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- W134944557 abstract "Most plants have developed sophisticated mechanism to protect themselves from microbial attack in their natural environment. One of the effective way is through the gene-for-gene interactions in which, a specific resistance gene in plants recognizes a corresponding avirulence (avr) gene of the pathogen. Subsequently, this recognition process activates a cascade of defense genes that inhibit the pathogen’s ingress (Keen, 1990; Staskawicz et al., 1995). During the last 5 years, over 20 disease resistance genes from different plants have been cloned (Staskawicz et al 1995; Baker et al. 1997; Ellis and Jones, 1998). This has dramatically advanced our understanding of the molecular basis of disease resistance in plants. Sequence analysis of the predicted proteins reveals that resistance genes of diverse origin and pathogen specificity share similar structural motifs such leucine-rich repeats (LRR), kinase and nucleotide binding site (NBS) (reviewed by Baker et al., 1997). The structural similarity of different resistance genes leads us to speculating the existence of a common or few resistance pathways in plants. If this is true, one might ask how many genes are required in the signal transduction pathway before defense genes are activated. The second question is what the function of each gene is in switching on the signaling pathway." @default.
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- W134944557 date "2000-01-01" @default.
- W134944557 modified "2023-10-11" @default.
- W134944557 title "Genetic Dissection of Disease Resistance Pathway(s) in Rice" @default.
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- W134944557 doi "https://doi.org/10.1007/978-94-015-9430-1_8" @default.
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