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了解植物对磷饥饿的反应,通过生物技术手段提高植物对磷缺乏的耐受性。

Understanding plant responses to phosphorus starvation for improvement of plant tolerance to phosphorus deficiency by biotechnological approaches.

机构信息

Department of Plant Biotechnology, Chonnam National University , Buk-Gu, Gwangju , Korea and.

出版信息

Crit Rev Biotechnol. 2014 Mar;34(1):16-30. doi: 10.3109/07388551.2013.783549. Epub 2013 Apr 16.

Abstract

In both prokaryotes and eukaryotes, including plants, phosphorus (P) is an essential nutrient that is involved in various biochemical processes, such as lipid metabolism and the biosynthesis of nucleic acids and cell membranes. P also contributes to cellular signaling cascades by function as mediators of signal transduction and it also serves as a vital energy source for a wide range of biological functions. Due to its intensive use in agriculture, P resources have become limited. Therefore, it is critically important in the future to develop scientific strategies that aim to increase P use efficiency and P recycling. In addition, the biologically available soluble form of P for uptake (phosphate; Pi) is readily washed out of topsoil layers, resulting in serious environmental pollution. In addition to this environmental concern, the wash out of Pi from topsoil necessitates a continuous Pi supply to maintain adequate levels of fertilization, making the situation worse. As a coping mechanism to P stress, plants are known to undergo drastic cellular changes in metabolism, physiology, hormonal balance and gene expression. Understanding these molecular, physiological and biochemical responses developed by plants will play a vital role in improving agronomic practices, resource conservation and environmental protection as well as serving as a foundation for the development of biotechnological strategies, which aim to improve P use efficiency in crops. In this review, we will discuss a variety of plant responses to low P conditions and various molecular mechanisms that regulate these responses. In addition, we also discuss the implication of this knowledge for the development of plant biotechnological applications.

摘要

在原核生物和真核生物中,包括植物,磷(P)是一种必需的营养物质,参与各种生化过程,如脂代谢和核酸及细胞膜的生物合成。P 还通过作为信号转导的介质参与细胞信号级联反应,它也是许多生物功能的重要能量来源。由于农业中 P 的大量使用,P 资源变得有限。因此,未来开发旨在提高 P 利用效率和 P 循环的科学策略至关重要。此外,可用于生物吸收的可溶性 P 形式(磷酸盐;Pi)很容易从表土层中冲洗掉,导致严重的环境污染。除了这种环境问题外,从表土中冲洗出 Pi 还需要持续供应 Pi 以维持足够的施肥水平,使情况变得更糟。作为对 P 胁迫的应对机制,植物在代谢、生理、激素平衡和基因表达方面经历了剧烈的细胞变化。了解植物所产生的这些分子、生理和生化反应将在改善农业实践、资源保护和环境保护以及为旨在提高作物 P 利用效率的生物技术策略的发展提供基础方面发挥重要作用。在这篇综述中,我们将讨论植物对低 P 条件的各种反应以及调节这些反应的各种分子机制。此外,我们还讨论了这些知识对植物生物技术应用发展的意义。

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