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量化对干旱、盐害和冻害(影响植物水分状况的非生物胁迫)抗性的方法和概念。

Methods and concepts in quantifying resistance to drought, salt and freezing, abiotic stresses that affect plant water status.

作者信息

Verslues Paul E, Agarwal Manu, Katiyar-Agarwal Surekha, Zhu Jianhua, Zhu Jian-Kang

机构信息

Institute for Integrative Genome Biology and Department of Botany and Plant Sciences, University of California, Riverside, CA 92521, USA.

出版信息

Plant J. 2006 Feb;45(4):523-39. doi: 10.1111/j.1365-313X.2005.02593.x.

Abstract

The abiotic stresses of drought, salinity and freezing are linked by the fact that they all decrease the availability of water to plant cells. This decreased availability of water is quantified as a decrease in water potential. Plants resist low water potential and related stresses by modifying water uptake and loss to avoid low water potential, accumulating solutes and modifying the properties of cell walls to avoid the dehydration induced by low water potential and using protective proteins and mechanisms to tolerate reduced water content by preventing or repairing cell damage. Salt stress also alters plant ion homeostasis, and under many conditions this may be the predominant factor affecting plant performance. Our emphasis is on experiments that quantify resistance to realistic and reproducible low water potential (drought), salt and freezing stresses while being suitable for genetic studies where a large number of lines must be analyzed. Detailed protocols for the use of polyethylene glycol-infused agar plates to impose low water potential stress, assay of salt tolerance based on root elongation, quantification of freezing tolerance and the use of electrolyte leakage experiments to quantify cellular damage induced by freezing and low water potential are also presented.

摘要

干旱、盐度和冰冻等非生物胁迫存在关联,因为它们都会降低植物细胞可利用的水分。这种水分可利用性的降低被量化为水势的下降。植物通过调节水分吸收和损失以避免低水势、积累溶质、改变细胞壁特性以避免低水势引起的脱水,以及利用保护蛋白和机制来防止或修复细胞损伤从而耐受含水量降低,以此来抵抗低水势及相关胁迫。盐胁迫还会改变植物离子稳态,在许多情况下,这可能是影响植物表现的主要因素。我们重点关注的实验是量化对现实且可重复的低水势(干旱)、盐和冰冻胁迫的抗性,同时适用于必须分析大量株系的遗传学研究。本文还介绍了使用聚乙二醇灌注琼脂平板施加低水势胁迫、基于根伸长测定耐盐性、量化耐冻性以及利用电解质渗漏实验量化冰冻和低水势诱导的细胞损伤的详细方案。

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