BLASTX nr result

ID: Cnidium21_contig00042705 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= Cnidium21_contig00042705
         (291 letters)

Database: ./nr 
           23,641,837 sequences; 8,123,359,852 total letters

Searching..................................................done



                                                                 Score    E
Sequences producing significant alignments:                      (bits) Value

emb|CBI28095.3| unnamed protein product [Vitis vinifera]              150   1e-34
ref|XP_002281258.1| PREDICTED: probable sulfate transporter 3.5 ...   150   1e-34
emb|CAN74632.1| hypothetical protein VITISV_032755 [Vitis vinifera]   149   2e-34
ref|XP_002281248.1| PREDICTED: probable sulfate transporter 3.5 ...   145   4e-33
emb|CAN84174.1| hypothetical protein VITISV_001475 [Vitis vinifera]   145   4e-33

>emb|CBI28095.3| unnamed protein product [Vitis vinifera]
          Length = 712

 Score =  150 bits (379), Expect = 1e-34
 Identities = 70/96 (72%), Positives = 85/96 (88%)
 Frame = +2

Query: 2   VRALLYVARPASCKLGNISNSMLYRDVEQYPCATGIPGMLLLQLGSPIYFANCSYLRDRI 181
           VRALLYVARPA+CKLGNI NS LYRDVEQYP A+G+PG+++LQLGSPIYFANC YL++RI
Sbjct: 510 VRALLYVARPATCKLGNIPNSALYRDVEQYPAASGVPGIIVLQLGSPIYFANCIYLKERI 569

Query: 182 LRYIRDEQDISNPEENDIEYVLLDLGGVTSIDTTGV 289
           +R++RDEQ   N +  DIE+VLLDLGGVT+ID TG+
Sbjct: 570 MRWVRDEQGNPNSKTADIEHVLLDLGGVTTIDMTGI 605


>ref|XP_002281258.1| PREDICTED: probable sulfate transporter 3.5 [Vitis vinifera]
          Length = 637

 Score =  150 bits (379), Expect = 1e-34
 Identities = 70/96 (72%), Positives = 85/96 (88%)
 Frame = +2

Query: 2   VRALLYVARPASCKLGNISNSMLYRDVEQYPCATGIPGMLLLQLGSPIYFANCSYLRDRI 181
           VRALLYVARPA+CKLGNI NS LYRDVEQYP A+G+PG+++LQLGSPIYFANC YL++RI
Sbjct: 474 VRALLYVARPATCKLGNIPNSALYRDVEQYPAASGVPGIIVLQLGSPIYFANCIYLKERI 533

Query: 182 LRYIRDEQDISNPEENDIEYVLLDLGGVTSIDTTGV 289
           +R++RDEQ   N +  DIE+VLLDLGGVT+ID TG+
Sbjct: 534 MRWVRDEQGNPNSKTADIEHVLLDLGGVTTIDMTGI 569


>emb|CAN74632.1| hypothetical protein VITISV_032755 [Vitis vinifera]
          Length = 635

 Score =  149 bits (377), Expect = 2e-34
 Identities = 69/96 (71%), Positives = 85/96 (88%)
 Frame = +2

Query: 2   VRALLYVARPASCKLGNISNSMLYRDVEQYPCATGIPGMLLLQLGSPIYFANCSYLRDRI 181
           VRALLYVARPA+CKLGNI NS LYRDVEQYP A+G+PG+++LQLGSPIYFANC YL++RI
Sbjct: 472 VRALLYVARPATCKLGNIPNSALYRDVEQYPAASGVPGIIVLQLGSPIYFANCIYLKERI 531

Query: 182 LRYIRDEQDISNPEENDIEYVLLDLGGVTSIDTTGV 289
           +R++RDEQ   + +  DIE+VLLDLGGVT+ID TG+
Sbjct: 532 MRWVRDEQGNPBSKTADIEHVLLDLGGVTTIDMTGI 567


>ref|XP_002281248.1| PREDICTED: probable sulfate transporter 3.5 [Vitis vinifera]
           gi|297738849|emb|CBI28094.3| unnamed protein product
           [Vitis vinifera]
          Length = 648

 Score =  145 bits (365), Expect = 4e-33
 Identities = 68/96 (70%), Positives = 85/96 (88%)
 Frame = +2

Query: 2   VRALLYVARPASCKLGNISNSMLYRDVEQYPCATGIPGMLLLQLGSPIYFANCSYLRDRI 181
           VRALLYVARPA+ KLGNI NS LYRDVEQYP AT  PG+L+LQLGSPI+FAN +Y+R+RI
Sbjct: 473 VRALLYVARPATVKLGNIPNSTLYRDVEQYPAATSFPGVLVLQLGSPIHFANSTYIRERI 532

Query: 182 LRYIRDEQDISNPEENDIEYVLLDLGGVTSIDTTGV 289
           LR+I +E+D+S+P+  ++E+VLLDLGGVTSID TG+
Sbjct: 533 LRWINEEEDVSSPKGTNVEHVLLDLGGVTSIDMTGI 568


>emb|CAN84174.1| hypothetical protein VITISV_001475 [Vitis vinifera]
          Length = 724

 Score =  145 bits (365), Expect = 4e-33
 Identities = 68/96 (70%), Positives = 85/96 (88%)
 Frame = +2

Query: 2   VRALLYVARPASCKLGNISNSMLYRDVEQYPCATGIPGMLLLQLGSPIYFANCSYLRDRI 181
           VRALLYVARPA+ KLGNI NS LYRDVEQYP AT  PG+L+LQLGSPI+FAN +Y+R+RI
Sbjct: 428 VRALLYVARPATVKLGNIPNSTLYRDVEQYPAATSFPGVLVLQLGSPIHFANSTYIRERI 487

Query: 182 LRYIRDEQDISNPEENDIEYVLLDLGGVTSIDTTGV 289
           LR+I +E+D+S+P+  ++E+VLLDLGGVTSID TG+
Sbjct: 488 LRWINEEEDVSSPKGTNVEHVLLDLGGVTSIDMTGI 523


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