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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Compound Synthesis or Growth and Development of Roots/Stomata Regulate Plant Drought Tolerance or Water Use Efficiency/Water Uptake Efficiency
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Compound Synthesis or Growth and Development of Roots/Stomata Regulate Plant Drought Tolerance or Water Use Efficiency/Water Uptake Efficiency

机译:根/气孔的复合合成或生长和发展调节植物干旱耐受或水利用效率/水吸收效率

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摘要

Water is crucial to plant growth and development because it serves as a medium for all cellular functions. Thus, the improvement of plant drought tolerance or water use efficiency/water uptake efficiency is important in modern agriculture. In this review, we mainly focus on new genetic factors for ameliorating drought tolerance or water use efficiency/water uptake efficiency of plants and explore the involvement of these genetic factors in the regulation of improving plant drought tolerance or water use efficiency/water uptake efficiency, which is a result of altered stomata density and improving root systems (primary root length, hair root growth, and lateral root number) and enhanced production of osmotic protectants, which is caused by transcription factors, proteinases, and phosphatases and protein kinases. These results will help guide the synthesis of a model for predicting how the signals of genetic and environmental stress are integrated at a few genetic determinants to control the establishment of either water use efficiency or water uptake efficiency. Collectively, these insights into the molecular mechanism underpinning the control of plant drought tolerance or water use efficiency/water uptake efficiency may aid future breeding or design strategies to increase crop yield.
机译:水是植物生长发育至关重要,因为它作为所有细胞功能的媒介。因此,植物耐旱性和水分利用效率的提高/水的吸收效率是现代农业的重要。在这次审查中,我们主要集中在新的遗传因素的改善摄取植物的效率耐旱性或水利用效率/水和探索在提高吸收效率植物耐旱性或水利用效率/水的调节这些遗传因素的介入,这是改变的气孔密度和改善的根系统(主根长,发根生长,和侧根数)和增强的渗透保护剂,其由转录因子,蛋白酶,和磷酸酶和蛋白激酶引起的生产的结果。这些结果将有助于指导模型的合成预测如何遗传和环境应力的信号在几个遗传决定被集成到控制建立的任水分利用效率或吸水效率。总的来说,这些见解的分子机制托换植物耐旱性或水利用效率/水的吸收效率可能有助于未来的育种或设计策略的控制,以提高农作物的产量。

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