Lsi01G001070 (gene) Bottle gourd (USVL1VR-Ls)
The following sequences are available for this feature:
Legend: five_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AAATATCAATACAATATTCATTTCGATTTGATGGCCAAACCCTAGTGGGGTCTCCATTTCAAAATTTCTCTCGAACTCTCCCCGAAATTCACCATTTTTCTTCACAAATACAACACAGTGTCCTTCCATTTTGCCCATTCATTGATCCGATCTCTTTTCATGGAGTCGAACTACATGATTCAGCCAGAAGCAGAAGCGGAAGCGACGAACTGGCTTGAACTGCCTTCAGAAGTAATGTTTATGATTCTGGTGAAGCTAGACGCCATTGATATACTCTCCAGCGCCCAAAACGTTTGCTCTTCGTGGCGTAAGATTTGCAAAGACCCTCTCATGTGGCGTGTGATCGATATGCACAATTTGGGTGATTTGAATGCTGATATGTATTTGGATTACAATTTGGAGGGTATGTGCAGACACGCTGTTGATCGTAGTTGTGGCCAATTGGTCGACATTAATATTGAGAACTTTGGCACCGATGAATTGCTCCAACACATTGCTCACAGGTATCGATTCTAAATGCGTTTTTTTCTACTTATTTTGTTACAGTCTTTATGATTTCTATTGTTCTGTTTTTGGTCTGAAGTTTGAATCGAAAACAGAGATGGTCGATTCCATATAGCCAATATCAGATCAAATATTCTATGGCACTTGGTAGTTTTGTTAAATGTAATTGTGACTTTTAGCAATGAAGATTACGGTGGTTTCTTAAAGATCATAATAGAATATTGAAAGAGAGGAAGCCTAGATGCCAGTCAGTGTTTCTTGTGAAAATACTATGTGATTCTCTTTTTCATAGAATTTCTAACAGTGGGACCGATTTTGGAAGTTGAACGAACCCAATGGAGCATGTGCAATCCCATTATTTCTCTTTATCTTTGTCTTCTTATTTGATAGAAAAGAAATTTCCGTTAGCTCAAATGCTGATCAGCCCATAATAAGAAGATTGTTCGAGTTTGAAACTATTTTTTTTTTTTTTTTGACAAGTTATTGCTGATGGGCTGTCTGTGTGTTTATGTTCTTCTAAGAAGCACAAATAGGGATGTTAGACATGGAAACGACACAAAATGGACATGAGGACATGTCATTTTCTTAAATCCAGGACTCGAACACGACAAGGTTATGTTTTTCAAAATATTTCATTTTTATACAAGAATAAAATTCAAAGTGTATAGTTTATGCATTTATATGGTTAAGAAAATTAGTTTGAAGTATTTCACTCTCAAAATCTATTATTTTTGTCATATTACGTGTGTTCAATTTAGTATACTTAACAAAGTGTTTGATGCATGTCTAACAAATATTGGACCTTCTAACACATTTATTGCACAAACAAGTGTCAAGTGTCTGATAGATGTCCAACGAGTGTTCAATTGTCATACATGCTAGCCCAATTATAGTGTGTATGGTTCTTGTTCATGAGTTTAATATTTTCTTGAATTTTGAAATTTGTTCCATATATATTCATTTGTTGCCAGTTCAAATCAACTTAGAAGACTTCGGATTTTAGATTGCTATGACATTTCAGATGAGGGATTTACTGAAGCAGTTTCAAAACTTCCATTGTTGGAGCATCTTGAAATATTTCTCTGTTCATTTGATGTGGAAACTTTGAAAACTGTGGGAAGGTGTTGCCCTCTTTTGAAATCGCTGAAACTGAACAAGCCGTTTTATAGAAGACTATGGATGGGTCGGGACGATGAGGCCTTTGCTATTGCTGAAACTATGCCTAAATTACACCACCTTCAAATATATGGCAATGTTCTAACTGACATGGGTTTGCAAGCTATTCTTGATGGCTGCCCTGAGTTAGAATCTCTCGACCTACGCGGATGTTTCAATTTATATTTGGAGGAGGGAGAGTTGGAAGAAAGATGTGCTGGAAGGATAAAAATTTTGTATTTGCCTCACGATCCAATTGATGGCTGTGAATTTATCTATCATAACTATCAAATACCCTGTTTGTGACTCTGAAGATGTAGATTGCTCTTCTGGTTTCCCTGGCATTGGTTTCTTTCACAATTACAATTACAATGCCAATGATTATCGTTTCTTAGGGGACCGTCATATCCCTGACTATGACGCCTTCCGTAGATTTGGTTCTTCAGGGGACGAAGATTTCTACGAATACTAGGACGTCACAAGATGGGATTAATCAACATTGTCACTTGTCAGGTTGGTTTAGAAGGATTGCATATGTGAGAAAGTCCAGTTTCTATTTTTGATGAACTTCAAGACAAGTATGTGAAGTTCTCTTTCCATTACAGCAACTCTAACTAATGTTTTGTTTCCTGGATGGATATCTTCTAGTTGTCATTTTGACATACGAGTAAAGCAACTCTAGGTTGTATTGAATTTTTGGATATTGACGTAATGGATGTAATTAAGCAACTCTAGGTTGTATTGAATTTTTGGGTTTTGAAGTAATGGATGTAATTAAGGAACTCTAAGTTGTATTGAATTTTTTTGGTAGAAGTATTGGATGTAACTAAGCAACTCTAGGGCTGTATTGAAACTTTTTGTACTTAAACTAATGGATGGTATGTCGTATCAAAAAGATCATTGGGACGAAAAAGGTAGTTATTTTAGTTTTTTATTTGAAATTTATATCTCTTAGTTTAAATCTTTGCATTTATTGTAATCAAACTTTAAAATAAAAGTTGGTTGCCTCTATTAGAAGTAAAAATCTATTTCTAATATATCTTAAAAAAGATTATTCAACCTAAATCTCAATCACACACAAACAAATAACAAAATTACATTAAATGAAAAATGATATAGAAAAGATTGTTCGAAATTTGTAAATGAATTATATATTTAGATACCAAATGAGTCAATAATTTATTAGAACTTTCTGATTAATCCATGCGATAAGGCAAAGATATTTATCATATAGATAATTTTACTTGATGAATACGACTTATTCAACAAATTCGATTGAAAAAAATATATGTTTAATGAAATATCTACCTGTACAGGGCCACAAGAAAAAGTTGTTAACAAAATATATATAGAAAAAAAAAATGTCTCCATCAAAGCGGGCTAAAGAAAAAAAAGGGTTGTTAACAAACAAATAAATACTTATGGAAAATGTCAATCTCACATAAAGAAATTTAAAAAAAATATTAACATTAAATGGAAAATAAATATAAAGAAAATAGTTATTCATCTGCCCTCATTATTCACATAGTTTATGGCTAAACAAATATAGGCATGGAACAACCAAACAAAAAAACATAGGACTCAAATAAGAAAAAGCTACAAAAAGAAGAAAAAAAATTGTTAATAAAATATAAATACATGAATAATGATTAGCTACTCTAATCTCATCCGAAAAAATTTAAAAATTATTTTAAAAAATTATAAAACTACTACATGACTGTTTTTTATTGAAGAGTTACACAAAGATAAATAGGAGCACTCAAGTATTTTTCTATATATATATAAAAAAGAGAAAAAAAAAGAAGAGAAAGACAACTTCAAAAGTGAGTTTAAATTTGAAATTTTTTTAGAGATTTAAATTTAAATTTTTATTTGATTTAATTTTAAATCTCTAAAATTAAAATCAAAATAGCTAAAAAAAAAAAAATATCAAATTATTTATAAATATAGAAAAATTTCACTATCTATCTATAAGCGTAACCGTAAGAGAATTAAAATCATTGTTTCTATATTGAAAACAGCTCTTGATCTAAATCTAATATTAAAAAAAAAAAAAAAATCAGAATTGTTATTATATATATTTAAGCGATAAACAAAAATCAAAGTTAAAAAAATGCAGGAGCCCGAAAACGAGCGAAGCCAATGAATCGATCTCAAGAAGGACGGAACTGGCTTGAACTGCCGGCAGACGTAATGCGTATGATTCTGCAGAAGCTAGGCGTCATTGAAATCCTCCACAGCGCTCAAAATGTGTGCTCTTCGTGGCGTAAGCTCTGCGAGGATCCTCTCATGTGGCGTGTCATCGATATGCGCAAGTTGGGTGATTTGCATGCTATGAATTACAATTTGAGAATTGCCTGCAGGTACGCTGTTGAACTTAGTTGTGGCCAATTGATCGACATCAACATTGAACACTTTGGCACCGATAAATTGCTCAATTACATCGCTCGGAGGTATCAATTCCATCTTTATCTTCTTCTTTTGTTCTAGCTTTAGAGAAATCGACCTAAAACATTGTGTACTTCTAATTGCTGTTGTAGTTGGAAGAATTCTTGATTTCGTTGGATGTTCTTGCCATTGTATCTCGAGCTTCTGGTTTCAATTAGTTATCTACTCATTGTTGGTTAAAAAAGACGTTTGTTCTTGAATTTTTTATAGAAGTAACAATTTAGTTTTGGATAAATAATAATTTAGTTTAGTCCTTAGGGTGAAATATCTTATTAAAATTTAATGGAATTTCTTATACATGTTGATTCATAAGTTGATTGGAAATCAATTTTTGAAGAGATCTTTCCTAAACTATAAAGATTTAAATCACTACATAGTCAAAGTTAAGGCTTACTTTTAAAGAGTCTTTCATGATAAATGATGAATTGTCGCATAATTTAAAATATATTGAAGAGACTAAATTTAAATTATTGATTTCAAAGTATAGTAACTAAATCATTACCAACTAAAGTTTTAGAAGTATATTGTTACTTAAAGTTTAGAGACTAAAAGTATATTTTAACCTATTTTGTTCTTATGATTTCAAATGTTCAGTTTCTTGGTCTGAACTTTGCAAAAAAAAGAAAAAAAGAAATAGTTTTGTTCATTGTTGTTAGATTTTTGTATTGCACGGAATAAGAAGCAGAGATAGTTAATTTCCATACCCAATATCAGATCAAACACGTCACTTAACATGAGTACTCTGTGGGATGGCATTTAACATTTCTGTTTAATGTAATTTTGACTGAATAAAACATTGAAAGAGAGGAAGCCTAAATGATAAACATTGCTGAAATGTCTCATGAAAATACTGTTTCATTCTTTTTCCATAAGAATTGTCCAACATTTCATTAAAGATTCTACCCCAATGGAGCATATGCAGTTATTTTCTTTATCTTTGTCTTCCATTTGATAGAGATAATTTTCCAATGAAGCAGTCCCTCATGATTGTTTAAACCATTTTCTTATTGATAAGGTTTCTCTAATAGGGTGTGTGTTTTGTGAGTGGTATAATGTTTCGAGAGAGTGTTCTTGTAATTGGGGTTGGAGAGAGAATTCTATGTGACCGTGGAATTTTCTGATGTTCCCATTTTTATCGCTCTTCTTTTAATTTCTTTGTTATTTTCTTGCTTATCGTTTTCCTCGGAAATGTATTATTTTGATATATCTTTCTATATATGCTCACTTGTTGGCAGATCAAATCAACTGAAAAGACTCGGGATTGCTATTTGCCATGAGATCTCAGAGAAGGGATTGACTAGAGCAGTTTCGAAACTTCCATCATTGGAGCAACTTGAAATATTTCCTTATTATTTTTCTGTGGAAGCTATAAGAAGAGTTGGAAGGTGTTGCCCTCTTTTGAAAACGCTGAAATTGAACCAACGGTTTCGCAATGGAAGAGGGATGGTCTCTGACAAGGAGGCCCTTGCTATTGCTCAAACTATGCCTAAATTACGCCACCTTCATATATTTGGCAGTGTCATAACTGAGAATGGCTTGCAAGCCATTCTTGATGGTTGTCCTGATCTTGAATCTCTCGACTTGCGTCTGTGTTTTAATTTAACTTTGGCAGGACAGGTGGGGAAAATGTGTGCTGAAAAGATCAAAATCTTGCATCTGCCTCATGATCCCATTGATGATTATGAATTTAAAACCGACATTATTGATTTTTCATAGACTATGATGGTAGCGACTAGAATGATAATAACTATGACTATGACGATAATCTCTCAGAGTACCGCGAAGTTGAGTATACGATATGTTATCCACATG AAATATCAATACAATATTCATTTCGATTTGATGGCCAAACCCTAGTGGGGTCTCCATTTCAAAATTTCTCTCGAACTCTCCCCGAAATTCACCATTTTTCTTCACAAATACAACACAGTGTCCTTCCATTTTGCCCATTCATTGATCCGATCTCTTTTCATGGAGTCGAACTACATGATTCAGCCAGAAGCAGAAGCGGAAGCGACGAACTGGCTTGAACTGCCTTCAGAAGTAATGTTTATGATTCTGGTGAAGCTAGACGCCATTGATATACTCTCCAGCGCCCAAAACGTTTGCTCTTCGTGGCGTAAGATTTGCAAAGACCCTCTCATGTGGCGTGTGATCGATATGCACAATTTGGGTGATTTGAATGCTGATATGTATTTGGATTACAATTTGGAGGGTATGTGCAGACACGCTGTTGATCGTAGTTGTGGCCAATTGGTCGACATTAATATTGAGAACTTTGGCACCGATGAATTGCTCCAACACATTGCTCACAGTTTGAATCGAAAACAGAGATGGTCGATTCCATATAGCCAATATCAGATCAAATATTCTATGGCACTTGGTAGTTTTGTTAAATCAATGAAGATTACGTGGGACCGATTTTGGAAGTTGAACGAACCCAATGGAGCATGTGCAATCCCATTATTTCTCTTTATCTTTGTCTTCTTATTTGATAGAAAAGAAATTTCCGTTAGCTCAAATGCTGATCAGCCCATAATAAGAAGATTGTTCGAAAGACTTCGGATTTTAGATTGCTATGACATTTCAGATGAGGGATTTACTGAAGCAGTTTCAAAACTTCCATTGTTGGAGCATCTTGAAATATTTCTCTGTTCATTTGATGTGGAAACTTTGAAAACTGTGGGAAGGTGTTGCCCTCTTTTGAAATCGCTGAAACTGAACAAGCCGTTTTATAGAAGACTATGGATGGGTCGGGACGATGAGGCCTTTGCTATTGCTGAAACTATGCCTAAATTACACCACCTTCAAATATATGGCAATGTTCTAACTGACATGGGTTTGCAAGCTATTCTTGATGGCTGCCCTGAGTTAGAATCTCTCGACCTACGCGGATGTTTCAATTTATATTTGGAGGAGGGAGAGTTGGAAGAAAGATGTGCTGGAAGGATAAAAATTTTGTATTTGCCTCACGATCCAATTGATGGCTGTGAATTTATCTATCATAACTATCAAATACCCTATTGCTCTTCTGGTTTCCCTGGCATTGGTTTCTTTCACAATTACAATTACAATGCCAATGATTATCGTTTCTTAGGGGACCGTCATATCCCTGACTATGACGCCTTCCGTAGATTTGGAGCCCGAAAACGAGCGAAGCCAATGAATCGATCTCAAGAAGGACGGAACTGGCTTGAACTGCCGGCAGACGTAATGCGTATGATTCTGCAGAAGCTAGGCGTCATTGAAATCCTCCACAGCGCTCAAAATGTGTGCTCTTCGTGGCGTAAGCTCTGCGAGGATCCTCTCATGTGGCGTGTCATCGATATGCGCAAGTTGGGTGATTTGCATGCTATGAATTACAATTTGAGAATTGCCTGCAGGTACGCTGTTGAACTTAGTTGTGGCCAATTGATCGACATCAACATTGAACACTTTGGCACCGATAAATTGCTCAATTACATCGCTCGGAGATCAAATCAACTGAAAAGACTCGGGATTGCTATTTGCCATGAGATCTCAGAGAAGGGATTGACTAGAGCAGTTTCGAAACTTCCATCATTGGAGCAACTTGAAATATTTCCTTATTATTTTTCTGTGGAAGCTATAAGAAGAGTTGGAAGGTGTTGCCCTCTTTTGAAAACGCTGAAATTGAACCAACGGTTTCGCAATGGAAGAGGGATGGTCTCTGACAAGGAGGCCCTTGCTATTGCTCAAACTATGCCTAAATTACGCCACCTTCATATATTTGGCAGTGTCATAACTGAGAATGGCTTGCAAGCCATTCTTGATGGTTGTCCTGATCTTGAATCTCTCGACTTGCGTCTGTGTTTTAATTTAACTTTGGCAGGACAGGTGGGGAAAATGTGTGCTGAAAAGATCAAAATCTTGCATCTGCCTCATGATCCCATTGATGATTATGAATTTAAAACCGACATTATTGATTTTTCATAGACTATGATGGTAGCGACTAGAATGATAATAACTATGACTATGACGATAATCTCTCAGAGTACCGCGAAGTTGAGTATACGATATGTTATCCACATG ATGGAGTCGAACTACATGATTCAGCCAGAAGCAGAAGCGGAAGCGACGAACTGGCTTGAACTGCCTTCAGAAGTAATGTTTATGATTCTGGTGAAGCTAGACGCCATTGATATACTCTCCAGCGCCCAAAACGTTTGCTCTTCGTGGCGTAAGATTTGCAAAGACCCTCTCATGTGGCGTGTGATCGATATGCACAATTTGGGTGATTTGAATGCTGATATGTATTTGGATTACAATTTGGAGGGTATGTGCAGACACGCTGTTGATCGTAGTTGTGGCCAATTGGTCGACATTAATATTGAGAACTTTGGCACCGATGAATTGCTCCAACACATTGCTCACAGTTTGAATCGAAAACAGAGATGGTCGATTCCATATAGCCAATATCAGATCAAATATTCTATGGCACTTGGTAGTTTTGTTAAATCAATGAAGATTACGTGGGACCGATTTTGGAAGTTGAACGAACCCAATGGAGCATGTGCAATCCCATTATTTCTCTTTATCTTTGTCTTCTTATTTGATAGAAAAGAAATTTCCGTTAGCTCAAATGCTGATCAGCCCATAATAAGAAGATTGTTCGAAAGACTTCGGATTTTAGATTGCTATGACATTTCAGATGAGGGATTTACTGAAGCAGTTTCAAAACTTCCATTGTTGGAGCATCTTGAAATATTTCTCTGTTCATTTGATGTGGAAACTTTGAAAACTGTGGGAAGGTGTTGCCCTCTTTTGAAATCGCTGAAACTGAACAAGCCGTTTTATAGAAGACTATGGATGGGTCGGGACGATGAGGCCTTTGCTATTGCTGAAACTATGCCTAAATTACACCACCTTCAAATATATGGCAATGTTCTAACTGACATGGGTTTGCAAGCTATTCTTGATGGCTGCCCTGAGTTAGAATCTCTCGACCTACGCGGATGTTTCAATTTATATTTGGAGGAGGGAGAGTTGGAAGAAAGATGTGCTGGAAGGATAAAAATTTTGTATTTGCCTCACGATCCAATTGATGGCTGTGAATTTATCTATCATAACTATCAAATACCCTATTGCTCTTCTGGTTTCCCTGGCATTGGTTTCTTTCACAATTACAATTACAATGCCAATGATTATCGTTTCTTAGGGGACCGTCATATCCCTGACTATGACGCCTTCCGTAGATTTGGAGCCCGAAAACGAGCGAAGCCAATGAATCGATCTCAAGAAGGACGGAACTGGCTTGAACTGCCGGCAGACGTAATGCGTATGATTCTGCAGAAGCTAGGCGTCATTGAAATCCTCCACAGCGCTCAAAATGTGTGCTCTTCGTGGCGTAAGCTCTGCGAGGATCCTCTCATGTGGCGTGTCATCGATATGCGCAAGTTGGGTGATTTGCATGCTATGAATTACAATTTGAGAATTGCCTGCAGGTACGCTGTTGAACTTAGTTGTGGCCAATTGATCGACATCAACATTGAACACTTTGGCACCGATAAATTGCTCAATTACATCGCTCGGAGATCAAATCAACTGAAAAGACTCGGGATTGCTATTTGCCATGAGATCTCAGAGAAGGGATTGACTAGAGCAGTTTCGAAACTTCCATCATTGGAGCAACTTGAAATATTTCCTTATTATTTTTCTGTGGAAGCTATAAGAAGAGTTGGAAGGTGTTGCCCTCTTTTGAAAACGCTGAAATTGAACCAACGGTTTCGCAATGGAAGAGGGATGGTCTCTGACAAGGAGGCCCTTGCTATTGCTCAAACTATGCCTAAATTACGCCACCTTCATATATTTGGCAGTGTCATAACTGAGAATGGCTTGCAAGCCATTCTTGATGGTTGTCCTGATCTTGAATCTCTCGACTTGCGTCTGTGTTTTAATTTAACTTTGGCAGGACAGGTGGGGAAAATGTGTGCTGAAAAGATCAAAATCTTGCATCTGCCTCATGATCCCATTGATGATTATGAATTTAAAACCGACATTATTGATTTTTCATAG MESNYMIQPEAEAEATNWLELPSEVMFMILVKLDAIDILSSAQNVCSSWRKICKDPLMWRVIDMHNLGDLNADMYLDYNLEGMCRHAVDRSCGQLVDINIENFGTDELLQHIAHSLNRKQRWSIPYSQYQIKYSMALGSFVKSMKITWDRFWKLNEPNGACAIPLFLFIFVFLFDRKEISVSSNADQPIIRRLFERLRILDCYDISDEGFTEAVSKLPLLEHLEIFLCSFDVETLKTVGRCCPLLKSLKLNKPFYRRLWMGRDDEAFAIAETMPKLHHLQIYGNVLTDMGLQAILDGCPELESLDLRGCFNLYLEEGELEERCAGRIKILYLPHDPIDGCEFIYHNYQIPYCSSGFPGIGFFHNYNYNANDYRFLGDRHIPDYDAFRRFGARKRAKPMNRSQEGRNWLELPADVMRMILQKLGVIEILHSAQNVCSSWRKLCEDPLMWRVIDMRKLGDLHAMNYNLRIACRYAVELSCGQLIDINIEHFGTDKLLNYIARRSNQLKRLGIAICHEISEKGLTRAVSKLPSLEQLEIFPYYFSVEAIRRVGRCCPLLKTLKLNQRFRNGRGMVSDKEALAIAQTMPKLRHLHIFGSVITENGLQAILDGCPDLESLDLRLCFNLTLAGQVGKMCAEKIKILHLPHDPIDDYEFKTDIIDFS
BLAST of Lsi01G001070 vs. Swiss-Prot
Match: SKI19_ARATH (F-box protein SKIP19 OS=Arabidopsis thaliana GN=SKIP19 PE=1 SV=1) HSP 1 Score: 263.1 bits (671), Expect = 8.3e-69 Identity = 134/262 (51.15%), Postives = 177/262 (67.56%), Query Frame = 1
BLAST of Lsi01G001070 vs. Swiss-Prot
Match: FBL23_ARATH (Putative F-box/LRR-repeat protein 23 OS=Arabidopsis thaliana GN=FBL23 PE=3 SV=1) HSP 1 Score: 248.4 bits (633), Expect = 2.1e-64 Identity = 126/255 (49.41%), Postives = 167/255 (65.49%), Query Frame = 1
BLAST of Lsi01G001070 vs. Swiss-Prot
Match: FB221_ARATH (Putative F-box protein At4g05475 OS=Arabidopsis thaliana GN=At4g05475 PE=3 SV=2) HSP 1 Score: 223.4 bits (568), Expect = 7.3e-57 Identity = 115/266 (43.23%), Postives = 163/266 (61.28%), Query Frame = 1
BLAST of Lsi01G001070 vs. Swiss-Prot
Match: FBL22_ARATH (Putative F-box/LRR-repeat protein 22 OS=Arabidopsis thaliana GN=FBL22 PE=3 SV=1) HSP 1 Score: 219.5 bits (558), Expect = 1.1e-55 Identity = 115/257 (44.75%), Postives = 161/257 (62.65%), Query Frame = 1
BLAST of Lsi01G001070 vs. Swiss-Prot
Match: FBL21_ARATH (Putative F-box/LRR-repeat protein 21 OS=Arabidopsis thaliana GN=FBL21 PE=3 SV=1) HSP 1 Score: 205.7 bits (522), Expect = 1.6e-51 Identity = 110/267 (41.20%), Postives = 162/267 (60.67%), Query Frame = 1
BLAST of Lsi01G001070 vs. TrEMBL
Match: A0A061DXY4_THECC (F-box/LRR-repeat protein 23, putative isoform 1 OS=Theobroma cacao GN=TCM_006073 PE=4 SV=1) HSP 1 Score: 427.9 bits (1099), Expect = 2.2e-116 Identity = 230/465 (49.46%), Postives = 300/465 (64.52%), Query Frame = 1
BLAST of Lsi01G001070 vs. TrEMBL
Match: D7M2J8_ARALL (Putative uncharacterized protein OS=Arabidopsis lyrata subsp. lyrata GN=ARALYDRAFT_911810 PE=4 SV=1) HSP 1 Score: 384.8 bits (987), Expect = 2.1e-103 Identity = 219/510 (42.94%), Postives = 303/510 (59.41%), Query Frame = 1
BLAST of Lsi01G001070 vs. TrEMBL
Match: A0A0A0KM43_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_6G525290 PE=4 SV=1) HSP 1 Score: 358.6 bits (919), Expect = 1.6e-95 Identity = 175/254 (68.90%), Postives = 198/254 (77.95%), Query Frame = 1
BLAST of Lsi01G001070 vs. TrEMBL
Match: A0A0A0KIS9_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_6G525300 PE=4 SV=1) HSP 1 Score: 323.6 bits (828), Expect = 5.8e-85 Identity = 164/262 (62.60%), Postives = 190/262 (72.52%), Query Frame = 1
BLAST of Lsi01G001070 vs. TrEMBL
Match: A0A0D2NIS0_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_005G267100 PE=4 SV=1) HSP 1 Score: 298.1 bits (762), Expect = 2.6e-77 Identity = 146/261 (55.94%), Postives = 185/261 (70.88%), Query Frame = 1
BLAST of Lsi01G001070 vs. TAIR10
Match: AT4G05460.1 (AT4G05460.1 RNI-like superfamily protein) HSP 1 Score: 263.1 bits (671), Expect = 4.7e-70 Identity = 134/262 (51.15%), Postives = 177/262 (67.56%), Query Frame = 1
BLAST of Lsi01G001070 vs. TAIR10
Match: AT4G05475.1 (AT4G05475.1 RNI-like superfamily protein) HSP 1 Score: 223.4 bits (568), Expect = 4.1e-58 Identity = 115/266 (43.23%), Postives = 163/266 (61.28%), Query Frame = 1
BLAST of Lsi01G001070 vs. TAIR10
Match: AT4G05490.1 (AT4G05490.1 RNI-like superfamily protein) HSP 1 Score: 219.5 bits (558), Expect = 5.9e-57 Identity = 115/257 (44.75%), Postives = 161/257 (62.65%), Query Frame = 1
BLAST of Lsi01G001070 vs. TAIR10
Match: AT4G05470.1 (AT4G05470.1 RNI-like superfamily protein) HSP 1 Score: 205.7 bits (522), Expect = 8.9e-53 Identity = 110/267 (41.20%), Postives = 162/267 (60.67%), Query Frame = 1
BLAST of Lsi01G001070 vs. TAIR10
Match: AT4G05497.1 (AT4G05497.1 RNI-like superfamily protein) HSP 1 Score: 204.5 bits (519), Expect = 2.0e-52 Identity = 108/237 (45.57%), Postives = 151/237 (63.71%), Query Frame = 1
BLAST of Lsi01G001070 vs. NCBI nr
Match: gi|590681553|ref|XP_007041114.1| (F-box/LRR-repeat protein 23, putative isoform 1 [Theobroma cacao]) HSP 1 Score: 427.9 bits (1099), Expect = 3.1e-116 Identity = 230/465 (49.46%), Postives = 300/465 (64.52%), Query Frame = 1
BLAST of Lsi01G001070 vs. NCBI nr
Match: gi|297813919|ref|XP_002874843.1| (hypothetical protein ARALYDRAFT_911810 [Arabidopsis lyrata subsp. lyrata]) HSP 1 Score: 384.8 bits (987), Expect = 3.0e-103 Identity = 219/510 (42.94%), Postives = 303/510 (59.41%), Query Frame = 1
BLAST of Lsi01G001070 vs. NCBI nr
Match: gi|449434240|ref|XP_004134904.1| (PREDICTED: putative F-box/LRR-repeat protein 9 [Cucumis sativus]) HSP 1 Score: 358.6 bits (919), Expect = 2.3e-95 Identity = 175/254 (68.90%), Postives = 198/254 (77.95%), Query Frame = 1
BLAST of Lsi01G001070 vs. NCBI nr
Match: gi|659078158|ref|XP_008439579.1| (PREDICTED: putative F-box/LRR-repeat protein 9 [Cucumis melo]) HSP 1 Score: 349.4 bits (895), Expect = 1.4e-92 Identity = 170/252 (67.46%), Postives = 199/252 (78.97%), Query Frame = 1
BLAST of Lsi01G001070 vs. NCBI nr
Match: gi|727497058|ref|XP_010424619.1| (PREDICTED: putative F-box/LRR-repeat protein 23 [Camelina sativa]) HSP 1 Score: 339.7 bits (870), Expect = 1.1e-89 Identity = 201/494 (40.69%), Postives = 290/494 (58.70%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Lagenaria siceraria
Date Performed: 2017-09-18
The following gene(s) are orthologous to this gene: None The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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