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硅、磷和铁缺乏对低地和高地水稻品种生长的个体与组合效应。

Individual versus Combinatorial Effects of Silicon, Phosphate, and Iron Deficiency on the Growth of Lowland and Upland Rice Varieties.

机构信息

Agronomy Division, Department of Plant and Soil Sciences, Faculty of Agriculture, Chiang Mai University, Chiang Mai 50200, Thailand.

BPMP, Université de Montpellier, CNRS, INRA, SupAgro, 2 Place Pierre Viala, 34060 Montpellier, France.

出版信息

Int J Mol Sci. 2018 Mar 18;19(3):899. doi: 10.3390/ijms19030899.

Abstract

Mineral nutrient homeostasis is essential for plant growth and development. Recent research has demonstrated that the occurrence of interactions among the mechanisms regulating the homeostasis of different nutrients in plants is a general rule rather than an exception. Therefore, it is important to understand how plants regulate the homeostasis of these elements and how multiple mineral nutrient signals are wired to influence plant growth. Silicon (Si) is not directly involved in plant metabolism but it is an essential element for a high and sustainable production of crops, especially rice, because of its high content in the total shoot dry weight. Although some mechanisms underlying the role of Si in plants responses to both abiotic and biotic stresses have been proposed, the involvement of Si in regulating plant growth in conditions where the availability of essential macro- and micronutrients changes remains poorly investigated. In this study, the existence of an interaction between Si, phosphate (Pi), and iron (Fe) availability was examined in lowland (Suphanburi 1, SPR1) and upland (Kum Hom Chiang Mai University, KH CMU) rice varieties. The effect of Si and/or Fe deficiency on plant growth, Pi accumulation, Pi transporter expression (), and Pi root-to-shoot translocation in these two rice varieties grown under individual or combinatorial nutrient stress conditions were determined. The phenotypic, physiological, and molecular data of this study revealed an interesting tripartite Pi-Fe-Si homeostasis interaction that influences plant growth in contrasting manners in the two rice varieties. These results not only reveal the involvement of Si in modulating rice growth through an interaction with essential micro- and macronutrients, but, more importantly, they opens new research avenues to uncover the molecular basis of Pi-Fe-Si signaling crosstalk in plants.

摘要

矿质养分稳态对于植物的生长和发育至关重要。最近的研究表明,不同养分在植物体内的稳态调节机制之间发生相互作用是一种普遍现象,而不是例外。因此,了解植物如何调节这些元素的稳态以及如何将多种矿质养分信号整合来影响植物生长是很重要的。硅(Si)虽然不直接参与植物代谢,但由于其在地上部干重中的高含量,Si 是作物特别是水稻高产和可持续生产的必需元素。尽管已经提出了 Si 在植物对非生物和生物胁迫反应中的作用的一些机制,但 Si 在调节必需的大量和微量元素供应变化条件下植物生长的作用仍知之甚少。在这项研究中,研究了 Si、磷酸盐(Pi)和铁(Fe)可用性之间的相互作用,研究对象为低地(Suphanburi 1,SPR1)和高地(Kum Hom Chiang Mai University,KH CMU)水稻品种。研究了 Si 和/或 Fe 缺乏对这两种水稻品种在单一或组合养分胁迫条件下生长时的植物生长、Pi 积累、Pi 转运体表达()和 Pi 根到地上部转运的影响。这项研究的表型、生理和分子数据揭示了一种有趣的三方 Pi-Fe-Si 稳态相互作用,这种相互作用以不同的方式影响两种水稻品种的植物生长。这些结果不仅表明 Si 通过与必需的微量和大量营养素相互作用来调节水稻的生长,而且更重要的是,它们为揭示植物中 Pi-Fe-Si 信号串扰的分子基础开辟了新的研究途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0497/5877760/5918556d658a/ijms-19-00899-g001.jpg

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