CSPI02G01270 (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.TAAAGCTAAAATTTTACTCAATAAGTTGGACGTCACGAGGAGAAAAAAAAAAAGGACTGAACTGAAAAAACAACAACCTTACGGCGGGAAAAAGAAACAGCGCTCAAAGGAAACCTTCCTAAAAGCAATCTCTCTCTCTCTCTCTCTCATTTCATTTTATATGTAATTCAACTCTCAAAATTCTTAACCAAAACTCCAGATTCTCTCCCTGCTTCCTTTCTTCCTTCCGGAGAGATTTTCTTCAGAAATTTCCCGGAGAAAGAACGATTAACATTCAACCTTTTCTCCACTAACATTCTCAATTTCTTCAATCTTCTCTCCTTGATTTCGGTAACTGGATCCGTTGCAGGTACGGTTCTTCTTCTTCATCATCATCGCGTAGTTTGTTTGCCTTCTTGATTTTTTCTTTCTGTTGAGGCAACCGGTGATTATTATGTGATTTGTGACTCTTTGCTCTGAAATCTGTGTTAGGATTGAGTGCGAATGTGTTAGTTTTAGTATTTGCGATTGAAATTGTACCGATACTGTATTTCTTTTCTATGCCGGTTTCCTTTGTGAGAAATTTAGTTATCCTTAGTTTAGTTGCTTAATTTTTGTATTCTGTTGAGGTAACTGCTGATTATTATACGATTTTTAACTCTTCGGTCTGAAATCTATATTACGATTGAGTCCAAATGTGTTCGTTTTAGTATTTGCGATCGAAATTGTACCGATACTGCATTTCTTCGCTAAGTCAGTTTCCTTTGTAAGAAATTTAGTTTTTCTTCCTTTTTTTTTTTTTTTTGTTTTCTATCGGTTGGTGATTATTATGTGATTCGTAACTCTTCGCTCTGAAATCTTAGGATTGAGTGCGAATGTGTTCGTTTTAGTAGTTGCGATCGAAATTGTACCGATACTGCCTTTGTCTTCGTTAAGTCGGTTTCCTTTGTGAGAAATTTAGTTTTTCTTTTTCTTTTTTTTTTCTCTGTTGCCGGCTAATGAATAGGTTCTTTGGTAGATATTTATTTCTGTTCTATGTGCGTACTATGAAGTTCTTCGTGTTTAATCTGAAGGAAGAGGAGGTTTAACGTCGATTGGATCTACATTTATCACAATCAAATTACGGTATATAGACACTGTTCGTCCCTGAAAAATGTTAAAATCGTTATTCTGGGGGCTAATTTGATTGAGATAATTATTTTGAGTAAAGCAATGCCATCTGTTGGGAAACTGATGAACGAAGAATCATTTTGCTTCAAATTTGGTCTTCTGCAGTGGCCTACTTTTTCAATTTCCATGCCTGTACAGTACTCCATTGCGAAACTCGGTCTAGGATCCTAGAGCCGAGCCCACACAGATGCAATTACCAAGCTGACAGTTAAAGTATCAATGGTTATTTTATTATAGTTCTAATTTAAAATTCAATCCGAGGGTATAATCGTCATAGAATGAGTTTGGTAGAAGTTATTCCCCTGCAGCGGACTTACATTTCAAGAAATAGTCTCTTTTGTGCTTAAACTTGATGATGATTGATGCTCGCACGTATCCCGATGAACCAGCTTTTCTGGAATATAGAGAGTTGAAATTTCGGGTTGTTGGCTGATCGCCGAAAGGCGCATCTGATGCCGTGCCGGGCGGAAGGGGTCCCGATTGCTATTTATTTATTTATTAATTAATTTCTTTTTAGAGAGGGATATGGCAGCGCCACAGGATCTCTGTTGAAACTTGAAATTAACTCAAACCGTATAACGTGATTTCGATGGCGTTGATTTGATCTATCATATATTGATACATAGATTTAAACATTGACAGATTTCGAGAACGAAAACAAAAGATATATATCACAGTAATAAGTTAATTTCATAACCTCCCGTTCAAAATCTCTAAACTGTAATTTTCAGTTTTTAACTCACAGTTCACACATCTAACTTGGACTTTTGTTTCTACGCTTTGTCATTGAAGTTTCTTGCCGCCACCGCCTTCAACTCTTTTGTTATTGATTCAGGGAAGAGAAGCAAGTTGTGAAAACCCCGTTTGATTCTGTACTATACAGAGAATAATGGATGAAATGTAGACTGCCTTAAGTAGAAATGGAGACTAGCGGCGGAGGAAGCTCCGACGAGGGTCGCCGCATATTCAAGGCTGATACATGGTTTAGCCAATTTCGCAATGGATCTAATCCTTGGATGGCAAGATATATTTATGCCTTAATGTTTCTAATTGCTAATTTGTTGGCATGGGCTGTCCGGGATTATGGCCGCGGCGCATTGACAGAGATGGAAAGTAAGACTGAGTTATACTTCATAGATGTTACAGTATTCCTTGTGAATTTTGATGATATGTACATTAGCTTTCTGCATAATATTTGGATTTCAACATACATTCATAGCGCTGGGGGAAAAAAATTTAAATTATACTATGCCTGTGGATTAGAGTGAGCAATGCATAGCATTATCTCATCAATCTTCTACAACTAATTGATGGAATCTAACATATGTTGAAAATGGGTATAGGATTAAAAGGATGTCACGGGGCGCGTGATTGTCTAGGTGCTGAAGGAGTTCTTCGTGTAAGCTTGGGATGCTTTGTATCCTTCGTTGCTCAGAAGAGTCGGCTCTGTCTTTGAGTTATAGTTTAATTTCAAGTTAAGGTCATAATTTTTAGTCCTTAACGTCTACTTTAGATATTTTATTTCACCATGTTTCTTTCTACAACTGGCACTTCAAAGATGCGAGGACGTAGAAGTACTTGGCATTCTGGATGGTGGTCTGCAAAGATTATCTTATGGGTTGCCTTCATAATCATCCCCTTTGTGCTTCCCGCCACCGTTATTCGACTATATGGTTAGTCTCTCATTACCCCTTCCCCCCCAAAAAAGGATTTTAAAGTAACTAAAATGAAATTTCTGATGCATATTTTTGCAGGGGACGTTGCACATTTTGGTGCCGGGTACTTCCTTTTTCGCCGATGTACATTACTTCAAAGTTTACCCAAAGTTTCAAATTTTGTTTCAGAAGCTGGTGGAATATATTTTGAATTTAAAAAGAAGATTTCGATTGCTGGAACATGACGTTTAAAGTTTTTACCATTTTCAGGGTCTTTCTCCTGATTCAGCTTGTAAGCGTGATAAGCTTTATAACATGGTTGAATGATTGTTGCCAATCCGACAAGCCTGCAGACAGATGGTAAGCTACGTTACCTCATTCATTGCATTACCAAATCTGTTCTCTCTGAAAAAAAATTATGAACAGTTTTGATTTAGCTCTGAAAATACTTTACAATTTGCAGTACTTTTGCAGGCGTGAATTGTTTTTTTTTTTTTTTAACCCTAAAATGTGATTATATCAATATATACATATCAAAAGAAAAGAAGTAAAAAAAACAAGCAATCGTGAAGATTTAATTGAAGAAACGTTCGGATAGTTAAATTTAAATCTTCATATTTTGACAAACGTTTTGGGGGATAATTTTGGTTTTCTGCACCTTTCATTGGGCAAGCACAGTGATATCAGATTCACTTCTATAGCCTGAACTTTGTGTATGTATGACCAAGGCTGGTGTATTGAAGATTCAACGTATATGAGAAATGATAAAGATGGCATCACATATGAGAAAGCAATAGGCTATGGTCTCACACTTGTACTTTTTCTAAATGTAAGATACTGTTCTTGCAGTCAAATACACATCATGTTACTTGCAACAATGGCATATGTGATCTGTTTAGTGGGAATCATTTCAATGTACATATGGTATGTGCCACAGCCGACTTGTCTTCTCAATATTTTTTTCATTACGTGGACACTGGTTCTACTCCAACTCATGACTAGCGTTTCTCTCCATCCAAAAGTAAGTTCCAACATAATTAACACATCCATTGTTAGATTTCACCTCACCGATGATTTGGTGTATGACTGCTAACTAAGACCATAACAGGTGGATGCTGGCATCCTGACTCCTGGTTTGATGGGGCTCTACATAGTATTTATCTGCTGGTGCGCCATTAGGAGGTATGATGATCTCTACTTTTATCCCCATCTCTCATAGTCATCATGAGTGTCAGTTTAGTACTTATGTCTACATTAATACAAAAACTATGTTACTTTTGATGCTTTTGTAAGTACTTGTGTCTAGCCAGTTGATATCTATTCAACATTGTGTAGGTAGGGATTTGAACATATTGAACTCATTGAGTTTGAGTTAGCTACAAATAACTTCTGGATGTTGTGTTTTTAAGTGAGTTTTTTCATAAGTGATTTTTTTCTTTACTCTTAAAAAACTAGTTAGAAAAAATGCTTCTTTAGCACTCAAAAGATGTTTCTATTACTACAAAAGTCCTACCAATTCATAATTAAACTGAAGTGTGGGTGGGTGGTGAGGAGCCTAGTTTTTCTTCTGTCCAAGGGCCACCCACTACAATTCTTTGATATTCTAAGAAATGTAAGTGCAAGGCTACATCATCATGCCTTCATCATCATTAAACCAAGGCCAACTTTGGAATTCATTTTAGAAGAGAGATTGGTTTTCTTAACAACGGTTCCTGTAGTTGATACTTGTTACGAGATGTATTCTTCCATCTTTACCTCTTAAAAGTTCAAACACATTAGAAATAAACATTCTTTGCAATAAACAGCATTATAGTTTACACAACAAAAATTCTCATGTATCAATATATGGTTATTAAATATTAATTCTGTTATGATTTTAGGAATTTTGTAAATGCCTACTAATTTGGACAATTTTCTTGTAGTGAACCAGGAGGAGGAAAGTGTGTTAGAAATGCAGACTCTTCAAACAAAACCGACTGGCTAACCATTATAGTAAGTTCTATTTACTTCTTTAATGTTATGTAACCAAAGTTTAATATCCATTTTGTTTTCGATTTATTGTTTTTAATAGTTTAGTTATAAACATTAATTTTATCCACGAGTTTCGTTTTATCTACTTTAAGATCCAAGTCAAGTTTTGAAACAAAATGCCAGAAATTTAACTAACAGAAAACAAAGGATTTTGTCATTTGCTTTTTTTTTTAAAGATTTATGTTTGTTTCGTGATATAAATCTTCTTGATGTGAAAGAAAAAAACCAAATCAGTTTAAAGGGGGTTTTGCTTTACAAAGTTAAATTATATTCTTGATTTGGTATTGCTTATCATCAATTTAGTGCGATATATCTTTTCTTTATTTACCAATGATTTCACGAGTTCGTTGGTAATGATTTTACAACTGGACAGAGTACATATTTTAAAATTAAAAGTCAGTTGACAGAAAATTATCCTTTAGATGTATAGTTTTCCCAATTCTCTCCTTAAAAGTCCAAATACAATAAATATTATATAACATACTTTTTCTATATTTTTATGATATGATTCTATTTTTTTCCCCCACCCCTTCTCTTACACAAGTTACAACAATCATAACGCGTGTGACAGAGCTTTATCGTTGCTGTACTTGCAATAGTTATAGCAACATTCTCCACCGGAATTGACTCCAAATGCTTCCAGGTGCGTTCTTCTCCACTCTCAAAAAAAAAATTGTTTACCATAATTATTCTTATTTCCACGATAAAATTAAAATTTAAAAAATATATATATTTTAAATATAGCATGGACGTCTATTAGTGATATTGATATAATATAAAATTTTGGTATGTTTTTGTAAATATTTTAAAAGATTTATCTTTTAGTTCGAAAATAAAATGAAAGAAAAAGTTGATTGATAAAAGGTGCAGTTCAGGAAGGATGACAAACAAGACGAAGAAGATGATGTCCCATACGGCTATGGTTTCTTCCACTTGGTTTTCGCCACCGGAGCAATGTACTTTGCAATGCTTTTGATTGGTTGGAATACAAATCACCCCATTCGAAAGTACGTTTCCCTCACTCCAACCTTTTTCTTTCCCATTAATTCAGGTTTTTTTTTCCTTTGAGAAAAGCACAATATAATACATATTTTAAGCTAAATTAATTTTTTTAAAAAAAATCATAATTCAACTTTTTTTTTCCATTAATTCGGGATTTTTTTTTCATAAAAGAATAATATAATACATGTTTTAAGCTAAATTAATTTTTTTAAAAAGTCGTAATCGAACTTTGTCTTTTTGTTTAAGAAAATAATTTGATTATGAAAAGCAATAACATTCTTTACCTTTCCTAAATATTTCAAAACAACTATTATAATTGAAATTGCTTTGAATGAGGAATGTGATTTGGAACATTGTGATCTAATAGTAGTGTTAGTGGATTGAAAACTAGGACTTGAACACCACTAACCCATTGCTATTTCTAATCACCAACTTACATTGTTCCAAATTCCATTCTACTACTCTAATGGATGTTTGAAACAACTTGGATTCCTTTTTGAGTAATTTAACCTGCTGTATTTTTATAATATGGTCTTTAAAATATAGATCATGGTTCAAGAAATGATTTTCTTAAAATACAAACACATTAAATTAATAAATAAACTTACTCAACATCCACTAACAAAAGTCACGTTCTCCATCTTTTCATGCTTTTTTTATGCCAACAAAATCTTTTCTGCTTTTGTTATAAACACAGCAATTCACTTCTGGAATCTGACTTTAAGGTTCTTTTTTTTATCTTTGTTTCCGTTATTAAAAACCAAAGCTTTAGTTTGCCACTAAGTGTTGCCTCTCAAACTTTGACTCCTCATATCACTTTTTTATCCACCAAATACTTCCTTCTTTGAATAGGCAATAAACGCCAACTCAAAGATTCCTATGGACCCTGTAATAATAGGGGACTCGACATTGACTCAGATTCCAACTAACCACATTAGTTTAATGCGATAATTCTGGATTTTGTTTATGGGTTAGTGAGGAGAAAGGGTTAATTTTAAACTGTACAGGTGGACAATTGACGTTGGATGGACAAGCACTTGGGTTAGGATTGTCAATGAATGGCTCGCTGTTTGTGTTTACTGTAAGTTCCTTTTTCTAATGCTGTATTTGTGGTTTTGCGTTTTTTATTTTGAAGAACCTGTCTTTTGTTTTTATCCATCTTTTTTTTATTTAAAATGTTTTTTTTTTTTCACTTTTTCAATCGAAAGCCGTCTTTGGATAAGCTTGGGAGGTGATTTTAAAATTGTTTTTAAATAAAATCACTTTTTTCTTCATATTTTGGTTTTAAAATTAACATAATTATTTAATTCATTTCAATTTCACGATTTAGGATTGTAATCATTCCAAGATCACTCTCTAATTTTATAAATGTTTCTATTTGAAAATCTACTTATCTCTTATTTTCAATTTTGAAAACGAAAAATAGTCCTTCCATTACCGAAGCTAAATTCCTTTTTCAAGTGAATATGGTGCCTATTTCTTAAGTTGGGTTTTGGTGGGCCAAACTGAACCAAACCATTTTTGGTTCTCTCCTGAAAATAAGAGAATCAATGTGCTATTTTTATAATTAAGGTATCCTTCTATATTCATATTTAAAGTTAATAACAAATATTCGTTTAACAGAAAAAAAAAAAACATTTTTTTTTTTTGCATTATGGCAATTTATTGTAGATAAATTCATATTTTGTTTTATTTATATATATTTTTGGAGCAAAAGAAAAAAAGTTGTTGTATTTTCCAAATTGGTTTTGAAATGGAACATTTTCAAATATAACAATAAACCAAAATATTTATAAAAATATATCAATAGAATTTGCAAATTTTTCTATGTCTGCCATTTTCAATATTAGTTTTTAAAGTAAAAATTAAAACAATGTTCGATATCAAGAAAAAATCCTTTATACTTGAAAAAACCCAAAACTTCATTTGAAAATTGAAAATCATTTTGCAAATCTGTTTTCAACCACCACCAAGAAGTAATTAAATAAAATTAATCTAATAGAGTATTTTCTAATGTAGTATGGATGCTGGTGGCTCCAGTGATATGGAAGAACAGGCAAATGGTTGTAGGAGCTGTATGAGAAATCAAACCCCCAATTCATTCAATGCGTGGCTCCAAAAATTCCTTCCTGATTGAATTATATTATATATAGGATTTGGAGCCACCCTATAAAATTCAAAACATGTAATTCCCAATTGTTTATTTTTTTTTTTGTTCTTTTTTGTTTTGTTTTTTTTTTTT ATGGAGACTAGCGGCGGAGGAAGCTCCGACGAGGGTCGCCGCATATTCAAGGCTGATACATGGTTTAGCCAATTTCGCAATGGATCTAATCCTTGGATGGCAAGATATATTTATGCCTTAATGTTTCTAATTGCTAATTTGTTGGCATGGGCTGTCCGGGATTATGGCCGCGGCGCATTGACAGAGATGGAAAGATTAAAAGGATGTCACGGGGCGCGTGATTGTCTAGGTGCTGAAGGAGTTCTTCGTGTAAGCTTGGGATGCTTTATATTTTATTTCACCATGTTTCTTTCTACAACTGGCACTTCAAAGATGCGAGGACGTAGAAGTACTTGGCATTCTGGATGGTGGTCTGCAAAGATTATCTTATGGGTTGCCTTCATAATCATCCCCTTTGTGCTTCCCGCCACCGTTATTCGACTATATGGGGACGTTGCACATTTTGGTGCCGGGGTCTTTCTCCTGATTCAGCTTGTAAGCGTGATAAGCTTTATAACATGGTTGAATGATTGTTGCCAATCCGACAAGCCTGCAGACAGATGTCAAATACACATCATGTTACTTGCAACAATGGCATATGTGATCTGTTTAGTGGGAATCATTTCAATGTACATATGGTATGTGCCACAGCCGACTTGTCTTCTCAATATTTTTTTCATTACGTGGACACTGGTTCTACTCCAACTCATGACTAGCGTTTCTCTCCATCCAAAAGTGGATGCTGGCATCCTGACTCCTGGTTTGATGGGGCTCTACATAGTATTTATCTGCTGGTGCGCCATTAGGAGTGAACCAGGAGGAGGAAAGTGTGTTAGAAATGCAGACTCTTCAAACAAAACCGACTGGCTAACCATTATAAGCTTTATCGTTGCTGTACTTGCAATAGTTATAGCAACATTCTCCACCGGAATTGACTCCAAATGCTTCCAGTTCAGGAAGGATGACAAACAAGACGAAGAAGATGATGTCCCATACGGCTATGGTTTCTTCCACTTGGTTTTCGCCACCGGAGCAATGTACTTTGCAATGCTTTTGATTGGTTGGAATACAAATCACCCCATTCGAAAGTGGACAATTGACGTTGGATGGACAAGCACTTGGGTTAGGATTGTCAATGAATGGCTCGCTGTTTGTGTTTACTTATGGATGCTGGTGGCTCCAGTGATATGGAAGAACAGGCAAATGGTTGTAGGAGCTGTATGA ATGGAGACTAGCGGCGGAGGAAGCTCCGACGAGGGTCGCCGCATATTCAAGGCTGATACATGGTTTAGCCAATTTCGCAATGGATCTAATCCTTGGATGGCAAGATATATTTATGCCTTAATGTTTCTAATTGCTAATTTGTTGGCATGGGCTGTCCGGGATTATGGCCGCGGCGCATTGACAGAGATGGAAAGATTAAAAGGATGTCACGGGGCGCGTGATTGTCTAGGTGCTGAAGGAGTTCTTCGTGTAAGCTTGGGATGCTTTATATTTTATTTCACCATGTTTCTTTCTACAACTGGCACTTCAAAGATGCGAGGACGTAGAAGTACTTGGCATTCTGGATGGTGGTCTGCAAAGATTATCTTATGGGTTGCCTTCATAATCATCCCCTTTGTGCTTCCCGCCACCGTTATTCGACTATATGGGGACGTTGCACATTTTGGTGCCGGGGTCTTTCTCCTGATTCAGCTTGTAAGCGTGATAAGCTTTATAACATGGTTGAATGATTGTTGCCAATCCGACAAGCCTGCAGACAGATGTCAAATACACATCATGTTACTTGCAACAATGGCATATGTGATCTGTTTAGTGGGAATCATTTCAATGTACATATGGTATGTGCCACAGCCGACTTGTCTTCTCAATATTTTTTTCATTACGTGGACACTGGTTCTACTCCAACTCATGACTAGCGTTTCTCTCCATCCAAAAGTGGATGCTGGCATCCTGACTCCTGGTTTGATGGGGCTCTACATAGTATTTATCTGCTGGTGCGCCATTAGGAGTGAACCAGGAGGAGGAAAGTGTGTTAGAAATGCAGACTCTTCAAACAAAACCGACTGGCTAACCATTATAAGCTTTATCGTTGCTGTACTTGCAATAGTTATAGCAACATTCTCCACCGGAATTGACTCCAAATGCTTCCAGTTCAGGAAGGATGACAAACAAGACGAAGAAGATGATGTCCCATACGGCTATGGTTTCTTCCACTTGGTTTTCGCCACCGGAGCAATGTACTTTGCAATGCTTTTGATTGGTTGGAATACAAATCACCCCATTCGAAAGTGGACAATTGACGTTGGATGGACAAGCACTTGGGTTAGGATTGTCAATGAATGGCTCGCTGTTTGTGTTTACTTATGGATGCTGGTGGCTCCAGTGATATGGAAGAACAGGCAAATGGTTGTAGGAGCTGTATGA
BLAST of CSPI02G01270 vs. Swiss-Prot
Match: SERIC_NEMVE (Probable serine incorporator OS=Nematostella vectensis GN=serinc PE=3 SV=1) HSP 1 Score: 117.1 bits (292), Expect = 4.5e-25 Identity = 105/426 (24.65%), Postives = 189/426 (44.37%), Query Frame = 1
BLAST of CSPI02G01270 vs. Swiss-Prot
Match: SERIC_MONBE (Probable serine incorporator OS=Monosiga brevicollis GN=serinc PE=3 SV=1) HSP 1 Score: 107.1 bits (266), Expect = 4.6e-22 Identity = 100/445 (22.47%), Postives = 184/445 (41.35%), Query Frame = 1
BLAST of CSPI02G01270 vs. Swiss-Prot
Match: YK17_SCHPO (Membrane protein PB1A10.07c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAPB1A10.07c PE=3 SV=1) HSP 1 Score: 99.4 bits (246), Expect = 9.7e-20 Identity = 93/397 (23.43%), Postives = 171/397 (43.07%), Query Frame = 1
BLAST of CSPI02G01270 vs. Swiss-Prot
Match: SERC3_HUMAN (Serine incorporator 3 OS=Homo sapiens GN=SERINC3 PE=2 SV=2) HSP 1 Score: 87.4 bits (215), Expect = 3.8e-16 Identity = 68/266 (25.56%), Postives = 130/266 (48.87%), Query Frame = 1
BLAST of CSPI02G01270 vs. Swiss-Prot
Match: SERC3_PONAB (Serine incorporator 3 OS=Pongo abelii GN=SERINC3 PE=2 SV=1) HSP 1 Score: 86.3 bits (212), Expect = 8.5e-16 Identity = 67/266 (25.19%), Postives = 130/266 (48.87%), Query Frame = 1
BLAST of CSPI02G01270 vs. TrEMBL
Match: A0A0A0LF26_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_2G005270 PE=4 SV=1) HSP 1 Score: 825.1 bits (2130), Expect = 3.7e-236 Identity = 399/400 (99.75%), Postives = 400/400 (100.00%), Query Frame = 1
BLAST of CSPI02G01270 vs. TrEMBL
Match: M1TDA1_9ROSI (Maternal effect embryo arrest 55-1 OS=Dimocarpus longan PE=2 SV=1) HSP 1 Score: 659.8 bits (1701), Expect = 2.1e-186 Identity = 309/389 (79.43%), Postives = 346/389 (88.95%), Query Frame = 1
BLAST of CSPI02G01270 vs. TrEMBL
Match: K7KRM5_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_05G232100 PE=4 SV=1) HSP 1 Score: 656.4 bits (1692), Expect = 2.3e-185 Identity = 303/393 (77.10%), Postives = 344/393 (87.53%), Query Frame = 1
BLAST of CSPI02G01270 vs. TrEMBL
Match: K7L4U1_SOYBN (Uncharacterized protein OS=Glycine max GN=GLYMA_08G039500 PE=4 SV=1) HSP 1 Score: 654.8 bits (1688), Expect = 6.6e-185 Identity = 304/394 (77.16%), Postives = 341/394 (86.55%), Query Frame = 1
BLAST of CSPI02G01270 vs. TrEMBL
Match: A0A0B2Q4V8_GLYSO (Serine incorporator 3 OS=Glycine soja GN=glysoja_002693 PE=4 SV=1) HSP 1 Score: 654.8 bits (1688), Expect = 6.6e-185 Identity = 304/394 (77.16%), Postives = 341/394 (86.55%), Query Frame = 1
BLAST of CSPI02G01270 vs. TAIR10
Match: AT3G24460.1 (AT3G24460.1 Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 607.4 bits (1565), Expect = 6.2e-174 Identity = 276/381 (72.44%), Postives = 327/381 (85.83%), Query Frame = 1
BLAST of CSPI02G01270 vs. TAIR10
Match: AT4G13345.1 (AT4G13345.1 Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 600.1 bits (1546), Expect = 9.8e-172 Identity = 275/394 (69.80%), Postives = 329/394 (83.50%), Query Frame = 1
BLAST of CSPI02G01270 vs. TAIR10
Match: AT2G33205.1 (AT2G33205.1 Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 372.1 bits (954), Expect = 4.4e-103 Identity = 190/364 (52.20%), Postives = 251/364 (68.96%), Query Frame = 1
BLAST of CSPI02G01270 vs. TAIR10
Match: AT3G06170.1 (AT3G06170.1 Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 187.2 bits (474), Expect = 2.0e-47 Identity = 114/392 (29.08%), Postives = 196/392 (50.00%), Query Frame = 1
BLAST of CSPI02G01270 vs. TAIR10
Match: AT1G16180.1 (AT1G16180.1 Serinc-domain containing serine and sphingolipid biosynthesis protein) HSP 1 Score: 186.4 bits (472), Expect = 3.4e-47 Identity = 112/383 (29.24%), Postives = 192/383 (50.13%), Query Frame = 1
BLAST of CSPI02G01270 vs. NCBI nr
Match: gi|449443319|ref|XP_004139427.1| (PREDICTED: probable serine incorporator isoform X1 [Cucumis sativus]) HSP 1 Score: 825.1 bits (2130), Expect = 5.3e-236 Identity = 399/400 (99.75%), Postives = 400/400 (100.00%), Query Frame = 1
BLAST of CSPI02G01270 vs. NCBI nr
Match: gi|659071122|ref|XP_008458224.1| (PREDICTED: probable serine incorporator isoform X2 [Cucumis melo]) HSP 1 Score: 819.3 bits (2115), Expect = 2.9e-234 Identity = 393/400 (98.25%), Postives = 400/400 (100.00%), Query Frame = 1
BLAST of CSPI02G01270 vs. NCBI nr
Match: gi|659071120|ref|XP_008458214.1| (PREDICTED: probable serine incorporator isoform X1 [Cucumis melo]) HSP 1 Score: 814.3 bits (2102), Expect = 9.4e-233 Identity = 393/402 (97.76%), Postives = 400/402 (99.50%), Query Frame = 1
BLAST of CSPI02G01270 vs. NCBI nr
Match: gi|1009160439|ref|XP_015898350.1| (PREDICTED: probable serine incorporator [Ziziphus jujuba]) HSP 1 Score: 662.9 bits (1709), Expect = 3.5e-187 Identity = 315/394 (79.95%), Postives = 352/394 (89.34%), Query Frame = 1
BLAST of CSPI02G01270 vs. NCBI nr
Match: gi|1021491781|ref|XP_016188892.1| (PREDICTED: probable serine incorporator [Arachis ipaensis]) HSP 1 Score: 661.8 bits (1706), Expect = 7.8e-187 Identity = 307/393 (78.12%), Postives = 347/393 (88.30%), 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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