BLASTX nr result
ID: Cornus23_contig00039809
seq
BLASTX 2.2.25 [Feb-01-2011] Reference: Altschul, Stephen F., Thomas L. Madden, Alejandro A. Schaffer, Jinghui Zhang, Zheng Zhang, Webb Miller, and David J. Lipman (1997), "Gapped BLAST and PSI-BLAST: a new generation of protein database search programs", Nucleic Acids Res. 25:3389-3402. Query= Cornus23_contig00039809 (301 letters) Database: ./nr 77,306,371 sequences; 28,104,191,420 total letters Searching..................................................done Score E Sequences producing significant alignments: (bits) Value emb|CAN66133.1| hypothetical protein VITISV_026878 [Vitis vinifera] 75 1e-11 emb|CAN69158.1| hypothetical protein VITISV_041593 [Vitis vinifera] 71 4e-10 emb|CAN65521.1| hypothetical protein VITISV_025368 [Vitis vinifera] 67 4e-09 emb|CAN65237.1| hypothetical protein VITISV_018674 [Vitis vinifera] 67 4e-09 emb|CAN77156.1| hypothetical protein VITISV_021655 [Vitis vinifera] 65 2e-08 emb|CAN82949.1| hypothetical protein VITISV_018262 [Vitis vinifera] 65 3e-08 emb|CAN69096.1| hypothetical protein VITISV_025437 [Vitis vinifera] 60 5e-07 >emb|CAN66133.1| hypothetical protein VITISV_026878 [Vitis vinifera] Length = 1302 Score = 75.5 bits (184), Expect = 1e-11 Identities = 35/64 (54%), Positives = 48/64 (75%) Frame = -2 Query: 192 KITSNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCVSST 13 K+TS K +IWVKK EL+C+V+HTAL+A+++ WYFDS C R M GN+SFF++ T+ Sbjct: 508 KVTSVK-QIWVKKNELNCLVVHTALRASESHSWYFDSGCSRHMIGNRSFFTNFTEFDEEN 566 Query: 12 VRFG 1 V FG Sbjct: 567 VTFG 570 >emb|CAN69158.1| hypothetical protein VITISV_041593 [Vitis vinifera] Length = 775 Score = 70.9 bits (172), Expect = 4e-10 Identities = 35/83 (42%), Positives = 51/83 (61%) Frame = -2 Query: 249 SGIRKSTETFPFSFKAKKEKITSNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFR 70 SG ++ST K+ K+ IWVKK EL+C+V+HTAL+++++ WYFDS C Sbjct: 52 SGFQRSTPNGMTKVKSVKQ--------IWVKKNELNCLVVHTALRSSESHSWYFDSGCSH 103 Query: 69 LMTGNKSFFSDLTDCVSSTVRFG 1 M GN+SFF++ T+ V FG Sbjct: 104 HMKGNRSFFTNFTEFNGGNVTFG 126 >emb|CAN65521.1| hypothetical protein VITISV_025368 [Vitis vinifera] Length = 1291 Score = 67.4 bits (163), Expect = 4e-09 Identities = 29/61 (47%), Positives = 44/61 (72%) Frame = -2 Query: 183 SNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCVSSTVRF 4 +N +IWVKK EL+C+V+H AL+A+++ WYF++ R MTGN+SFF++ T+ V F Sbjct: 345 TNVKQIWVKKNELNCLVVHIALRASESHSWYFNNGYSRHMTGNRSFFTNFTEFDGGNVTF 404 Query: 3 G 1 G Sbjct: 405 G 405 >emb|CAN65237.1| hypothetical protein VITISV_018674 [Vitis vinifera] Length = 563 Score = 67.4 bits (163), Expect = 4e-09 Identities = 32/66 (48%), Positives = 42/66 (63%) Frame = -2 Query: 201 KKEKITSNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCV 22 +K K+ SN +IWVKK EL C V+HT L+A+++ WY DS C MTGNKS F+ T+ Sbjct: 354 EKTKV-SNVKQIWVKKNELKCFVVHTTLRASESHSWYLDSGCSHHMTGNKSLFTSFTEFD 412 Query: 21 SSTVRF 4 V F Sbjct: 413 GGNVTF 418 >emb|CAN77156.1| hypothetical protein VITISV_021655 [Vitis vinifera] Length = 474 Score = 65.5 bits (158), Expect = 2e-08 Identities = 32/65 (49%), Positives = 40/65 (61%), Gaps = 1/65 (1%) Frame = -2 Query: 195 EKI-TSNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCVS 19 EKI SN +IWVKK EL C++ H AL+A++T WY DS C MTGNKS F+ + Sbjct: 264 EKIKVSNVKQIWVKKNELKCLIXHIALRASETHLWYLDSGCSHHMTGNKSLFTSFIEFNG 323 Query: 18 STVRF 4 V F Sbjct: 324 GNVTF 328 >emb|CAN82949.1| hypothetical protein VITISV_018262 [Vitis vinifera] Length = 724 Score = 64.7 bits (156), Expect = 3e-08 Identities = 31/67 (46%), Positives = 41/67 (61%) Frame = -2 Query: 201 KKEKITSNKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCV 22 +K K+ SN +IWVKK EL C V+HT +A+++ WY DS C MTG KS F+ T+ Sbjct: 460 EKTKV-SNVKQIWVKKNELKCFVVHTTFRASESHSWYLDSGCSHHMTGIKSLFTSFTEFD 518 Query: 21 SSTVRFG 1 V FG Sbjct: 519 GGNVTFG 525 >emb|CAN69096.1| hypothetical protein VITISV_025437 [Vitis vinifera] Length = 992 Score = 60.5 bits (145), Expect = 5e-07 Identities = 29/60 (48%), Positives = 36/60 (60%) Frame = -2 Query: 180 NKNEIWVKKKELDCIVIHTALKANDTIYWYFDS*CFRLMTGNKSFFSDLTDCVSSTVRFG 1 N+ VKK EL C V+HTAL+A ++ WY DS C MTGNKS F+ T+ V FG Sbjct: 29 NEGTSQVKKNELKCFVVHTALRAIESHSWYLDSGCSHHMTGNKSLFTSFTEFDGGNVTFG 88