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气孔数量对二氧化碳和湿度的响应:受蒸腾速率和脱落酸的调控

Response of stomatal numbers to CO2 and humidity: control by transpiration rate and abscisic acid.

作者信息

Lake J A, Woodward F I

机构信息

Department of Animal and Plant Sciences, University of Sheffield, Sheffield S10 2TN, UK.

出版信息

New Phytol. 2008 Jul;179(2):397-404. doi: 10.1111/j.1469-8137.2008.02485.x.

Abstract

The observation that stomatal density (number mm(-2)) on herbarium leaves had decreased over the last century represents clear evidence that plants have responded to anthropogenic increases in CO2 concentration. The mechanism of the response has proved elusive but here it is shown that density responses to both CO2 concentration and humidity are correlated with changes in whole-plant transpiration and leaf abscisic acid (ABA) concentration. The transpiration rate of a range of accessions of Arabidopsis thaliana was manipulated by changing CO2 concentration, humidity and by exogenous application of ABA. Stomatal density increased with transpiration and leaf ABA concentration. A common property of signal transduction systems is that they rapidly lose their ability to respond to the co-associated stimulus. Pathways of water movement within the plant are connected and so variations in supply and demand can be signalled throughout the plant directly, modifying stomatal aperture of mature leaves and stomatal density of developing leaves. Furthermore, the system identified here does not conform to the loss of ability to respond. A putative mechanism is proposed for the control of stomatal density by transpiration rate and leaf ABA concentration.

摘要

标本馆叶片上的气孔密度(每平方毫米的数量)在过去一个世纪中有所下降,这一观察结果清楚地证明了植物已对人为增加的二氧化碳浓度做出了反应。尽管这种反应机制一直难以捉摸,但本文表明,气孔密度对二氧化碳浓度和湿度的反应与整株植物蒸腾作用及叶片脱落酸(ABA)浓度的变化相关。通过改变二氧化碳浓度、湿度以及外源施用ABA,对一系列拟南芥种质的蒸腾速率进行了调控。气孔密度随蒸腾作用和叶片ABA浓度的增加而增加。信号转导系统的一个共同特性是它们会迅速丧失对共同关联刺激做出反应的能力。植物体内的水分移动途径是相互关联的,因此供需变化能够直接在整株植物中发出信号,从而改变成熟叶片的气孔孔径以及发育中叶片的气孔密度。此外,本文所确定的系统并不符合反应能力丧失的情况。针对蒸腾速率和叶片ABA浓度对气孔密度的控制,提出了一种假定机制。

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