCCCTATTCCTCAGACTGTTCCTATTCCAGAGAATATCCACTCCCAAGTTCAAATTGTAGTGAAACTTTTATTTTTGTTGGTGATGTGGTCTCGATGGCGCGCTCTATTCAGCTGACCATGTACCGACCACGATTGGATTTTCATTTTGCTATATATCTTCCGGATGTACTGGAAAAGATTTTATCGTGCTTATTTCATACCTCTCTTGCACTAGCCCTTCTCAACAGTTTGCCGGTATATTGTTTAGATGGTGAATCTATTCTGGAGATAATTATTTTCCAACTCACCTCATTGAGCCCGAGGAACAAGGAAAAAGTTCTTCGATCTTTTCTGATGGGAGGGACACTCATCTCAATCTTTTTACTGCTGAGGATTTTCTTCCATTTATTAGTCAGCTGA
BLAST of CSPI05G02820 vs. Swiss-Prot
Match: S2P_ARATH (Membrane-bound transcription factor site-2 protease homolog OS=Arabidopsis thaliana GN=S2P PE=2 SV=2) HSP 1 Score: 400.6 bits (1028), Expect = 2.7e-110 Identity = 227/510 (44.51%), Postives = 311/510 (60.98%), Query Frame = 1
BLAST of CSPI05G02820 vs. TrEMBL
Match: A0A0A0KQ25_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G139060 PE=4 SV=1) HSP 1 Score: 1066.2 bits (2756), Expect = 1.3e-308 Identity = 536/541 (99.08%), Postives = 537/541 (99.26%), Query Frame = 1
BLAST of CSPI05G02820 vs. TrEMBL
Match: A0A061F386_THECC (Protease m50 membrane-bound transcription factor site 2 protease, putative OS=Theobroma cacao GN=TCM_026662 PE=4 SV=1) HSP 1 Score: 476.5 bits (1225), Expect = 4.4e-131 Identity = 260/510 (50.98%), Postives = 326/510 (63.92%), Query Frame = 1
BLAST of CSPI05G02820 vs. TrEMBL
Match: A0A0B2Q9W2_GLYSO (Membrane-bound transcription factor site-2 protease OS=Glycine soja GN=glysoja_047417 PE=4 SV=1) HSP 1 Score: 459.1 bits (1180), Expect = 7.2e-126 Identity = 255/535 (47.66%), Postives = 331/535 (61.87%), Query Frame = 1
BLAST of CSPI05G02820 vs. TrEMBL
Match: V7CG86_PHAVU (Uncharacterized protein OS=Phaseolus vulgaris GN=PHAVU_003G274600g PE=4 SV=1) HSP 1 Score: 456.4 bits (1173), Expect = 4.7e-125 Identity = 255/542 (47.05%), Postives = 333/542 (61.44%), Query Frame = 1
BLAST of CSPI05G02820 vs. TrEMBL
Match: G7L723_MEDTR (Membrane-bound transcription factor site 2 protease OS=Medicago truncatula GN=MTR_8g070630 PE=4 SV=2) HSP 1 Score: 454.9 bits (1169), Expect = 1.4e-124 Identity = 255/538 (47.40%), Postives = 331/538 (61.52%), Query Frame = 1
BLAST of CSPI05G02820 vs. TAIR10
Match: AT4G20310.2 (AT4G20310.2 Peptidase M50 family protein) HSP 1 Score: 369.0 bits (946), Expect = 5.0e-102 Identity = 217/510 (42.55%), Postives = 295/510 (57.84%), Query Frame = 1
BLAST of CSPI05G02820 vs. NCBI nr
Match: gi|449456427|ref|XP_004145951.1| (PREDICTED: membrane-bound transcription factor site-2 protease homolog isoform X2 [Cucumis sativus]) HSP 1 Score: 1066.2 bits (2756), Expect = 1.9e-308 Identity = 536/541 (99.08%), Postives = 537/541 (99.26%), Query Frame = 1
BLAST of CSPI05G02820 vs. NCBI nr
Match: gi|778698688|ref|XP_011654589.1| (PREDICTED: membrane-bound transcription factor site-2 protease homolog isoform X1 [Cucumis sativus]) HSP 1 Score: 1054.3 bits (2725), Expect = 7.3e-305 Identity = 533/541 (98.52%), Postives = 534/541 (98.71%), Query Frame = 1
BLAST of CSPI05G02820 vs. NCBI nr
Match: gi|659074528|ref|XP_008437652.1| (PREDICTED: membrane-bound transcription factor site-2 protease isoform X1 [Cucumis melo]) HSP 1 Score: 1012.7 bits (2617), Expect = 2.4e-292 Identity = 506/541 (93.53%), Postives = 519/541 (95.93%), Query Frame = 1
BLAST of CSPI05G02820 vs. NCBI nr
Match: gi|659074532|ref|XP_008437654.1| (PREDICTED: membrane-bound transcription factor site-2 protease isoform X2 [Cucumis melo]) HSP 1 Score: 1000.7 bits (2586), Expect = 9.6e-289 Identity = 503/541 (92.98%), Postives = 516/541 (95.38%), Query Frame = 1
BLAST of CSPI05G02820 vs. NCBI nr
Match: gi|659074538|ref|XP_008437658.1| (PREDICTED: membrane-bound transcription factor site-2 protease isoform X5 [Cucumis melo]) HSP 1 Score: 922.5 bits (2383), Expect = 3.3e-265 Identity = 457/490 (93.27%), Postives = 467/490 (95.31%), 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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