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气孔密度和叶片含水量对叶片水分中¹⁸O富集的影响。

Effects of stomatal density and leaf water content on the ¹⁸O enrichment of leaf water.

作者信息

Larcher Leticia, Hara-Nishimura Ikuko, Sternberg Leonel

机构信息

Programa de Pós Graduação em Ecologia e Conservação, Universidade Federal do Paraná, Curitiba, Paraná, Brazil.

Graduate School of Science, Department of Botany, Kyoto University, Sakyo-ku, Kyoto, 606-8502, Japan.

出版信息

New Phytol. 2015 Apr;206(1):141-151. doi: 10.1111/nph.13154. Epub 2014 Nov 18.

Abstract

Leaf water isotopic composition is imprinted in several biomarkers of interest and it is imperative that we understand the isotopic enrichment of leaf water. Here, we test the effect of stomatal density and leaf water content on the oxygen isotopic composition of leaf water in transgenic Arabidopsis plants expressing different stomatal densities, and several other species showing a range of stomatal density. We grew Arabidopsis plants hydroponically and collected other species in the field. Stomatal density and leaf water content were determined for each plant. We measured transpiration and extracted leaf water for isotopic determination. Using these measurements and the current leaf water isotope model, we calculated several of the parameters related to leaf water isotopic enrichment. High stomatal density promoted leaf water isotope enrichment. No conclusion, however, can be drawn regarding the effect of leaf water content on leaf water isotope enrichment. Factors such as transpiration might mask the effect of stomatal density on leaf water isotopic enrichment. We propose a method by which stomatal density can be incorporated in the current Peclet model of leaf water isotope enrichment. These findings have important applications in the use of plant-based metabolic proxies in paleoclimate studies.

摘要

叶片水的同位素组成会烙印在几种相关生物标志物中,因此我们必须了解叶片水的同位素富集情况。在此,我们测试了气孔密度和叶片含水量对表达不同气孔密度的转基因拟南芥植株以及其他几种气孔密度各异的物种叶片水氧同位素组成的影响。我们通过水培方式种植拟南芥植株,并在野外采集其他物种。测定了每株植物的气孔密度和叶片含水量。我们测量了蒸腾作用,并提取叶片水用于同位素测定。利用这些测量结果和当前的叶片水同位素模型,我们计算了几个与叶片水同位素富集相关的参数。高气孔密度促进了叶片水同位素富集。然而,关于叶片含水量对叶片水同位素富集的影响,目前尚无定论。诸如蒸腾作用等因素可能会掩盖气孔密度对叶片水同位素富集的影响。我们提出了一种方法,可将气孔密度纳入当前的叶片水同位素富集佩克莱特模型中。这些发现对于在古气候研究中使用基于植物的代谢代理具有重要应用价值。

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