Spg010421 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCCACTTGTCTATTACTGATCCATTGGATGACATAAGTCAAGTCCAATCAAATTATGCCATGTGGCAATTGGACCCGAGACTAATGTAACCCGAGGTCATTGAAGAAATTGGGCTAAATTAAAATAATTCAACTTTATTAAAAAGGATTTGATTAAAGTCCAAATATAGCCAAGCCCAAGCCCATATGAGGTCCATCAAACTCTATAAATAGAGGAGACCACCATTCATTTTGGGCATTGAGATTCAGAGACAGAGTCAAAGAACTCAGAGTCCAGAGCATTCTGCCAGAGTCCAGAGTCGTCAGAAGCCAAAGAGTCCAAAGAATTCAGAAGGATTCGAGATTCAGAATTCAAAGGATTCAAGACTCAGAAGGTTTGAAGACTAGAAGACTCTAAGAAGAGATCAACAAGCCAACCGACCGATCAAGAAGATCAACAAGTCAGCAGGCCGATCATCCAAGAAGATCAACAAGCCAACCGACCGGTCAAGAGGATCAACAAGTCAGAAGGCCGATCATCCAAGAGGATCAACAAGCTAACAAGCCGATCCAACAGATCATCAAGCCAACGGGCCGATCCAAAAGAATGTCAAGCCAGTGGGCCGATCATCCAAGAAGATCAACAAGCCAACCGACCGATCAAGAGGATCAACAAGTCAGAAGGCCGATCATCCAAGAGGGTCAACAAGCTAACAAGCCGATCCAACAGATCATCAAGCCAACAGACCGATCCAAAAGAACGTCAAGCCAGTAGGCCGATCATCCAAGAAGATCAACAAGCCAACAAGTCTATCCAAGAGATCATCAAACCAACAAGCTGATCCAGGAGATCATCAAGCCAACAGGCCGATCCAAGAGGTCAACAAGCCAATAAGCCGATCCAAGAGATCATCAAACCAACAAGCCGATCCAAGAGATCATCAAGCCAACAGACCGATCTAAGAGATCATCAAACCAACAAGCCGATCCAAGAGATCATCAAGCCAACAGGCCGATCCAAGAGATCATCAACCTAGCAAGCCGATCATCCAAGAAGCCCAACAAACCGGCCCAAGAAGAGCAACAAGCTAGAGGCCAAAGTTTATATATTTGTGAGAAAGAATCAGAGGATAAATATTAGAGACTGTAACACTTCTATATCAAATTCAATAAAATCAAGTTCATTTCCACGAATTAAATTTTCCTATCGAAATCTCGTGTGAACAAATTGGCACACCCAGTGGGACAGTCTCTACCTCTCATCTCTTTTTCTCACAAAGAAATCATGACTTCTGAAGAAGCTTCTTCAAAGATCGCTGCTTCAAGCAACTTCTACGTGGGGTCAATTACTCGCAGTCGCTCCAAGAAAACCCAACACGAAGGCAACCAAACTCTTGTCATTGCAAACAAGATGCTGAGACACATGACAAAATCTGCTCAACTTGAAATTGCAACTGCAAAAAATATGATGCTTGGCAAATTCATCTCTCTTTCTCAGCAACCAAATGAAACATCGAGTCTTGACGTAATGTCTGTTATGATGACTGGTGCAGGAACTAGTGAAGAATGGATGGCTGAAGTTGAGAAGAAAATTAGCATGTTACTGAAGATTGTTGAAGAGAAAGACTACGAAATTGCCTCTCTCAAAAGCCAGATGGAGAGTCGGGATGCCGCTGAATCAAGTCAAACCCTCGCCATCAAAGACAAGGGAAAGACCACTATACAAGATTAGTCACAACATTCCACTTCTATTGTTTCACTGTCCGTCCAACAGCTCCAGGATATGATCATGAACTCCATCAGAGCTCAATATGGTGGACCGACTCAAAATTCTCTATTGTACTCCAAGCCATATACCAAGAGAATCAACAATCTGAGAATGCCTAATGGATACCAGCCACCAAAGTTTCAACAATTTGACGGGAAGGGCAATCCCAAGCAGCACGTTGCTCATTTCGTCGAGACATGTGAAAATGATGGTACTAGAGGAGACCTACTGGCCAAGCAGTTCGTACGAACACTGAAGGGAAATGCTTTCGACTGGTATACCGACCTTGAGCCTAAGACTATTGATAGTTGGGAGCAACTTGAGAAGGAGTTCCTCAACCGCTTCTACAGCACAAGACGAACAGTCAGCATGATAGAGCTCACCAATGCCAAACAACGAAAAGACGAACCAGTTGTTGACTACATCAATCGTTGGAGAGCTGTAAGCCTAGACTCCAAGGACCGACTCACCGAAGTGTCTTCTGTTGAAATGTGCATCCAAGGCATGCATTGGGGACTTCTCTATATTCTAAAAGGAATAAAACCTCGTACTTTCGAAGAATTAGCAACACGCGCCCACGATATGGAGTTAAGTATTGCTAGTCGAGGAGATAAAAGACCTTCTACTCTCTAATATGAAGAAAGACGAAAAGGACATTGAAACAACTATAGAAGAATCTATGGTTGTAAATACAACCCCTCCCGAGTTGTAAGCACAAGAAGATTGAAAAGCAACAAGGAAATGAAAGGCGTCGCTTGACTTTGAAGGAAAGACAAAAAAAAAGATCTATCCTTTTCCTAATTCCGACGTCCCTAACATGTTAGAACAACTATTGAAAATGCGGTTGATAGAACTTCCCGAGTGCAAACGACCAGAAGAGATTGAAAAGGTCGATCATCCCAACTATTGCAAATATCATCGAGTTATCAGTCATCCGGTAGAAAAATGTTTTGTCCTGAAAGAGCTAATTCTGAGGTTAGCTAAAGAAGGAAAAATCGAGTTGGATCTTGAGGAAGTAGCTCAATCAAATCATGCTACAACAACAACAAGCACTTACAATCAAATGTGTTTTGATTCGCTTCACGGTCAAGAGATGCACCTACTCCAATTTGGAACCTTGGAGCCTATAGCTATTTGGTTTCACCATGAGGTATCAGGAGACAAATCTCAAGATACAGTCAATCTTGTCAGTGATAAAGGTAAAGGAAATACTGTCATGACTCGTCAGAAGAAACAAAGACGACATCTCGTTCAAAAAGGATGTTGCTCATCCAAAAGAGTGAATAAACATCGAAGACAAAAGAATCTAAGGAAACCCAAACTTGAGGAAAAGAGAAATCAAGATCCTTCTCAACATTGTCAACTAGTAACCTTAAAAGAATCATCCTCGAGAAATTTTCATCCCATCAAGAAAATGGAAGAAAATTTTGCAAGTTCATGTTATATCAATGTAGAAGAAGATGGCGATTCAAAGGAAGTCGAGCAAAGAACTTCTATCTTCGATCGCATTGAGCCTTCAACTACTCGACCTTCGGTCTTCCAAAGAATGAGTATGGCTGCAACAGAAGAAGAAACTCAAAGCTTGACTTCCACCATCACTCGACATTCAGCCTTCCAAAGGCTAAGCGTCTCTACATCAAGAAAGTGTCGACCTTCAACAACTGTTTTTTATCGCCTCAAAGTGACAAGCAACCAACATGAAAGAAAGGTGGACAATTCAGAAGTTAAATTGTTCGATGAAATAAACAATGACAATAAGCTTCATAGTACCACGCCGTCACGTATGAAGAGGAAGTTTTTTGTTCTCATAAACACAGAAGGTTCCTTGAAGGTGAAACTAAATCTTATCATTTTGACAAATCCTACAAATGAAGGGTCTGATCAAGACTATGATAGAGAAAAAGAAATTTAAAATGTATTTCTCCTTATCGCATGAACATAAACTGCATGATGCTCCTGGCCCACACGAGCTTAAAAGGTGAATGCGAAAAAAAAAAAACTTGAACTACGTTATGACTTGATCCCTTTCCTTCAAGGGTACGTAGGCAACTTAAAGAAAACTTAAAAGCATGACAATACAAGTTAAAGATGCTTACCCTTACTGGGGGCAACACAGTAAATTGAAGACGTACATTGCTATGAATGGAATTCTACGAATTAAATGCATAAAAGAAGGCTCCGTTCTTTCAAGTTCGACGATTCGCTCGCTCCAAGTCCGGCGTCTCGCCTAGTTCGGTGTCTCGCTCCTTCTATGTTTGCATTCCACACACTTCAAGTTTGGTGTTTCGCTCCTTCAAAGTTTGGAGTCTCACCCCCTTGAAGTTTGGCGTCCTGCTTCCTCTAAGTTTGTATTCTCCATGCTTCAAGTTTGGTGTTTCGCTCGCTCAAAGTTCGATGTCTCACCCTCTCCACGTTCGGCGATTACTCCATTCAGGGTGGCAGTTGAAGGCTTTGTTTTCACTTCATCTTCAAATCTTCAAAGGTTGGCAGTTGAAAACTTTGCTTCACTACAAATGTTGGCGGTTGAAGACTTCGCTATCGTTTCATCTTCAAAATTTGGCGGACGATGTCACTTCATTTTCAAAGGTTGATCATCAAAAACTTTGCTTCATCTTCAAAGGATAGCGGTGGAAGGATTCGTTGTCGCTTCAGCTTCAAAAGTTGACAGTCGGCGACTTCACTGCAATTTTAAAAGTTGACGGTTGGCGACTTTTGCTTCATCTTCAAAAGTTGACGGTTGGCAGTCTCACTTCTTTTTCAAAAGTTGACAGCTGGCGGCTTCGCTTCGTCTTCAAAACTTCGCAGTTGGCGGTTTTTGCTTCATCTTCAAATATTGATAGTTGGCAACTTTCGCTTCAACTTCAAAAGTTGACAGTTGATGACTTCAGTTCATCTTCAAAAGTTGGCGGTCGGCTTCTTTCGCTTCATTTTCAAAAGTTGACGGTTGACGGCCTTGCTTCTTCTTCAAAATTTGATGGTTGATAACTTTCGCTTCATCTTCAAAAGTTGACGGTTGGCGGCCCCACTTCTTCAAAAGTTGACGATTGACAACTTCACTTCATCTTCAAAAGTTGGCAATTGAAAGTTTTGCTTTCACTTCATATTCCAAAAGTTGACAGTTGAAGGCTTCACGTTAGAACATCTTCAAAGATGGGCGACTTTAACGTTGGCTTTATCTTGAAAGTGTCTAGACTGGAAGATGCATCTTAGCTGCAAGTAAAAAAAAAATGCTTGATATCAAACCAAAAAAAAAAAAAAAAGAAAGAAAGACAATAAAGGTGTTGTTAAAAAAATGGTGACCACCCCTGCAGGATACTACAGTCATCAAAGTGACTGGTCTAGACATGTGGTGAAATCACTGCAAATGGATCTGATGACGACCATTGTAGGCGAGTCTGGTGACCACCCCTGCAGGATACTACAGTCATCAAAGTGACTGGTCTAGACAGGTGGTGAAATCACTGCAAATGAATCTGATGACGATCACTGTAGGCAAATCTCGTGACTACCCCTGCAGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAAGAGTGCATCGCTGTAGGCAAATATGGTGACTACCCCTGCAGGCTACTCAGATCACCCAATAAATATAGGGACTGGTCTAGCAGGAGTGCATCACTGTAGGCAAATCTGGTGACTACCCTTGCAGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAGAAGTGCATCACTGTAGCCGATCCAAGAGATCATCAAACCAACAAGCCGATCCAAGAGATCATCAAGCCAACAGGTCGATCTAA ATGCCACTTAGACAGAGTCAAAGAACTCAGAGTCCAGAGCATTCTGCCAGAGTCCAGAGTCGTCAGAAGCCAAAGAGTCCAAAGAATTCAGAAGGATTCGAGATTCAGAATTCAAAGGATTCAAGACTCAGAAGTCGCTCCAAGAAAACCCAACACGAAGGCAACCAAACTCTTGTCATTGCAAACAAGATGCTGAGACACATGACAAAATCTGCTCAACTTGAAATTGCAACTGCAAAAAATATGATGCTTGGCAAATTCATCTCTCTTTCTCAGCAACCAAATGAAACATCGAGTCTTGACGTAATGTCTGTTATGATGACTGGTGCAGGAACTAGTGAAGAATGGATGGCTGAAGTTGAGAAGAAAATTAGCATGTTACTGAAGATTGTTGAAGAGAAAGACTACGAAATTGCCTCTCTCAAAAGCCAGATGGAGAGTCGGGATGCCGCTGAATCAAGAGACAAATCTCAAGATACAGTCAATCTTGTCAGTGATAAAGGTAAAGGAAATACTGTCATGACTCGTCAGAAGAAACAAAGACGACATCTCGTTCAAAAAGGATGTTGCTCATCCAAAAGAGTGAATAAACATCGAAGACAAAAGAATCTAAGGAAACCCAAACTTGAGGAAAAGAGAAATCAAGATCCTTCTCAACATTGTCAACTAGTAACCTTAAAAGAATCATCCTCGAGAAATTTTCATCCCATCAAGAAAATGGAAGAAAATTTTGCAAGTTCATGTTATATCAATGTAGAAGAAGATGGCGATTCAAAGGAAGTCGAGCAAAGAACTTCTATCTTCGATCGCATTGAGCCTTCAACTACTCGACCTTCGGTCTTCCAAAGAATGAGTATGGCTGCAACAGAAGAAGAAACTCAAAGCTTGACTTCCACCATCACTCGACATTCAGCCTTCCAAAGGCTAAGCGTCTCTACATCAAGAAAGTGTCGACCTTCAACAACTGTTTTTTATCGCCTCAAAGTGACAAGCAACCAACATGAAAGAAAGGTGGACAATTCAGAAGTTAAATTGTTCGATGAAATAAACAATGACAATAAGCTTCATAGTACCACGCCGTCACGTATGAAGAGGAAGTTTTTTGTTCTCATAAACACAGAAGGTTCCTTGAAGGATTCGTTGTCGCTTCAGCTTCAAAAGTTGACAGTCGGCGACTTCACTGCAATTTTAAAAGTTGACGGTTGGCGACTTTTGCTTCATCTTCAAAAGTTGACGGTTGGCAGTCTCACTTCTTTTTCAAAAGTTGACAGCTGGCGGCTTCGCTTCGTCTTCAAAACTTCGCAGTTGGCGGTTTTTGCTTCATCTTCAAATATTGATAGTTGGCAACTTTCGCTTCAACTTCAAAAGTTGACAGTTGATGACTTCAGTTCATCTTCAAAAGTTGGCGGATACTACAGTCATCAAAGTGACTGGTCTAGACAGGTGGTGAAATCACTGCAAATGAATCTGATGACGATCACTGTAGGCAAATCTCGTGACTACCCCTGCAGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAAGAGTGCATCGCTGTAGGCAAATATGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAGAAGTGCATCACTGTAGCCGATCCAAGAGATCATCAAACCAACAAGCCGATCCAAGAGATCATCAAGCCAACAGGTCGATCTAA ATGCCACTTAGACAGAGTCAAAGAACTCAGAGTCCAGAGCATTCTGCCAGAGTCCAGAGTCGTCAGAAGCCAAAGAGTCCAAAGAATTCAGAAGGATTCGAGATTCAGAATTCAAAGGATTCAAGACTCAGAAGTCGCTCCAAGAAAACCCAACACGAAGGCAACCAAACTCTTGTCATTGCAAACAAGATGCTGAGACACATGACAAAATCTGCTCAACTTGAAATTGCAACTGCAAAAAATATGATGCTTGGCAAATTCATCTCTCTTTCTCAGCAACCAAATGAAACATCGAGTCTTGACGTAATGTCTGTTATGATGACTGGTGCAGGAACTAGTGAAGAATGGATGGCTGAAGTTGAGAAGAAAATTAGCATGTTACTGAAGATTGTTGAAGAGAAAGACTACGAAATTGCCTCTCTCAAAAGCCAGATGGAGAGTCGGGATGCCGCTGAATCAAGAGACAAATCTCAAGATACAGTCAATCTTGTCAGTGATAAAGGTAAAGGAAATACTGTCATGACTCGTCAGAAGAAACAAAGACGACATCTCGTTCAAAAAGGATGTTGCTCATCCAAAAGAGTGAATAAACATCGAAGACAAAAGAATCTAAGGAAACCCAAACTTGAGGAAAAGAGAAATCAAGATCCTTCTCAACATTGTCAACTAGTAACCTTAAAAGAATCATCCTCGAGAAATTTTCATCCCATCAAGAAAATGGAAGAAAATTTTGCAAGTTCATGTTATATCAATGTAGAAGAAGATGGCGATTCAAAGGAAGTCGAGCAAAGAACTTCTATCTTCGATCGCATTGAGCCTTCAACTACTCGACCTTCGGTCTTCCAAAGAATGAGTATGGCTGCAACAGAAGAAGAAACTCAAAGCTTGACTTCCACCATCACTCGACATTCAGCCTTCCAAAGGCTAAGCGTCTCTACATCAAGAAAGTGTCGACCTTCAACAACTGTTTTTTATCGCCTCAAAGTGACAAGCAACCAACATGAAAGAAAGGTGGACAATTCAGAAGTTAAATTGTTCGATGAAATAAACAATGACAATAAGCTTCATAGTACCACGCCGTCACGTATGAAGAGGAAGTTTTTTGTTCTCATAAACACAGAAGGTTCCTTGAAGGATTCGTTGTCGCTTCAGCTTCAAAAGTTGACAGTCGGCGACTTCACTGCAATTTTAAAAGTTGACGGTTGGCGACTTTTGCTTCATCTTCAAAAGTTGACGGTTGGCAGTCTCACTTCTTTTTCAAAAGTTGACAGCTGGCGGCTTCGCTTCGTCTTCAAAACTTCGCAGTTGGCGGTTTTTGCTTCATCTTCAAATATTGATAGTTGGCAACTTTCGCTTCAACTTCAAAAGTTGACAGTTGATGACTTCAGTTCATCTTCAAAAGTTGGCGGATACTACAGTCATCAAAGTGACTGGTCTAGACAGGTGGTGAAATCACTGCAAATGAATCTGATGACGATCACTGTAGGCAAATCTCGTGACTACCCCTGCAGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAAGAGTGCATCGCTGTAGGCAAATATGGCTACTCAGATCACCCAATAAAATGGGGACTGGTCTAGCAGAAGTGCATCACTGTAGCCGATCCAAGAGATCATCAAACCAACAAGCCGATCCAAGAGATCATCAAGCCAACAGGTCGATCTAA MPLRQSQRTQSPEHSARVQSRQKPKSPKNSEGFEIQNSKDSRLRSRSKKTQHEGNQTLVIANKMLRHMTKSAQLEIATAKNMMLGKFISLSQQPNETSSLDVMSVMMTGAGTSEEWMAEVEKKISMLLKIVEEKDYEIASLKSQMESRDAAESRDKSQDTVNLVSDKGKGNTVMTRQKKQRRHLVQKGCCSSKRVNKHRRQKNLRKPKLEEKRNQDPSQHCQLVTLKESSSRNFHPIKKMEENFASSCYINVEEDGDSKEVEQRTSIFDRIEPSTTRPSVFQRMSMAATEEETQSLTSTITRHSAFQRLSVSTSRKCRPSTTVFYRLKVTSNQHERKVDNSEVKLFDEINNDNKLHSTTPSRMKRKFFVLINTEGSLKDSLSLQLQKLTVGDFTAILKVDGWRLLLHLQKLTVGSLTSFSKVDSWRLRFVFKTSQLAVFASSSNIDSWQLSLQLQKLTVDDFSSSSKVGGYYSHQSDWSRQVVKSLQMNLMTITVGKSRDYPCRLLRSPNKMGTGLARVHRCRQIWLLRSPNKMGTGLAEVHHCSRSKRSSNQQADPRDHQANRSI Homology
BLAST of Spg010421 vs. NCBI nr
Match: KAA0063700.1 (ty3-gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 149.8 bits (377), Expect = 6.9e-32 Identity = 138/381 (36.22%), Postives = 190/381 (49.87%), Query Frame = 0
BLAST of Spg010421 vs. NCBI nr
Match: KAA0044978.1 (retrotransposon gag protein [Cucumis melo var. makuwa]) HSP 1 Score: 147.1 bits (370), Expect = 4.5e-31 Identity = 107/242 (44.21%), Postives = 149/242 (61.57%), Query Frame = 0
BLAST of Spg010421 vs. NCBI nr
Match: KAA0061331.1 (ty3-gypsy retrotransposon protein [Cucumis melo var. makuwa] >TYK14685.1 ty3-gypsy retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 145.6 bits (366), Expect = 1.3e-30 Identity = 136/385 (35.32%), Postives = 194/385 (50.39%), Query Frame = 0
BLAST of Spg010421 vs. NCBI nr
Match: TYK27425.1 (retrotransposon gag protein [Cucumis melo var. makuwa]) HSP 1 Score: 144.8 bits (364), Expect = 2.2e-30 Identity = 109/243 (44.86%), Postives = 148/243 (60.91%), Query Frame = 0
BLAST of Spg010421 vs. NCBI nr
Match: KAA0062458.1 (retrotransposon gag protein [Cucumis melo var. makuwa]) HSP 1 Score: 144.8 bits (364), Expect = 2.2e-30 Identity = 109/243 (44.86%), Postives = 148/243 (60.91%), Query Frame = 0
BLAST of Spg010421 vs. ExPASy TrEMBL
Match: A0A5A7V935 (Ty3-gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold329G002200 PE=4 SV=1) HSP 1 Score: 149.8 bits (377), Expect = 3.4e-32 Identity = 138/381 (36.22%), Postives = 190/381 (49.87%), Query Frame = 0
BLAST of Spg010421 vs. ExPASy TrEMBL
Match: A0A5A7V6H5 (Ty3-gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold692G00040 PE=4 SV=1) HSP 1 Score: 145.6 bits (366), Expect = 6.3e-31 Identity = 136/385 (35.32%), Postives = 194/385 (50.39%), Query Frame = 0
BLAST of Spg010421 vs. ExPASy TrEMBL
Match: A0A5D3DVW2 (Retrotransposon gag protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold325G001190 PE=4 SV=1) HSP 1 Score: 144.8 bits (364), Expect = 1.1e-30 Identity = 109/243 (44.86%), Postives = 148/243 (60.91%), Query Frame = 0
BLAST of Spg010421 vs. ExPASy TrEMBL
Match: A0A5A7V4E9 (Retrotransposon gag protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold130G00430 PE=4 SV=1) HSP 1 Score: 144.8 bits (364), Expect = 1.1e-30 Identity = 109/243 (44.86%), Postives = 148/243 (60.91%), Query Frame = 0
BLAST of Spg010421 vs. ExPASy TrEMBL
Match: A0A5D3DU03 (Ty3-gypsy retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold478G00150 PE=4 SV=1) HSP 1 Score: 144.4 bits (363), Expect = 1.4e-30 Identity = 135/378 (35.71%), Postives = 187/378 (49.47%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01
Relationships
The following mRNA feature(s) are a part of this gene:
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