Miyakogusa Predicted Gene

Lj6g3v2255690.1
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= Lj6g3v2255690.1 Non Chatacterized Hit- tr|A5AR48|A5AR48_VITVI
Putative uncharacterized protein OS=Vitis vinifera
GN=,51.85,0.000000000000002, ,CUFF.60923.1
         (83 letters)

Database: Glyma1.pep 
           75,778 sequences; 25,431,882 total letters

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



                                                                 Score    E
Sequences producing significant alignments:                      (bits) Value

Glyma15g05480.1                                                       124   2e-29
Glyma08g19570.1                                                       122   7e-29
Glyma07g29050.1                                                       111   2e-25
Glyma08g08190.1                                                       111   2e-25
Glyma08g08190.2                                                       111   2e-25
Glyma08g08190.3                                                       111   2e-25
Glyma17g26570.1                                                        77   4e-15
Glyma06g09480.1                                                        68   2e-12
Glyma04g09320.1                                                        50   6e-07

>Glyma15g05480.1 
          Length = 750

 Score =  124 bits (312), Expect = 2e-29,   Method: Compositional matrix adjust.
 Identities = 62/85 (72%), Positives = 67/85 (78%), Gaps = 11/85 (12%)

Query: 1  MFRKFGLFAGLNQ----TKRLLDVQQ-----PNHHLPMLDAVHEVAIYIHRFHNLDLFEQ 51
          MFRK G F GLNQ    TKRLL+  Q     PNH LPMLDAVHEVA+YIHRFHNLDLFEQ
Sbjct: 1  MFRKLGWFVGLNQNNLATKRLLNADQTASARPNHQLPMLDAVHEVAVYIHRFHNLDLFEQ 60

Query: 52 GWYRIKVTMRWEDSDTDDSYPGIPS 76
          GWYRIKVT+RWED   +DSYPGIP+
Sbjct: 61 GWYRIKVTLRWEDG--EDSYPGIPA 83


>Glyma08g19570.1 
          Length = 777

 Score =  122 bits (307), Expect = 7e-29,   Method: Compositional matrix adjust.
 Identities = 59/90 (65%), Positives = 68/90 (75%), Gaps = 11/90 (12%)

Query: 1  MFRKFGLFAGLNQT----KRLLDVQQ-----PNHHLPMLDAVHEVAIYIHRFHNLDLFEQ 51
          MFR+ G F GLNQT    KRLL+  Q     PNH LPMLDAVHEVA+YIHRFHNLDLFEQ
Sbjct: 1  MFRRLGWFVGLNQTNLSTKRLLNADQTASARPNHQLPMLDAVHEVAVYIHRFHNLDLFEQ 60

Query: 52 GWYRIKVTMRWEDSDTDDSYPGIPSHKCSF 81
          GWYRIK+T+RWED   DDS+PG+P+    +
Sbjct: 61 GWYRIKITLRWEDG--DDSHPGVPARVVQY 88


>Glyma07g29050.1 
          Length = 165

 Score =  111 bits (278), Expect = 2e-25,   Method: Compositional matrix adjust.
 Identities = 54/83 (65%), Positives = 63/83 (75%), Gaps = 11/83 (13%)

Query: 1  MFRKFGLFAGLNQT----KRLLDVQQ-----PNHHLPMLDAVHEVAIYIHRFHNLDLFEQ 51
          MFR+ G F GLNQT    KRLL+  Q      NH LP+LD VHEVA+YIHRFHNL+LFEQ
Sbjct: 1  MFRRLGWFVGLNQTNLSTKRLLNADQTASSRANHQLPILDVVHEVAVYIHRFHNLNLFEQ 60

Query: 52 GWYRIKVTMRWEDSDTDDSYPGI 74
          GWYRIK+T+RWED   DDS+PG+
Sbjct: 61 GWYRIKITLRWEDG--DDSHPGV 81


>Glyma08g08190.1 
          Length = 777

 Score =  111 bits (277), Expect = 2e-25,   Method: Compositional matrix adjust.
 Identities = 57/91 (62%), Positives = 65/91 (71%), Gaps = 12/91 (13%)

Query: 1  MFRKFGLFAGLNQ----TKRLLDVQ------QPNHHLPMLDAVHEVAIYIHRFHNLDLFE 50
          MFR+   F GLNQ    TKRL++V        PN  LP+LDAVHEVAIYIHRFHNLDLFE
Sbjct: 1  MFRRLRWFVGLNQKNWSTKRLVNVDHQPGPGTPNKLLPVLDAVHEVAIYIHRFHNLDLFE 60

Query: 51 QGWYRIKVTMRWEDSDTDDSYPGIPSHKCSF 81
          QGWY+IKVTMRWED   + SYPGIP+    +
Sbjct: 61 QGWYKIKVTMRWEDG--EGSYPGIPARVVQY 89


>Glyma08g08190.2 
          Length = 760

 Score =  111 bits (277), Expect = 2e-25,   Method: Compositional matrix adjust.
 Identities = 57/91 (62%), Positives = 65/91 (71%), Gaps = 12/91 (13%)

Query: 1  MFRKFGLFAGLNQ----TKRLLDVQ------QPNHHLPMLDAVHEVAIYIHRFHNLDLFE 50
          MFR+   F GLNQ    TKRL++V        PN  LP+LDAVHEVAIYIHRFHNLDLFE
Sbjct: 1  MFRRLRWFVGLNQKNWSTKRLVNVDHQPGPGTPNKLLPVLDAVHEVAIYIHRFHNLDLFE 60

Query: 51 QGWYRIKVTMRWEDSDTDDSYPGIPSHKCSF 81
          QGWY+IKVTMRWED   + SYPGIP+    +
Sbjct: 61 QGWYKIKVTMRWEDG--EGSYPGIPARVVQY 89


>Glyma08g08190.3 
          Length = 743

 Score =  111 bits (277), Expect = 2e-25,   Method: Compositional matrix adjust.
 Identities = 57/91 (62%), Positives = 65/91 (71%), Gaps = 12/91 (13%)

Query: 1  MFRKFGLFAGLNQ----TKRLLDVQ------QPNHHLPMLDAVHEVAIYIHRFHNLDLFE 50
          MFR+   F GLNQ    TKRL++V        PN  LP+LDAVHEVAIYIHRFHNLDLFE
Sbjct: 1  MFRRLRWFVGLNQKNWSTKRLVNVDHQPGPGTPNKLLPVLDAVHEVAIYIHRFHNLDLFE 60

Query: 51 QGWYRIKVTMRWEDSDTDDSYPGIPSHKCSF 81
          QGWY+IKVTMRWED   + SYPGIP+    +
Sbjct: 61 QGWYKIKVTMRWEDG--EGSYPGIPARVVQY 89


>Glyma17g26570.1 
          Length = 779

 Score = 77.0 bits (188), Expect = 4e-15,   Method: Compositional matrix adjust.
 Identities = 35/55 (63%), Positives = 44/55 (80%), Gaps = 2/55 (3%)

Query: 27 LPMLDAVHEVAIYIHRFHNLDLFEQGWYRIKVTMRWEDSDTDDSYPGIPSHKCSF 81
          + M +AV E+AIYIHRFHNLDLF+QGWY+IK+TMRWED D D S+ GIP+    +
Sbjct: 10 VAMFEAVQEIAIYIHRFHNLDLFQQGWYQIKITMRWED-DEDVSF-GIPARVVQY 62


>Glyma06g09480.1 
          Length = 828

 Score = 68.2 bits (165), Expect = 2e-12,   Method: Compositional matrix adjust.
 Identities = 29/50 (58%), Positives = 39/50 (78%), Gaps = 2/50 (4%)

Query: 27 LPMLDAVHEVAIYIHRFHNLDLFEQGWYRIKVTMRWEDSDTDDSYPGIPS 76
          +  L+ V E+ +YI RFHNLDLF+QGWYRIK+T+RWEDS  ++   GIP+
Sbjct: 10 VATLETVREIGVYIQRFHNLDLFKQGWYRIKITVRWEDS--ENMSFGIPA 57


>Glyma04g09320.1 
          Length = 373

 Score = 50.1 bits (118), Expect = 6e-07,   Method: Compositional matrix adjust.
 Identities = 22/46 (47%), Positives = 30/46 (65%), Gaps = 5/46 (10%)

Query: 27 LPMLDAVHEVAIYIHRFHNLDLFEQGWYRIKVTMRWEDSDTDDSYP 72
          +  L+ V E+ +YIHRFHNLDLF+QG Y +     W   DTD+S+ 
Sbjct: 10 VATLETVQEIGVYIHRFHNLDLFKQGVYGV-----WRIDDTDNSFS 50