Csor.00g068330 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGCAAGGTTCATTGACCGAGGCTGAATCCAGGTCTCCTCCTTATTCTGTTTTCTACGAAAATGAATGGTGGAAAAGGTCAAGGTAATCCTAATGTACCAGTTCCGGATCACACAAGATAACACGTAGTATAGAGCATGAATGTTTATCGTTATATACATATAGAGATTTGAAACCAGGATATTTAAAGACTGAACATGAAATATATTTATTTTATCAAGCAAATGTAACACATCTAGTATGCTGTAAAGACTGAATAGAGAACCATATTTATTTTTTTTACTTAATGTATTATATCATTTATTGCTTGAAGAACTTATAGAGCTCACAAGAAATTTGTAAGTTCCTATCTCTGATTTTGTTTTAATGTCCGAGGTAAATGCTCGTTGTTGGCAGTTCTTAGCTAAGGAGTGCCTCCTCACAAGGGAGTCGCAGTGATTTATGACAAAGAGCTTGAACTAGATAGCAATTTCTATAGAAACTAGATAGCAATTTCTGTTTTTATAGTCATGCTTCTTGGTTTGCATATCGGTCATTAGATTGTGTGGCCATGCTTCTTGGTTTGCATATCGGTCATTAGATTGTGTGGCCATGCTTCTTGGTATGCATATCGGTCATTAGATTGTGTGGCAACGCGAGTAAAAAGAGTTCAGGCGGGTGATGATGGCTCACCGATCTTGCTTAGCAGCAGAGCTAACCTAGCTATAACCTGTTTTAGTGTTAATTCTCATTGTCCTGGTTTTCTTATTTTGAAAAGTTCATAGCTTCCTGGCTAATCTTAGTGTGGTGTGGAACATATGATTCTGATATTCTTTTTGGCCGATTTGATACCAAGTGAAAATAGGTAACTTTTTGGCTGAATGTGGCTTCTAGGCATTGTTCTTCTCGATGGATGTTTGGAACTGATTTCAAATTATCAAATAGGTGATCAAATTTTTATTGGATTTATAGAAATTAAATGGGTTTGTTTGACCATCTTATTTAAAAAGTTCAATATTTTTGGAGGGTACATGTGTTTATGTTTGTTTATTATGCTTATGTTGACGACCTAACAAAGATTAAATGGATGGTATCGAAATTATCGAAATCTTTTGACTCAGAATCTAAAGATAAAGATGCATCTATTCTCGAATCACCTAAAGTCACTTGCTGTTGTTGATGGCCGTTGTAGCAACACCGATGCCGATCACATGCTTCATGGTGGAACAAAACATGTTGGTTCGAGTTTCTATGTTGACTGGATAAGCATCGCTTAAAGGTGACTCATTAACTTAGTCATTATTAGATGTTTCTTTTATGAGATGACAAGATTCCCAAAATGTAGCAACCTAATGTCTAGACATTCATTATCATCTTCAAAGGTTCCGGGTTTGAACGAGTATATGTCACTTACCCTCATTCTAGTGCTCATGTTGGTTACACTCGTAATTGTTTAACTAAAAATTGAATTATAAAAAAAAATTTGAACATATGTCATTGGTTTAAAAGTACTTTAGATTAATAAAATACCATAACTGTAAATTATTATTCACCTACAATTTATAAATATCTAATAATAAATGAAACTCATCTTCTTGAAATTTCGATGTTTTCTATTTACATTCCTGTCTCTTATAAAGAGCCGACGATCAGACCAGAGAGGTTTAGGTAGGGTAGGGTGGGTGGTACCACTCAGATTGTGGCCAATCTTCTATCCACGCGCTAAATGAAACTCATCTTTTTAAAATTCATATTATAGGATTGAAAGGCGTGAATTTGATTCAATATTCTAAATAAATTTGAAATACAAATTCAATAGCAATTCATAAACATGTTTATTTCTTCTAAAAATAACAAAATAATCCTGAATTTAAATAAGAAACTACGAAGAATTTTAATTCATAAATCATGGAATCTAAATTATAACTTTATTGGACTCAAATAATTTAATAATTCATAATTTATTAAAAAAAAAATAAAAAGAAAAAAGGGAAAAAGATTGGGGATTCTCTGGTTTGGCATCGTTCCAGAGGAGGAAGGGCTGAAAGAGAGTGGACCGTGGAAGGAGAAGCGATGACGGATACGTTGGTCAAAGCTGCCGTCGATGCCATTCACTTGAGTCCTACTCAGGCTGTTCTCTACCTTTCCGGCGGCGCTTCTCAGGTCTCCATATAACTTCTTTATTTCACACACTTCTGCTTTGATTTCCGTTCATCACCATCTTCTTACTTGTATTCGGATTATTATATATGAACGATTAGGCCATAGGATGGTTGCTTTCAGTTCCTGGAGCTTCCGGTACAGTCCTCGAAGCTGTCGTACCTTACTCTAGGCCTTCCATGATCCAGTTACTCGGCAAGGTTAAGCACTGTCCCTAAAGAATTCTTTATTGATGCTTAAATTTTCATAGTTGTGCGATGAATGAAATTTTTCATCGACTGGAACATCTGCGAGAACTGGCGGCTAAAGTTAGCCATAGCGAAAGAATTGTGCAGTAGTTAATGTCTATTTTACTATTTCTAGTCGTAGCGGGGGACAAACTGAATGAAATCGACTGCAAAAGAAGATTGCAATTTGCATTCTTACTCATTTTAACTCGACATCTTTCTGGATATTTAACCTGCACCGGAGTTCATAACGGCAGTCGAATTTGATTCTCATGGATGAAGTATCCAATATAAGGGTGATCCTAGTGCTTATAGTAGGGTTAATAGTTTCTTTTCCAATTTTGATGATTTTAAGGAGTTGATGAATTTTTATTAGTTTACTTGAGGAAAGAAAATATGATGTATTAGATCAATTTGTAGAAGCAGCTAGCGTTGGCTATTCAAGGGTTTAAATGCTTGCCAAAGACTGTTGATCTTTCTATGGCTGTGTTCGAGTATGTTATCAATAGAAGGGCGGAAAATTAAGCTTTCTACCAAAACATCCTTGCAAATTGCAAATATGTAAAGGGAGTAATGGTTTCACTACAAACTAAAACCTCTTTCCTAGTTGTAGATCACATGAATATCTACAATATGTACCTAATGTTCTTGTCTACGTTTTTGTAAGTTGAAATAATCATCTGGGAACAGCTTTGAACTTGGGCAGCCTCGTTCTTCGAAGCACACTTTCAAGCTATTCTAGTTCTTGTCTAGGATACCTATAACCATCCAAATCATAATGGAAAAATCTCAATGAACAGTGTCAAATATAGCTAAAATCAATGCTGATACTTTTGTTTCTTTGATGCAGGTTCCCTCTCAATGTTGTAGCCGTAAAACTGCTGAAGAAATGGCTTTGCTGGCTTATAATCGTGCTCTAAAGCTATCTAGGCCAGGTTTGTAACTGTTGTGAAATTCATCTCTATGGTATCTTGATACAATAAAAATATAAATTATTTCTTTTCTTATAGAAATTATGGAAGTTCATTTGAACACGATGAAAACTTGGTCCAATTTCATATCAAATGCTTTTAAAGGCTATTTATCTTGTACACATTTAATATTTTTAGCTTGATACATCAAAATTCCAACACAATTACCCGTACACTATTCATCAATCAATTTGGGCATAGGACATAATTGCTATTTAATTGCCGGACACTTGCTTTGACATTATTTGGAATTTCACTTGCTTACTTGTTTCTGCTATTTATCTCGAGTATTCTCCTTTTATACGCATAGGAAAAAAAAACACAAGATATACATGATATTGTTTCTTATAATTGATCATTATTGGATCAATTAAAATTTATTTCCTGCTTTCTCTCTTACCAGGACTCTGATTTTTTAATTCAAAATTTGATTGTTAACATTTAAACTGGTTATCGTTTATCTTTCATTAATATTATTTAGTTTCTTTTTGCTTATTTGTGTATGTCAACACATGTTAGATGAACATTTTCTTTTCTTCTTTTTTTTTTTTTTTTCTTTTTTTAAAAAATCCTTTCCTCACTATGACATCCAATTTTTTCCATGAGTGAAGTTTTCTATTTGAAAAATGTATAAACAGATCAGGGTGATAAGAAATCCCCAATGAAAGAGGTACATTAGTAACATTCCCATTCTACATTGATCAAGAAAGTGGTGCAATTACAAACGTTCTTACATAAAACACTCTTAAGTAGCAATTCTGGACTGTCCAAGATCAAAATGAAAAAGTCTAGATTGTTACTCATCCTTCTTCTTCCTCTTCTTTTGGGATCAACAAATGTAGGGGTAGAAGATTGAACTTTCAACCTCAAGGAAGGTAATAGGCATGTTTAGCTTGGATTGGAAAACATTCTAGGTGCTATTGAAAATTTTTGTTCTTCATTTCAATTGGGAAAAAGATATTGAAGCATTTTTCTGAAGCTCTCTTCCTTTATCCCAAAACCACCATCTCGACAGATGGATTGTAAAATGTTCTAGATGCTATTGAAAATTCTATCCTTCACTTCAATCCAAAAAGAGATATTGACGCATTTTTCTGGAGCACTATAAAACCACTATATCGATAGATACGTAGGAAGTTGACCATCAACGTCTCTACAAGTTTTTTGTCCTTTTACTTTGTTTCAATATTCACTTATATCAAAAGGTGCAAACAAAGGAGGTTGGGATTTAAAGGAAGTAGGCTGCCCCAATGGAAGATTGGGGCACGTGTAATGAAGTAAAGTTGCTATGGGTTGAATTTATTACACACAAATATTTGTTGAATTGAATTCTTTTATTGTGTTTTAGGACCCAGTATATATTGCAGCAACAAACAAATGTTTGAAGTCTGGATTTTCATAATTGAAAATTTAGGTTCTAATGTGTTAAATGAGTGACAGTAAAAGAGTGCAATAAGTATTTCATGCTAACTATATTTGTCTAACGGAATTCTGTCACTGTGTTTCAATGAACTTGCCTTTATCTAGTGATCTGATTGACAGGTTATCCTGTTCTTGGTGTCGGTTTTACTGGTTCTTTGGCTACCACTCATCCAAAATTTGGTGATCACAGGTAGTTTGTCAAAGTTTCTATTGACTTGGATGCTTTCATGCTATATGTGGGTAGGACATCCATTAGGGTAGAAGTTAGGAAACTCATACTACCAGTATCCTCTTACAATCACCTGTTTCTCTCCAAATCAGTCTAGCATTGGTGTTCAACAGTGCAATCATATTTTTGGTTTTTATAAAACTGGTCTAGCACAAAATCGAATTTAGTGGAAATAGGTAACGGGCTGTTGCAGTTTGAGTAGGCCTTAATGATAAATGAAGTACAATTCCGTTCTTATGTAGTGTGATGCATAATAGCATGCAATACCTGCTTGTAGATTTTTCCCCCTATTTTAATATATGTCTTTTATATAAAGGTCTCTCGTATTATGTGTAGGATGCATATGTCAACAAGATTGGCTAACCGACGTTGGGTTTCCACAATCACACTGTCGAAGGTAATTTTTTTAAAGGGAAGAGAATCTAATTCATCTAACCCTTTGGCTTTTAGGTCAATCATCTGATCTTTGTTAGTTATTACTTGATTATTTTAGGGTTTACGTACTCGGGAGCAAGAGGAGATACTCTCAAGTCATCTTTTACTTAAGGTATGTTCAAGGATCCAAATGGTATCGTCAGGCATCTCAACAGCTTATATATTCTTCTATTATTGTAGCTGAAGTATATTCTTCATAAGAACATTTAGATGATGTAAAACTGAGTTGGGAGATATAGCTAAAAGATTACATAGTGAGGTGGTAGTGTAGAAAACAATGAAAGAGAATTGAAATTCTAAGGGGGTAGGAGGTAGGAGGTAGGAGGTAGGAGGAGATAAACCTCATATATAAGTTGATAATTAATATCACTAAGCGTTCTGTCAGGCAGTAGGAGCTGTAATTGATGGCTAAATCTAACCACAACAGGAAATTCTAATAAATTGAGCCTATAAATTTGGGAATACCCTAGTCAGTAGGATGCCTTAAAGCAACTCTAGTTTTAAAATTACTCTAAATTCCGGTTGATGCTATACTGTATCAGATATACTTCATCCAATTTCTCAAATAGATTTCTTAGAAAGCATATTTATTATGCCAACATGAAAACTGTACTTTTTAGGCTTTTTATTTTTCTGAAAGTTGACGTTTAGTTTGGTTTCTTGCAAATATCATTAATATCTTAGTCAGCCTTTCTATTTTCTGGTCTTAGGCAATTGCTAGCGCATGTAAAGTTCCTGGAACCTTTGTTTCAGATTTGACTCGATCTGATTTATTAGAAGAATGTGAAACGCTATTCTCGGAGGATGAAGAACTAAAGCAACTTATAAGTGGGGAAGTTTGCTTTAAGGTCTATCCATTTTTAAGGGGTAAAATTTCTATTGATTTTAATGGACTATATATGGTGGCAACTAAAATTTTCAAGAGCTCATATCAATTTTTTTTTTTTTTTTTTTGCAGAGACCTTTACAACAGATGCAGAAAGAAAAATAATACTCTCTGGTTCTTTTAATCCGTTGCACGATGGTCACGTCAAGCTTTTAGAGGTTGCAACCAGGTATGTAGAGTTGTTTAATATTTTTTAAATTTACGATAATTCTCTTTGCCTAGACTCACTCTTGACCAACATCCAATATATTTGGGAAGCTACATCAACCACATGAAATCTACCAGATTTTGAAGTAGAAAATTAAGAGAATAGGAACGCCATAATGAGGCTGATAGACTCTTTAAAGAACTCATCTTTTCCAGATCTTAAGTCAATAATTTTCTCCCTAGTTCCTCGATATCTGAACTTTCTTATTTTTGTACAGCATTTGTGGTGGTGGGTATCCTTGTTTTGAATTATCGGCTGTGAATGCTGACAAACCACCCCTATCAGTATCACAGATCAAAGATCGTGTCGAGCAATTTAAAAAAGTTGGTGAGTCTTGTTTCAAAAATGTTTCCTATTTCATATGCTGTATTTTAGGTTGAATTATCAAATACTTGAGTTTCAATTATAAATTATGCCCAAATGATGAGTGGAAATTGATGTAGCTAAGATCGTTGTTACTCTCATTTAAACTCATACTATCATGGATATCTTTCGTAGTATTTACAAAAATCAATTTTTGCATATTATGATGTTGTAAATAATGTCATATGCTTCCCAGTTTTTACACACTAGCCATTATGTCAATTTTCTATCTACCATTCTAATAGAAAAACTTTTCAGATGTGTTTTTTGAAACAATGTGAAAACCGACGATAGTAAAAATGATAGTCTAAAGGTACCTTTGAGATACAATTGAAACCTATCTCAAAGTTAAAAAGGGATATTTTGCAGAATTTACCCCATAATTTCTGTGGCTTTTCAGTTGTACCAGAGCTGTTTCCTTTTCTTCTTCTTCTTTTTATTTTTTTATTTTTTTTATCCTTCTATTTATTTATTATTATTGCTTGCAAAAGAAAGAGGACATTGATTAAGGTGAATATTTATCTTTCAATTTTAATCTGCGTGGCAGGAAAGTCAGTAATCATTTCTAATCAGCCTTACTTTTACAAGAAAGCCGAACTTTTCCCTGGTAGTGCCTTTGTTATTGGTGCTGACACTGCAGTAAGGTTGATAGATGTAAGTTTCGACTAGTGGAACTATATTTATGTTTCTTCTCATCGAACCATTTTCTGATTTAACATATTACGAGAGCTTCACTTCCTTTCCTCCAAACGTGAACTTCTGTTTGGTGCTTTTTCCCCTCATTATCTTGTTCTTTGGTTTGCTTTTGTTCTTTTTATATTTTAGGCTAGAAAGCAAGTCTTAAGAAACCCAACGTAAATACTACAGAACATATGTAATGGCACAGGTCATAACGCACGCACCATCTGCTAATGCCGCCATCACTAATTTCCTCTATTGATTGTTATTTCCTTTAGTTTGTTTGATGATAATTTTATTTTTAGAAATTAAGCTTATGAACATGCTATATAGCATAAGTTGTATAATAGTCTCCTTGAGTTCTAAATATCGTATTTTCTTTTTTAAGTTTTTCCCTTCTCAGGAGTACTCTTGAAATCTTTAATCAAATTTTGGGACTTTGAGAATTTTTTTTGCTTTTCAAAATTTCTTTGAATGATGTTTGAAAACAGAAGACAAATAATAAAAAGGCTATGAAATGGCCCTCTTGATTTCACTTTTCAGTATATTCTCTCCTTAATGGCAATGTAAATCTGATGCAACCCAACATTGCTTACATGGTTTTCCATTGATTTGCAGCCCAAATACTATGATGGGGATTACAAGAAGATGCTGGAAATTTTGCTCCGAATCAAGAACACTGGGGCAACGTTCCTCGTTGGTGGTCGAAACATAAATGGCGTTTTCAAAGTACGTTAGCTTGAGCGATTTATAGGAAGTTTATATATTGCCTTCTGTTTCCTTTGCCTACAAATTGAGAATTTATCCTGATGCTCCTTTTTCTTCGCCATTGTTACTAATGGTGTCATTCAGGTTCTTGAAGATGTTGAGATTCCACAAGAGCTAAGAGACATGTTTATCTCAATACCTGCAGACAAATTTCGTATGGACATTTCCTCCACCCAAATAAGAAAACAACTTGGAATTTAA ATGCAAGGTTCATTGACCGAGGCTGAATCCAGGTCTCCTCCTTATTCTGTTTTCTACGAAAATGAATGGTGGAAAAGGTCAAGAGGAGGAAGGGCTGAAAGAGAGTGGACCGTGGAAGGAGAAGCGATGACGGATACGTTGGTCAAAGCTGCCGTCGATGCCATTCACTTGAGTCCTACTCAGGCTGTTCTCTACCTTTCCGGCGGCGCTTCTCAGGCCATAGGATGGTTGCTTTCAGTTCCTGGAGCTTCCGGTACAGTCCTCGAAGCTGTCGTACCTTACTCTAGGCCTTCCATGATCCAGTTACTCGGCAAGGTTCCCTCTCAATGTTGTAGCCGTAAAACTGCTGAAGAAATGGCTTTGCTGGCTTATAATCGTGCTCTAAAGCTATCTAGGCCAGGTTATCCTGTTCTTGGTGTCGGTTTTACTGGTTCTTTGGCTACCACTCATCCAAAATTTGGTGATCACAGGATGCATATGTCAACAAGATTGGCTAACCGACGTTGGGTTTCCACAATCACACTGTCGAAGGGTTTACGTACTCGGGAGCAAGAGGAGATACTCTCAAGTCATCTTTTACTTAAGGCAATTGCTAGCGCATGTAAAGTTCCTGGAACCTTTGTTTCAGATTTGACTCGATCTGATTTATTAGAAGAATGTGAAACGCTATTCTCGGAGGATGAAGAACTAAAGCAACTTATAAGTGGGGAAGTTTGCTTTAAGGTCTATCCATTTTTAAGGGAGACCTTTACAACAGATGCAGAAAGAAAAATAATACTCTCTGGTTCTTTTAATCCGTTGCACGATGGTCACGTCAAGCTTTTAGAGGTTGCAACCAGCATTTGTGGTGGTGGGTATCCTTGTTTTGAATTATCGGCTGTGAATGCTGACAAACCACCCCTATCAGTATCACAGATCAAAGATCGTGTCGAGCAATTTAAAAAAGTTGGAAAGTCAGTAATCATTTCTAATCAGCCTTACTTTTACAAGAAAGCCGAACTTTTCCCTGGTAGTGCCTTTGTTATTGGTGCTGACACTGCAGTAAGGTTGATAGATCCCAAATACTATGATGGGGATTACAAGAAGATGCTGGAAATTTTGCTCCGAATCAAGAACACTGGGGCAACGTTCCTCGTTGGTGGTCGAAACATAAATGGCGTTTTCAAAGTTCTTGAAGATGTTGAGATTCCACAAGAGCTAAGAGACATGTTTATCTCAATACCTGCAGACAAATTTCGTATGGACATTTCCTCCACCCAAATAAGAAAACAACTTGGAATTTAA ATGCAAGGTTCATTGACCGAGGCTGAATCCAGGTCTCCTCCTTATTCTGTTTTCTACGAAAATGAATGGTGGAAAAGGTCAAGAGGAGGAAGGGCTGAAAGAGAGTGGACCGTGGAAGGAGAAGCGATGACGGATACGTTGGTCAAAGCTGCCGTCGATGCCATTCACTTGAGTCCTACTCAGGCTGTTCTCTACCTTTCCGGCGGCGCTTCTCAGGCCATAGGATGGTTGCTTTCAGTTCCTGGAGCTTCCGGTACAGTCCTCGAAGCTGTCGTACCTTACTCTAGGCCTTCCATGATCCAGTTACTCGGCAAGGTTCCCTCTCAATGTTGTAGCCGTAAAACTGCTGAAGAAATGGCTTTGCTGGCTTATAATCGTGCTCTAAAGCTATCTAGGCCAGGTTATCCTGTTCTTGGTGTCGGTTTTACTGGTTCTTTGGCTACCACTCATCCAAAATTTGGTGATCACAGGATGCATATGTCAACAAGATTGGCTAACCGACGTTGGGTTTCCACAATCACACTGTCGAAGGGTTTACGTACTCGGGAGCAAGAGGAGATACTCTCAAGTCATCTTTTACTTAAGGCAATTGCTAGCGCATGTAAAGTTCCTGGAACCTTTGTTTCAGATTTGACTCGATCTGATTTATTAGAAGAATGTGAAACGCTATTCTCGGAGGATGAAGAACTAAAGCAACTTATAAGTGGGGAAGTTTGCTTTAAGGTCTATCCATTTTTAAGGGAGACCTTTACAACAGATGCAGAAAGAAAAATAATACTCTCTGGTTCTTTTAATCCGTTGCACGATGGTCACGTCAAGCTTTTAGAGGTTGCAACCAGCATTTGTGGTGGTGGGTATCCTTGTTTTGAATTATCGGCTGTGAATGCTGACAAACCACCCCTATCAGTATCACAGATCAAAGATCGTGTCGAGCAATTTAAAAAAGTTGGAAAGTCAGTAATCATTTCTAATCAGCCTTACTTTTACAAGAAAGCCGAACTTTTCCCTGGTAGTGCCTTTGTTATTGGTGCTGACACTGCAGTAAGGTTGATAGATCCCAAATACTATGATGGGGATTACAAGAAGATGCTGGAAATTTTGCTCCGAATCAAGAACACTGGGGCAACGTTCCTCGTTGGTGGTCGAAACATAAATGGCGTTTTCAAAGTTCTTGAAGATGTTGAGATTCCACAAGAGCTAAGAGACATGTTTATCTCAATACCTGCAGACAAATTTCGTATGGACATTTCCTCCACCCAAATAAGAAAACAACTTGGAATTTAA MQGSLTEAESRSPPYSVFYENEWWKRSRGGRAEREWTVEGEAMTDTLVKAAVDAIHLSPTQAVLYLSGGASQAIGWLLSVPGASGTVLEAVVPYSRPSMIQLLGKVPSQCCSRKTAEEMALLAYNRALKLSRPGYPVLGVGFTGSLATTHPKFGDHRMHMSTRLANRRWVSTITLSKGLRTREQEEILSSHLLLKAIASACKVPGTFVSDLTRSDLLEECETLFSEDEELKQLISGEVCFKVYPFLRETFTTDAERKIILSGSFNPLHDGHVKLLEVATSICGGGYPCFELSAVNADKPPLSVSQIKDRVEQFKKVGKSVIISNQPYFYKKAELFPGSAFVIGADTAVRLIDPKYYDGDYKKMLEILLRIKNTGATFLVGGRNINGVFKVLEDVEIPQELRDMFISIPADKFRMDISSTQIRKQLGI Homology
BLAST of Csor.00g068330 vs. ExPASy Swiss-Prot
Match: Q7NE64 (Probable nicotinate-nucleotide adenylyltransferase OS=Gloeobacter violaceus (strain ATCC 29082 / PCC 7421) OX=251221 GN=nadD PE=3 SV=1) HSP 1 Score: 47.8 bits (112), Expect = 3.7e-04 Identity = 47/190 (24.74%), Postives = 79/190 (41.58%), Query Frame = 0
BLAST of Csor.00g068330 vs. NCBI nr
Match: KAG6579222.1 (hypothetical protein SDJN03_23670, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 850 bits (2196), Expect = 5.15e-311 Identity = 427/427 (100.00%), Postives = 427/427 (100.00%), Query Frame = 0
BLAST of Csor.00g068330 vs. NCBI nr
Match: KAG7016735.1 (hypothetical protein SDJN02_21845 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 760 bits (1962), Expect = 4.83e-276 Identity = 383/385 (99.48%), Postives = 385/385 (100.00%), Query Frame = 0
BLAST of Csor.00g068330 vs. NCBI nr
Match: XP_023550267.1 (uncharacterized protein LOC111808493 isoform X1 [Cucurbita pepo subsp. pepo] >XP_023550268.1 uncharacterized protein LOC111808493 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 758 bits (1956), Expect = 3.97e-275 Identity = 382/385 (99.22%), Postives = 385/385 (100.00%), Query Frame = 0
BLAST of Csor.00g068330 vs. NCBI nr
Match: XP_022939694.1 (uncharacterized protein LOC111445506 isoform X1 [Cucurbita moschata] >XP_022939695.1 uncharacterized protein LOC111445506 isoform X1 [Cucurbita moschata]) HSP 1 Score: 758 bits (1956), Expect = 3.97e-275 Identity = 383/385 (99.48%), Postives = 384/385 (99.74%), Query Frame = 0
BLAST of Csor.00g068330 vs. NCBI nr
Match: XP_022993381.1 (uncharacterized protein LOC111489421 isoform X1 [Cucurbita maxima] >XP_022993382.1 uncharacterized protein LOC111489421 isoform X1 [Cucurbita maxima]) HSP 1 Score: 757 bits (1954), Expect = 8.01e-275 Identity = 381/385 (98.96%), Postives = 384/385 (99.74%), Query Frame = 0
BLAST of Csor.00g068330 vs. ExPASy TrEMBL
Match: A0A6J1FHZ1 (uncharacterized protein LOC111445506 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111445506 PE=4 SV=1) HSP 1 Score: 758 bits (1956), Expect = 1.92e-275 Identity = 383/385 (99.48%), Postives = 384/385 (99.74%), Query Frame = 0
BLAST of Csor.00g068330 vs. ExPASy TrEMBL
Match: A0A6J1JW61 (uncharacterized protein LOC111489421 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111489421 PE=4 SV=1) HSP 1 Score: 757 bits (1954), Expect = 3.88e-275 Identity = 381/385 (98.96%), Postives = 384/385 (99.74%), Query Frame = 0
BLAST of Csor.00g068330 vs. ExPASy TrEMBL
Match: A0A5D3BLW5 (CTP_transf_2 domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1728G00050 PE=4 SV=1) HSP 1 Score: 696 bits (1797), Expect = 3.22e-251 Identity = 347/385 (90.13%), Postives = 365/385 (94.81%), Query Frame = 0
BLAST of Csor.00g068330 vs. ExPASy TrEMBL
Match: A0A1S3CSY7 (uncharacterized protein LOC103504595 OS=Cucumis melo OX=3656 GN=LOC103504595 PE=4 SV=1) HSP 1 Score: 696 bits (1797), Expect = 3.22e-251 Identity = 347/385 (90.13%), Postives = 365/385 (94.81%), Query Frame = 0
BLAST of Csor.00g068330 vs. ExPASy TrEMBL
Match: A0A6J1DHD5 (uncharacterized protein LOC111020072 OS=Momordica charantia OX=3673 GN=LOC111020072 PE=4 SV=1) HSP 1 Score: 672 bits (1735), Expect = 9.27e-242 Identity = 335/385 (87.01%), Postives = 360/385 (93.51%), Query Frame = 0
BLAST of Csor.00g068330 vs. TAIR 10
Match: AT2G01220.2 (Nucleotidylyl transferase superfamily protein ) HSP 1 Score: 539.3 bits (1388), Expect = 2.9e-153 Identity = 261/384 (67.97%), Postives = 325/384 (84.64%), Query Frame = 0
BLAST of Csor.00g068330 vs. TAIR 10
Match: AT2G01220.1 (Nucleotidylyl transferase superfamily protein ) HSP 1 Score: 533.1 bits (1372), Expect = 2.0e-151 Identity = 260/384 (67.71%), Postives = 324/384 (84.38%), Query Frame = 0
BLAST of Csor.00g068330 vs. TAIR 10
Match: AT3G27610.1 (Nucleotidylyl transferase superfamily protein ) HSP 1 Score: 500.0 bits (1286), Expect = 1.9e-141 Identity = 242/385 (62.86%), Postives = 316/385 (82.08%), Query Frame = 0
BLAST of Csor.00g068330 vs. TAIR 10
Match: AT3G27610.2 (Nucleotidylyl transferase superfamily protein ) HSP 1 Score: 495.4 bits (1274), Expect = 4.7e-140 Identity = 242/386 (62.69%), Postives = 316/386 (81.87%), 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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