
Csor.00g095380 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSstart_codoninitialpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGTGGCAGGTTCTTCTGGCCGCGGCGGTGGCAGGATCCACTGGACTGGTCGCGAAGCACGTTTTCGGCGCCGGTGTAAACCCTAATGGGACATTAATTGCAGAAGAATTGAAGAAATGTGATGAGAGTTGCGTAGATCGGGAGGAATCTGATGGCATTGTGAAGTTCGAGGGTTCGATCGACACGGAATTTGGGTCCCCTATGGTCTCGAATGGACTGAATGAGTCTGAACGTGAGGGGATTTTCAGGTTTTCTAGTTCGGATTCTCGTGGAGCGACGAGCTCTCGACTTGGATCGAAGAATTTGAGGAAGAAAACTAGGAGTCGGTGCCGTGGAGCGGCAAAACAAGGTAAGGGTAAAAATGTCGAAGTGGAAAATTGTGCTGCTAGAGAAATGGCGACGGAGCCAAAAAAGAGTTCGGGAAGGTTTTCTGTACTTTTGAAAAAGAGGAGAATTACTAAGAACTTAGGTGCTTCCAAGAGTGAGTCCTGCTCTTCCAAAGGTAAGATTATGCGATCATTTGAATATAAATCCTTTTATTTCTGTTTGGTTTCTCGGAAAGAACGGTGCCGACAGAACCATTTCAAGTTTCAACTGCTAATGATCCTTACGGCGATCCTTCTTTTGTTTCAATACGATACTAGAATACGGAATGTGCAGCTTTCTGGACTCCTGATTATATTACGTTCAAAATGACAGAAATTGTGGACTGATTACTGAGTTGTATATGGTTAAATAAGTGGGTTATCTTCGTTTTGAGCGATCTTTATTGTTTTAGATATGTAGAAATATTATTTCAGTTAGTTTCTTGGATTGCACATCCTGAGTATGCTCGTTTCTGATCTTCAATTTAACTTGGTTTAAAAAGAACTTTTTGTTTGTTGTTTGTAGAGCTAATGCGGTGAAAACAAGGAGGCATGTCTTTTTGTTGCATTCTTTATACGTTTGAGTTCTAGTTGCTTGGTGTGGGTTGGGAAGTCAACAGTTACTTAGATTTGATAAAAGTTATGCAACCTTCGTTCTTGCAAAGTATTCTTTTTGGTTTTTTCTTCTTTTCTTTCATAATTAGGGCGTGGGGCCCCACTGTTTTGTTGATGATCCGTTTCTTCAATCTTTGAATGCTTAACCCACCCCACTGTTTATCAGGAGGCTTAGCCCACCCACGCAGCTCCAAAAGGCCAAGAATCAAAAGTTATTTAAATTTTCAGTTTGGGCTTGAACCTAGGACTCAGAACATTCAAATCCTAAGCCCTCTTGAGTATGTAATTAAGAAAGGAACTTGCAGGCTTTGTTTTTTTTTGTTTTCTTGGGGTCTAAAAACTCCAACCTTTTGGGTTCATTTAGCATTTAACTTCAATTTCTTGTAGAAAAGTCTTGCATCACTGTGCCTAATTTGGTATTTAAATTTGAAATAGCTACCAAATCTTATGCATGGTAAACATGAACTGTGTTCATTCCCCACCAAACATTTGCATATATAGCTAGCGGTGTTTGCTGTTTCTAGTTTGTTAGTTTAACAAGATTTCCTCCTTAATTCTTGTTGCTTCTATGAATCAGTCATCTTAAGCTACTGTTCATGTGTGGCTTTTATGTTCTTTTCAGATGGCTCTCTATTTCATTGGGGAATTGGTGTTGGAATCATGTACATGATGTCGGTAGGAAAAACAGAAATAAAGAGGCTGAATGTAACTGTGGACGAGACTGCAAAAGTTGTTCGAGAATTAAAATCAGAACTTTACAGGAGAAAATATTCACGTCATGTGCAGGCAGGCAAAGCTAGAGAAAACTTGCAGCCAATTCATCCTGAAATTGACAGGTCTAGTGCAGAGTTGAGGCGTCTTAACGAGGTGAGAAATTACACACTGTCTATGTTCGATGATGGGGAATGTGGAAGCAGTGTTCTTACTGAAGAACCAGATCCAGAGATAAATGAAATGGATGAATTGGAAGCAGAGCTCGCCACTGAATTTGAAAAACTGCCATGGTGTTCATCTGAAGACACTTGCCAAGCAGGAGCTAGAGCGGAACTGGAAAAGGTGATATTCTTTAAGCCTTGAATGGGGCATACCCTTTCAGTTCTACTGCATTAATTTTTCAATCAAATCTTGATGAATGGGATAGTAGGATGAGTTTCGACTATTGCAAAATATTCAATCTATATCTTATGCTAACTTGATTGAATTGGGATTTTCCAGACCAAGGTTTCAGCTATTGAATTACATGTTCCAGAGAAACCAAAATCTGATGCTTATCCATCGCACGGTGTAGTACCAGCGGAACTGGATCAGAAACTGTGCCATGTGCTTATTGAACAGCAGGAGAATCAAATTGTGGAGTTGGAATCCGAACTCCATGTCGCCCAATCCAAGCTAAATGAGAAAGAAGCTGAACTCCAAGCCTTGAAGGACTGTGTGAAACGCCTCACTGAATTCTCTCTAACAACAGTTTCTGGCAAGTTCTTGTATTATAGTATTGATTACAATAATTGCTCACCTCGACTGCCTTGCAGATTGAATAATCTCTAACAAATAGTGTTGAATCCCAGATGATGAAGCTGAAGCTCACACTGAGAAGAAGCAAAGCTGCAGCTCGTGGGAGCAATCTAACCAGATGGGCTGTGAGCCAATGAGATCAGTAGTAGTTGGGATGAAAAGACCCGTTGAATCTGAAACCTGGGATTGTAATGTATGACGATAGGATTATAGAATAGTTGCAATAAATAGTTAGAAAGCTGCCAGATCTTAACTTAAATCAAATTGTAGATCTCCCACAAAACTGCATGTGATAGTTGAATATATTATGTAATATTATACTTAGCACATGGTAATTGGAGCTGAACTTCTCTGAATGATTCCCTGATGATTTTGTTAGCCCCATCAGAGTGGAAGGCAGCAATATTAGTTGACCTTTTGTCTTCTTGTCTGCAGGATGAAATTACTTGTTACTCCAAACATCCACCCATTCTGAAAGATGATGCTGGTGTTTGGAATTCCTTGAAAACAAATGATGATGCTGGTTTCTCTCTCTCTCTCTCTCTCTATATATATATATACACACACACACACACACGTATGTATGTATGTATATGAATTTTCCATATTGGTATGTCGCTTTGTCGAGGTTGAAGGTGGTGGAGGAGACGGTGACATGCTGTGCTGGACTTTGTTTCGCACGTGTACCTTCTTACTCTATGCAAGGAAGAACTTCATCTTCATGTACAAAAGGTACGTTGTTTTTGTGTTAAAAGATGTCTATTGTCGGCATTATTAATTATTCTAGAAAAATTGTTTTATATTATTGATATTGTCCTCTGGTTATTTATATTTTTGTATAGCTTAATTTTATTATTTTATTTAGATTAAGCTATAAATTTAGTAGGTAAACTTTGAGCCTTATATCTATTTGATTTCTAAATTTTGATTTTGTGAGTATTATCATATGCTCTCACCGAATTATAGAACAATCAGCCAACGTCACAAAATTGACGATCTATGACCAATTAAAACTAACATGTTGGTTTGAGCTCAAGACTTACATCGAGCGATTAATAATGCACGCTCGAGATTATAAGATGTATAGGGCAGTGTAACCACCACTATTTTAACCTCTTATTTTGGTGTTAAATCACAAGTCAAAGTCAAAACTCCATTTAGTGTGAAAAGAGGGAAACATAAAAACAAATGATCCACACATCGAATTTTCAAAGACTAAATAAAACGGCTACCTCTGCGCATATATATAAAATAAAATAAAATAAACATTTAATAGCTTCGCAAATATTAATAAACAAATGAACCCTCTTCTCCAAATTACCGAAATACCCCCGTACAAACAAAAACTTCCAGTGTTGTAGTGTACAAAAATCTCTGCGGTCGTTTCACCGTCCGTGCACTCGCACATATAAATATTCCCACACAAAACAAATATTTCCCCGCAGAAAAAAAAAAAGGAAAAAGAAAAAGAAAAACGAAACCTTCTAACTCTATCAGTGAAGAACTCGGCCGGGAACTGCCCATCTTCACGGCGGCGATTTGAGATAGACGAACCGAAATTAAGGGCTCTGTGGAAGTATTTTTTTCGCACAGTGTTCGAAGAAGAAAAGGGGTTTTGAAAATGAAGCCATCGGCGAAGCCGATTTCGAGCCCAGGCAGGACGGAGAAATTTCCGCCGCCATTGATGAGGTTTTTGAGGAGCAATGTGGGAAGTAAAAGCAGAGGAAGGTCGCGTGCGAGTCCGATGATGTTCATGAGAAAGAAAAACAACGCCACCGCCATTGAAACCCAAGAGCCTTCGTCCCCTAAAGTCACTTGCATCGGCCAGGTCCGAGTTCGCCGCTCCTCCACGCGCCGTAGCAGACGCTCTGGTACTCCTACGCGCCGCCGTTGCCGCTGGATCCGAGCTGCTCTGTTATGCCCCTGTTTTCGAAAGAAAATCAAGCCCAATTCTTCTCAAATATTTCAGAGATGGGTCTCATTTTTCCAAGTTGGGTTCCGCCGAAAATCGAGAAGTAGAAAAAAATCGCCGCCGCATGAAACCCCCGTCCACGGCGGAATTGAAATTCCGAACGCAGAAACACAAGTTGTTGCCCCCATCGACGATGATGAAGGAGAAGAAACAGTCGGAGCGTTCATTTCTTCTCATTCTTCGCCGCCCAAAAATGCATTGTTGCTAACAAGATGCAGATCTGCTCCATATCGATCGACATCATTAGCGAGTAGATTTTGGGGCTCTCCTCTGAGAACCGAGAAAAATCACGAAGAAGAAGAAGAAGAAGAAGAAGAAGAACAGAGCACAAAGCCCAACAATGGCGGAAAAACGGTCGAGATTGAGAAACCCACATCCCAAAGAGCCTCAGTTTCTGATCAAGATCCGAGTGGAGGCTTAGAATTCGAGGAGGACAAGAAATTTATGAAGAACATCGACGACGATTCCACCACAGAAAGAATCATCAAATCGGCCAACATCGAACGAGAAAAAACAGGGGAAGAAGAAGAAGAAGGACTGGGAAGCTCGTCTCGGCCCTTGATTTTAACACGTTGCAAATCTGCGCCGTCGAGAACGGCGGAGAAGATGAACCCAGAAATGGGATTCTGGAAAAAGAGAAGGTTGGGGATTACTGATTCAAGCTCACCAAACAATTCATGA ATGTGGCAGGTTCTTCTGGCCGCGGCGGTGGCAGGATCCACTGGACTGGTCGCGAAGCACGTTTTCGGCGCCGGTGTAAACCCTAATGGGACATTAATTGCAGAAGAATTGAAGAAATGTGATGAGAGTTGCGTAGATCGGGAGGAATCTGATGGCATTGTGAAGTTCGAGGGTTCGATCGACACGGAATTTGGGTCCCCTATGGTCTCGAATGGACTGAATGAGTCTGAACGTGAGGGGATTTTCAGGTTTTCTAGTTCGGATTCTCGTGGAGCGACGAGCTCTCGACTTGGATCGAAGAATTTGAGGAAGAAAACTAGGAGTCGGTGCCGTGGAGCGGCAAAACAAGGTAAGGGTAAAAATGTCGAAGTGGAAAATTGTGCTGCTAGAGAAATGGCGACGGAGCCAAAAAAGAGTTCGGGAAGGTTTTCTGTACTTTTGAAAAAGAGGAGAATTACTAAGAACTTAGGTGCTTCCAAGAGTGAGTCCTGCTCTTCCAAAGATGGCTCTCTATTTCATTGGGGAATTGGTGTTGGAATCATGTACATGATGTCGGTAGGAAAAACAGAAATAAAGAGGCTGAATGTAACTGTGGACGAGACTGCAAAAGTTGTTCGAGAATTAAAATCAGAACTTTACAGGAGAAAATATTCACGTCATGTGCAGGCAGGCAAAGCTAGAGAAAACTTGCAGCCAATTCATCCTGAAATTGACAGGTCTAGTGCAGAGTTGAGGCGTCTTAACGAGGTGAGAAATTACACACTGTCTATGTTCGATGATGGGGAATGTGGAAGCAGTGTTCTTACTGAAGAACCAGATCCAGAGATAAATGAAATGGATGAATTGGAAGCAGAGCTCGCCACTGAATTTGAAAAACTGCCATGGTGTTCATCTGAAGACACTTGCCAAGCAGGAGCTAGAGCGGAACTGGAAAAGACCAAGGTTTCAGCTATTGAATTACATGTTCCAGAGAAACCAAAATCTGATGCTTATCCATCGCACGGTGTAGTACCAGCGGAACTGGATCAGAAACTGTGCCATGTGCTTATTGAACAGCAGGAGAATCAAATTGTGGAGTTGGAATCCGAACTCCATGTCGCCCAATCCAAGCTAAATGAGAAAGAAGCTGAACTCCAAGCCTTGAAGGACTGTGTGAAACGCCTCACTGAATTCTCTCTAACAACAGTTTCTGATGATGAAGCTGAAGCTCACACTGAGAAGAAGCAAAGCTGCAGCTCGTGGGAGCAATCTAACCAGATGGGCTGTGAGCCAATGAGATCAGTAGTAGTTGGGATGAAAAGACCCGTTGAATCTGAAACCTGGGATTGTAATGATGAAATTACTTGTTACTCCAAACATCCACCCATTCTGAAAGATGATGCTGGTGTTTGGAATTCCTTGAAAACAAATGATGATGCTGGTGGTGGAGGAGACGGTGACATGCTGTGCTGGACTTTGTTTCGCACGTGTACCTTCTTACTCTATGCAAGGAAGAACTTCATCTTCATGTACAAAAGTGTTCGAAGAAGAAAAGGGGTTTTGAAAATGAAGCCATCGGCGAAGCCGATTTCGAGCCCAGGCAGGACGGAGAAATTTCCGCCGCCATTGATGAGGTTTTTGAGGAGCAATGTGGGAAGTAAAAGCAGAGGAAGGTCGCGTGCGAGTCCGATGATGTTCATGAGAAAGAAAAACAACGCCACCGCCATTGAAACCCAAGAGCCTTCGTCCCCTAAAGTCACTTGCATCGGCCAGGTCCGAGTTCGCCGCTCCTCCACGCGCCGTAGCAGACGCTCTGGTACTCCTACGCGCCGCCGTTGCCGCTGGATCCGAGCTGCTCTGTTATGCCCCTGTTTTCGAAAGAAAATCAAGCCCAATTCTTCTCAAATATTTCAGAGATGGGTCTCATTTTTCCAAGTTGGGTTCCGCCGAAAATCGAGAAGTAGAAAAAAATCGCCGCCGCATGAAACCCCCGTCCACGGCGGAATTGAAATTCCGAACGCAGAAACACAAGTTGTTGCCCCCATCGACGATGATGAAGGAGAAGAAACAGTCGGAGCGTTCATTTCTTCTCATTCTTCGCCGCCCAAAAATGCATTGTTGCTAACAAGATGCAGATCTGCTCCATATCGATCGACATCATTAGCGAGTAGATTTTGGGGCTCTCCTCTGAGAACCGAGAAAAATCACGAAGAAGAAGAAGAAGAAGAAGAAGAAGAACAGAGCACAAAGCCCAACAATGGCGGAAAAACGGTCGAGATTGAGAAACCCACATCCCAAAGAGCCTCAGTTTCTGATCAAGATCCGAGTGGAGGCTTAGAATTCGAGGAGGACAAGAAATTTATGAAGAACATCGACGACGATTCCACCACAGAAAGAATCATCAAATCGGCCAACATCGAACGAGAAAAAACAGGGGAAGAAGAAGAAGAAGGACTGGGAAGCTCGTCTCGGCCCTTGATTTTAACACGTTGCAAATCTGCGCCGTCGAGAACGGCGGAGAAGATGAACCCAGAAATGGGATTCTGGAAAAAGAGAAGGTTGGGGATTACTGATTCAAGCTCACCAAACAATTCATGA ATGTGGCAGGTTCTTCTGGCCGCGGCGGTGGCAGGATCCACTGGACTGGTCGCGAAGCACGTTTTCGGCGCCGGTGTAAACCCTAATGGGACATTAATTGCAGAAGAATTGAAGAAATGTGATGAGAGTTGCGTAGATCGGGAGGAATCTGATGGCATTGTGAAGTTCGAGGGTTCGATCGACACGGAATTTGGGTCCCCTATGGTCTCGAATGGACTGAATGAGTCTGAACGTGAGGGGATTTTCAGGTTTTCTAGTTCGGATTCTCGTGGAGCGACGAGCTCTCGACTTGGATCGAAGAATTTGAGGAAGAAAACTAGGAGTCGGTGCCGTGGAGCGGCAAAACAAGGTAAGGGTAAAAATGTCGAAGTGGAAAATTGTGCTGCTAGAGAAATGGCGACGGAGCCAAAAAAGAGTTCGGGAAGGTTTTCTGTACTTTTGAAAAAGAGGAGAATTACTAAGAACTTAGGTGCTTCCAAGAGTGAGTCCTGCTCTTCCAAAGATGGCTCTCTATTTCATTGGGGAATTGGTGTTGGAATCATGTACATGATGTCGGTAGGAAAAACAGAAATAAAGAGGCTGAATGTAACTGTGGACGAGACTGCAAAAGTTGTTCGAGAATTAAAATCAGAACTTTACAGGAGAAAATATTCACGTCATGTGCAGGCAGGCAAAGCTAGAGAAAACTTGCAGCCAATTCATCCTGAAATTGACAGGTCTAGTGCAGAGTTGAGGCGTCTTAACGAGGTGAGAAATTACACACTGTCTATGTTCGATGATGGGGAATGTGGAAGCAGTGTTCTTACTGAAGAACCAGATCCAGAGATAAATGAAATGGATGAATTGGAAGCAGAGCTCGCCACTGAATTTGAAAAACTGCCATGGTGTTCATCTGAAGACACTTGCCAAGCAGGAGCTAGAGCGGAACTGGAAAAGACCAAGGTTTCAGCTATTGAATTACATGTTCCAGAGAAACCAAAATCTGATGCTTATCCATCGCACGGTGTAGTACCAGCGGAACTGGATCAGAAACTGTGCCATGTGCTTATTGAACAGCAGGAGAATCAAATTGTGGAGTTGGAATCCGAACTCCATGTCGCCCAATCCAAGCTAAATGAGAAAGAAGCTGAACTCCAAGCCTTGAAGGACTGTGTGAAACGCCTCACTGAATTCTCTCTAACAACAGTTTCTGATGATGAAGCTGAAGCTCACACTGAGAAGAAGCAAAGCTGCAGCTCGTGGGAGCAATCTAACCAGATGGGCTGTGAGCCAATGAGATCAGTAGTAGTTGGGATGAAAAGACCCGTTGAATCTGAAACCTGGGATTGTAATGATGAAATTACTTGTTACTCCAAACATCCACCCATTCTGAAAGATGATGCTGGTGTTTGGAATTCCTTGAAAACAAATGATGATGCTGGTGGTGGAGGAGACGGTGACATGCTGTGCTGGACTTTGTTTCGCACGTGTACCTTCTTACTCTATGCAAGGAAGAACTTCATCTTCATGTACAAAAGTGTTCGAAGAAGAAAAGGGGTTTTGAAAATGAAGCCATCGGCGAAGCCGATTTCGAGCCCAGGCAGGACGGAGAAATTTCCGCCGCCATTGATGAGGTTTTTGAGGAGCAATGTGGGAAGTAAAAGCAGAGGAAGGTCGCGTGCGAGTCCGATGATGTTCATGAGAAAGAAAAACAACGCCACCGCCATTGAAACCCAAGAGCCTTCGTCCCCTAAAGTCACTTGCATCGGCCAGGTCCGAGTTCGCCGCTCCTCCACGCGCCGTAGCAGACGCTCTGGTACTCCTACGCGCCGCCGTTGCCGCTGGATCCGAGCTGCTCTGTTATGCCCCTGTTTTCGAAAGAAAATCAAGCCCAATTCTTCTCAAATATTTCAGAGATGGGTCTCATTTTTCCAAGTTGGGTTCCGCCGAAAATCGAGAAGTAGAAAAAAATCGCCGCCGCATGAAACCCCCGTCCACGGCGGAATTGAAATTCCGAACGCAGAAACACAAGTTGTTGCCCCCATCGACGATGATGAAGGAGAAGAAACAGTCGGAGCGTTCATTTCTTCTCATTCTTCGCCGCCCAAAAATGCATTGTTGCTAACAAGATGCAGATCTGCTCCATATCGATCGACATCATTAGCGAGTAGATTTTGGGGCTCTCCTCTGAGAACCGAGAAAAATCACGAAGAAGAAGAAGAAGAAGAAGAAGAAGAACAGAGCACAAAGCCCAACAATGGCGGAAAAACGGTCGAGATTGAGAAACCCACATCCCAAAGAGCCTCAGTTTCTGATCAAGATCCGAGTGGAGGCTTAGAATTCGAGGAGGACAAGAAATTTATGAAGAACATCGACGACGATTCCACCACAGAAAGAATCATCAAATCGGCCAACATCGAACGAGAAAAAACAGGGGAAGAAGAAGAAGAAGGACTGGGAAGCTCGTCTCGGCCCTTGATTTTAACACGTTGCAAATCTGCGCCGTCGAGAACGGCGGAGAAGATGAACCCAGAAATGGGATTCTGGAAAAAGAGAAGGTTGGGGATTACTGATTCAAGCTCACCAAACAATTCATGA MWQVLLAAAVAGSTGLVAKHVFGAGVNPNGTLIAEELKKCDESCVDREESDGIVKFEGSIDTEFGSPMVSNGLNESEREGIFRFSSSDSRGATSSRLGSKNLRKKTRSRCRGAAKQGKGKNVEVENCAAREMATEPKKSSGRFSVLLKKRRITKNLGASKSESCSSKDGSLFHWGIGVGIMYMMSVGKTEIKRLNVTVDETAKVVRELKSELYRRKYSRHVQAGKARENLQPIHPEIDRSSAELRRLNEVRNYTLSMFDDGECGSSVLTEEPDPEINEMDELEAELATEFEKLPWCSSEDTCQAGARAELEKTKVSAIELHVPEKPKSDAYPSHGVVPAELDQKLCHVLIEQQENQIVELESELHVAQSKLNEKEAELQALKDCVKRLTEFSLTTVSDDEAEAHTEKKQSCSSWEQSNQMGCEPMRSVVVGMKRPVESETWDCNDEITCYSKHPPILKDDAGVWNSLKTNDDAGGGGDGDMLCWTLFRTCTFLLYARKNFIFMYKSVRRRKGVLKMKPSAKPISSPGRTEKFPPPLMRFLRSNVGSKSRGRSRASPMMFMRKKNNATAIETQEPSSPKVTCIGQVRVRRSSTRRSRRSGTPTRRRCRWIRAALLCPCFRKKIKPNSSQIFQRWVSFFQVGFRRKSRSRKKSPPHETPVHGGIEIPNAETQVVAPIDDDEGEETVGAFISSHSSPPKNALLLTRCRSAPYRSTSLASRFWGSPLRTEKNHEEEEEEEEEEQSTKPNNGGKTVEIEKPTSQRASVSDQDPSGGLEFEEDKKFMKNIDDDSTTERIIKSANIEREKTGEEEEEGLGSSSRPLILTRCKSAPSRTAEKMNPEMGFWKKRRLGITDSSSPNNS Homology
BLAST of Csor.00g095380 vs. ExPASy Swiss-Prot
Match: Q6NQ99 (Protein POLAR LOCALIZATION DURING ASYMMETRIC DIVISION AND REDISTRIBUTION OS=Arabidopsis thaliana OX=3702 GN=POLAR PE=1 SV=1) HSP 1 Score: 49.7 bits (117), Expect = 1.9e-04 Identity = 60/227 (26.43%), Postives = 108/227 (47.58%), Query Frame = 0
BLAST of Csor.00g095380 vs. NCBI nr
Match: KAG6580594.1 (hypothetical protein SDJN03_20596, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1671 bits (4327), Expect = 0.0 Identity = 858/858 (100.00%), Postives = 858/858 (100.00%), Query Frame = 0
BLAST of Csor.00g095380 vs. NCBI nr
Match: XP_023526303.1 (uncharacterized protein LOC111789832 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 843 bits (2179), Expect = 4.36e-300 Identity = 437/444 (98.42%), Postives = 439/444 (98.87%), Query Frame = 0
BLAST of Csor.00g095380 vs. NCBI nr
Match: KAG7017349.1 (hypothetical protein SDJN02_19214, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 841 bits (2173), Expect = 5.38e-300 Identity = 441/450 (98.00%), Postives = 442/450 (98.22%), Query Frame = 0
BLAST of Csor.00g095380 vs. NCBI nr
Match: XP_022934070.1 (uncharacterized protein LOC111441353 [Cucurbita moschata]) HSP 1 Score: 836 bits (2159), Expect = 4.56e-297 Identity = 433/444 (97.52%), Postives = 437/444 (98.42%), Query Frame = 0
BLAST of Csor.00g095380 vs. NCBI nr
Match: XP_022983667.1 (uncharacterized protein LOC111482212 [Cucurbita maxima]) HSP 1 Score: 823 bits (2127), Expect = 3.15e-292 Identity = 429/444 (96.62%), Postives = 435/444 (97.97%), Query Frame = 0
BLAST of Csor.00g095380 vs. ExPASy TrEMBL
Match: A0A6J1F6M1 (uncharacterized protein LOC111441353 OS=Cucurbita moschata OX=3662 GN=LOC111441353 PE=4 SV=1) HSP 1 Score: 836 bits (2159), Expect = 2.21e-297 Identity = 433/444 (97.52%), Postives = 437/444 (98.42%), Query Frame = 0
BLAST of Csor.00g095380 vs. ExPASy TrEMBL
Match: A0A6J1J000 (uncharacterized protein LOC111482212 OS=Cucurbita maxima OX=3661 GN=LOC111482212 PE=4 SV=1) HSP 1 Score: 823 bits (2127), Expect = 1.53e-292 Identity = 429/444 (96.62%), Postives = 435/444 (97.97%), Query Frame = 0
BLAST of Csor.00g095380 vs. ExPASy TrEMBL
Match: A0A0A0LFR3 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G736930 PE=4 SV=1) HSP 1 Score: 641 bits (1654), Expect = 7.84e-222 Identity = 345/445 (77.53%), Postives = 379/445 (85.17%), Query Frame = 0
BLAST of Csor.00g095380 vs. ExPASy TrEMBL
Match: A0A6J1F274 (uncharacterized protein LOC111441509 OS=Cucurbita moschata OX=3662 GN=LOC111441509 PE=4 SV=1) HSP 1 Score: 630 bits (1625), Expect = 4.57e-219 Identity = 329/340 (96.76%), Postives = 331/340 (97.35%), Query Frame = 0
BLAST of Csor.00g095380 vs. ExPASy TrEMBL
Match: A0A6J1J954 (uncharacterized protein LOC111482438 OS=Cucurbita maxima OX=3661 GN=LOC111482438 PE=4 SV=1) HSP 1 Score: 630 bits (1625), Expect = 4.92e-219 Identity = 328/343 (95.63%), Postives = 333/343 (97.08%), Query Frame = 0
BLAST of Csor.00g095380 vs. TAIR 10
Match: AT3G09730.1 (unknown protein; Has 1171 Blast hits to 1097 proteins in 212 species: Archae - 14; Bacteria - 83; Metazoa - 583; Fungi - 105; Plants - 149; Viruses - 14; Other Eukaryotes - 223 (source: NCBI BLink). ) HSP 1 Score: 190.7 bits (483), Expect = 5.0e-48 Identity = 177/450 (39.33%), Postives = 233/450 (51.78%), Query Frame = 0
BLAST of Csor.00g095380 vs. TAIR 10
Match: AT3G09730.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; EXPRESSED IN: 18 plant structures; EXPRESSED DURING: 9 growth stages. ) HSP 1 Score: 189.1 bits (479), Expect = 1.5e-47 Identity = 176/449 (39.20%), Postives = 232/449 (51.67%), Query Frame = 0
BLAST of Csor.00g095380 vs. TAIR 10
Match: AT2G37100.1 (protamine P1 family protein ) HSP 1 Score: 159.1 bits (401), Expect = 1.6e-38 Identity = 131/343 (38.19%), Postives = 178/343 (51.90%), Query Frame = 0
BLAST of Csor.00g095380 vs. TAIR 10
Match: AT5G03110.1 (FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: plasma membrane; BEST Arabidopsis thaliana protein match is: protamine P1 family protein (TAIR:AT2G37100.1); Has 81 Blast hits to 73 proteins in 9 species: Archae - 0; Bacteria - 0; Metazoa - 0; Fungi - 0; Plants - 81; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 138.7 bits (348), Expect = 2.3e-32 Identity = 121/330 (36.67%), Postives = 167/330 (50.61%), Query Frame = 0
BLAST of Csor.00g095380 vs. TAIR 10
Match: AT4G31805.1 (WRKY family transcription factor ) HSP 1 Score: 49.7 bits (117), Expect = 1.4e-05 Identity = 60/227 (26.43%), Postives = 108/227 (47.58%), 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 Position : 0 Zoom : x 1
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.
|