生物
芸苔属
基因组学
蛋白质组学
生物逆境
生物技术
蛋白质组
代谢组学
植物抗病性
抗性(生态学)
计算生物学
系统生物学
非生物成分
非生物胁迫
生态学
基因组
生物信息学
农学
遗传学
基因
作者
Mercival R. Francisco,Pilar Soengas,Pablo Velasco,Vijai Bhadauria,María Elena Cartea,Víctor M. Rodríguez
标识
DOI:10.21775/9781910190357.05
摘要
Understanding plant's defense mechanisms and their response to biotic stresses is of fundamental meaning for the development of resistant crop varieties and more productive agriculture.The Brassica genus involves a large variety of economically important species and cultivars used as vegetable source, oilseeds, forage and ornamental.Damage caused by pathogens attack affects negatively various aspects of plant growth, development, and crop productivity.Over the last few decades, advances in plant physiology, genetics, and molecular biology have greatly improved our understanding of plant responses to biotic stress conditions.In this regard, various 'omics' technologies enable qualitative and quantitative monitoring of the abundance of various biological molecules in a highthroughput manner, and thus allow determination of their variation between different biological states on a genomic scale.In this review, we have described advances in 'omic' tools (genomics, transcriptomics, proteomics and metabolomics) in the view of conventional and modern approaches being used to elucidate the molecular mechanisms that underlie Brassica disease resistance.
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