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夏季水分亏缺期间的叶片水分关系:澳大利亚西南部不同植物群落之间在膨压维持和叶片结构变化方面的差异响应。

Leaf water relations during summer water deficit: differential responses in turgor maintenance and variation in leaf structure among different plant communities in south-western Australia.

作者信息

Mitchell Patrick J, Veneklaas Erik J, Lambers Hans, Burgess Stephen S O

机构信息

School of Plant Biology, The University of Western Australia and Cooperative Research Centre for Plant-Based Management of Dryland Salinity, 35 Stirling Highway, Crawley, WA 6009, Australia.

出版信息

Plant Cell Environ. 2008 Dec;31(12):1791-802. doi: 10.1111/j.1365-3040.2008.01882.x. Epub 2008 Aug 27.

Abstract

We measured leaf water relations and leaf structural traits of 20 species from three communities growing along a topographical gradient. Our aim was to assess variation in seasonal responses in leaf water status and leaf tissue physiology between sites and among species in response to summer water deficit. Species from a ridge-top heath community showed the greatest reductions in pre-dawn leaf water potentials (Psi(leaf)) and stomatal conductance during summer; species from a valley-floor woodland and a midslope mallee community showed less reductions in these parameters. Heath species also displayed greater seasonal reduction in turgor-loss point (Psi(TLP)) than species from woodland or mallee communities. In general, species that had larger reductions in Psi(leaf) during summer showed significant shifts in either their osmotic potential at full turgor (Psi(pi 100); osmotic adjustment) or in tissue elasticity (epsilon(max)). Psi(pi 100) and epsilon(max) were negatively correlated, during both spring and summer, suggesting a trade-off between these different mechanisms to cope with water stress. Specific leaf area varied greatly among species, and was significantly correlated with seasonal changes in Psi(TLP) and pre-dawn Psi(leaf). These correlations suggest that leaf structure is a prerequisite for cellular mechanisms to be effective in adjusting to water deficit.

摘要

我们测量了沿地形梯度生长的三个群落中20个物种的叶片水分关系和叶片结构特征。我们的目的是评估不同地点以及不同物种之间,叶片水分状况和叶片组织生理学的季节性响应差异,以应对夏季水分亏缺。来自山脊顶部石南群落的物种在夏季黎明前叶片水势(Ψ(leaf))和气孔导度的降低幅度最大;来自谷底林地和山坡中部桉树林群落的物种在这些参数上的降低幅度较小。石南物种在膨压损失点(Ψ(TLP))的季节性降低也比林地或桉树林群落的物种更大。一般来说,夏季Ψ(leaf)降低幅度较大的物种,其完全膨压下的渗透势(Ψ(π100);渗透调节)或组织弹性(ε(max))会发生显著变化。在春季和夏季,Ψ(π100)和ε(max)均呈负相关,这表明在应对水分胁迫的这些不同机制之间存在权衡。比叶面积在不同物种间差异很大,并且与Ψ(TLP)和黎明前Ψ(leaf)的季节性变化显著相关。这些相关性表明,叶片结构是细胞机制有效适应水分亏缺的先决条件。

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