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高温导致轻度干旱下的负全株碳平衡。

High temperature causes negative whole-plant carbon balance under mild drought.

机构信息

Max Planck Institute for Biogeochemistry, Jena, 07745, Germany.

Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, 666303, China.

出版信息

New Phytol. 2013 Oct;200(2):330-339. doi: 10.1111/nph.12400. Epub 2013 Jul 4.

Abstract

Theoretically, progressive drought can force trees into negative carbon (C) balance by reducing stomatal conductance to prevent water loss, which also decreases C assimilation. At higher temperatures, negative C balance should be initiated at higher soil moisture because of increased respiratory demand and earlier stomatal closure. Few data are available on how these theoretical relationships integrate over the whole plant. We exposed Thuja occidentalis to progressive drought under three temperature conditions (15, 25, and 35°C), and measured C and water fluxes using a whole-tree chamber design. High transpiration rates at higher temperatures led to a rapid decline in soil moisture. During the progressive drought, soil moisture-driven changes in photosynthesis had a greater impact on the whole-plant C balance than respiration. The soil moisture content at which whole-plant C balance became negative increased with temperature, mainly as a result of higher respiration rates and an earlier onset of stomatal closure under a warmer condition. Our results suggest that the effect of drought on whole-plant C balance is highly temperature-dependent. High temperature causes a negative C balance even under mild drought and may increase the risk of C starvation.

摘要

从理论上讲,渐进式干旱可以通过降低气孔导度来防止水分流失,从而迫使树木进入负碳(C)平衡,这也会减少 C 的同化。在较高的温度下,由于呼吸需求增加和较早的气孔关闭,负 C 平衡应该在较高的土壤湿度下开始。关于这些理论关系如何在整个植物中整合,可用的数据很少。我们在三种温度条件下(15、25 和 35°C)将西洋杉暴露在渐进式干旱下,并使用整树室设计测量 C 和水通量。较高的温度导致蒸腾速率较高,从而导致土壤湿度迅速下降。在渐进式干旱过程中,土壤湿度驱动的光合作用变化对整个植物的 C 平衡的影响大于呼吸作用。随着温度的升高,整个植物 C 平衡变为负值的土壤湿度含量增加,主要是由于在较温暖的条件下呼吸速率较高和气孔较早关闭。我们的结果表明,干旱对整个植物 C 平衡的影响高度依赖于温度。高温甚至在轻度干旱下也会导致负 C 平衡,并可能增加 C 饥饿的风险。

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