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Sugarcane Water Stress Tolerance Mechanisms and Its Implications on Developing Biotechnology Solutions

机译:甘蔗水分胁迫耐受机制及其对生物技术解决方案的启示

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摘要

Sugarcane is a unique crop with the ability to accumulate high levels of sugar and is a commercially viable source of biomass for bioelectricity and second-generation bioethanol. Water deficit is the single largest abiotic stress affecting sugarcane productivity and the development of water use efficient and drought tolerant cultivars is an imperative for all major sugarcane producing countries. This review summarizes the physiological and molecular studies on water deficit stress in sugarcane, with the aim to help formulate more effective research strategies for advancing our knowledge on genes and mechanisms underpinning plant response to water stress. We also overview transgenic studies in sugarcane, with an emphasis on the potential strategies to develop superior sugarcane varieties that improve crop productivity in drought-prone environments.
机译:甘蔗是一种具有高糖积累能力的独特作物,并且是商业上可行的生物电和第二代生物乙醇生物质来源。缺水是影响甘蔗生产力的最大的非生物胁迫,对所有主要的甘蔗生产国来说,发展高效用水和耐旱的品种是当务之急。这篇综述总结了对甘蔗水分亏缺胁迫的生理和分子研究,目的是帮助制定更有效的研究策略,以增进我们对植物对水分胁迫响应的基因和机制的认识。我们还概述了在甘蔗中进行转基因研究,重点是开发在干旱多发环境中提高农作物生产力的优质甘蔗品种的潜在策略。

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