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理解硼在植物适应土壤盐度中的作用。

Understanding the role of boron in plant adaptation to soil salinity.

机构信息

International Research Center for Environmental Membrane Biology, Foshan University, Foshan, China.

Tasmanian Institute of Agriculture, University of Tasmania, Hobart, Australia.

出版信息

Physiol Plant. 2024 May-Jun;176(3):e14358. doi: 10.1111/ppl.14358.

Abstract

Soil salinity is a major environmental constraint affecting the sustainability and profitability of agricultural production systems. Salinity stress tolerance has been present in wild crop relatives but then lost, or significantly weakened, during their domestication. Given the genetic and physiological complexity of salinity tolerance traits, agronomical solutions may be a suitable alternative to crop breeding for improved salinity stress tolerance. One of them is optimizing fertilization practices to assist plants in dealing with elevated salt levels in the soil. In this review, we analyse the causal relationship between the availability of boron (an essential metalloid micronutrient) and plant's adaptive responses to salinity stress at the whole-plant, cellular, and molecular levels, and a possibility of using boron for salt stress mitigation. The topics covered include the impact of salinity and the role of boron in cell wall remodelling, plasma membrane integrity, hormonal signalling, and operation of various membrane transporters mediating plant ionic and water homeostasis. Of specific interest is the role of boron in the regulation of H-ATPase activity whose operation is essential for the control of a broad range of voltage-gated ion channels. The complex relationship between boron availability and expression patterns and the operation of aquaporins is also discussed.

摘要

土壤盐度是影响农业生产系统可持续性和盈利能力的主要环境限制因素。在野生作物亲缘种中存在耐盐性,但在驯化过程中失去或显著减弱了这种特性。鉴于耐盐性性状的遗传和生理复杂性,农业解决方案可能是改善耐盐性的作物培育的替代方案。其中之一是优化施肥实践,以帮助植物应对土壤中升高的盐分水平。在这篇综述中,我们分析了硼(一种必需的类金属微量元素)的可用性与植物在整体、细胞和分子水平上对盐胁迫适应性反应之间的因果关系,以及硼在减轻盐胁迫方面的应用可能性。涵盖的主题包括盐度的影响以及硼在细胞壁重塑、质膜完整性、激素信号转导以及介导植物离子和水分稳态的各种膜转运体运作中的作用。特别感兴趣的是硼在调节 H-ATP 酶活性中的作用,该酶的运作对于控制广泛的电压门控离子通道是必不可少的。还讨论了硼的可用性与水通道蛋白的表达模式和运作之间的复杂关系。

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