BLASTX nr result
ID: Glycyrrhiza24_contig00022176
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= Glycyrrhiza24_contig00022176 (300 letters) Database: ./nr 23,641,837 sequences; 8,123,359,852 total letters Searching..................................................done Score E Sequences producing significant alignments: (bits) Value ref|XP_003591076.1| Protein kinase 2B [Medicago truncatula] gi|3... 65 4e-09 ref|NP_001237672.1| protein kinase [Glycine max] gi|223452406|gb... 65 7e-09 ref|XP_003536089.1| PREDICTED: receptor-like serine/threonine-pr... 62 6e-08 >ref|XP_003591076.1| Protein kinase 2B [Medicago truncatula] gi|355480124|gb|AES61327.1| Protein kinase 2B [Medicago truncatula] Length = 446 Score = 65.5 bits (158), Expect = 4e-09 Identities = 31/53 (58%), Positives = 36/53 (67%), Gaps = 2/53 (3%) Frame = -2 Query: 155 KNPTFTRH--HLHSEKHNHTHDDHFPFKTVLITVAVAAFITVLFIIFLVVCFI 3 KN TF H HLHSEK H H HFPFKT++I + + A I +LF IFLVVC I Sbjct: 19 KNHTFIHHYHHLHSEKDYHNHVGHFPFKTIIIIITMVALIMLLFTIFLVVCLI 71 >ref|NP_001237672.1| protein kinase [Glycine max] gi|223452406|gb|ACM89530.1| protein kinase [Glycine max] Length = 441 Score = 64.7 bits (156), Expect = 7e-09 Identities = 28/51 (54%), Positives = 40/51 (78%) Frame = -2 Query: 155 KNPTFTRHHLHSEKHNHTHDDHFPFKTVLITVAVAAFITVLFIIFLVVCFI 3 +N ++T HHLHSE+H+H+H HFP KT+LI +A+ +TVLFIIF+V+ I Sbjct: 16 RNHSYTPHHLHSERHSHSHG-HFPSKTILIIIALVTLVTVLFIIFVVLFLI 65 >ref|XP_003536089.1| PREDICTED: receptor-like serine/threonine-protein kinase ALE2-like [Glycine max] Length = 441 Score = 61.6 bits (148), Expect = 6e-08 Identities = 27/52 (51%), Positives = 38/52 (73%), Gaps = 1/52 (1%) Frame = -2 Query: 155 KNPTFTRHHLHSEKHNHTHDD-HFPFKTVLITVAVAAFITVLFIIFLVVCFI 3 +N ++T+H LHSE+H+H H HFP KT+LI +A +TVLFIIF+V+ I Sbjct: 17 RNHSYTQHRLHSERHSHNHSHGHFPSKTILIIIAFVTLVTVLFIIFVVLFLI 68