node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
DIR7 | F14O10.9 | Q9LID5 | Q8L956 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | Syringolide-induced protein. | 0.796 |
DIR7 | F1M20.12 | Q9LID5 | Q9CA70 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | ER membrane protein, putative (DUF962). | 0.795 |
DIR7 | MDC8.3 | Q9LID5 | Q9LUS8 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | Probable protein phosphatase 2C 40. | 0.757 |
DIR7 | PER47 | Q9LID5 | Q9SZB9 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | Peroxidase 47; Removal of H(2)O(2), oxidation of toxic reductants, biosynthesis and degradation of lignin, suberization, auxin catabolism, response to environmental stresses such as wounding, pathogen attack and oxidative stress. These functions might be dependent on each isozyme/isoform in each plant tissue. | 0.457 |
DIR7 | PXC3 | Q9LID5 | O22938 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | Leucine-rich repeat receptor-like tyrosine-protein kinase PXC3; Leucine-rich repeat receptor-like protein kinase that may play a role in vascular tissues development. | 0.743 |
DIR7 | T20F21.3 | Q9LID5 | Q9ZQP5 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | Heavy metal transport/detoxification superfamily protein. | 0.796 |
DIR7 | UGT71C3 | Q9LID5 | Q9LML7 | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | UDP-glycosyltransferase 71C3; Possesses low quercetin 3-O-glucosyltransferase activity in vitro. | 0.583 |
ECT5 | F28H19.16 | Q0WR25 | Q8VZN9 | Evolutionarily conserved C-terminal region 5. | Probable protein phosphatase 2C 11; Belongs to the PP2C family. | 0.822 |
ECT5 | F3O9.2 | Q0WR25 | Q8VYC9 | Evolutionarily conserved C-terminal region 5. | Coiled-coil protein. | 0.901 |
F12A21.5 | F17M5.260 | Q9FXE4 | Q93V88 | Probable protein phosphatase 2C 14. | Probable protein phosphatase 2C 62. | 0.791 |
F14O10.9 | DIR7 | Q8L956 | Q9LID5 | Syringolide-induced protein. | Dirigent protein 7; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. | 0.796 |
F14O10.9 | F16F17.60 | Q8L956 | Q58FT9 | Syringolide-induced protein. | Expressed protein. | 0.600 |
F16F17.60 | F14O10.9 | Q58FT9 | Q8L956 | Expressed protein. | Syringolide-induced protein. | 0.600 |
F16M2.170 | F17M5.260 | Q9M1V8 | Q93V88 | Putative protein phosphatase 2C 50. | Probable protein phosphatase 2C 62. | 0.418 |
F16M2.170 | F8M12.14 | Q9M1V8 | Q9T010 | Putative protein phosphatase 2C 50. | Probable protein phosphatase 2C 54; Belongs to the PP2C family. | 0.695 |
F16M2.170 | MDC8.3 | Q9M1V8 | Q9LUS8 | Putative protein phosphatase 2C 50. | Probable protein phosphatase 2C 40. | 0.457 |
F16M2.170 | MLM24.7 | Q9M1V8 | Q9LW60 | Putative protein phosphatase 2C 50. | Putative protein phosphatase 2C-like protein 44; Belongs to the PP2C family. | 0.695 |
F16M2.170 | MSN2.11 | Q9M1V8 | Q9LVQ8 | Putative protein phosphatase 2C 50. | Probable protein phosphatase 2C 80. | 0.661 |
F16M2.170 | MYF5.1 | Q9M1V8 | Q3EAZ3 | Putative protein phosphatase 2C 50. | Putative protein phosphatase 2C-like protein 45; Belongs to the PP2C family. | 0.695 |
F16M2.170 | PLL3 | Q9M1V8 | Q9SR24 | Putative protein phosphatase 2C 50. | Probable protein phosphatase 2C 36. | 0.456 |