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安全-效率权衡?跨物种光合作用、叶片水力特性与耐旱性的相关性。

Safety-efficiency tradeoffs? Correlations of photosynthesis, leaf hydraulics, and dehydration tolerance across species.

作者信息

Xiong Dongliang, Flexas Jaume

机构信息

National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.

Research Group on Plant Biology Under Mediterranean Conditions, Instituto de Investigaciones Agroambientales y de Economía del Agua (INAGEA), Universitat de Les Illes Balears, Carretera de Valldemossa Km 7.5Illes Balears, 07121, Palma, Spain.

出版信息

Oecologia. 2022 Oct;200(1-2):51-64. doi: 10.1007/s00442-022-05250-4. Epub 2022 Aug 30.

Abstract

The tradeoffs between carbon assimilation and hydraulic efficiencies and drought-tolerance traits on different scales are considered a central tenet in plant ecophysiology; however, no clear tradeoff between these traits has emerged in previous studies using woody angiosperms or grasses by investigating several hydraulic tolerance and gas exchange efficiency and/or water transport efficiency traits. In this study, we measured numerous efficiency, resistance, and leaf anatomical traits, including light-saturated gas exchange, leaf hydraulic vulnerability curves, pressure-volume curves, and leaf anatomical traits, in seven species with diverse drought tolerance. A substantial variation in photosynthetic rate, stomatal conductance, mesophyll conductance, maximum leaf hydraulic conductance (K), mesophyll anatomical traits, and leaf vein density across species was observed. Both mesophyll conductance and K were related to leaf anatomical traits, but other gas exchange traits were decoupled from K. Although the efficiency and tolerance traits varied widely across estimated species, no clear trade-off between safety traits and efficiency traits was observed. These findings suggested that postulated leaf-level drought tolerance-carbon assimilation and hydraulic efficiency tradeoff does not exist among distant species and that the fact that different leaf anatomical traits determine efficiency and tolerance capacity might contribute to the lack of such tradeoffs.

摘要

在不同尺度上,碳同化与水力效率以及耐旱性状之间的权衡被视为植物生态生理学的核心原则;然而,在先前使用木本被子植物或禾本科植物的研究中,通过研究几种水力耐受性、气体交换效率和/或水分运输效率性状,并未发现这些性状之间存在明显的权衡关系。在本研究中,我们测量了七种耐旱性不同的物种的众多效率、抗性和叶片解剖学性状,包括光饱和气体交换、叶片水力脆弱性曲线、压力-容积曲线和叶片解剖学性状。观察到不同物种间光合速率、气孔导度、叶肉导度、最大叶片水力导度(K)、叶肉解剖学性状和叶脉密度存在显著差异。叶肉导度和K均与叶片解剖学性状相关,但其他气体交换性状与K解耦。尽管不同物种间的效率和耐受性性状差异很大,但未观察到安全性状和效率性状之间存在明显的权衡关系。这些发现表明,在远缘物种之间不存在假定的叶片水平耐旱性-碳同化和水力效率权衡,并且不同的叶片解剖学性状决定效率和耐受能力这一事实可能导致了这种权衡关系的缺失。

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