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Physiological and Molecular Aspects of Tolerance to Environmental Constraints in Grain and Forage Legumes

机译:谷物和牧草豆类对环境限制的耐受性的生理和分子方面

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摘要

Despite the agronomical and environmental advantages of the cultivation of legumes, their production is limited by various environmental constraints such as water or nutrient limitation, frost or heat stress and soil salinity, which may be the result of pedoclimatic conditions, intensive use of agricultural lands, decline in soil fertility and environmental degradation. The development of more sustainable agroecosystems that are resilient to environmental constraints will therefore require better understanding of the key mechanisms underlying plant tolerance to abiotic constraints. This review provides highlights of legume tolerance to abiotic constraints with a focus on soil nutrient deficiencies, drought, and salinity. More specifically, recent advances in the physiological and molecular levels of the adaptation of grain and forage legumes to abiotic constraints are discussed. Such adaptation involves complex multigene controlled-traits which also involve multiple sub-traits that are likely regulated under the control of a number of candidate genes. This multi-genetic control of tolerance traits might also be multifunctional, with extended action in response to a number of abiotic constraints. Thus, concrete efforts are required to breed for multifunctional candidate genes in order to boost plant stability under various abiotic constraints.
机译:尽管种植豆类在农业和环境方面都有优势,但豆类的生产受到各种环境限制,例如水或养分限制,霜冻或热胁迫以及土壤盐分,这可能是由于气候条件,耕地集约利用,土壤肥力下降和环境退化。因此,要开发出对环境约束具有弹性的更具可持续性的农业生态系统,就需要更好地了解植物对非生物约束的耐受性的关键机制。这篇综述着重介绍了豆科植物对非生物限制的耐受性,重点是土壤养分缺乏,干旱和盐碱化。更具体地说,讨论了谷物和牧草豆类适应非生物限制的生理和分子水平的最新进展。这种适应涉及复杂的多基因受控性状,其也涉及可能在许多候选基因的控制下调控的多个亚性状。这种对耐受性状的多基因控制也可能是多功能的,可以响应许多非生物限制而扩展作用。因此,需要进行种种努力来育种多功能候选基因,以增强植物在各种非生物限制条件下的稳定性。

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