Sed0012545 (gene) Chayote v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GTGATATCAAATCTATCTCTCTCTCTCTAAACTTTTCTTAAACAATGGATGTTCAATGGCTTCTGGATTTCCTTCGAGGAATGACGAAGCCCTTTCTCGCCACCGCCATCGTGGTCGGTGCCGCCGTGCTTTCGTACTTGCAGAAGCTCGGGTTGGAAGGCGAAATGATGTATGCCATTTTCAGAGCCTTTGTCCAGCTCTCTGTTATTGGCTTTGTTCTTCAGTTTATCTTCGACCAACAACATGTCGCCTGGATTCTCCTCGCCTATCTCTTCATGGTAATCTCCTTCCCCTCTTTTCCTTTTCAGGCTTTTCTCAAGTTTTTTTTTATTCGAAGGAAAATTCGAACCTATAACCTTCTTATTAAAGTACACAAAAGTGATAAATAGTTACTTCCTTGTGAATAAGAAGGTAAACTCTTCTTACAATCTAACAAAAAATTTCTTCAAACCATATTAAAATAAATATTTATGACATAAAATGATAGTTATATTTACATTAAAGAAGGAGTAAAACTCCTCTACACATCTCTCTACACATGGATGTGTAGGGGAGCCCTACAATTTGATGATGTGGCACTATTGGATGCCACAAAAAATCATCTTATAAATAAAAAAAGACAAAATATAAAAAAAAAATTGTGGCACCAATGGTGCTACATCATCAAATTGTAGGACTCCCCTACACATCCATGTGTAGGGGAGTTTTACTCTTAAAGAATGACTTCTTTCTTTCCACAAAATAGGATCTACTTTTATTTTACACAAGTTTTTCGCCAGTGGATTGAACATTAATATCCAAGTTTCCCCAATTTTGGCGTTTTTGTTTTTTTATTGAACTAAATTAAGTGTTTTTTTTTAAATCCTAATTTCTCTCCATCTCAATTCTAAGCAAAATTTTAAGACTATTTTTTTAGGCTCTTTCATAATCATTTGATTTTTGAAATTTAAATTTAGTTTTATTCATCTTTCCTGTAATGTGCTTCATTTTTTTTTTATGATGTATCTAATTTTTTTTGAAGAAAGTATGTAAATTTTAATTAAATTTAAAAAAAAAAAACCTTTGAAAGGTACTTTTTTTTTCTTTCTAAATTTTGGTTAAAGTTTTTACAAAAATGTAGGTATCTATGTATATAAAAACATATGATATGATAGTTATTGTAGGCTTAAATTTCAAAAACTAAAAATTAAAAATAAAATGAGTATCAGACGATGTCTTATTTTTTAGGGTTTAAAATTTGGTTTGTTGAAAGTGAGTTACTTGATTCCGAGTGAAATATGTGGGTTTTTTTTTAATAATTGAGTAAAATAAATTTTATTGTTTAAAAAAAATTAAATATTTAAAACTTCAAACTTCAAACTTATTATCTCTAATTTCTAGTTATCGTTTTTATATAATTGATTAAGTTAACTATTATTGGCACAACCAAAAGAGTTGACTTTGGAGAACATTTTTTTCCCTTCCAAAGTAAAGTAGTTATTATTATTATTTTTAGAATATGCCTTTTTTGAAAAACAAAATTAGGATATGACTTTATTTTCCCTTCTTTTTTCCCAAAGATATGAAATTCAAATATTGGGAAAAGGTCGTATGAATTATTTCAGCCACTCCTTTGTTTCGCGTGCTTATCTGGTGTTGTGTGGCTGTCATACACAAGCTCATCCGCTTTTATTTATTTATTATTAATGATTATCGAAAAAATACATTTTTAATCTATAAACCTTAATTTCAATTTAGTATTTATATTTAAAAATGGAACAATTTTATCTATTACATTTTATTAATACTCATTTTTAATAATTGAAATAATAAAATTGTTAGCTGTATAATCTATTATTATTTTTAAAGGAGGATTAGATTAATTTTATATTTTAATATAGAGTAATTGCACTGAATATTCAAATCTAGAAACTTATTACAAAACTATCGAGATTTTAAAATATTTGCAAATTTATTTATATATTTTTTAATTAAAAATTATTCCCAAATATACCCCACGAATTCCATGTTTTATAGTTTCCATTTTTGTAGTTTTTTATTTAAAACTATATTCCTTAATTAATGCCCACGATCTCTTAAAATTGAAACAGACATGTGTAAAATTCTTTATTTATCTCATATTTTTTTTTTTGCATAGACATCAATTTTTATCACTGATATATATTTTTATCAAAATGTATTGCGTTCTCTCTTCGATTTTGTATCGGTTGAACGAAAAACACACAACCATTCACAATTGTATTTTCTTTAAAAAGTCGTTCAGCTTAATTTTCATGCCCTACCAACATTTTTTTTCCCTCAATTTTGCAACAATTAAACGAAGATCGGTTCACATCTGCAATATTATACCTTACCCACATATTAATATGATATTATATAATGCATATTAAATTTTCATCAAGTTTATTTTTCGTTCAAGAAATGTATTATAAAGTATTATATTATATACATTGAGACACACTAAATTAATACCAAGCAATAACATTCAAAAGAATTTCAAATTTTAAAATAATCACATAATTTTACAAACGTATTGGTTAAGTACTACATATAATACTGATCGTACATATCAACGGTATTGTAAAATACTAGTGTATAAAGTTGATATTATATAATACTAGTGTATAAACTTAATAAAACTAAGAAATGCCTACATTTATCAAGTACAATATTACAAATGTATTATATAAGTATAATCATTATATAAATATAATAATATATATTTCACAATATTAATATAGTATAATACGGTTGAATATCACAACATTCAACGTATTAGTGAAATACGGATGAAATATTGGACATGCATTGGTAAAAACAATTAAAAATAAATAAATAATAATAAATATAGATTAAAACTTGTAGGAGATAAAAAGATAAAGAACAAACAATTGGATGAAATAAACTTTAATTTTGGTATGTCAGTCACTACATTTTTGGGTTTGAGAGATTTAGAGATTTTTTATCGTAGATGGAAATTGAGGGAGGAAATCAAGCCAATCAATGCAATTTTCTCCCTACAATTTATTTAATTGGATGACTTTAATGAAGAATTTTTCTCTCTAAATGAATTTAATAAAATATGTTTAATGAATCTAGCATGGATATGGAAGTAATCAACTATTTAATATTTTTTTAATATTTTAAATGGTTGAATATTAATGTCATTTATATGAAACTTGACTATATACTTAATATTTTTGATAATTTTGGCTAAATGTGCAAAATCCTCTTTAATATATTAATAATTTGATTATTTTAATTTTCAACCGAATTTAACTTTGTTTTTTTTTTAAAAATAAGTATAAGAATAAACTTTAAAAATATATAAAAACTAAAAATGAGCACAATTAAAATGTAGGCTTAAAATTGTTCAATTTTAAAATTTAGAGTTCAAATTCAAATTACATAACTCTATTATTAATTAAAAATGTAATTTTTCTGTGGTGGTTTCATTGTTTAGTTGTAAAACAGTTTAACACCAACATTACACTTCGATCCCGACAATCGATATTTGTCTTCCCTCTCCCAATATTTATTTAAAAAGAAAAGGTAATTTTCCTTATTATTATTTTCTTTTTGGCGAAATGGTGAGACTTGAAAATGATTTGACTAAAATGTGAAGCTTTTTTTATTTTTTTATTTTTTATTTTTTTATTTTTATAATTTTCGAAATAAAACACCTCTAAGAATTTGTTTGATTGCTATTGATTTCATTCCGGACAATTCTTTTTCTTTTTTTGTAAGTATTTCTTTTTCGATATTTACTAACAATAACAAACAGCCATGTTTGCATTACTTTATATGGTTATGATTAAAATGTCATTTGCATCCTTAAATTTAAAATTTCAATTTGCTTTTAATTTAGCACATTGACTTTACAAAAAATATTTTACCTAATTGAAAACTATTTAAATTTTAATATTCTAAACTCAGTCTTAAACTTTTAAAATAATTTAACCAATACAATTATTTTAGTACAACAAACGAGTTAAAAAAGATATTTGAACGTGACAATTACCAGCTAGTTATAATCACTTCAAACACACAACATAATTGTTTATATATATATATCATATCATTTTTTAGATTCAACTTCTTGTATATCGGTACCTTTGGTATATTTTTATGAGTGGTATTAAGACTTTTGAAATTTTTAGGATAAAATTAAACATTTAAAAATCATTAAAAAATAGAACAAAAATTATGTCAAGAAGTTACTCTCTATAAGTTTTGGGTCTTGTATTTTAATTATAATTTTTTTATATATAAAAAATATTTGTGTATATCAAATTTAGTTGGTTTTTTTTGTCATCACCTTCTTTGCACGTCATTAGGGGTGTATAAAGAAATTGACAATCTGAATAGTCTGGACTATCCAACTCAATCCATAAGGATTGGATTGAGTTGCAATTTTTTTGAGTTGGATTGGGTTGATCATTGAATTGACTAATTTTTTGCTCGGTCAACCCAACTCAACCCAAACTAAGAATATATATATAAATTATGTATGTGTAAGATAAATTAATAAGATAGGTTCTCAACTTATTTGTTAGCTTTTTAAAATAAATATATGCACTAATAATATAAGTAATAGGTTGAAGAACACTATCATGTTTTTTTTTTACATATTTATGAGTTTATGTATTAAATCTTAAAGAAAAAGAAGAATAGTAATATAACCTGAGAATCCAACCCAAACCAACACAAAAATATAGGGTAGGGTTGGGTTGGGTTGCGCTATTGCATAGGGTGGGTTAGGTTGACGAATTGACCAACCCGAAAAGTTAGATTGATCCAAAAAATTCATCCAACCCTACTCAACCAAGACTATGAACATTCTTACACGTCACTTTTCTCTTCTTTTACATCACCATTTTGACCGTCACGGGCATCATTTGCAGTAATGAAGCCAAACGACAACACCGTTAAAATTCAAGATTTAAATTGTATCGGCTTTAAATCATGAATCCAAATTTCACGATACCTGATTTAGGGATAGATGTGGTTACTCCCGATATATAATAGAGCTAAGTTTTGATTTCCAATTTGAAACAAATAAATAAATAAATCATGAGCCCAAATGGCATTGACGTTATAATAAATCCTCAATCACTAGCAATTTTTCCTTCCCTTTTCTTATGGCATTTTTGTCTTGTAGAGACCGGACGAGGCATAAATTCCACTCTTACATTTGAATCAATTAATCAATAAAATTAAATTAGAAACAATGATCTTGATGTTTGTTATCATACAAATCATATAAACAGATTAAAATAATGTCCAAATTATTAATGTATTACCAAATTTGTAATTGGAATCAACAAGTACTTTTATAGACGTAGTTGTGGTGCAATGATTTCAATGTTTTGATTGTAAACCGGTTCAACAGGTCCAAGTTCGAGAATCCAAATTTATCTCCATCTCCTAATTTATACTCAAAATAATAATAATAATAATAACCGTAGTTGTGGATATTGTATTTGTTGGCGCAGGTGACGGTGGCGGGATACACAGCCGGGCAGCGTGCGAAGCACGTGCCTCGGGGAAAATTGGTCGCCGGAGTTTCGATTTTGGCCGGAACATCGGTGACTATGGCGATGCTGGTGGTGTTGAAAGTGTTCCCGTTGACTCCGAGATATATAATTCCGGTCGCCGGAATGATGGTCGGAAACTCCATGACTGTCACCGGAGTCACCATGAAAAGACTTAGAGACGACATCAGAACTCAATTCACCCTCGTAATTTCTCACTCTCTTAATTATTAATAACTACTTCAATTTTCATTTTGTGAGTTAAATTCTAATCTCCACCTCAATTTAAAAAAAAAAAACAATACAATAAATTTAATTGATGGTTCAATTTTATGTTCAGGATGGCTTTTTAAATGTAAAAGAAGTATAGTACAGTGGAAACTTAATTGATATTTGTGAAAGTTGAAATCTGTTTAACTGATGTCAATAAACATAAAAAGAAATCTGTTTAACCAACAAAAAAAGAAAGAAAGAAATAATATATAGGTTTAAATCCTATATATATTAAGGAAATTGTAAGATCTATATTTGAAAAACAAAAATAATAAACACAATTAAACAATCGCACAAGCTTTTACTTCGCGATTGGAAAGATAGTGCATACAAACTTTTTTTATAACATTTTTCTTTATTTCTCTAAAACTTTCTTTACAATTCTCTCGTTTTCTCTTTGGCACTTTTTTTTTTGTACGATTGTCTCTACAATTCACAATGAAGTAATATTCTATAGCCAATTGCAAACTTGGTCTCCAAATTCTTACCAAAGTTGCTAAACAATAAAATGTACAAATTTCTTAATTAATCTCCTAAATTGGCAATCCATTAATTTCTTAATTTTCTACCTATTAATTCCTAAATTAAATATTCCAAAAATACATTTATTTAAATTTATTCCAACAAAAATATCGTTTGTTAGCTTATTAGTATCCAGCCGATTAAAAATGAATTGTTAGAAATGGAAATTATTTTTAAAGGTAAAACATATGAGAAGTTAATAAAAACTCGTGTGAATGTAGGTTTTTTAGGATGAGTTGATAAATCCTCCCACCAAATCCTAGTTAAAAATGACAAACAAACAGTCCCTCTGAGGTTTATTGGACATTCCAAATTCAAAGTCAAACCATCAGCCTAATAACTTAATCGTAATTTTATATTTATATCCTCAAACACTTCAATAAACACTTCTAGGTAGGAGAGGTGTTGAAGCAACCCGAAACCCGAATCAACCCAAACCCAACCCAAATTGACGGGTTGGGTTGTATTAAATATATTTTTGGGTTGAGTTGGGTTCAAAATCACGAAATATTCATGTGTTGGGTTGGGTTGGGTTAAGAGTTGATAACCCAACCCAACCCGACCAATCCGAAATTATTATTTTGTTTAAATATATATATATATATTTTTACTATGCATATATATTTTTTATTTAATTATTATTGTTAGACTTTTTATTTTTCATAATCTTCAATATATTTTCAAATCTTTATAATTTATATATGATGATAAATATATAGTCAAATTATGTAAAACATCTTCGTTGGTTTTAATTATATATTTGTTTTATAAAAGTCGAATTATGTCATCTATTTTTGTTGTTTTAATTATCTATTTGTTTTAGGTTTTATAATTAGAATCTTCTATATGAACCATGATTGTATATTTATATTCATTTCATTACCTTCATTGAATATTATATTTTGTTTATATATAATGATGACTAATTTGATCAAAGATATTTATAATTATATTTTATTTTTGAACCCGCTGACCCAAAGCAACCCAGCCCGAAAATATAAGGGTTGGGTTGAAAAAATCACAAACCCGAAATTTTGGATTGAGTTGAAAACCTCTCTAACCCAACTCAACCCATATTCACCCCTACTAAGTAGGAAAGTAAACATAACTCAACAAGAATAGTGCATGTTTTATTAAATAATATGAAGTCTCACTTTAAAATCATTTGGTAATGAGGAAAGTAGTCATATATTTTATAAATATGGTGAAAATTTCTATCTTTTCAATGTAAGACTCCAACATGTCAATTAAATTTGAATTTTTAGACCGAATTGTCCACTTAGGATTATCCATTTAGTTTAATGTAAATTTGTGAATGAAATAGGTGCTTAATTAGATTTTACTTCTTGAATTAGATACAAATTTGTAAATTGATCAAATTCTAATATCATATTAGATAATATAAAATTTTCATGTAAAAAATAATTGACTAGGAAAAGAATAACTTGTATTGAAATTCTTACATATCTAATGTAGAACAAGATAATGATTTTCGATATATATCTTAATAAACCTCGAGATCTATGATTTGAATCTTCACACTCAGAGTATACTAAAAGAACACTCTGATTTAGGTGGAGACTGCATTAGCTTTAGGAGCAACGCCGCGACAAGCGACGCACCAGCAAGTGAAGAGGGCGCTGGTGCTGGCATTGTCGCCGGTGGTCGACAACGCGAAGACGGTGGGGCTGATCTCGCTGCCGGGGGCGATGACGGGGCTGATAATGGGCGGGGCGTCGCCGATCGAAGCCATTCAGCTGCAAATTGTGGTGATGAACTTTCTGATCGGAGCTTCGACGGTGAGCAGCATCATGTCCACTTACCTCTGCTGGCCTTCCTTCTTCACCGCCGCCTACCAGTTGGAAACCGCCGTCTTTGCCTCCGCCTGACTAATTCCTTTGCCTTTTTAATTCTCTTTTTTTCTTTTAGCCTTTAAGTGTACAACTTAGTTCACTAGGCCTAGTTTTGGTTTTTGTTTATAAACTTTAGTTTAGTTTAAAATTGGC GTGATATCAAATCTATCTCTCTCTCTCTAAACTTTTCTTAAACAATGGATGTTCAATGGCTTCTGGATTTCCTTCGAGGAATGACGAAGCCCTTTCTCGCCACCGCCATCGTGGTCGGTGCCGCCGTGCTTTCGTACTTGCAGAAGCTCGGGTTGGAAGGCGAAATGATGTATGCCATTTTCAGAGCCTTTGTCCAGCTCTCTGTTATTGGCTTTGTTCTTCAGTTTATCTTCGACCAACAACATGTCGCCTGGATTCTCCTCGCCTATCTCTTCATGGTGACGGTGGCGGGATACACAGCCGGGCAGCGTGCGAAGCACGTGCCTCGGGGAAAATTGGTCGCCGGAGTTTCGATTTTGGCCGGAACATCGGTGACTATGGCGATGCTGGTGGTGTTGAAAGTGTTCCCGTTGACTCCGAGATATATAATTCCGGTCGCCGGAATGATGGTCGGAAACTCCATGACTGTCACCGGAGTCACCATGAAAAGACTTAGAGACGACATCAGAACTCAATTCACCCTCGTGGAGACTGCATTAGCTTTAGGAGCAACGCCGCGACAAGCGACGCACCAGCAAGTGAAGAGGGCGCTGGTGCTGGCATTGTCGCCGGTGGTCGACAACGCGAAGACGGTGGGGCTGATCTCGCTGCCGGGGGCGATGACGGGGCTGATAATGGGCGGGGCGTCGCCGATCGAAGCCATTCAGCTGCAAATTGTGGTGATGAACTTTCTGATCGGAGCTTCGACGGTGAGCAGCATCATGTCCACTTACCTCTGCTGGCCTTCCTTCTTCACCGCCGCCTACCAGTTGGAAACCGCCGTCTTTGCCTCCGCCTGACTAATTCCTTTGCCTTTTTAATTCTCTTTTTTTCTTTTAGCCTTTAAGTGTACAACTTAGTTCACTAGGCCTAGTTTTGGTTTTTGTTTATAAACTTTAGTTTAGTTTAAAATTGGC ATGGATGTTCAATGGCTTCTGGATTTCCTTCGAGGAATGACGAAGCCCTTTCTCGCCACCGCCATCGTGGTCGGTGCCGCCGTGCTTTCGTACTTGCAGAAGCTCGGGTTGGAAGGCGAAATGATGTATGCCATTTTCAGAGCCTTTGTCCAGCTCTCTGTTATTGGCTTTGTTCTTCAGTTTATCTTCGACCAACAACATGTCGCCTGGATTCTCCTCGCCTATCTCTTCATGGTGACGGTGGCGGGATACACAGCCGGGCAGCGTGCGAAGCACGTGCCTCGGGGAAAATTGGTCGCCGGAGTTTCGATTTTGGCCGGAACATCGGTGACTATGGCGATGCTGGTGGTGTTGAAAGTGTTCCCGTTGACTCCGAGATATATAATTCCGGTCGCCGGAATGATGGTCGGAAACTCCATGACTGTCACCGGAGTCACCATGAAAAGACTTAGAGACGACATCAGAACTCAATTCACCCTCGTGGAGACTGCATTAGCTTTAGGAGCAACGCCGCGACAAGCGACGCACCAGCAAGTGAAGAGGGCGCTGGTGCTGGCATTGTCGCCGGTGGTCGACAACGCGAAGACGGTGGGGCTGATCTCGCTGCCGGGGGCGATGACGGGGCTGATAATGGGCGGGGCGTCGCCGATCGAAGCCATTCAGCTGCAAATTGTGGTGATGAACTTTCTGATCGGAGCTTCGACGGTGAGCAGCATCATGTCCACTTACCTCTGCTGGCCTTCCTTCTTCACCGCCGCCTACCAGTTGGAAACCGCCGTCTTTGCCTCCGCCTGA MDVQWLLDFLRGMTKPFLATAIVVGAAVLSYLQKLGLEGEMMYAIFRAFVQLSVIGFVLQFIFDQQHVAWILLAYLFMVTVAGYTAGQRAKHVPRGKLVAGVSILAGTSVTMAMLVVLKVFPLTPRYIIPVAGMMVGNSMTVTGVTMKRLRDDIRTQFTLVETALALGATPRQATHQQVKRALVLALSPVVDNAKTVGLISLPGAMTGLIMGGASPIEAIQLQIVVMNFLIGASTVSSIMSTYLCWPSFFTAAYQLETAVFASA Homology
BLAST of Sed0012545 vs. NCBI nr
Match: XP_023539963.1 (protein ALUMINUM SENSITIVE 3 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 455.7 bits (1171), Expect = 2.8e-124 Identity = 245/264 (92.80%), Postives = 255/264 (96.59%), Query Frame = 0
BLAST of Sed0012545 vs. NCBI nr
Match: KAG6596436.1 (Protein ALUMINUM SENSITIVE 3, partial [Cucurbita argyrosperma subsp. sororia] >KAG7027977.1 Protein ALUMINUM SENSITIVE 3, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 454.5 bits (1168), Expect = 6.1e-124 Identity = 244/264 (92.42%), Postives = 255/264 (96.59%), Query Frame = 0
BLAST of Sed0012545 vs. NCBI nr
Match: XP_038903048.1 (protein ALUMINUM SENSITIVE 3 [Benincasa hispida]) HSP 1 Score: 453.8 bits (1166), Expect = 1.0e-123 Identity = 243/264 (92.05%), Postives = 256/264 (96.97%), Query Frame = 0
BLAST of Sed0012545 vs. NCBI nr
Match: XP_004137785.1 (protein ALUMINUM SENSITIVE 3 [Cucumis sativus] >KGN58910.1 hypothetical protein Csa_001224 [Cucumis sativus]) HSP 1 Score: 453.4 bits (1165), Expect = 1.4e-123 Identity = 243/264 (92.05%), Postives = 255/264 (96.59%), Query Frame = 0
BLAST of Sed0012545 vs. NCBI nr
Match: XP_022938286.1 (protein ALUMINUM SENSITIVE 3 [Cucurbita moschata]) HSP 1 Score: 451.1 bits (1159), Expect = 6.8e-123 Identity = 242/264 (91.67%), Postives = 254/264 (96.21%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy Swiss-Prot
Match: Q9ZUT3 (Protein ALUMINUM SENSITIVE 3 OS=Arabidopsis thaliana OX=3702 GN=ALS3 PE=1 SV=1) HSP 1 Score: 379.4 bits (973), Expect = 3.3e-104 Identity = 196/262 (74.81%), Postives = 234/262 (89.31%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy Swiss-Prot
Match: Q5W7C1 (UPF0014 membrane protein STAR2 OS=Oryza sativa subsp. japonica OX=39947 GN=STAR2 PE=1 SV=1) HSP 1 Score: 377.5 bits (968), Expect = 1.3e-103 Identity = 201/256 (78.52%), Postives = 230/256 (89.84%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy Swiss-Prot
Match: P77307 (Probable iron export permease protein FetB OS=Escherichia coli (strain K12) OX=83333 GN=fetB PE=1 SV=2) HSP 1 Score: 154.1 bits (388), Expect = 2.3e-36 Identity = 85/239 (35.56%), Postives = 154/239 (64.44%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy Swiss-Prot
Match: O34684 (UPF0014 membrane protein YjkA OS=Bacillus subtilis (strain 168) OX=224308 GN=yjkA PE=3 SV=1) HSP 1 Score: 137.9 bits (346), Expect = 1.7e-31 Identity = 82/240 (34.17%), Postives = 143/240 (59.58%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy Swiss-Prot
Match: Q58348 (UPF0014 membrane protein MJ0938 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) OX=243232 GN=MJ0938 PE=3 SV=1) HSP 1 Score: 120.6 bits (301), Expect = 2.8e-26 Identity = 76/236 (32.20%), Postives = 140/236 (59.32%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy TrEMBL
Match: A0A0A0LA98 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G736580 PE=3 SV=1) HSP 1 Score: 453.4 bits (1165), Expect = 6.6e-124 Identity = 243/264 (92.05%), Postives = 255/264 (96.59%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy TrEMBL
Match: A0A6J1FCQ7 (protein ALUMINUM SENSITIVE 3 OS=Cucurbita moschata OX=3662 GN=LOC111444416 PE=3 SV=1) HSP 1 Score: 451.1 bits (1159), Expect = 3.3e-123 Identity = 242/264 (91.67%), Postives = 254/264 (96.21%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy TrEMBL
Match: A0A6J1L2R4 (protein ALUMINUM SENSITIVE 3 OS=Cucurbita maxima OX=3661 GN=LOC111498587 PE=3 SV=1) HSP 1 Score: 450.3 bits (1157), Expect = 5.6e-123 Identity = 243/264 (92.05%), Postives = 253/264 (95.83%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy TrEMBL
Match: A0A5A7TPN7 (Protein ALUMINUM SENSITIVE 3 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold352G002020 PE=3 SV=1) HSP 1 Score: 449.5 bits (1155), Expect = 9.6e-123 Identity = 240/264 (90.91%), Postives = 254/264 (96.21%), Query Frame = 0
BLAST of Sed0012545 vs. ExPASy TrEMBL
Match: A0A1S3B6R0 (protein ALUMINUM SENSITIVE 3 OS=Cucumis melo OX=3656 GN=LOC103486425 PE=3 SV=1) HSP 1 Score: 449.5 bits (1155), Expect = 9.6e-123 Identity = 240/264 (90.91%), Postives = 254/264 (96.21%), Query Frame = 0
BLAST of Sed0012545 vs. TAIR 10
Match: AT2G37330.1 (aluminum sensitive 3 ) HSP 1 Score: 379.4 bits (973), Expect = 2.3e-105 Identity = 196/262 (74.81%), Postives = 234/262 (89.31%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Chayote (edule) 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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