BLASTX nr result

ID: Angelica23_contig00045765 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= Angelica23_contig00045765
         (313 letters)

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

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



                                                                 Score    E
Sequences producing significant alignments:                      (bits) Value

emb|CAN63212.1| hypothetical protein VITISV_002844 [Vitis vinifera]   165   3e-39
emb|CAN74951.1| hypothetical protein VITISV_030567 [Vitis vinifera]   162   2e-38
gb|AAN40025.1| putative gag-pol polyprotein [Zea mays]                162   2e-38
emb|CAN64335.1| hypothetical protein VITISV_001808 [Vitis vinifera]   162   3e-38
emb|CAN75653.1| hypothetical protein VITISV_004538 [Vitis vinifera]   162   3e-38

>emb|CAN63212.1| hypothetical protein VITISV_002844 [Vitis vinifera]
          Length = 900

 Score =  165 bits (418), Expect = 3e-39
 Identities = 76/102 (74%), Positives = 92/102 (90%)
 Frame = +1

Query: 1   KLVPRPKNKKVVGTRWVYRNKLDKEGIVTRNKARLVAQGFSQAEGIDYDETYAPVARLEA 180
           +LVPRP N+ V+GTRWV+RNK+D+ GI+ RNKARLVAQGF+Q EGIDY+ET+APVARLEA
Sbjct: 15  ELVPRPSNQSVIGTRWVFRNKMDENGIIVRNKARLVAQGFNQEEGIDYEETFAPVARLEA 74

Query: 181 IRIFLAFAAFSNFKVYQMDVKSAFLNGKLDEEVYVEQPPGFE 306
           IR+ LAFA F +F +YQMDVKSAFLNG ++EEVYVEQPPGF+
Sbjct: 75  IRMLLAFACFKDFVLYQMDVKSAFLNGFINEEVYVEQPPGFQ 116


>emb|CAN74951.1| hypothetical protein VITISV_030567 [Vitis vinifera]
          Length = 2203

 Score =  162 bits (411), Expect = 2e-38
 Identities = 74/102 (72%), Positives = 92/102 (90%)
 Frame = +1

Query: 1    KLVPRPKNKKVVGTRWVYRNKLDKEGIVTRNKARLVAQGFSQAEGIDYDETYAPVARLEA 180
            +LVPRP N+ V+GT+WV+RNK+D+ GI+ RNKARLVAQG++Q EGIDY+ET+APVARLEA
Sbjct: 1405 ELVPRPSNQSVIGTKWVFRNKMDENGIIVRNKARLVAQGYNQEEGIDYEETFAPVARLEA 1464

Query: 181  IRIFLAFAAFSNFKVYQMDVKSAFLNGKLDEEVYVEQPPGFE 306
            IR+ LAFA F +F +YQMDVKSAFLNG ++EEVYVEQPPGF+
Sbjct: 1465 IRMLLAFACFKDFILYQMDVKSAFLNGFINEEVYVEQPPGFQ 1506


>gb|AAN40025.1| putative gag-pol polyprotein [Zea mays]
          Length = 1892

 Score =  162 bits (411), Expect = 2e-38
 Identities = 77/102 (75%), Positives = 91/102 (89%)
 Frame = +1

Query: 4    LVPRPKNKKVVGTRWVYRNKLDKEGIVTRNKARLVAQGFSQAEGIDYDETYAPVARLEAI 183
            LVPRP N+ VVGT+WV+RNK D+ G+VTRNKARLVA+G+SQ EG+D+DETYAPVARLE+I
Sbjct: 1414 LVPRP-NQNVVGTKWVFRNKQDEHGVVTRNKARLVAKGYSQVEGLDFDETYAPVARLESI 1472

Query: 184  RIFLAFAAFSNFKVYQMDVKSAFLNGKLDEEVYVEQPPGFED 309
            RI LA+A +  FK+YQMDVKSAFLNG + EEVYVEQPPGFED
Sbjct: 1473 RILLAYATYHGFKLYQMDVKSAFLNGPIKEEVYVEQPPGFED 1514


>emb|CAN64335.1| hypothetical protein VITISV_001808 [Vitis vinifera]
          Length = 1885

 Score =  162 bits (410), Expect = 3e-38
 Identities = 73/102 (71%), Positives = 92/102 (90%)
 Frame = +1

Query: 1    KLVPRPKNKKVVGTRWVYRNKLDKEGIVTRNKARLVAQGFSQAEGIDYDETYAPVARLEA 180
            +LVPRP N+ V+GT+WV+RNK+D+ GI+ RNKARLVAQG++Q EGIDY+ET+APVARLEA
Sbjct: 993  ELVPRPSNQSVIGTKWVFRNKMDENGIIVRNKARLVAQGYNQEEGIDYEETFAPVARLEA 1052

Query: 181  IRIFLAFAAFSNFKVYQMDVKSAFLNGKLDEEVYVEQPPGFE 306
            IR+ LAFA F +F +YQMDVKSAFLNG ++EE+YVEQPPGF+
Sbjct: 1053 IRMLLAFACFKDFILYQMDVKSAFLNGFINEEIYVEQPPGFQ 1094


>emb|CAN75653.1| hypothetical protein VITISV_004538 [Vitis vinifera]
          Length = 133

 Score =  162 bits (410), Expect = 3e-38
 Identities = 75/102 (73%), Positives = 91/102 (89%)
 Frame = +1

Query: 1   KLVPRPKNKKVVGTRWVYRNKLDKEGIVTRNKARLVAQGFSQAEGIDYDETYAPVARLEA 180
           +LVPRP N+ V+ TRWV+RNK+D+ GI+ RNKARLVAQGF+Q EGIDY+ET+APVARLEA
Sbjct: 15  ELVPRPSNQSVIRTRWVFRNKMDENGIIVRNKARLVAQGFNQEEGIDYEETFAPVARLEA 74

Query: 181 IRIFLAFAAFSNFKVYQMDVKSAFLNGKLDEEVYVEQPPGFE 306
           IR+ LAFA F +F +YQMDVKSAFLNG ++EEVYVEQPPGF+
Sbjct: 75  IRMLLAFACFKDFVLYQMDVKSAFLNGFINEEVYVEQPPGFQ 116


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