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- W4206562007 abstract "To understand the molecular mechanisms of crucifers host resistance, useful protocols have been developed to analyze the host–pathogen interactions through omics approaches like genomics, proteomics, transcriptomics, and bioinformatics. Novel R-genes have been identified, molecularly characterized, and have been fine mapped on the chromosomes of different Brassica species. Techniques have been developed to introgress high yielding and disease resistance genes through traditional as well as transgenic approaches. Protocols for molecular characterization of R-genes in Brassica species, DNA extraction, purification, and quantification, construction of a linkage map and mapping of R-loci and proteome analysis of Brassica-Albugo pathosystem have been developed. The procedures for analysis of molecular and biochemical mechanisms of resistance in Brassica to Alternaria and molecular characterization of Alternaria genes showing fungicidal resistance have been described. Genome wide identification of defensin genes in B. juncea and Camelina sativa; analysis of expression of defensin genes; and identification of distribution of chitinase genes against Alternaria are the techniques described. Brassica-Erysiphe molecular techniques include identification of molecular markers linked powdery mildew R-genes and DNA sequence analysis of Erysiphe isolates. In Brassica–Hyaloperonospora interactions, assessment of small RNA role; R-genes overexpression; and c-DNA-AFLP analysis to reveal gene expression have been developed. Brassica-Leptosphaeria pathosystem has revealed phylogenetic relationship of R-loci; transcriptome analysis; cloning and transformation of Leptosphaeria avirulence genes; identification of QTLs; molecular mapping of R-genes; and identification of NBS-encoding genes in Brassica species. Molecular techniques developed with the Brassica-Plasmodiophora system are mapping of R-genes and QTLs; SNP array, mapping, population structure, and linkage disequilibrium analysis; genome-wide association study; and the methodology for transcriptome analysis of Brassica-Sclerotinia pathosystem has been developed. The protocols for TuMV detection; preservation; inoculation; and identification by ELISA have been developed. In Brassica species RNA sequencing and NBS domain and NBS-associated conserved domains protocols have been developed." @default.
- W4206562007 created "2022-01-26" @default.
- W4206562007 creator A5004516661 @default.
- W4206562007 creator A5004643667 @default.
- W4206562007 creator A5054608065 @default.
- W4206562007 date "2021-01-01" @default.
- W4206562007 modified "2023-09-28" @default.
- W4206562007 title "Techniques for Molecular Mechanism of Host Resistance" @default.
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