node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
CERK1 | LECRK55 | A8R7E6 | Q96285 | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | 0.467 |
CERK1 | LYM1 | A8R7E6 | Q93ZH0 | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | LysM domain-containing GPI-anchored protein 1; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | 0.977 |
CERK1 | LYM3 | A8R7E6 | Q6NPN4 | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | LysM domain-containing GPI-anchored protein 3; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | 0.965 |
LECRK55 | CERK1 | Q96285 | A8R7E6 | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | 0.467 |
LECRK55 | Q9LTC9_ARATH | Q96285 | Q9LTC9 | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | HR-like lesion-inducing protein-like protein. | 0.540 |
LECRK55 | Q9LTD0_ARATH | Q96285 | Q9LTD0 | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | HR-like lesion-inducing protein-like protein. | 0.540 |
LYM1 | CERK1 | Q93ZH0 | A8R7E6 | LysM domain-containing GPI-anchored protein 1; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | 0.977 |
LYM1 | LYM3 | Q93ZH0 | Q6NPN4 | LysM domain-containing GPI-anchored protein 1; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | LysM domain-containing GPI-anchored protein 3; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | 0.532 |
LYM3 | CERK1 | Q6NPN4 | A8R7E6 | LysM domain-containing GPI-anchored protein 3; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | Chitin elicitor receptor kinase 1; Lysin motif (LysM) receptor kinase that functions as a cell surface receptor in chitin elicitor (chitooligosaccharides) signaling leading to innate immunity toward both biotic and abiotic stresses (e.g. tolerance to salinity, heavy-metal stresses, and Botrytis cinerea infection). Recognizes microbe-derived N-acetylglucosamine (NAG)- containing ligands. Involved in the resistance to pathogenic fungi Alternaria brassicicola and Erysiphe cichoracearum, probably by sensing microbe-associated molecular patterns (MAMP) and pathogen-associated molecular patt [...] | 0.965 |
LYM3 | LYM1 | Q6NPN4 | Q93ZH0 | LysM domain-containing GPI-anchored protein 3; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | LysM domain-containing GPI-anchored protein 1; Required as a cell surface receptor for peptidoglycan (PGN) elicitor signaling leading to innate immunity. Plays an essential role in detecting PGNs and restricting bacterial growth (of Pseudomonas syringae pv. tomato DC3000 for example). | 0.532 |
Q9LTC9_ARATH | LECRK55 | Q9LTC9 | Q96285 | HR-like lesion-inducing protein-like protein. | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | 0.540 |
Q9LTC9_ARATH | RPP13 | Q9LTC9 | Q9M667 | HR-like lesion-inducing protein-like protein. | Disease resistance protein RPP13; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via an indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth. In contrast to other resistance proteins, it works independently of ESD1 and NSD1 proteins and does not require the accumulation of salicylic acid, suggesting the existence of an independent signaling pathway. The specificity to avirulence proteins differs in the [...] | 0.545 |
Q9LTD0_ARATH | LECRK55 | Q9LTD0 | Q96285 | HR-like lesion-inducing protein-like protein. | L-type lectin-domain containing receptor kinase V.5; Confers resistance to the pathogenic oomycetes Phytophthora infestans and Phytophthora capsici, but confers susceptibility to the pathogenic bacteria Pseudomonas syringae. In the N-terminal section; belongs to the leguminous lectin family. | 0.540 |
Q9LTD0_ARATH | RPP13 | Q9LTD0 | Q9M667 | HR-like lesion-inducing protein-like protein. | Disease resistance protein RPP13; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via an indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth. In contrast to other resistance proteins, it works independently of ESD1 and NSD1 proteins and does not require the accumulation of salicylic acid, suggesting the existence of an independent signaling pathway. The specificity to avirulence proteins differs in the [...] | 0.545 |
RPP13 | Q9LTC9_ARATH | Q9M667 | Q9LTC9 | Disease resistance protein RPP13; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via an indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth. In contrast to other resistance proteins, it works independently of ESD1 and NSD1 proteins and does not require the accumulation of salicylic acid, suggesting the existence of an independent signaling pathway. The specificity to avirulence proteins differs in the [...] | HR-like lesion-inducing protein-like protein. | 0.545 |
RPP13 | Q9LTD0_ARATH | Q9M667 | Q9LTD0 | Disease resistance protein RPP13; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via an indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth. In contrast to other resistance proteins, it works independently of ESD1 and NSD1 proteins and does not require the accumulation of salicylic acid, suggesting the existence of an independent signaling pathway. The specificity to avirulence proteins differs in the [...] | HR-like lesion-inducing protein-like protein. | 0.545 |