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马来西亚半岛东南亚热带雨林叶片气体交换参数的垂直变化。

Vertical variation in leaf gas exchange parameters for a Southeast Asian tropical rainforest in Peninsular Malaysia.

机构信息

Laboratory of Forest Hydrology, Division of Environmental Science and Technology, Graduate School of Agriculture, Kyoto University, Kyoto, 606-8502, Japan.

出版信息

J Plant Res. 2012 Nov;125(6):735-48. doi: 10.1007/s10265-012-0495-5. Epub 2012 May 27.

Abstract

Vertical variation in leaf gas exchange characteristics of trees grown in a lowland dipterocarp forest in Peninsular Malaysia was investigated. Maximum net photosynthetic rate, stomatal conductance, and electron transport rate of leaves at the upper canopy, lower canopy, and forest floor were studied in situ with saturated condition photosynthetic photon flux density. The dark respiration rate of leaves at the various heights was also studied. Relationships among gas exchange characteristics, and also with nitrogen content per unit leaf area and leaf dry matter per area were clearly detected, forming general equations representing the vertical profile of several important parameters related to gas exchange. Numerical analysis revealed that the vertical distribution of gas exchange parameters was well determined showing both larger carbon gain for the whole canopy and at the same time positive carbon gain for the leaves of the lowest layer. For correct estimation of gas exchange at both leaf and canopy scales using multi-layer models, it is essential to consider the vertical distribution of gas exchange parameters with proper scaling coefficients.

摘要

在马来西亚半岛低地的龙脑香林里,研究了树木叶片气体交换特性的垂直变化。利用饱和条件下的光合光子通量密度,对树冠上层、下层和林地板的叶片最大净光合速率、气孔导度和电子传递速率进行了原位研究。还研究了不同高度叶片的暗呼吸速率。叶片气体交换特性与单位叶面积氮含量和叶面积干重之间的关系明显,形成了代表与气体交换有关的几个重要参数的垂直分布的一般方程。数值分析表明,气体交换参数的垂直分布是确定的,这表明整个树冠的碳增益较大,同时最底层叶片的碳增益也为正。为了使用多层模型正确估计叶片和冠层尺度的气体交换,必须考虑气体交换参数的垂直分布,并使用适当的缩放系数。

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