首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Integrated genomics, physiology and breeding approaches for improving drought tolerance in crops.
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Integrated genomics, physiology and breeding approaches for improving drought tolerance in crops.

机译:综合基因组学,生理学和育种方法,可提高农作物的抗旱性。

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摘要

Drought is one of the most serious production constraint for world agriculture and is projected to worsen with anticipated climate change. Inter-disciplinary scientists have been trying to understand and dissect the mechanisms of plant tolerance to drought stress using a variety of approaches; however, success has been limited. Modern genomics and genetic approaches coupled with advances in precise phenotyping and breeding methodologies are expected to more effectively unravel the genes and metabolic pathways that confer drought tolerance in crops. This article discusses the most recent advances in plant physiology for precision phenotyping of drought response, a vital step before implementing the genetic and molecular-physiological strategies to unravel the complex multilayered drought tolerance mechanism and further exploration using molecular breeding approaches for crop improvement. Emphasis has been given to molecular dissection of drought tolerance by QTL or gene discovery through linkage and association mapping, QTL cloning, candidate gene identification, transcriptomics and functional genomics. Molecular breeding approaches such as marker-assisted backcrossing, marker-assisted recurrent selection and genome-wide selection have been suggested to be integrated in crop improvement strategies to develop drought-tolerant cultivars that will enhance food security in the context of a changing and more variable climate.
机译:干旱是世界农业最严重的生产限制之一,预计随着预期的气候变化会加剧。跨学科的科学家一直在尝试使用多种方法来理解和剖析植物对干旱胁迫的耐受性机制。但是,成功是有限的。预计现代基因组学和遗传方法以及精确表型和育种方法学的进步将更有效地揭示赋予作物耐旱性的基因和代谢途径。本文讨论了植物生理学在干旱反应精确表型研究方面的最新进展,这是在实施遗传和分子生​​理学策略以阐明复杂的多层耐旱机制以及使用分子育种方法进行作物改良的进一步探索之前的重要步骤。通过QTL或通过连锁和缔合作图,QTL克隆,候选基因鉴定,转录组学和功能基因组学的基因发现,重点研究了耐旱性的分子解剖。已建议将分子育种方法(例如标记辅助回交,标记辅助循环选择和全基因组选择)整合到作物改良策略中,以开发耐旱品种,在变化多变的背景下提高粮食安全气候。

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