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根水导率的变化促进了水稻(Oryza sativa L.)品种对盐和渗透胁迫的整体水力响应。

Changes in root hydraulic conductivity facilitate the overall hydraulic response of rice (Oryza sativa L.) cultivars to salt and osmotic stress.

机构信息

School of Biology and Environmental Sciences, University College Dublin (UCD), Belfield, Dublin 4, Republic of Ireland.

出版信息

Plant Physiol Biochem. 2017 Apr;113:64-77. doi: 10.1016/j.plaphy.2017.02.001. Epub 2017 Feb 2.

Abstract

The aim of the present work was to assess the significance of changes in root AQP gene expression and hydraulic conductivity (Lp) in the regulation of water balance in two hydroponically-grown rice cultivars (Azucena, Bala) which differ in root morphology, stomatal regulation and aquaporin (AQP) isoform expression. Plants were exposed to NaCl (25 mM, 50 mM) and osmotic stress (5%, 10% PEG6000). Root Lp was determined for exuding root systems (osmotic forces driving water uptake; 'exudation Lp') and transpiring plants (hydrostatic forces dominating; 'transpiration-Lp'). Gene expression was analysed by qPCR. Stress treatments caused a consistent and significant decrease in plant growth, transpirational water loss, stomatal conductance, shoot-to-root surface area ratio and root Lp. Comparison of exudation-with transpiration-Lp supported a significant contribution of AQP-facilitated water flow to root water uptake. Changes in root Lp in response to treatments were correlated much stronger with root morphological characteristics, such as the number of main and lateral roots, surface area ratio of root to shoot and plant transpiration rate than with AQP gene expression. Changes in root Lp, involving AQP function, form an integral part of the plant hydraulic response to stress and facilitate changes in the root-to-shoot surface area ratio, transpiration and stomatal conductance.

摘要

本研究旨在评估根系 AQP 基因表达和水力传导率(Lp)变化在调控两种水培水稻品种(Azucena、Bala)水分平衡中的意义。这两个品种在根系形态、气孔调节和水通道蛋白(AQP)同工型表达方面存在差异。将植物暴露于 NaCl(25mM、50mM)和渗透胁迫(5%、10%PEG6000)中。通过渗出根系(吸水的渗透力;“渗出 Lp”)和蒸腾植物(占主导地位的静水压力;“蒸腾-Lp”)测定根系 Lp。通过 qPCR 分析基因表达。胁迫处理导致植物生长、蒸腾失水、气孔导度、根冠比和根系 Lp 持续显著下降。渗出 Lp 与蒸腾-Lp 的比较支持 AQP 促进的水流对根水分吸收有重要贡献。根系 Lp 的变化对处理的响应与根系形态特征(如主根和侧根的数量、根冠比和植物蒸腾速率)的相关性要强得多,而与 AQP 基因表达的相关性较弱。涉及 AQP 功能的根系 Lp 变化是植物对胁迫水力响应的一个组成部分,有利于根冠比、蒸腾和气孔导度的变化。

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