Breeding for Drought Resistance

P. Ranjith, Madasu Srinivasa Rao
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引用次数: 1

Abstract

Drought is the most severe abiotic stresses in many parts of the world and is one of the major problems in present-day climatic scenario. Drought tolerant varieties are with high demand which seems to be a great challenging task to plant breeders however difficulties are combined by the difficulty of crop yield on the genetic and physiological bases. Drought resistance may be defined as the mechanism(s) causing minimum loss of the yield in a drought environment relative to the maximum yield in a constant-free of optimal environment for the crop. Several researchers explained the plant reaction to drought through drought escape, dehydration avoidance, and/or dehydration tolerance mechanisms. Drought stress decreases size of the leaves, stem extension and root proliferation inside the soil, it also disturbs plant water relations and reduces water-use efficiency ultimately reduces the yielding ability of the plant so, breeding for Drought resistance is a good approach, following different breeding strategies and approaches to develop a drought resistant variety combining both conventional and molecular approaches. Considering the parameters like root morphology studies, proline estimation, leaf rolling etc., Selection based on a comprehensive approach of testing might be more effective in breeding better drought-tolerant cultivars.
抗旱育种
干旱是世界上许多地区最严重的非生物胁迫,也是当今气候情景中的主要问题之一。耐旱品种的需求量很大,这对植物育种家来说是一项极具挑战性的任务,而作物在遗传和生理基础上的产量困难又使这一困难结合在一起。抗旱性可以定义为在干旱环境中造成最小产量损失的机制,相对于作物在恒定的最佳环境中获得最大产量的机制。一些研究人员通过干旱逃避、脱水避免和/或脱水耐受机制解释了植物对干旱的反应。干旱胁迫使土壤内叶片大小、茎伸长和根系增生减少,也扰乱了植物水分关系,降低了水分利用效率,最终降低了植物的生产能力,因此,抗旱育种是一条很好的途径,采用不同的育种策略和方法,将常规育种和分子育种相结合,培育出抗旱品种。综合考虑根系形态研究、脯氨酸估算、卷叶等参数,以综合试验方法选育耐旱品种可能更为有效。
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