Lcy12g002130 (gene) Sponge gourd (P93075) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGTGTTTGACTACGAATGTTGTTTACAACGTGCAGATGGCAACACCAGGACCATCTTCCAATAATTCGAAGCATGTCTGGACCCCAGAGGAGGATGCGGTGCTTGTGCAATGTCTGGTAGAATTGGTGCAGGTTGGTGGTTGGCGTGGTGACAATGGCACATTCCGACCAGGGTTCCATAACCAAATCGGTAAGATGATGAAAGAACGATTACCGGGATGCAACATCGTCGTCAGTCCGAACATTGATTCGAGGGTGAGGCTGTTGAAAAGGCAGTACATGGCTATCGCTGAAATGATGGGCCCAGCGTGCAGTGGATTCGGCTGGAACGAAGAACGAAAATGCATCGAGGCGGAAAGGGAAATCTTTGACAAATGGGTCGAGGTAGGGGAAATGTAACATAGATTAATAATTTACTTATGGAATAAATGATCATCGTTTGAAATGTCTGTCTTACAGGGTCACCCACAAGCTAAGGGCCTGCGCAACCGACCATTCCCAGGTTCAATGAACTTGCACTGGTGTTCGGGAAGGATAGTGCACGGGGGGTAAGAGCACGCACACCAGTTGAATTTGCGCCAGAATCTGAACCTGTTGCGGACTTGGAAAATGACATGAACGTCGAGTACGAAGACTTTTACGTCCCTAGTCCACCTGTTCTTGATCCCACCTCAGGAGAGGAATTTTCCACTACACCGACAGCAAGACCTGGAGCTGCTGGTGCTGGGCCATCACGAACACCACAGAGGAGAAGACTATCCATGGGAAATGTGGCCGAGGTCTTAGAAAATGGATTCCAGATGACTGCACAACAGATTGAGAAGATTGCCATGTGGCCCACCATCAGGGAGGAGATGGAACGTAAGCGTCGGAAGGACCTGTATACGGAGTTGCAGAACATACCAGGAGTTTCGGTACAGGACGGGTTAGTCATCGCACGGGCTTTACTGGCTGATCCGAGTATGCTTACACATTTCATGGACTTCCCACCTGAGTGGAAGTTCGATTACTGCATGCAGGTGCTGGGTAGAGCACCTGGACAGTCGGGTCAGCCTTGATCGTCCCCATTATACAGCAAGAGACTTGACGCTCCCCTTCTGATGTCTTTTATGCATTTTCAGTTTTATTCGTTAAGACATTTTAATCTTATTTCGGACTTCTGTTATCAACTCTTGAAATTTCGTACTTTATGTCAATTAAGTTGGGTGTATGATCAAACTTATGCATTATCGAAGTTCTTTATGAATGGTATTATGTTATTTCTTATTCATACACATTCATATGTGTTAAAAATGTTCCATGTATTCAGTACATTTTTTCCCCGTACCAACATTGTTCTAACCATCTCAAATGGGTGAAACAGTATCTGAGTGTAGGAATTTAAATAAAAAAAAAGCTTAAAAATCAGCTTAGAAAAAGACAGCATTACAATTCCAGTCCAATTACAACCCTGCAATCCAAACATAGGCATCAGACACATTACAACCCAAATACAACACTCCAAACACAGACATCAGTCAGATTACAGCCCAAATACAGCACTCCAAACACAGGCATCTACATTTCCAGTAATCCAGATTACAATTCAAGATTCCCAGTAATCCAGATTACATTCCATTCCCCCAAACACCCCCTGAGTGTAAATTGACTTGAGGTGGTAATTTTGTAATTTAATTGGCTTTTAGCACAAACTAACCCTAACATTTTTAGCCGCACGCAGCCCAAGGAATAACCAAGCCACATTCATCTTCTTCCTCTCCCTTCTCCTTCACGATCGATACAGCACCCACCATTTTCAACTTCTTCTTCTCCTTGCAGTCACCAATCGCCGACCAGCCCCTCTCTCCGGACGCCATCTCCGGCGACAGCGGCGTGCAGACGACGCAGCACCCTCCGGAAAGCTTTTGGCGCGACGCAGACCCCGATTTCTTCTTCTCCTTCGAGTTTCGACGGCTTGGGTTCTTTGTCCTGCGTGTTCCCACGATTCGTGCGTTGTTTCTTCCACGTTCGTGGCGTAGTTTCTCCCAGACGCGACGACAGCAACGTCCTACGAGTTTCCGGCGACTGGCGTTCCTTAATTTCCGACGATCCAGCGGCATTAAGCTTTGAATCTCAACGTTTTCGAGTGAATTTGGCTATAGGTAACTGAGTTACAGCAAGATCTAGTTTAATTTGGGTTGATTATCACGTTTAATTAAATACCCACATCCCAATTTTGAGGTACCCATTAAAATTGGAGCTCGAGTCATCCGAATTAGAACCCAACTAGCAAGCTTTAAGTTCTGGTGAGTTTCCATCCCTCAGATATGTCTCATTAGCGATTGTGTTGGTAAGAGGAATTAGTACACTAATTTTTCACAATTTTGGAAACCATTTTGTAGGGTCGATATCTTGATTAAGGCCGAGATTGGAGTCCTTGTTGAATTATTTAGGCGATCTAAATTGAGGACCAATAAACTCAAGTATGTAGGACTAAAATTTCCATGCTGACTCATTATAATTGGAAATTATAACTGCCGTTTTCAAGCTTGTCCATGTGAATTAAAGTTAAACATGTTAGTGAATTAAAGTCAAGCATATTAAGTTGAATAAGGGATTAGATTATTCATAAGCTATGTTGGTTGGTTTTGACTGTTGAAAGCATATGTGGATTTGAAATTGATACTTTATGTTGGTGGCTGATTCACTATTCTTTTAAGAAGCATGATGAGAATAGAAACATTGGCTATGGAATTGGAATTCACAATATTGTCTATGGGAATGTTGATGTCTGTGGTGCCGATTTAATTATACAGCATGTTTGGTTAGTTATTGAATTCTAGAAATTTAAATTATTATGGCGGAACTACTCTTGGATTATGATATGTTGAATTTGGTTGGCTGATAAGTATAGACCATAGTTTCTCCAAGTATGTTTCAATATGACATTTGGAGAACCATACTTATGAAATGTGATTAGACTGAGAATAGAGACCTTTAGCATGTTTTTAGGGTCCCGATTAAACTTAAAAAGATTTTAAAGTTTCATGTTAGCTAAGGTTGATTTCCTTCCACATCTCAAGACTGTTTAGAGCATATGTACAAGTATGTTTTCATGCACCAGTTGCTCTATCAGTTTAGGACTGTTTAGACTGTTTAGAACTTATGTTCAAGCATGTTTCCACGCACCAGTTGTTTTATCAATTTTAAGATTGTTTAGAGCTCATGTTCAGCAGTTCAGGCATGTTTTCATGCGCTAGTTGCGCTATCAGTTTCAGGGCTATTTAGAGCGTGATTTCAAACATATTTTCATGCATCAGTTGCTCTATCAGTTTTAAGTATGTTTAGAGTGTGTTTTCAGGCATGTTATCATGCACCAGTTGCTCTACCAATTTCACGTACATTTTTCTAGTGGTATTATATTGGATTAGGCAATGCTTTAAAAGGCGTGCGCCCAGGTGCGCCTAGGTGCAAGGCACACCCTTAGTGCCTCGCTTCTTCAGTGAGGAAGGCGTGGCCAAGGTGCACGCCTTCCTCGAAGCCCTTGGACCCCGACTCGCTGACCGGGCAGCGAGACCCCCGTACTTGGTCGTTTGGAGTGTCAAATATCAGATTCAAGGCATATCAATCATACCAAACACTCACTATTTTTTTTTGGAGTATTGACATCACCATACTTGGTCATTCGGAGTGTCAGAATGCATATTAATAATACTAAACTCACTCACTGTTTTTTGTGGAGTATTGACATTTGACTCTATGTTGGAAGACTAATATTTGAACCTTGTTTATCTTTTATCTATTTTTCTTGGTTAAAAACTTCATTACTTGCCATGAAAGTGTTTTATATACATGTATATATTTTTGTAAGTTTTTTTTTCTATATAGTGCGCCTTAAAAAAAAAGCTCGCGCCTGTTTGTGCGCCGTGTGCCTAGGTCCCAGGAGGCCATTGTGCTTTAGTGCGCCTTGAGCCTTTTAAAACATTGGGGAAAGGTCTAGTTCCACTAGTCTCTAGTGGTACTTGCCTTATAAGCAGACTCACGCAATACTCTAGTTGGCTCAAGTTGAGGATAGGTAATTGCCCTAGATAGAATGTTCCATGTTTCCTAGTTATGGCCCTAGGATTAGAAACCTAAATAAATGACTTAGTTAAGTCCCTGTGATTTTAAGACTCAAGTCAAAGTTTCATGTTATCAGTTTCAATCCTTAAGTGAACTACTTACTGAGTATATTTTTGTATACTCACTCATGCTACATGTGTTTCATTTTTTCAGATGGTACTTGGTAACATCATGCGAGTGGACAGTGACTTGACTAGGCTATGGGAAGCAACATATCAGACCATGTCCCTTGGAGCCTAGGATTGAGCTTCCTGTTTAGTTCATGCTCTTGAAAATAATAGTAAGTATCTCATTCATTAAACTATGCTTAAATTAGCGACTTAGTCCTAAATTAAACGATTAAATTAAGTTTGATTTAACTAATAATCATAAAAACTTCCAACCCCCGCCCCTAAAGTAGAAGATATCATAACAAACTAAGTTTATTTTAATTAATTTTTAAATTTTAAATAATAGTACCGAGTAATCTCTTGTCAAAATCATTTAAAAGTTATGTTATTTTAAAATTAAAAACATATACATATTTGCACATGACAATACACTAGTATATTTTGCCAAAATGAGCTTAGCTCAGCGGTAATTGACATATACTCTTGACCAAGAGGTCAGAGGTTCGAATCTCCCCACTCCCAAATGTTGATGTACTAAAAAAAATACACTAGTATATTTTGTATATATAAGCATTCGAGTTGGGGACAACGAAGGAACATGTCCCCATCCCTACTGCTTAGCTAAGAGAAAAATTTCTCCTCCTTTCCGACCTACATTGAAATACCCATCAGAAAATAGAATTCCCATTTTTAGTTCAATAACATGTGAAAGGAGGATTCAAACCTTTAATCTCCCAATTCATGATATAATATGTCAATCAGTTAAACTATGCTCAGGTGACTGGATTCACGTCTTCTTAAACTTTAAAAAAGAAATAGCATCATTTAAGAATTATTTGAAGTCCAACAATATTTAAGTATTAATTAATAAAGTAAAATTTATAGTGTGAAATTTTTCCAAGAAACATGAAATAAACTCTTTAAAAAACATTAAAAAGAAATTGGAAATTGGAAGGAAATTGAAAGATGGAACATTCTCTTTAAAAAAAAAGTTGGATGTATTTTTCAAAAAAAAAAAGAAAAAAAAAGTTGGATATATTTTTCAAAAAAAAAAAAAAAAAAGTTGGATGTATTTAAAAAGCTAATGGTATTGGTAGATAGCGAGCGGTACCGAGAAATATTGAGAGCGAAGCAGCTACCAAGAAGAAGCTACAATGGCCGGTCCGAAGCTCTCAGGGATGCAAAAGCAAGTGCTCAGTCTATACAGAGCATTTCTCCGAGTCGCTCGTTCCAAATCCCCCGAAGATCGACGCCAAATAGAATCGGTTGTCTCCGTCGAGTTCCGTCGAAACGCCAAGCAAATCGATCGCAAAAATTTCATCTACATTGA ATGTGTTTGACTACGAATGTTGTTTACAACGTGCAGATGGCAACACCAGGACCATCTTCCAATAATTCGAAGCATGTCTGGACCCCAGAGGAGGATGCGGTGCTTGTGCAATGTCTGGTAGAATTGGTGCAGGTTGGTGGTTGGCGTGGTGACAATGGCACATTCCGACCAGGGTTCCATAACCAAATCGGTAAGATGATGAAAGAACGATTACCGGGATGCAACATCGTCGTCAGTCCGAACATTGATTCGAGGGTGAGGCTGTTGAAAAGGCAGTACATGGCTATCGCTGAAATGATGGGCCCAGCGTGCAGTGGATTCGGCTGGAACGAAGAACGAAAATGCATCGAGGCGGAAAGGGAAATCTTTGACAAATGGGTCGAGGTAGGGGAAATGTTCAATGAACTTGCACTGGTGTTCGGGAAGGATAGTGCACGGGGGGTAAGAGCACGCACACCAGTTGAATTTGCGCCAGAATCTGAACCTGTTGCGGACTTGGAAAATGACATGAACGTCGAGTACGAAGACTTTTACGTCCCTAGTCCACCTGTTCTTGATCCCACCTCAGGAGAGGAATTTTCCACTACACCGACAGCAAGACCTGGAGCTGCTGGTGCTGGGCCATCACGAACACCACAGAGGAGAAGACTATCCATGGGAAATGTGGCCGAGGTCTTAGAAAATGGATTCCAGATGACTGCACAACAGATTGAGAAGATTGCCATGTGGCCCACCATCAGGGAGGAGATGGAACGTAAGCGTCGGAAGGACCTGTATACGGAGTTGCAGAACATACCAGGAGTTTCGGTACAGGACGGGTTAGTCATCGCACGGGCTTTACTGGCTGATCCGAGTATGCTTACACATTTCATGGACTTCCCACCTGAGTGGAAGTTCGATTACTGCATGCAGGTGCTGGGTAGAGCACCTGGACAGTCGGCCCAAGGAATAACCAAGCCACATTCATCTTCTTCCTCTCCCTTCTCCTTCACGATCGATACAGCACCCACCATTTTCAACTTCTTCTTCTCCTTGCAGTCACCAATCGCCGACCAGCCCCTCTCTCCGGACGCCATCTCCGGCGACAGCGGCGTGCAGACGACGCAGCACCCTCCGGAAAGCTTTTGGCGCGACGCAGACCCCGATTTCTTCTTCTCCTTCGAGTTTCGACGGCTTGGGTTCTTTGTCCTGCGTGTTCCCACGATTCGTGCGTTGTTTCTTCCACATAGCGAGCGGTACCGAGAAATATTGAGAGCGAAGCAGCTACCAAGAAGAAGCTACAATGGCCGGTCCGAAGCTCTCAGGGATGCAAAAGCAAGTGCTCAGTCTATACAGAGCATTTCTCCGAGTCGCTCGTTCCAAATCCCCCGAAGATCGACGCCAAATAGAATCGGTTGTCTCCGTCGAGTTCCGTCGAAACGCCAAGCAAATCGATCGCAAAAATTTCATCTACATTGA ATGTGTTTGACTACGAATGTTGTTTACAACGTGCAGATGGCAACACCAGGACCATCTTCCAATAATTCGAAGCATGTCTGGACCCCAGAGGAGGATGCGGTGCTTGTGCAATGTCTGGTAGAATTGGTGCAGGTTGGTGGTTGGCGTGGTGACAATGGCACATTCCGACCAGGGTTCCATAACCAAATCGGTAAGATGATGAAAGAACGATTACCGGGATGCAACATCGTCGTCAGTCCGAACATTGATTCGAGGGTGAGGCTGTTGAAAAGGCAGTACATGGCTATCGCTGAAATGATGGGCCCAGCGTGCAGTGGATTCGGCTGGAACGAAGAACGAAAATGCATCGAGGCGGAAAGGGAAATCTTTGACAAATGGGTCGAGGTAGGGGAAATGTTCAATGAACTTGCACTGGTGTTCGGGAAGGATAGTGCACGGGGGGTAAGAGCACGCACACCAGTTGAATTTGCGCCAGAATCTGAACCTGTTGCGGACTTGGAAAATGACATGAACGTCGAGTACGAAGACTTTTACGTCCCTAGTCCACCTGTTCTTGATCCCACCTCAGGAGAGGAATTTTCCACTACACCGACAGCAAGACCTGGAGCTGCTGGTGCTGGGCCATCACGAACACCACAGAGGAGAAGACTATCCATGGGAAATGTGGCCGAGGTCTTAGAAAATGGATTCCAGATGACTGCACAACAGATTGAGAAGATTGCCATGTGGCCCACCATCAGGGAGGAGATGGAACGTAAGCGTCGGAAGGACCTGTATACGGAGTTGCAGAACATACCAGGAGTTTCGGTACAGGACGGGTTAGTCATCGCACGGGCTTTACTGGCTGATCCGAGTATGCTTACACATTTCATGGACTTCCCACCTGAGTGGAAGTTCGATTACTGCATGCAGGTGCTGGGTAGAGCACCTGGACAGTCGGCCCAAGGAATAACCAAGCCACATTCATCTTCTTCCTCTCCCTTCTCCTTCACGATCGATACAGCACCCACCATTTTCAACTTCTTCTTCTCCTTGCAGTCACCAATCGCCGACCAGCCCCTCTCTCCGGACGCCATCTCCGGCGACAGCGGCGTGCAGACGACGCAGCACCCTCCGGAAAGCTTTTGGCGCGACGCAGACCCCGATTTCTTCTTCTCCTTCGAGTTTCGACGGCTTGGGTTCTTTGTCCTGCGTGTTCCCACGATTCGTGCGTTGTTTCTTCCACATAGCGAGCGGTACCGAGAAATATTGAGAGCGAAGCAGCTACCAAGAAGAAGCTACAATGGCCGGTCCGAAGCTCTCAGGGATGCAAAAGCAAGTGCTCAGTCTATACAGAGCATTTCTCCGAGTCGCTCGTTCCAAATCCCCCGAAGATCGACGCCAAATAGAATCGGTTGTCTCCGTCGAGTTCCGTCGAAACGCCAAGCAAATCGATCGCAAAAATTTCATCTACATTGA MCLTTNVVYNVQMATPGPSSNNSKHVWTPEEDAVLVQCLVELVQVGGWRGDNGTFRPGFHNQIGKMMKERLPGCNIVVSPNIDSRVRLLKRQYMAIAEMMGPACSGFGWNEERKCIEAEREIFDKWVEVGEMFNELALVFGKDSARGVRARTPVEFAPESEPVADLENDMNVEYEDFYVPSPPVLDPTSGEEFSTTPTARPGAAGAGPSRTPQRRRLSMGNVAEVLENGFQMTAQQIEKIAMWPTIREEMERKRRKDLYTELQNIPGVSVQDGLVIARALLADPSMLTHFMDFPPEWKFDYCMQVLGRAPGQSAQGITKPHSSSSSPFSFTIDTAPTIFNFFFSLQSPIADQPLSPDAISGDSGVQTTQHPPESFWRDADPDFFFSFEFRRLGFFVLRVPTIRALFLPHSERYREILRAKQLPRRSYNGRSEALRDAKASAQSIQSISPSRSFQIPRRSTPNRIGCLRRVPSKRQANRSQKFHLH Homology
BLAST of Lcy12g002130 vs. ExPASy TrEMBL
Match: A0A5A7U7F7 (Retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold675G001200 PE=4 SV=1) HSP 1 Score: 265.0 bits (676), Expect = 6.1e-67 Identity = 134/292 (45.89%), Postives = 188/292 (64.38%), Query Frame = 0
BLAST of Lcy12g002130 vs. ExPASy TrEMBL
Match: A0A5D3C7T4 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold265G00330 PE=4 SV=1) HSP 1 Score: 217.2 bits (552), Expect = 1.5e-52 Identity = 118/287 (41.11%), Postives = 166/287 (57.84%), Query Frame = 0
BLAST of Lcy12g002130 vs. ExPASy TrEMBL
Match: A0A5A7UME4 (Retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold615G00290 PE=4 SV=1) HSP 1 Score: 208.4 bits (529), Expect = 6.8e-50 Identity = 112/300 (37.33%), Postives = 167/300 (55.67%), Query Frame = 0
BLAST of Lcy12g002130 vs. ExPASy TrEMBL
Match: A0A5D3DPR5 (Retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold259G00580 PE=4 SV=1) HSP 1 Score: 205.7 bits (522), Expect = 4.4e-49 Identity = 111/300 (37.00%), Postives = 166/300 (55.33%), Query Frame = 0
BLAST of Lcy12g002130 vs. ExPASy TrEMBL
Match: A0A5D3CBF7 (Retrotransposon protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1112G00350 PE=4 SV=1) HSP 1 Score: 205.7 bits (522), Expect = 4.4e-49 Identity = 111/300 (37.00%), Postives = 166/300 (55.33%), Query Frame = 0
BLAST of Lcy12g002130 vs. NCBI nr
Match: KAA0050106.1 (retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 265.0 bits (676), Expect = 1.3e-66 Identity = 134/292 (45.89%), Postives = 188/292 (64.38%), Query Frame = 0
BLAST of Lcy12g002130 vs. NCBI nr
Match: TYK07921.1 (hypothetical protein E5676_scaffold265G00330 [Cucumis melo var. makuwa]) HSP 1 Score: 217.2 bits (552), Expect = 3.0e-52 Identity = 118/287 (41.11%), Postives = 166/287 (57.84%), Query Frame = 0
BLAST of Lcy12g002130 vs. NCBI nr
Match: KAA0057083.1 (retrotransposon protein [Cucumis melo var. makuwa] >TYK09001.1 retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 208.4 bits (529), Expect = 1.4e-49 Identity = 112/300 (37.33%), Postives = 167/300 (55.67%), Query Frame = 0
BLAST of Lcy12g002130 vs. NCBI nr
Match: KAA0035621.1 (retrotransposon protein [Cucumis melo var. makuwa] >KAA0041647.1 retrotransposon protein [Cucumis melo var. makuwa] >KAA0046728.1 retrotransposon protein [Cucumis melo var. makuwa] >KAA0052099.1 retrotransposon protein [Cucumis melo var. makuwa] >KAA0054495.1 retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 205.7 bits (522), Expect = 9.1e-49 Identity = 111/300 (37.00%), Postives = 166/300 (55.33%), Query Frame = 0
BLAST of Lcy12g002130 vs. NCBI nr
Match: KAA0038122.1 (retrotransposon protein [Cucumis melo var. makuwa] >KAA0047362.1 retrotransposon protein [Cucumis melo var. makuwa] >KAA0055248.1 retrotransposon protein [Cucumis melo var. makuwa] >TYJ97185.1 retrotransposon protein [Cucumis melo var. makuwa] >TYK00369.1 retrotransposon protein [Cucumis melo var. makuwa]) HSP 1 Score: 205.7 bits (522), Expect = 9.1e-49 Identity = 111/300 (37.00%), Postives = 166/300 (55.33%), Query Frame = 0
BLAST of Lcy12g002130 vs. TAIR 10
Match: AT5G27260.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G29880.1); Has 1807 Blast hits to 1807 proteins in 277 species: Archae - 0; Bacteria - 0; Metazoa - 736; Fungi - 347; Plants - 385; Viruses - 0; Other Eukaryotes - 339 (source: NCBI BLink). ) HSP 1 Score: 54.3 bits (129), Expect = 3.2e-07 Identity = 65/257 (25.29%), Postives = 107/257 (41.63%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (P93075) v1
Date Performed: 2021-12-06
Relationships
The following mRNA feature(s) are a part of this gene:
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