BLAST Resut
BLASTP 2.2.26 [Sep-21-2011]


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.

Reference for compositional score matrix adjustment: Altschul, Stephen F., 
John C. Wootton, E. Michael Gertz, Richa Agarwala, Aleksandr Morgulis,
Alejandro A. Schaffer, and Yi-Kuo Yu (2005) "Protein database searches
using compositionally adjusted substitution matrices", FEBS J. 272:5101-5109.

Query= Eca_sc000076.1_g0430.1
         (259 letters)

Database: ./nr 
           95,329,361 sequences; 35,143,497,570 total letters

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



                                                                 Score    E
Sequences producing significant alignments:                      (bits) Value

KCW66456.1 hypothetical protein EUGRSUZ_F00252 [Eucalyptus grand...   533   0.0  
XP_006374971.1 hypothetical protein POPTR_0014s03240g [Populus t...   532   0.0  
CBI19542.3 unnamed protein product, partial [Vitis vinifera]          533   0.0  

>KCW66456.1 hypothetical protein EUGRSUZ_F00252 [Eucalyptus grandis] KJB58450.1
           hypothetical protein B456_009G210600 [Gossypium
           raimondii]
          Length = 259

 Score =  533 bits (1373), Expect = 0.0,   Method: Compositional matrix adjust.
 Identities = 255/259 (98%), Positives = 258/259 (99%)

Query: 1   MEVMGLMLGDFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG 60
           MEVMGLMLG+FVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG
Sbjct: 1   MEVMGLMLGEFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG 60

Query: 61  WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 120
           WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML
Sbjct: 61  WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 120

Query: 121 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 180
           GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT
Sbjct: 121 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 180

Query: 181 LQRFDTHSKTNEQTVQEMLGLAVKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 240
           L+RFDTHSKTNEQTVQEML LA+KYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN
Sbjct: 181 LRRFDTHSKTNEQTVQEMLNLAIKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 240

Query: 241 LMSSNIVQTLGTMLDTVVF 259
           LMSSNIVQTLGTMLDTVVF
Sbjct: 241 LMSSNIVQTLGTMLDTVVF 259


>XP_006374971.1 hypothetical protein POPTR_0014s03240g [Populus trichocarpa]
           ERP52768.1 hypothetical protein POPTR_0014s03240g
           [Populus trichocarpa]
          Length = 259

 Score =  532 bits (1371), Expect = 0.0,   Method: Compositional matrix adjust.
 Identities = 254/259 (98%), Positives = 258/259 (99%)

Query: 1   MEVMGLMLGDFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG 60
           MEVMGLMLG+FVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNM+DMLKQTGRPEMVVG
Sbjct: 1   MEVMGLMLGEFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMIDMLKQTGRPEMVVG 60

Query: 61  WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 120
           WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML
Sbjct: 61  WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 120

Query: 121 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 180
           GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT
Sbjct: 121 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 180

Query: 181 LQRFDTHSKTNEQTVQEMLGLAVKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 240
           L+RFDTHSKTNEQTVQEML LA+KYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN
Sbjct: 181 LKRFDTHSKTNEQTVQEMLNLAIKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 240

Query: 241 LMSSNIVQTLGTMLDTVVF 259
           LMSSNIVQTLGTMLDTVVF
Sbjct: 241 LMSSNIVQTLGTMLDTVVF 259


>CBI19542.3 unnamed protein product, partial [Vitis vinifera]
          Length = 303

 Score =  533 bits (1374), Expect = 0.0,   Method: Compositional matrix adjust.
 Identities = 255/259 (98%), Positives = 258/259 (99%)

Query: 1   MEVMGLMLGDFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG 60
           MEVMGLMLG+FVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG
Sbjct: 45  MEVMGLMLGEFVDEYTVRVVDVFAMPQSGTGVSVEAVDHVFQTNMLDMLKQTGRPEMVVG 104

Query: 61  WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 120
           WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML
Sbjct: 105 WYHSHPGFGCWLSGVDINTQQSFEALNQRAVAVVVDPIQSVKGKVVIDAFRLINPQTMML 164

Query: 121 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 180
           GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT
Sbjct: 165 GQEPRQTTSNLGHLNKPSIQALIHGLNRHYYSIAINYRKNELEEKMLLNLHKKKWTDGLT 224

Query: 181 LQRFDTHSKTNEQTVQEMLGLAVKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 240
           L+RFDTHSKTNEQTVQEML LA+KYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN
Sbjct: 225 LKRFDTHSKTNEQTVQEMLSLAIKYNKAVQEEDELPPEKLAIANVGRQDAKKHLEEHVSN 284

Query: 241 LMSSNIVQTLGTMLDTVVF 259
           LMSSNIVQTLGTMLDTVVF
Sbjct: 285 LMSSNIVQTLGTMLDTVVF 303


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