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比较气孔导度和保卫细胞膨压对表皮导度、叶-气蒸汽压差和温度操纵的响应的模型预测与实验数据:反馈机制能够解释所有观测结果。

Comparing model predictions and experimental data for the response of stomatal conductance and guard cell turgor to manipulations of cuticular conductance, leaf-to-air vapour pressure difference and temperature: feedback mechanisms are able to account for all observations.

作者信息

Eamus Derek, Taylor Daniel T, Macinnis-Ng Catriona M O, Shanahan Steve, De Silva Lionel

机构信息

Institute for Water and Environmental Resource Management, Department of Environmental Sciences, University of Technology Sydney, PO Box 123, NSW 2007, Australia.

出版信息

Plant Cell Environ. 2008 Mar;31(3):269-77. doi: 10.1111/j.1365-3040.2007.01771.x. Epub 2007 Dec 10.

Abstract

Stomata respond to increasing leaf-to-air vapour pressure difference (LAVPD) (D) by closing. The mechanism by which this occurs is debated. A role for feedback and peristomatal transpiration has been proposed. In this paper, we apply a recent mechanistic model of stomatal behaviour, and compare model and experimental data for the influence of increasing D on stomatal conductance. We manipulated cuticular conductance (g(c)) by three independent methods. First, we increased g(c) by using a solvent mixture applied to both leaf surfaces prior to determining stomatal responses to D; second, we increased g(c) by increasing leaf temperature at constant D; and third, we coated a small area of leaf with a light oil to decrease g(c). In all three experiments, experimental data and model outputs showed very close agreement. We conclude, from the close agreement between model and experimental data and the fact that manipulations of g(c), and hence cuticular transpiration, influenced g(s) in ways consistent with a feedback mechanism, that feedback is central in determining stomatal responses to D.

摘要

气孔会通过关闭来响应叶-气蒸汽压差(LAVPD,用D表示)的增加。这种现象发生的机制存在争议。有人提出了反馈和气孔周围蒸腾作用的作用。在本文中,我们应用了一个最近的气孔行为机制模型,并比较了模型和实验数据中D增加对气孔导度的影响。我们通过三种独立方法来操纵角质层导度(g(c))。第一,在确定气孔对D的响应之前,我们通过在叶片两面涂抹溶剂混合物来增加g(c);第二,在D恒定的情况下,通过提高叶片温度来增加g(c);第三,我们用轻质油覆盖叶片的一小部分区域以降低g(c)。在所有这三个实验中,实验数据和模型输出都显示出非常紧密的一致性。基于模型与实验数据之间的紧密一致性,以及操纵g(c)进而角质层蒸腾作用以与反馈机制一致的方式影响g(s)这一事实,我们得出结论,反馈在决定气孔对D的响应中起着核心作用。

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