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重新探讨植物的生长和呼吸:维持呼吸的定义——它是系统的一个突现属性,而不是系统内的一个独立过程——以及为什么呼吸:光合作用的比值是保守的。

Plant growth and respiration re-visited: maintenance respiration defined - it is an emergent property of, not a separate process within, the system - and why the respiration : photosynthesis ratio is conservative.

机构信息

Centre for Nutrition Modelling, Department of Animal & Poultry Science, University of Guelph, Guelph, ON, N1G 2W1, Canada.

出版信息

Ann Bot. 2011 Nov;108(7):1365-80. doi: 10.1093/aob/mcr238. Epub 2011 Sep 26.

Abstract

BACKGROUND AND AIMS

Plant growth and respiration still has unresolved issues, examined here using a model. The aims of this work are to compare the model's predictions with McCree's observation-based respiration equation which led to the 'growth respiration/maintenance respiration paradigm' (GMRP) - this is required to give the model credibility; to clarify the nature of maintenance respiration (MR) using a model which does not represent MR explicitly; and to examine algebraic and numerical predictions for the respiration:photosynthesis ratio.

METHODS

A two-state variable growth model is constructed, with structure and substrate, applicable on plant to ecosystem scales. Four processes are represented: photosynthesis, growth with growth respiration (GR), senescence giving a flux towards litter, and a recycling of some of this flux. There are four significant parameters: growth efficiency, rate constants for substrate utilization and structure senescence, and fraction of structure returned to the substrate pool.

KEY RESULTS

The model can simulate McCree's data on respiration, providing an alternative interpretation to the GMRP. The model's parameters are related to parameters used in this paradigm. MR is defined and calculated in terms of the model's parameters in two ways: first during exponential growth at zero growth rate; and secondly at equilibrium. The approaches concur. The equilibrium respiration:photosynthesis ratio has the value of 0·4, depending only on growth efficiency and recycling fraction.

CONCLUSIONS

McCree's equation is an approximation that the model can describe; it is mistaken to interpret his second coefficient as a maintenance requirement. An MR rate is defined and extracted algebraically from the model. MR as a specific process is not required and may be replaced with an approach from which an MR rate emerges. The model suggests that the respiration:photosynthesis ratio is conservative because it depends on two parameters only whose values are likely to be similar across ecosystems.

摘要

背景和目的

植物生长和呼吸仍然存在悬而未决的问题,本研究使用模型进行了探讨。本研究的目的是将模型的预测与 McCree 的基于观察的呼吸方程进行比较,该方程导致了“生长呼吸/维持呼吸范式”(GMRP)——这是使模型具有可信度所必需的;使用不明确表示维持呼吸(MR)的模型来澄清维持呼吸(MR)的性质;并检查呼吸:光合作用比的代数和数值预测。

方法

构建了一个具有结构和基质的两状态变量生长模型,适用于植物到生态系统的规模。代表了四个过程:光合作用、具有生长呼吸(GR)的生长、衰老导致流向凋落物的通量,以及部分通量的再循环。有四个重要参数:生长效率、基质利用和结构衰老的速率常数,以及返回基质池的结构分数。

主要结果

该模型可以模拟 McCree 关于呼吸的数据,为 GMRP 提供了另一种解释。模型的参数与该范式中使用的参数有关。MR 是根据模型的参数以两种方式定义和计算的:首先是在零生长速率下的指数生长期间;其次是在平衡时。这两种方法是一致的。平衡时的呼吸:光合作用比的值为 0.4,仅取决于生长效率和回收分数。

结论

McCree 的方程是模型可以描述的近似值;将他的第二个系数解释为维持需求是错误的。从模型中可以通过代数方法定义并提取出 MR 率。不需要特定的 MR 过程,可以用一种方法来替代,这种方法可以从中得出 MR 率。该模型表明,呼吸:光合作用比是保守的,因为它仅取决于两个参数,而这些参数在生态系统之间可能具有相似的值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f671/3197462/afcd7d17b023/mcr23801.jpg

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