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地中海地区 Quercus ilex 森林对极端干旱的叶片生理响应。

Leaf physiological responses to extreme droughts in Mediterranean Quercus ilex forest.

机构信息

DREAM, CEFE, CNRS, UMR 5175, 1919 route de Mende, F-34293 Montpellier, Cedex 5, France.

出版信息

Plant Cell Environ. 2010 Nov;33(11):1898-910. doi: 10.1111/j.1365-3040.2010.02193.x.

Abstract

Global climate change is expected to result in more frequent and intense droughts in the Mediterranean region. To understand forest response to severe drought, we used a mobile rainfall shelter to examine the impact of spring and autumn rainfall exclusion on stomatal (S(L) ) and non-stomatal (NS(L) ) limitations of photosynthesis in a Quercus ilex ecosystem. Spring rainfall exclusion, carried out during increasing atmospheric demand and leaf development, had a larger impact on photosynthesis than autumn exclusion, conducted at a time of mature foliage and decreasing vapour pressure deficit. The relative importance of NS(L) increased with drought intensity. S(L) and NS(L) were equal once total limitation (T(L) ) reached 60%, but NS(L) greatly exceeded S(L) during severe drought, with 76% NS(L) partitioned equally between mesophyll conductance (MC(L) ) and biochemical (B(L) ) limitations when T(L) reached 100%. Rainfall exclusion altered the relationship between leaf water potential and photosynthesis. In response to severe mid-summer drought stress, A(n) and V(cmax) were 75% and 72% lower in the spring exclusion plot than in the control plot at the same pre-dawn leaf water potential. Our results revealed changes in the relationship between photosynthetic parameters and water stress that are not currently included in drought parameterizations for modelling applications.

摘要

预计全球气候变化将导致地中海地区更频繁、更剧烈的干旱。为了了解森林对严重干旱的响应,我们使用可移动降雨屏蔽棚,研究了春季和秋季降雨排除对 Quercus ilex 生态系统中光合作用的气孔(S(L))和非气孔(NS(L))限制的影响。春季降雨排除在大气需求增加和叶片发育期间进行,对光合作用的影响大于秋季排除,秋季排除在叶片成熟和蒸汽压亏缺减少时进行。随着干旱强度的增加,NS(L)的相对重要性增加。一旦总限制(T(L))达到 60%,S(L)和 NS(L)就相等,但在严重干旱期间,NS(L)大大超过 S(L),当 T(L)达到 100%时,NS(L)中有 76%分配在胞间导度(MC(L))和生化(B(L))限制之间。降雨排除改变了叶片水势与光合作用之间的关系。在严重的仲夏干旱胁迫下,与对照相比,在春季排除区,同一清晨前叶片水势下,A(n)和 V(cmax)分别降低了 75%和 72%。我们的结果揭示了光合作用参数与水胁迫之间关系的变化,这些变化目前未包含在用于建模应用的干旱参数化中。

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