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Sustaining and enhancing crop productivity in an era of climate change

机译:在气候变化时代维持和提高作物生产力

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摘要

The earth is experiencing a faster change in climate in the 21st century than it had in the past. Abiotic stresses such as drought and salinity, exacerbated by the fast changing climatic conditions pose a major hurdle in sustaining crop productivity. Developing crop plants able to yield better under abiotic stresses offer hope in this situation. Understanding abiotic stress-tolerance mechanisms in a plant system is crucial to improve the stress tolerance. The present review discusses broad molecular mechanisms of plant abiotic stress tolerance and outlines the latest biotechnological advances aiding plant abiotic stress research, with particular reference to the work carried out at the M.S. Swaminathan Research Foundation. The advantages of using extremophilesas model organisms (as conceptualized by M. S. Swaminathan) for identification of novel genetic combinations and understanding stress tolerance are discussed here.
机译:与过去相比,地球在21世纪经历了更快的气候变化。快速变化的气候条件加剧了非生物胁迫(如干旱和盐碱化),这是维持作物生产力的主要障碍。在这种情况下,发展能够在非生物胁迫下产生更好收成的农作物植物提供了希望。了解植物系统中的非生物胁迫耐受机制对于提高胁迫耐受性至关重要。本综述讨论了植物非生物胁迫耐受性的广泛分子机制,并概述了有助于植物非生物胁迫研究的最新生物技术进展,特别是参考了M.S. Swaminathan研究基金会。本文讨论了使用极端嗜热菌模型生物(由M. S. Swaminathan概念化)识别新型遗传组合和理解胁迫耐受性的优势。

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