Miyakogusa Predicted Gene

Lj5g3v2264210.1
Show Alignment: 

BLASTP 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.

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= Lj5g3v2264210.1 Non Chatacterized Hit- tr|I1NF10|I1NF10_SOYBN
Uncharacterized protein OS=Glycine max GN=Gma.38673 PE,91.49,2e-16,
,CUFF.57129.1
         (57 letters)

Database: TAIR10_pep 
           35,386 sequences; 14,482,855 total letters

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



                                                                 Score    E
Sequences producing significant alignments:                      (bits) Value

AT2G39500.1 | Symbols:  | unknown protein; FUNCTIONS IN: molecul...    78   1e-15

>AT2G39500.1 | Symbols:  | unknown protein; FUNCTIONS IN:
          molecular_function unknown; INVOLVED IN:
          biological_process unknown; LOCATED IN: endomembrane
          system; EXPRESSED IN: 21 plant structures; EXPRESSED
          DURING: 12 growth stages; Has 16 Blast hits to 16
          proteins in 8 species: Archae - 0; Bacteria - 0;
          Metazoa - 0; Fungi - 0; Plants - 16; Viruses - 0; Other
          Eukaryotes - 0 (source: NCBI BLink). |
          chr2:16489091-16489374 FORWARD LENGTH=55
          Length = 55

 Score = 78.2 bits (191), Expect = 1e-15,   Method: Compositional matrix adjust.
 Identities = 32/48 (66%), Positives = 42/48 (87%)

Query: 2  ELKNVVKDKKFWVASFLIAWAAALQGHMMWLQRQDSFKHKFRNLDDDD 49
          ++K +VKDK+FW+ASF+I WAA LQGHMMWLQ+Q+SFK KF  +D+DD
Sbjct: 6  DVKTIVKDKRFWIASFIIVWAAGLQGHMMWLQKQESFKQKFGTIDEDD 53