node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
CF9 | RAR1 | Q9SLU2 | Q9SE33 | Carbohydrate-binding protein. | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | 0.495 |
CF9 | RPP5 | Q9SLU2 | F4JNB7 | Carbohydrate-binding protein. | Disease resistance protein RPP5; TIR-NB-LRR receptor-like protein that confers resistance to the pathogen Hyaloperonospora arabidopsis isolate Noco2 (downy mildew disease). Confers resistance to H.arabidopsis isolates Emoy2, Emwa1 and Noco2. | 0.720 |
CF9 | TIR | Q9SLU2 | Q9SSN3 | Carbohydrate-binding protein. | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | 0.739 |
RAR1 | CF9 | Q9SE33 | Q9SLU2 | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | Carbohydrate-binding protein. | 0.495 |
RAR1 | RPP5 | Q9SE33 | F4JNB7 | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | Disease resistance protein RPP5; TIR-NB-LRR receptor-like protein that confers resistance to the pathogen Hyaloperonospora arabidopsis isolate Noco2 (downy mildew disease). Confers resistance to H.arabidopsis isolates Emoy2, Emwa1 and Noco2. | 0.740 |
RAR1 | TIR | Q9SE33 | Q9SSN3 | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | 0.825 |
RPP5 | CF9 | F4JNB7 | Q9SLU2 | Disease resistance protein RPP5; TIR-NB-LRR receptor-like protein that confers resistance to the pathogen Hyaloperonospora arabidopsis isolate Noco2 (downy mildew disease). Confers resistance to H.arabidopsis isolates Emoy2, Emwa1 and Noco2. | Carbohydrate-binding protein. | 0.720 |
RPP5 | RAR1 | F4JNB7 | Q9SE33 | Disease resistance protein RPP5; TIR-NB-LRR receptor-like protein that confers resistance to the pathogen Hyaloperonospora arabidopsis isolate Noco2 (downy mildew disease). Confers resistance to H.arabidopsis isolates Emoy2, Emwa1 and Noco2. | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | 0.740 |
TAA1 | TIR | Q9S7N2 | Q9SSN3 | L-tryptophan--pyruvate aminotransferase 1; L-tryptophan aminotransferase involved in auxin (IAA) biosynthesis. Can convert L-tryptophan and pyruvate to indole-3-pyruvic acid (IPA) and alanine. Catalyzes the first step in IPA branch of the auxin biosynthetic pathway. Required for auxin production to initiate multiple change in growth in response to environmental and developmental cues. It is also active with phenylalanine, tyrosine, leucine, alanine, methionine and glutamine. Both TAA1 and TAR2 are required for maintaining proper auxin levels in roots, while TAA1, TAR1 and TAR2 are requ [...] | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | 0.541 |
TIR | CF9 | Q9SSN3 | Q9SLU2 | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | Carbohydrate-binding protein. | 0.739 |
TIR | RAR1 | Q9SSN3 | Q9SE33 | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | Cysteine and histidine-rich domain-containing protein RAR1; Required specifically for plant innate immunity. Is essential for resistance conferred by multiple R genes recognizing different bacterial and oomycete pathogen isolates like avirulent P.syringae or H.parasitica (downy mildew). Contributes additively with SGT1B to RPP5- dependent resistance. Functions as positive regulator of RPS5 accumulation by assisting its stabilization. May function as co- chaperone of HSP90-2 to positively regulate the steady-state accumulation of RPM1 and protect it from SGT1-mediated degradation. Acts [...] | 0.825 |
TIR | TAA1 | Q9SSN3 | Q9S7N2 | Toll/interleukin-1 receptor-like protein; Disease resistance protein. Resistance proteins guard the plant against pathogens that contain an appropriate avirulence protein via a direct or indirect interaction with this avirulence protein. That triggers a defense system including the hypersensitive response, which restricts the pathogen growth (By similarity). | L-tryptophan--pyruvate aminotransferase 1; L-tryptophan aminotransferase involved in auxin (IAA) biosynthesis. Can convert L-tryptophan and pyruvate to indole-3-pyruvic acid (IPA) and alanine. Catalyzes the first step in IPA branch of the auxin biosynthetic pathway. Required for auxin production to initiate multiple change in growth in response to environmental and developmental cues. It is also active with phenylalanine, tyrosine, leucine, alanine, methionine and glutamine. Both TAA1 and TAR2 are required for maintaining proper auxin levels in roots, while TAA1, TAR1 and TAR2 are requ [...] | 0.541 |