HG10022045 (gene) Bottle gourd (Hangzhou Gourd) 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.ATGAGCAAGTATGGCCTGCAGCTTAGGGTTAAGCCATCACAGCAGAAGCAGCCTACAAGACCGCCCCTTCCTGCTCCTCTTGCCTTTCAAGGTGATGATGACGATGATGTTGAGAGAGAGATATCCCGCCATGCTTCCAAGAATAAGGCGCTTAAGGATGTAAGTTAGCTTGTCTATGACTAATTTTTCCTGTATGCTGTACCTTTTCATTTACTGGTGGCTATTTATTGAGAAAAGATAATGTCATTAACGAGAATCTTATTTTTGCCCATTGAAAAATTAAATTAGATTGAGGAGCAACACAAGAAAGCACTAGAGGAGGATCCGTCTGTTTTTGACTATGATGGAGTCTATGATGAAATGAAAGAAAAGGCTGTTCAACCTCGAGCATATGATCGTGAAGAGCGAAAGGTATGTTCATAATTTGATCCAGAAACTTGCTTGGTTCCTTTGTTTATTTTTTTTGAGAAATCTCCAACGTTTTAATTAACGATTAAAGTTTTATTTTTCTTAAATTTCAATGTAACTTTTCTACTTTCAAAAGGGTTTTAGGATTTGGCAATTGCAGCTGTGAGCTCTATGATTTTGACCAATGGTTGGGTCTTGATATTATAATTTTTATGGCTATGTTTGAGATTAGAAGTTGTTAAATGGTTCAGCTCGTTTCTTAGCCTCAACATGGTGCTCCCAATCCAAAGTTTTTAAAGATTACTCCATTCAGGATATTTGTTTAAATTGGAATGCTTTCATTTCCCCAAATTAATTATGTTATTTGCTATTTAGTTGTATTTGTCACTTTGGAAACTTATATTTCTTCTTATTAGTAGAATCTCCTATTGGGATATGATGAGAGCATTATGGATATGCCGACCTCGTTGAGATATCTTGGTGCGCTTGTTATATGATGAGGGCACTATGGATGTGTGACATGTGTCAAGCTAGTTGAGATATCCTAGTGCGCTTGTTGATCCCCTCGTCCTGTTATTTCCACTGCTCATTATGTATCATTGTAATTTGAGCAATGAAAAGTACTTTTTTCTGTTTTTTTTTTTTAATAGTTAAATGGTTCAACTTCAATAATCAAATTCTTGAAACCATGCCTAGAAAAACAAGAAGAAAAATACAACTAGATATTATATTATACGAATTAGAAGTCCTATAGTTTTTTTATTTTGCAGTTCACCTGGAGTTGTAGACTTCAGTTTAGACATTGAAACACAAAATGTCTGCTGGAAAGCTGATTAGAACTTTATTTAGTTACTTTGCTGGGATAATTGAGGCAACAACTTGATTTAAAATAAATAGACATAACTACATCTTTGAATCCTTCTAGATTTGAACTTGGTGTTATGATTCAACTAGAATTAGGAATTAAAGAAACCAGTGAGCTTTCACCTAACTTTTATCTCACTGTATCTAACAAAAGAGGATCATCCTTGGACTTAATGAAACATAATATTGATATCTTAAAGGAAACCGAATATGTATAAAATTACACTATCACCCTAATCTAATGTTGCCACTTTGGTGAAAACACTTATTAGCTCCCTGCCTTACTATTGCAGCCAAAGTATATTCAAAATTTGATGAAAAAGGCACAAGAGAGAGAGAGAGAGCAGGAGATTATATATGAAAGAAAACTAGCCAAGGAGAGAAGCAAAGATGATCATCTGTATGCTGGTAAGGACAAATTTGTCACTAGTGCCTACAAAAGGAAACTTGCAGAACAAGCAAAATGGATGGAGGAAGAGCGTCTCCGACAACTTCGGGAGGAGAAAGAGGATGTATGTATAAGTTTTCACATATCTTTTTCATTTTATAATTTTATGAATTCTTATTATTTGTGAAATGCCTTTATAGTGTGATAGAATGAGAAACCAACCTTTCATTGAGAAAAAAAATGAAAGGAATACCCCGTTAAAGAAATGAACTCCAAATTTTGAAAAAAAAGATCCTTAAAATAATTATGAAAATTTTTTGGGACTGAATATCAAAGGGAAACATCGAACCTAACAAAGGTCCAACTATCTCGTTGGTCCTCGCCACTCTAAACTTTTTATTGTTACTTTCCCCCATAAACTCCAAAAAGTGCACACACTGGCTTGCCACAAAAGTTTCCCGTTCTAATGAAAAGATGAATGGAGGAAATTTTCGATAATCTCCGAGGTCTCTTTGATAGGTTTGAAATCCTAGCCCTGTTTTCCCCCTCGTTTGGGATGAAGCAAACAATTTCATTTATGGAATTATTAAAGTTGCCTCTGGCAAAGAACTCTCTAAACACGTGCAGAGATCCTCCTTAATTTTTGCCCATGCAAAATGCTCCTTAATTTCATCCCAATTATGTTGAAAGAAAGTGATAGAGATCCTTGACACCCAAATGTTGTAGGGTCAGGCGGGTTGTCTCATGAGATTAGTCGAGGTGCGCGTAAGTTGGTCCGGACACTCACGGATATCAAAAAAAAAAAAAAAGAAAAGAAAAAAGAAAGCGATAGAGAAACTATCATGCCTAAGGGCTTTGTTTCTATCGCACTTAAAAACAATTTTTCTTTTTTTTTTTGATATCCGTGAGTGTTCGGGCCATCTTACGTGCACCTCGACTAATCTCAAGGGACAACCCGCCTGACCCTACAACTTTTGGGTGTCAAGGAAACTCGTAGGGAATTAATTCCTAGGTAGGTGACCACTATGGATTGAACCCATGACCTCTTAGCCAATTATTGAGACTTTGTCTCCTTTTTTACCACTAGGCCAACCCATGATGGTTACTTAAAAACAAATTTCTTGATTTCATCTACGGTAAAAGGGGAATCCAACTTAGCCTGCTCACCTGCAAAGATGGTGACTTCAATTAAGGCCATCCATGAAGGGTTTAGGGTTCACCTTTGGGGCATAAGGATTTGAGAAGAAGATAATATTTCCTTATCTCCTTTAACCAACTCCTCCTAACCTTCTCTAAAAATCCAAGTAAGTTCTTGCTTCTTCTACCAGTCACCATTCTATGGAAAAATGCAGAATTTGTAGGGGCATGACACCAAACAGCCAAACCCCAATTTTGAGAATTGAAAAAAGAGATGAGAGGCCAATGATCCAAAGTAATCCTAGTGCCCAACACTGGTTTCACACTCACATAGACATCCACAAGTTCCCAAATTTTTATAATTATTCGCTAGGTCACATTTTGTTAGATCAAATCCATTTGGAGTTTGAGAAAAATTGTGTGGACCTCCCTGGATGCTATCAACAAGGCTGGTGGTATTCTCATTCTCTGGAATGACCCAACAACACAAGTCAATGAAGTCATTGAAGGTAATCACTCCCTCTCTATCCGATTTACTCTCATGGACGGTTACTCTTTTTGGTTGACAAGGGTTTATGGTCCTTCCAAGGCAAAAGAGAGGGATTCTTTATGGAGTGAGCTATATGACCTATCTCATCTTTGTAATGAGCATTATATTATTCAGGGGGACTTCAATGTCACTAGATGGTCCTATGAGAAATCTAGTGGCAAACCGAAAACCACCTGCATCTATCTTTTTAACTAATTCATCAATGATTGTGCTCTCATTAGCCCTCCTCTATCAAACTACACCTAGTCCAACTTTCGTGAAAATCCTGTCATGTCTCTTTTTGACTGTTTTCTCATTTCAAGTCAGTGTATTGATAAATTTTGAAGTGTCAGTGTCAAGCATTTGTCTCAATCTATGTCTGAACATTACCTGATACACTTATCTCTTGGTATACAAAAGTGGGGCCCTGGCTACCTTTGCACACTTGTTTAATGTTTGGTGGAATCAGAATTAGATAGTTGGCTGGGCTAGACACGACTTCATACAAAAATTGAAGAATTTCAAGACTGTTGTGAAAATATCAAACAAAGATGTTTTTGGTTGCACTGTGACAAAAAAAATTGATCTAATCACAGAGCTTAGCCGCATTGATGACCACGGGGAATTGCATGGTTATGATTCAAATAATTCACAAAGGAGGACTGATATCAAAGCAGGGATAATGGATCTTTCCTTTCAAGAAGAGATCAGATGGAGACAAAGATGTAAGAACAAATAGACAAAGGATGGGGATGAAAACAGCAAGTTCTAATGATTGGAGGGCTCTTCTTGTTTAGTTTGTGGGAGGGGGGTTTCCCTTGACCCCTTGCCCTTAGGCTTTTTTTTTGGTTCCCTTGTTTCTTATAAAAAAAGGAAAAAAGAAAAAAAGAAAACAAGTTCTTCCACAGATACATGTCTTACTAAAAGAGGAAAAATACTTTGGTGGAAATCCTTTCCAGACAGGGGACAAAGTTTAGTCAACGATGGTGATATTGAATCTGAATTCATTGACTTCTAAGAGGTCTTTACACAAAGAAAGATGGTAGTTGAACTCTTCCAGATATTGGCAACTAGAATCCATTGACCACTGAACAGGCCCAAGCTTTAGAAGTTCCTTTTATCGAGCAAGAGATCTGGTGTGCAGTTTTTGATTTGGGAAACAAGTCCCTTGGCCCATACGGGTTCACATTAGAATTCTTTGAAAAGCAATGGAACATTCTTAAATCCGATATCAAGAGGGTGTTCTAAGACTTTTTTGAGAAGGCTATTATATATGCCAATCTTTTGAGACCTATCTATGTCTCATCTAAAAGAAGACAGATGCAAAAATGGTTGGAGATTACAATCTGACGACTAGTCTCACTACTAGTCTTTACAAGGTCATTGCTAGAGTGCTTTAAGAAAGACTTAACAAAGTCCTCCCATACATCATTTCAAAGAACCAATTTGCTTTTGTGGCAGACCGACAAATCATTGATGCATCCTTGATTGCAAATGAGTTGATTGATTATTATTTGAGATCCAAGAATTTTGGAGTGGCGATAAAGCTTGACACTGTGGATTGGGAGTTTCAGGACAATATTTTGGCTGCCAAAGGTTTTGGCAATTTATGGAGAAGATGGATCAAGGAATGTATCTCTTCAGCTAATTTCTCCATTATCAATGGTAGGCTTAGGGACAAAATCAATGCCACTTAAGGTCCTAGGCAAGGAGACCCTTTCTCTCCTTTTCTATTCACCTTGGTCGTGGATTGTCTCAGCAGGATGCTCACAAAGGGGACCAAAACTGACCTTATTGAAGGATTTGATATTAGAAATTCGAGTCTATCCATTAGTCACTTACAATTTGCAGATGATACCATTCTCTTCTCCTCACCAAGTATGGAAAAGCTTACTCGGCTTTTTGAGATCATCCAATCTTTTGAGAATGTATCGAGTGGCATTAATCCCTCCAAATCTGAATTTCTGGGCATTAACATGGATAACTGCACGACCGGTTCTTTGGCACAAACATTTGGTTGCAAGATTGGTAAGTGGCCATCTACGTACCTCAGCCTCCCCCTAACGGCAAGCCATTCAAATCCTCCTTTTGGGAGCCCATCATTGAAAAAATTGAGAGGATACTTAAAAGCTGTAGTGGCACTAATATCTCCAAGGGAGGAAGACTAACTCGGATCTAAGCCACCTTAAGTAATCTTCCCACATACTTCCTCTCTCTTCAAGTTATCTTCTAAGGCTGTCACCCACATTGGGAAGTTATATAGAAACTTTCTTTTGAATGAAAATAAAGATAAAAGAGGTATTCACTCTTTAAGTTGGCAAAAAGTTTCGCTCCCATTGTTAGAAGGGAGCCTCAGTTTATCTGATTTGAAGATAAAAAATCGAAGCTTATTGGCTAAATGGATCTAGAGATACAATATAGAATAGAACGCTTTCTGGAGGCCAATCATTGATGCTAAGTATGGGAATACTCTTCAACCTCAAGGTAACATTCTCAAACAATCGATGGGCACTTGGAAGTATATTTTGATCTACCTGTTTAATCTCTATGATCTTGTATTTTTGCTCTTTTGTTTCATTGTATATTGAGCATTAACCTCTTTTCATTTCATCAATGAAAAGTTTTGTTTCTATTTCAAAAAAAAAAAGTGGAGTTAATCCACAAGAATGTTACCAACATTATTGGTAACAGAGAAGCTGCATCCTTTTGGAGAGTTAGTTGGATTGGATCTTCTCCTCTTAAAGCTGCCTTCCCTAGGCTTTTTGCTCTATCACAACATAAGGAGGCTTCTGTTGCTCTTTGCTGGAATTGAGAACATGAATCAAGGGACCTAGGCATGATGCTTCATCTTAATGAAGCGGAAATTATGAAATGGACGATTTCATCCACATTGTTGCAGCCCCCAAATAGGCCATCGGTCATGGATTCCTAGAATTGGAACCTTGAAAAAAGCGGGAAGTTCACTACCAAATCACTATGCCAATATCTTGCTTCTATTGGATTATTGCAACATTCTGATCTATATAGGAATATATGGAGGGGTCCTATTCCAAAGAAGATCCGATTCTTTCTTTGGAAAGTTAGTTACAGTGGCATCAATACAGCTGACACATTGATTAAAAAAGCTCCGTGGATGGTATCTGCCCCCTAGCTGGTGCGTTGTTTGCCACAGAAGTGAAGATTCTCTTAAGCACATATTAGTTCATTGTGATTTTGCTCAAGCATTTTGGAACAGAATCAAGAATGCCTTCAAATACCACTTAGTCCTCCTTAATGACTTCTGAATATACTGCTCATTGGTCATTCCTTCAAGGACGGGGAGATCTTTTGGACTTTCATCGTCAAAGCCTACTTATGGTCCTTGTGGATTGAGCAAAACCATCGCATCTTCGATGACAAGGAAATGGACTTCATAAATTTTTTTAATCACCTTTTGTATACATCTCTTTCTTGGTATAAATTCACATCTTATTTTTGTGATTACAATCTTAGTTCTCTTATCTCACAATGGAATAGCATCATGTAATCTCTCATGGCACTCGTTGCCCTTTCGTAATTTCATACCATCCATGAAAATAAGATCAATGTTTCTCATTAAAAAAAAGTCACATTTTGTTTGATGGACCTTTCTTCGGGGTACTCCTTTTGTGGGCTTCTAGTTTTAGTTGGTTTTTTTTTTTTTTTTTTTTTTTTGTATGTTCCCGTTCTCTTTTGTATGTCATCTTGTTCATGGTCTTTGTTTGGTATTGTATGTATCATCTGACCCGTAGGCCATAGTTGATATGCACTGATTGGGAATAGAACCACACTTGCATTGCATCCCCGGCTGTGCATATCCCTGTCACTCAACCATATTTTTTCTTGTACGCCTAAGTAAGCGCAATCCAACTGGTTGATTTGGACTTCTTTCTTCCCCGGTAAGAAAGTAAAACGAGGTTATTTTACTGGTTTTGCAACCATGTTGAACATGTTGATAAAAATTATTTTATTGCAAGTTTGTCTAGAAGCTAATTGTATACTTGAGGTTTTCTTTAAGGGTCCAACCTTTTATAAGAAAAAGGATTGGGTCATGAAACGAGAGGTGCATTCAGAAGTGGCTTTGGGTCCTAGTAACCAAAACAAGCCTCGGTTTTTAGGAGTTGGGATTTTTGACCCATAAGACTCACTACCAGCCTCTATATGTTGAATTCCGATGTCCCAGTACCCATTTTTTGTCTGTTTTAAACCAAAGGAATTCTGAAAATTGAAGGACGTTTGTGAAGAAAAGATGAATTGACTAAATTCTAAAAGAAAACGAAGTCGTGGACCAGGAAAGGAGGTAAAAGAGGCCTATAACTATGTTGACTGGCATTTTCTAGGGGCTTTCTGCCTCTAAAAAAAGCCTGTGGTAGAGATACTTCTACAAAATTCATCTCTTTTATTTTATTCAGTTTCTCATAAAATATATTTCTATTAATCTATTTTATTTTGTTTATTATTACTAGTTGAGCGTGTTTGCTGTTACGTTGGGGGAGGGGGCTCAGAATAAACTCTCTTATACATTGTGTATTTAACTAATGCTGCAACGCATGTCTCCATTATCTTCTTTTTGGTTATCTTTAGATTAACTTTATGCTTCCATTAATGTGTATTTTTTCATCTACCATCCTGGGTTGGCATTGGCCTAGTGGTAAATAAAGGGGATGACTTTGATAAAGGACTAAAAGAGGTCATGGGGTCCAATCTATGGTGGCCACCTACCTAAGATTTAATATTCTATGAGTTTTTTTGGTATCCAAATTTTGTAAGGTCAGGCGGGTTGTCAAATGAGATTAGTTGAGGTGCATAAGCTGGTCTCGAACATTCACGGATATAAAATAAAATGTGTTTTTCATCTACAACCATTTAGCTGATTGTTTTTTTTTTTTTTTGGGTACTCATTTGAAGGTTACAAAGAAGACCGACATTAGTGAATTTTACTTCAACCTTCAAAAGAATATTGCCTACGGTGCAAGAGATGCAATTGAGCCAAGGGAACGTCCAAAGAAGCTTCAATCAGAGAAGGAAGAGAAGCAGACTGAAGTTCATATATTGGAGAAGCATGAAGAGAGTGCTAATGCCGATACCTTTAATGACCATCAGTCGTTGAAATACTCCAACTTACCTTCCCAGTCAGCAAAGACAATAGAAGAGCATCCTCATCTTGAAGAAGAACACCTTTCGGTTTCAACCAAAACAACACCGTCTGATGTACAAGGTACTAGCCCCCTTACATTACGCGATAAAATTCCACTTGAGGAACAGCCCAAGAATGAGCCAGGTGAACAACACCCAAAGCGCGATCACCATAAAAGAAATGAAGATGCTGTTGCTGCTGCAAAAGAGCGCTTTTTGGCTCGAAAAAGAGCCAAGGAGGTATGA ATGAGCAAGTATGGCCTGCAGCTTAGGGTTAAGCCATCACAGCAGAAGCAGCCTACAAGACCGCCCCTTCCTGCTCCTCTTGCCTTTCAAGGTGATGATGACGATGATGTTGAGAGAGAGATATCCCGCCATGCTTCCAAGAATAAGGCGCTTAAGGATATTGAGGAGCAACACAAGAAAGCACTAGAGGAGGATCCGTCTGTTTTTGACTATGATGGAGTCTATGATGAAATGAAAGAAAAGGCTGTTCAACCTCGAGCATATGATCGTGAAGAGCGAAAGCCAAAGTATATTCAAAATTTGATGAAAAAGGCACAAGAGAGAGAGAGAGAGCAGGAGATTATATATGAAAGAAAACTAGCCAAGGAGAGAAGCAAAGATGATCATCTGTATGCTGGTAAGGACAAATTTGTCACTAGTGCCTACAAAAGGAAACTTGCAGAACAAGCAAAATGGATGGAGGAAGAGCGTCTCCGACAACTTCGGGAGGAGAAAGAGGATGTTACAAAGAAGACCGACATTAGTGAATTTTACTTCAACCTTCAAAAGAATATTGCCTACGGTGCAAGAGATGCAATTGAGCCAAGGGAACGTCCAAAGAAGCTTCAATCAGAGAAGGAAGAGAAGCAGACTGAAGTTCATATATTGGAGAAGCATGAAGAGAGTGCTAATGCCGATACCTTTAATGACCATCAGTCGTTGAAATACTCCAACTTACCTTCCCAGTCAGCAAAGACAATAGAAGAGCATCCTCATCTTGAAGAAGAACACCTTTCGGTTTCAACCAAAACAACACCGTCTGATGTACAAGGTACTAGCCCCCTTACATTACGCGATAAAATTCCACTTGAGGAACAGCCCAAGAATGAGCCAGGTGAACAACACCCAAAGCGCGATCACCATAAAAGAAATGAAGATGCTGTTGCTGCTGCAAAAGAGCGCTTTTTGGCTCGAAAAAGAGCCAAGGAGGTATGA ATGAGCAAGTATGGCCTGCAGCTTAGGGTTAAGCCATCACAGCAGAAGCAGCCTACAAGACCGCCCCTTCCTGCTCCTCTTGCCTTTCAAGGTGATGATGACGATGATGTTGAGAGAGAGATATCCCGCCATGCTTCCAAGAATAAGGCGCTTAAGGATATTGAGGAGCAACACAAGAAAGCACTAGAGGAGGATCCGTCTGTTTTTGACTATGATGGAGTCTATGATGAAATGAAAGAAAAGGCTGTTCAACCTCGAGCATATGATCGTGAAGAGCGAAAGCCAAAGTATATTCAAAATTTGATGAAAAAGGCACAAGAGAGAGAGAGAGAGCAGGAGATTATATATGAAAGAAAACTAGCCAAGGAGAGAAGCAAAGATGATCATCTGTATGCTGGTAAGGACAAATTTGTCACTAGTGCCTACAAAAGGAAACTTGCAGAACAAGCAAAATGGATGGAGGAAGAGCGTCTCCGACAACTTCGGGAGGAGAAAGAGGATGTTACAAAGAAGACCGACATTAGTGAATTTTACTTCAACCTTCAAAAGAATATTGCCTACGGTGCAAGAGATGCAATTGAGCCAAGGGAACGTCCAAAGAAGCTTCAATCAGAGAAGGAAGAGAAGCAGACTGAAGTTCATATATTGGAGAAGCATGAAGAGAGTGCTAATGCCGATACCTTTAATGACCATCAGTCGTTGAAATACTCCAACTTACCTTCCCAGTCAGCAAAGACAATAGAAGAGCATCCTCATCTTGAAGAAGAACACCTTTCGGTTTCAACCAAAACAACACCGTCTGATGTACAAGGTACTAGCCCCCTTACATTACGCGATAAAATTCCACTTGAGGAACAGCCCAAGAATGAGCCAGGTGAACAACACCCAAAGCGCGATCACCATAAAAGAAATGAAGATGCTGTTGCTGCTGCAAAAGAGCGCTTTTTGGCTCGAAAAAGAGCCAAGGAGGTATGA MSKYGLQLRVKPSQQKQPTRPPLPAPLAFQGDDDDDVEREISRHASKNKALKDIEEQHKKALEEDPSVFDYDGVYDEMKEKAVQPRAYDREERKPKYIQNLMKKAQEREREQEIIYERKLAKERSKDDHLYAGKDKFVTSAYKRKLAEQAKWMEEERLRQLREEKEDVTKKTDISEFYFNLQKNIAYGARDAIEPRERPKKLQSEKEEKQTEVHILEKHEESANADTFNDHQSLKYSNLPSQSAKTIEEHPHLEEEHLSVSTKTTPSDVQGTSPLTLRDKIPLEEQPKNEPGEQHPKRDHHKRNEDAVAAAKERFLARKRAKEV Homology
BLAST of HG10022045 vs. NCBI nr
Match: XP_038877232.1 (nuclear speckle splicing regulatory protein 1-like [Benincasa hispida] >XP_038877234.1 nuclear speckle splicing regulatory protein 1-like [Benincasa hispida] >XP_038877235.1 nuclear speckle splicing regulatory protein 1-like [Benincasa hispida]) HSP 1 Score: 542.7 bits (1397), Expect = 2.1e-150 Identity = 291/323 (90.09%), Postives = 305/323 (94.43%), Query Frame = 0
BLAST of HG10022045 vs. NCBI nr
Match: XP_004152856.1 (nuclear speckle splicing regulatory protein 1 [Cucumis sativus] >XP_031737086.1 nuclear speckle splicing regulatory protein 1 [Cucumis sativus] >KGN61209.1 hypothetical protein Csa_006568 [Cucumis sativus]) HSP 1 Score: 517.7 bits (1332), Expect = 7.3e-143 Identity = 281/324 (86.73%), Postives = 296/324 (91.36%), Query Frame = 0
BLAST of HG10022045 vs. NCBI nr
Match: XP_016902161.1 (PREDICTED: nuclear speckle splicing regulatory protein 1-like isoform X2 [Cucumis melo] >XP_016902163.1 PREDICTED: nuclear speckle splicing regulatory protein 1-like isoform X2 [Cucumis melo]) HSP 1 Score: 507.7 bits (1306), Expect = 7.5e-140 Identity = 277/324 (85.49%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. NCBI nr
Match: XP_008450616.1 (PREDICTED: nuclear speckle splicing regulatory protein 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 507.7 bits (1306), Expect = 7.5e-140 Identity = 277/324 (85.49%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. NCBI nr
Match: XP_022927406.1 (nuclear speckle splicing regulatory protein 1-like [Cucurbita moschata] >XP_022927407.1 nuclear speckle splicing regulatory protein 1-like [Cucurbita moschata]) HSP 1 Score: 500.4 bits (1287), Expect = 1.2e-137 Identity = 273/324 (84.26%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy Swiss-Prot
Match: Q4FZU3 (Nuclear speckle splicing regulatory protein 1 OS=Rattus norvegicus OX=10116 GN=Nsrp1 PE=1 SV=1) HSP 1 Score: 107.8 bits (268), Expect = 2.3e-22 Identity = 73/184 (39.67%), Postives = 112/184 (60.87%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy Swiss-Prot
Match: Q5NCR9 (Nuclear speckle splicing regulatory protein 1 OS=Mus musculus OX=10090 GN=Nsrp1 PE=1 SV=1) HSP 1 Score: 104.4 bits (259), Expect = 2.5e-21 Identity = 106/322 (32.92%), Postives = 163/322 (50.62%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy Swiss-Prot
Match: Q2KIC0 (Nuclear speckle splicing regulatory protein 1 OS=Bos taurus OX=9913 GN=NSRP1 PE=2 SV=1) HSP 1 Score: 100.5 bits (249), Expect = 3.6e-20 Identity = 101/330 (30.61%), Postives = 165/330 (50.00%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy Swiss-Prot
Match: Q9H0G5 (Nuclear speckle splicing regulatory protein 1 OS=Homo sapiens OX=9606 GN=NSRP1 PE=1 SV=1) HSP 1 Score: 99.0 bits (245), Expect = 1.1e-19 Identity = 109/334 (32.63%), Postives = 169/334 (50.60%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy Swiss-Prot
Match: Q568R1 (Nuclear speckle splicing regulatory protein 1 OS=Danio rerio OX=7955 GN=nsrp1 PE=1 SV=2) HSP 1 Score: 90.5 bits (223), Expect = 3.8e-17 Identity = 93/328 (28.35%), Postives = 155/328 (47.26%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy TrEMBL
Match: A0A0A0LJE9 (DUF2040 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G070270 PE=3 SV=1) HSP 1 Score: 517.7 bits (1332), Expect = 3.5e-143 Identity = 281/324 (86.73%), Postives = 296/324 (91.36%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy TrEMBL
Match: A0A1S4E1R3 (nuclear speckle splicing regulatory protein 1-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103492150 PE=3 SV=1) HSP 1 Score: 507.7 bits (1306), Expect = 3.6e-140 Identity = 277/324 (85.49%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy TrEMBL
Match: A0A1S3BQM2 (nuclear speckle splicing regulatory protein 1-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103492150 PE=3 SV=1) HSP 1 Score: 507.7 bits (1306), Expect = 3.6e-140 Identity = 277/324 (85.49%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy TrEMBL
Match: A0A6J1EHK7 (nuclear speckle splicing regulatory protein 1-like OS=Cucurbita moschata OX=3662 GN=LOC111434242 PE=3 SV=1) HSP 1 Score: 500.4 bits (1287), Expect = 5.8e-138 Identity = 273/324 (84.26%), Postives = 294/324 (90.74%), Query Frame = 0
BLAST of HG10022045 vs. ExPASy TrEMBL
Match: A0A6J1I6R6 (nuclear speckle splicing regulatory protein 1-like OS=Cucurbita maxima OX=3661 GN=LOC111471664 PE=3 SV=1) HSP 1 Score: 496.9 bits (1278), Expect = 6.4e-137 Identity = 271/324 (83.64%), Postives = 293/324 (90.43%), Query Frame = 0
BLAST of HG10022045 vs. TAIR 10
Match: AT2G27285.1 (Coiled-coil domain-containing protein 55 (DUF2040) ) HSP 1 Score: 267.3 bits (682), Expect = 1.6e-71 Identity = 179/331 (54.08%), Postives = 221/331 (66.77%), Query Frame = 0
BLAST of HG10022045 vs. TAIR 10
Match: AT2G27280.1 (Coiled-coil domain-containing protein 55 (DUF2040) ) HSP 1 Score: 231.1 bits (588), Expect = 1.3e-60 Identity = 150/324 (46.30%), Postives = 205/324 (63.27%), Query Frame = 0
BLAST of HG10022045 vs. TAIR 10
Match: AT1G55928.1 (Coiled-coil domain-containing protein 55 (DUF2040) ) HSP 1 Score: 193.4 bits (490), Expect = 2.9e-49 Identity = 115/221 (52.04%), Postives = 158/221 (71.49%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (Hangzhou Gourd) v1
Date Performed: 2022-08-01
Relationships
The following mRNA feature(s) are a part of this gene:
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