Csor.00g145450 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSinitialstart_codonpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGTTCCCTTTATCTTCGGCCGTTTTCTCTCGCCGGTTATCTCTCTCTGCCGCCCCTCACACTACGAGATGCAGCTTTCTTCATACACATTGCATAATTCCATTTACCCGGTCATCTGGAAGCTCGATTCTCCCGAAACTCTCCTCCGCGTCTGCTAAGAACTCATCACTGGTTGGTCCCCGATTCAATGTAAAAGTGTTTATTTCTTGTAAATTTCGTAATGTCAGTTCAATTTTCCTGTTTAATTGTTTGCACGGAAAGTATCTTCAAATTTCTCTTTTGTTTCAATGAGATTAGTCCCCAAACTTGGCGAGAAATGTATAGGGATTTTTTAAGCAAATAGAACTTATTCTAATGGAATTATGTTCGAAGCTTCGGATGAAAGTGATAGAAATCTACTGAATGTGCCACCTCTATTGACATTTTGGTGATTCTCTTTTACTTGGTGCTCTTCAATTTCTGAATAGAGAGTTTCAGTGATGCAGGAATCAATGGACCAGCATAAGTTTCTCCGACAGTCATGTATTTCAGGTTTTGAACATGGAAAGAGGGAATTTGGGAAGTTAATTGCTATGATCCTCATATGTATCCAAATTTCTTCCCCACTGCCCCTGCTGAATTGGGACATTCAATCAGTTCATCCTGCCATGGCAGTACTTTATTCACCTGACACCAAGGTCCCAAGAACAGGAGAACTTGCATTAAGGAGAGCAATTCCTGCAAACACGAGCATGAAGGCGATACAGGTTGTTGCTGAGATTCTAGTATGTACATTTTTCTTTTATGGTAATCATTAATTGTTTTGCCACACTGTTTTTCCTTCTAGGACTCTTTAGAAGAGATATCATATTTGCTAAGGATTCCGCAAAGGAAGCCTTACGGAACTATGGAGGGTAATGTGAAGAAAGCTCTCAAGGTAACATATAACCCTGCTTCTTCATTCATGTAACTAATCAGTGTTTAATTACTTGATTAGTGTTTGATTGCTGGCTGTTTTTAGTTCCTCCAGTCTGCGTCTTATTTTCTTCTCCACGTATTTGTCTTTTACCTTTCCCCATGACTGATTCTTCTGCTTCCAAGGAGTATTCTTCTCAGGTTTTTCTTCTTTCTAACACCTGTAATCTTGTTTCAATTCGCCTGGGCGCATCCAATTTTGTGATGTAGAAGCTTCAAATGACCTCGATTTTGAAAGGCTCATAAGCTTATTGATTCATTGATGGATCAAATTCATAAACCGGATGCTCTTTTACTGTCCTTATCGTCTTTGATCCCATCACCAACGACTTCTGAATCGGCGTCCTTTCTTTCTGCCATTCCTTGTTCAAATCCTGTTTATGAGGATTGGATTGCGAAGGATCATATTCTAGAGATGGTTATCAATGCTACACTTTCTCCGGCTGCTCTCGCAAATATTGTGGCTGTGAGACTTCTATGGATTAAGCACTATTGTTACTCTATCCACAAAAGGCACTACGGTTATATTCAGGCTCTTATTTCGCAGCTGAAGCTTCAGTTTGAAATGATAGATTTTGGAATTTTAAGATACTTTCTTGGGCTTAAGATTTCTTATACTAGGATGAGATTTCTCATAAGAATGGTATTGTTGTGCATCAAGCAAAGATTACTAGGGATGTTTTGAAGCGTTTTCACATGCTTAGTGCTAAGTCTTGTGCGACTCCTCTTGTTTTAGCAGCAGCTTCTTACTGTGGTGCTCTTTGTTCTGCTGAGGATGCTAAAAACGATCGAGTTCCTATTGGTGCCCTTCATTACTTAACCTTCAGTAGGCCTCATATATCGTTTTGTGTTAGTAAACTTTCTCAGTATATGCACACTACTTCTGATTCTCATTTAGTTGCTGCTAAGAGGATATTGAGATATCTCTCAGGGCTATTGGTCTTGGTTTACTGTTTCATCGAGGGTACTTTGATTTTCTTTGTCTCCATGCTTATTCTGATTCAGCCTGGGCTGGTGATTCTCTTGATAGACATTCCACGTTTGGTTACCTTATGGACAAAGCATGCTGGAATGACCCATATTGTTCTGTGGAGATAGTCTTCACTTTTAGAAGCGAAGAGTAAGCAACGTGACCACGTCGCTGGGGATGCTAGAGATGTTGGAGCCATCAAGTGCCAAAGCCTAGGCATGACAACTATAGATGGTATCAGAGCGATACCTCTCCTTCTAAGATGTGTTTCGTCAATGAACCAATGCGGATGCTGGTGGGCATGTGACTAACTCCCAAGTAAAGAAGGAGTACATGAATGTACCGAGGCCACAACCGAATGAGAGCGATCCTGAAGATAGAATGACTACGAAAGGCTTAAAAGAATTGAAAGTCACTACCTATATCAATAAGGTGCACCTTTTTTTGTGACTCAATTATAGGAACTCCATGGTTAAGCGTAATTTGCTTGGAGTAATTCTATGTTGGGTGACCTCCTATGAATTTTCCTAGGATACATGTGAGTGTGAAAAAACCATGCTGGAAGGACTCGTGTTGACCTATGAGAATAGTCTTCACTCTTAGAAGCGAAAAGTAACGTGACCATGTCGCAGGGGATGTAGGATAATGTTAGGGCTATTAGGTGTGTCGAATTTTGATCCAAGTTCTGGGCATGAGCCATTACAATTAGGATGTTAGAGCTACCATATATTACTACAGATCATCAACTTACCGATTTTTTTACTAAAGCTCATACCAATTTTTTCCTTCAGCTCTGTGGTCCAATTTCATGACTCTTCGTGCATGTGTTTGAGGGAGGAGAGTAACTAATCAGTGATTAATTATTGAGTAATTTTTAATTGTTGTTCTTTTTGCATTGTTGCCTGTAAATAGGGTTGTACATTCTTTATTCATTAAATGAGAAGAACTCTCTCTCTCTTTGAGAGATTATCGCATGTAGTACAATAGTTTAACTTGAATCAGAAGATAATTTCTGGTAAAAATATTGTGTCGTTCTTTCCTTGACCATGAGGTTAAGTTTACTTTTACTTTTGTTTGTGTTTTCCTTCCTCGTTTAGATCTATTTATCAGTTGGAGCGGTAACACATTCTAAACTTCTTATTTGACTTGTTTATGTTTGCCTATTGCAGCTGGCAATTGATGAGAAAGACTTGATTTTGGGAAGTATACCATCAGAGTTGAAGGAAAAAGGTTCATCGTTATACACAACTCTAACTGAAGGCAAGGTACATAAGAGCAGCGCTCCATTTGACTTGGAAACCTGCTGTACATCTCCATTATAATGCTGATTGAAATTAAGGAAGAAGATTATAACAAGCCCTTGATCTAAGAAGTATGGTTGAAACATATAAGATGCACGTGATATTTAATGGACCTCAAAATGATGCTTTTGTCTTTCGAAAAAAGAGAATAGATAATGAAATAGACATGCGTAGTTACACACAGTATAAAATGAACATTTCATCATTAGTTTTTATTTATTCTTTTAAAGCAGCAAATGTTTTAACAATATCCTCAATGTCATCACGTGGCAGCAAACTTTGAAAAAAAATCATATTAAGAAATTATCCTCTTGTCAGTATGAAAGTCTGCTGCCTGTGTTTAGTGGTTATTGAAGACAATACTTACAATAAAATGAAGTGTCTATGCTTCATAAAATTTGATCATAGCGATTTTAACTCTTTTGAGTAGTTTCTCTAGCAGTAAAATTTTTCGTAGGTCAGAACTTAAAGTCTTATAATTAGAATTTGGAATGATAAATAGGTCTTTTGGCTAACTGTGCCGGAAAACAGTGTTGTGGGGGTGATTTTATGGCGGATAGAATAGTAAATACGAATTGAAGTAATGTAATATTGCAATCGAGACTTCATATAAAATTTGTGTCCCAGTTTATTTTTCGTCGATGTATTTTACCATTTTTCTCTCTTTCACATAATCTACTCATGATTAGGTTTTGGTTAATTTTATTGGGTAATTCAGAAGCTAGATGAACATTTAACATTTCTTTGGTTCTCAGGGTGGACTGCAAACTCTCCTCCAAAGCATTAGGGATAATGACCCAGATAAAGTGTCTGTAGGACTTGCAACATCACTTGATACTGTTGCAGAGTTGGAATTGTTGCAGGTTAGCATGTTAAACCACTTAAAGAACTACCCACAGCTTGACATGGGGAAAAGTTGGAGTTGTATGACCTAGAAACAATGTTATCTGCTTATGTTTTTTTTCTTTTTATGGTATAATAGGGTTCTTATCCTATTTTTCCTTAACATTCTTGTCCCACAGGCCCCTGGATTGTCATTTTTATTGCCTGAGCAATACTTGAAATATCCAAGGTCAGTAATTATTCCCATCAATACTTCATTTCCTGTTTGAATGGCGCCCTCGCACCCATATTTCATTTCTTATCACTCTCCGACTGTCGAGGACTAAGAATTAGCTCGAAACATCCATCATAGTCATTATCCTCAAGATGCATTCAAGTGCTTTAGTTTAGCAATTCAACCATATTTCCTTATTCAGTATGTGAAGATGCATGTGATGTAGGACAAATAGATAGGAGAAAGAGAGACTAAGAATATGGACGTTGTGACAACTAATATTCAAAATTCTACTCATTCAAAACTAAACTAGGATTTTCATCCTAAGCCTTTGTGTATGGGTATCCATCCCTAAACCAAACTTGGTTAGATTCTATGTCACAAGGGCAACGCTAAAATTGCTATGATCCTAAAAACTCTGCTATCCTAGTTAAGATATTGTTATTCATATAATTCAAAATAAATACAATATGCATTTATCTTAGTTCGACAAATGTATACATGTAACTCCTCCAATGGCTTTCGCATTAGGGTGACTCCTTATTTCATGAGTTATTACTTTTTAATTTTTATCATCGTGAAGAATGATATAAAGACTCTTATAGTTTGGAATGCAGAAAACGTCATAACACATTGATTCATGATTGGGTCCATATTCGTATTTTTTGCTTTTCTGTTAGTTTACCTCCAGATTTACAAAAGATAAGTGAGATTAGCTACTGGAGTTATATTTTCATTTTGGATAAATGGATTTATTCTAATGTTACCTCAGATTAGTGTATTATTAACTTTGTGATTATGCTTCATGTGACATATGCTATATAGACGACTTCCGTTAATTTATTATAGAAATGTATTGAACGTTCTCCATGAGTTTTGAGAGTCAAAGATCAATGTCTCATAGTGATTTGTAGGTTGACAGGGAGAGGAACTGTTGAATTTACCATTGAGAAAGGAGATGGTTCGGCTTTTTCCCCACAAGCAGGTGGTGAATCTAGCAATACAGCTACAATTCAGGTTTGTTGAACCTTGATTACTTTGGACGTCGTTATTGGTAATTCTCAGAAAAAATTTGTATTTAATTCACAATATATATTTTCTCTCTGACTCGAACTCGTTGGTCTTGACTTGTGATCATCGATCTTTCACATAAAGACAATAGTAGGATCAAGTGATACTGATATTATTACCCTCGTTTCCAGGTTGTAGTGGATGGATTTTCAGCACCATTGACAGCTGGGAATTTTGCAAAACTGGTAAGGTAGTTGAGTGTCAGCCCCACTTAAGCTTAATTGAAGGACGTCTTTACACTGCTTTTTAATTTTCATTTATGAGTTAGGTACTTCATCTTAGGAATAACATGAATCACGGATCTCCATAATGGTATGATATTGTACACTTTGAGCATAAGCTTTCGTGGCTTTCCTTACTTATAAACCCATGATCATTCTCTAATATTAGCCAATGTGGGACTCCCTCCCAACAATCGTCAACAATCCAATAATCCTCAACAATTCTCAAGAATCCTCCCCTTGAACAAAGTACATTATAGAGTCTCTCCTGAGGCCTATAGAGCCATCAAACAGCCTCCTCTTAATCGAGCCTCGACTCTTTCTCTAGAGCCCTCGAACAAAGTACGCCCTTTGTTCGACACTCTAGTCACTTTTGACTATACCTTCGAGGCTCACAATTCTTTGTTCGACACTTGAGAATTCTATTGACATGTCTAAGTTTAAGGTATGACACTGCTGTCATGTAAGGAATCAAGGATCTCCACAATAATATGATATTGTCCTCTTTGAGCATATGCTCTCGTGGCTTTGCTTTAGGCTTTCCCAAAACATCTTATACCAATGAATATGTATTTCCTTACTTATAAACTCATGATCATTCCCTAATATTAGCCAATTGGGACTCCCTCCCAACAATCCTCAACACTTCACATATTCACATATGACACAAGTAACATAACAAGTTGAAATAAAGAAAACTGTACGGATAGCTTGAAAAAATATTGGTTGTGCATGGAAATTGAGTATATCTTCCATGTTTTTCGCTGAATTGCAGGTAATTGATGGAGCTTATAATGGAACAAAACTCAGCTGTACAAGTCAAGCTGTTCTTTCTGAAAATAGTCTTGATAACAACAAAGGCTATAGCATTCCCTTGGAAATAAAGCCGTCAGGACAATTCGAACCCTTATACAAAACAACCCTTAGTGTGCAGGTTTAATCCTGTTCTCATTATCGACTTATAATTTATTTAAGAACTTTTCCGTTTCGTTTTTCTTATATCATTTTTCCCCTGACATGGAAGGATGGAGAATTGCCGGTCTTACCTCTGTCTGTGTATGGGGCAGTTGCCATGGCACATAATGAAGATTCAGAGGAATATTCTTCACCATATCAATTCTTCTTCTATCTGTATGATAAAAGAAATGTAAGTTTGGTTCATTATTTTGTTTACATATTTTTGGACGCAGTTCCTGGTTGAAACTGCTCATGAGTTTGCTATCTGGTTATGCAATTCATATTTCAGTCTGGCTTGGGAGGACTATCCTTTGATGAAGGGCAATTTTCAGTTTTTGGGTAAATAATTTGACCACTGAACCTTCTCTCTTCTCTTCAACCTTTGAAGTTTCATTAATCTTTATACTCTCTTGTGTCTCTCTTGTGTCTGGTAGATACACAACCGTTGGACGAGACATCCTTCCTCAGATTAAAACGGGAGACATAATTCGATCTGTGAAACTGGTGGAAGGTGGAGATCGCCTTATCCTACCGAACGAGAATTGA ATGGCGTTCCCTTTATCTTCGGCCGTTTTCTCTCGCCGGTTATCTCTCTCTGCCGCCCCTCACACTACGAGATGCAGCTTTCTTCATACACATTGCATAATTCCATTTACCCGGTCATCTGGAAGCTCGATTCTCCCGAAACTCTCCTCCGCGTCTGCTAAGAACTCATCACTGGAATCAATGGACCAGCATAAGTTTCTCCGACAGTCATGTATTTCAGGTTTTGAACATGGAAAGAGGGAATTTGGGAAGTTAATTGCTATGATCCTCATATGTATCCAAATTTCTTCCCCACTGCCCCTGCTGAATTGGGACATTCAATCAGTTCATCCTGCCATGGCAGTACTTTATTCACCTGACACCAAGGTCCCAAGAACAGGAGAACTTGCATTAAGGAGAGCAATTCCTGCAAACACGAGCATGAAGGCGATACAGGACTCTTTAGAAGAGATATCATATTTGCTAAGGATTCCGCAAAGGAAGCCTTACGGAACTATGGAGGGTAATGTGAAGAAAGCTCTCAAGCTGGCAATTGATGAGAAAGACTTGATTTTGGGAAGTATACCATCAGAGTTGAAGGAAAAAGGTTCATCGTTATACACAACTCTAACTGAAGGCAAGGGTGGACTGCAAACTCTCCTCCAAAGCATTAGGGATAATGACCCAGATAAAGTGTCTGTAGGACTTGCAACATCACTTGATACTGTTGCAGAGTTGGAATTGTTGCAGGCCCCTGGATTGTCATTTTTATTGCCTGAGCAATACTTGAAATATCCAAGGTTGACAGGGAGAGGAACTGTTGAATTTACCATTGAGAAAGGAGATGGTTCGGCTTTTTCCCCACAAGCAGGTGGTGAATCTAGCAATACAGCTACAATTCAGGTTGTAGTGGATGGATTTTCAGCACCATTGACAGCTGGGAATTTTGCAAAACTGGTAATTGATGGAGCTTATAATGGAACAAAACTCAGCTGTACAAGTCAAGCTGTTCTTTCTGAAAATAGTCTTGATAACAACAAAGGCTATAGCATTCCCTTGGAAATAAAGCCGTCAGGACAATTCGAACCCTTATACAAAACAACCCTTAGTGTGCAGGATGGAGAATTGCCGGTCTTACCTCTGTCTGTGTATGGGGCAGTTGCCATGGCACATAATGAAGATTCAGAGGAATATTCTTCACCATATCAATTCTTCTTCTATCTGTATGATAAAAGAAATTCTGGCTTGGGAGGACTATCCTTTGATGAAGGGCAATTTTCAGTTTTTGGATACACAACCGTTGGACGAGACATCCTTCCTCAGATTAAAACGGGAGACATAATTCGATCTGTGAAACTGGTGGAAGGTGGAGATCGCCTTATCCTACCGAACGAGAATTGA ATGGCGTTCCCTTTATCTTCGGCCGTTTTCTCTCGCCGGTTATCTCTCTCTGCCGCCCCTCACACTACGAGATGCAGCTTTCTTCATACACATTGCATAATTCCATTTACCCGGTCATCTGGAAGCTCGATTCTCCCGAAACTCTCCTCCGCGTCTGCTAAGAACTCATCACTGGAATCAATGGACCAGCATAAGTTTCTCCGACAGTCATGTATTTCAGGTTTTGAACATGGAAAGAGGGAATTTGGGAAGTTAATTGCTATGATCCTCATATGTATCCAAATTTCTTCCCCACTGCCCCTGCTGAATTGGGACATTCAATCAGTTCATCCTGCCATGGCAGTACTTTATTCACCTGACACCAAGGTCCCAAGAACAGGAGAACTTGCATTAAGGAGAGCAATTCCTGCAAACACGAGCATGAAGGCGATACAGGACTCTTTAGAAGAGATATCATATTTGCTAAGGATTCCGCAAAGGAAGCCTTACGGAACTATGGAGGGTAATGTGAAGAAAGCTCTCAAGCTGGCAATTGATGAGAAAGACTTGATTTTGGGAAGTATACCATCAGAGTTGAAGGAAAAAGGTTCATCGTTATACACAACTCTAACTGAAGGCAAGGGTGGACTGCAAACTCTCCTCCAAAGCATTAGGGATAATGACCCAGATAAAGTGTCTGTAGGACTTGCAACATCACTTGATACTGTTGCAGAGTTGGAATTGTTGCAGGCCCCTGGATTGTCATTTTTATTGCCTGAGCAATACTTGAAATATCCAAGGTTGACAGGGAGAGGAACTGTTGAATTTACCATTGAGAAAGGAGATGGTTCGGCTTTTTCCCCACAAGCAGGTGGTGAATCTAGCAATACAGCTACAATTCAGGTTGTAGTGGATGGATTTTCAGCACCATTGACAGCTGGGAATTTTGCAAAACTGGTAATTGATGGAGCTTATAATGGAACAAAACTCAGCTGTACAAGTCAAGCTGTTCTTTCTGAAAATAGTCTTGATAACAACAAAGGCTATAGCATTCCCTTGGAAATAAAGCCGTCAGGACAATTCGAACCCTTATACAAAACAACCCTTAGTGTGCAGGATGGAGAATTGCCGGTCTTACCTCTGTCTGTGTATGGGGCAGTTGCCATGGCACATAATGAAGATTCAGAGGAATATTCTTCACCATATCAATTCTTCTTCTATCTGTATGATAAAAGAAATTCTGGCTTGGGAGGACTATCCTTTGATGAAGGGCAATTTTCAGTTTTTGGATACACAACCGTTGGACGAGACATCCTTCCTCAGATTAAAACGGGAGACATAATTCGATCTGTGAAACTGGTGGAAGGTGGAGATCGCCTTATCCTACCGAACGAGAATTGA MAFPLSSAVFSRRLSLSAAPHTTRCSFLHTHCIIPFTRSSGSSILPKLSSASAKNSSLESMDQHKFLRQSCISGFEHGKREFGKLIAMILICIQISSPLPLLNWDIQSVHPAMAVLYSPDTKVPRTGELALRRAIPANTSMKAIQDSLEEISYLLRIPQRKPYGTMEGNVKKALKLAIDEKDLILGSIPSELKEKGSSLYTTLTEGKGGLQTLLQSIRDNDPDKVSVGLATSLDTVAELELLQAPGLSFLLPEQYLKYPRLTGRGTVEFTIEKGDGSAFSPQAGGESSNTATIQVVVDGFSAPLTAGNFAKLVIDGAYNGTKLSCTSQAVLSENSLDNNKGYSIPLEIKPSGQFEPLYKTTLSVQDGELPVLPLSVYGAVAMAHNEDSEEYSSPYQFFFYLYDKRNSGLGGLSFDEGQFSVFGYTTVGRDILPQIKTGDIIRSVKLVEGGDRLILPNEN Homology
BLAST of Csor.00g145450 vs. ExPASy Swiss-Prot
Match: P82869 (Peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=CYP37 PE=1 SV=3) HSP 1 Score: 581.6 bits (1498), Expect = 7.6e-165 Identity = 303/459 (66.01%), Postives = 352/459 (76.69%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy Swiss-Prot
Match: Q55118 (Putative thylakoid lumen peptidyl-prolyl cis-trans isomerase sll0408 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=sll0408 PE=3 SV=2) HSP 1 Score: 146.4 bits (368), Expect = 8.2e-34 Identity = 111/387 (28.68%), Postives = 188/387 (48.58%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy Swiss-Prot
Match: O49939 (Peptidyl-prolyl cis-trans isomerase, chloroplastic OS=Spinacia oleracea OX=3562 GN=TLP40 PE=1 SV=1) HSP 1 Score: 144.8 bits (364), Expect = 2.4e-33 Identity = 119/392 (30.36%), Postives = 189/392 (48.21%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy Swiss-Prot
Match: Q9SSA5 (Peptidyl-prolyl cis-trans isomerase CYP38, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=CYP38 PE=1 SV=1) HSP 1 Score: 136.0 bits (341), Expect = 1.1e-30 Identity = 106/364 (29.12%), Postives = 180/364 (49.45%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy Swiss-Prot
Match: P72704 (Probable peptidyl-prolyl cis-trans isomerase sll0227 OS=Synechocystis sp. (strain PCC 6803 / Kazusa) OX=1111708 GN=sll0227 PE=3 SV=1) HSP 1 Score: 92.0 bits (227), Expect = 1.8e-17 Identity = 73/212 (34.43%), Postives = 99/212 (46.70%), Query Frame = 0
BLAST of Csor.00g145450 vs. NCBI nr
Match: KAG6577384.1 (Peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 894 bits (2311), Expect = 0.0 Identity = 459/459 (100.00%), Postives = 459/459 (100.00%), Query Frame = 0
BLAST of Csor.00g145450 vs. NCBI nr
Match: XP_023553133.1 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 888 bits (2294), Expect = 0.0 Identity = 454/459 (98.91%), Postives = 458/459 (99.78%), Query Frame = 0
BLAST of Csor.00g145450 vs. NCBI nr
Match: XP_022929302.1 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X1 [Cucurbita moschata]) HSP 1 Score: 885 bits (2288), Expect = 0.0 Identity = 453/459 (98.69%), Postives = 457/459 (99.56%), Query Frame = 0
BLAST of Csor.00g145450 vs. NCBI nr
Match: XP_022985203.1 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X1 [Cucurbita maxima]) HSP 1 Score: 880 bits (2273), Expect = 0.0 Identity = 449/459 (97.82%), Postives = 457/459 (99.56%), Query Frame = 0
BLAST of Csor.00g145450 vs. NCBI nr
Match: XP_038903061.1 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X3 [Benincasa hispida]) HSP 1 Score: 803 bits (2074), Expect = 2.52e-291 Identity = 415/460 (90.22%), Postives = 428/460 (93.04%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy TrEMBL
Match: A0A6J1EMF0 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111435926 PE=4 SV=1) HSP 1 Score: 885 bits (2288), Expect = 0.0 Identity = 453/459 (98.69%), Postives = 457/459 (99.56%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy TrEMBL
Match: A0A6J1JCX3 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111483278 PE=4 SV=1) HSP 1 Score: 880 bits (2273), Expect = 0.0 Identity = 449/459 (97.82%), Postives = 457/459 (99.56%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy TrEMBL
Match: A0A6J1ERQ1 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111435926 PE=4 SV=1) HSP 1 Score: 785 bits (2027), Expect = 2.06e-285 Identity = 398/401 (99.25%), Postives = 401/401 (100.00%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy TrEMBL
Match: A0A6J1JCN2 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111483278 PE=4 SV=1) HSP 1 Score: 778 bits (2010), Expect = 8.01e-283 Identity = 394/401 (98.25%), Postives = 400/401 (99.75%), Query Frame = 0
BLAST of Csor.00g145450 vs. ExPASy TrEMBL
Match: A0A1S3BSV9 (peptidyl-prolyl cis-trans isomerase CYP37, chloroplastic OS=Cucumis melo OX=3656 GN=LOC103493349 PE=4 SV=1) HSP 1 Score: 778 bits (2010), Expect = 6.59e-282 Identity = 402/459 (87.58%), Postives = 425/459 (92.59%), Query Frame = 0
BLAST of Csor.00g145450 vs. TAIR 10
Match: AT3G15520.1 (Cyclophilin-like peptidyl-prolyl cis-trans isomerase family protein ) HSP 1 Score: 581.6 bits (1498), Expect = 5.4e-166 Identity = 303/459 (66.01%), Postives = 352/459 (76.69%), Query Frame = 0
BLAST of Csor.00g145450 vs. TAIR 10
Match: AT3G01480.1 (cyclophilin 38 ) HSP 1 Score: 136.0 bits (341), Expect = 7.8e-32 Identity = 106/364 (29.12%), Postives = 180/364 (49.45%), Query Frame = 0
BLAST of Csor.00g145450 vs. TAIR 10
Match: AT3G01480.2 (cyclophilin 38 ) HSP 1 Score: 96.7 bits (239), Expect = 5.3e-20 Identity = 77/268 (28.73%), Postives = 130/268 (48.51%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) 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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