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根冠比及植物对土壤养分和光照竞争的分析处理

An analytical treatment of root-to-shoot ratio and plant competition for soil nutrient and light.

作者信息

Reynolds H L, Pacala S W

出版信息

Am Nat. 1993 Jan;141(1):51-70. doi: 10.1086/285460.

Abstract

By restricting biomass allocation to two compartments only-roots and leaves-we are able to treat plant resource competition analytically. We derive Ai, the optimum allocation strategy for invasion into a bare habitat, and Af, the allocation strategy of the dominant species in an equilibrium habitat. Furthermore, we prove that in a given habitat succession proceeds from species Ai to species Af, as long as enough intermediate species are present. Analysis of the relationship between Ai and Af and the soil nutrient supply and disturbance rates of a habitat predicts that a dichotomy exists in succession. Low soil nutrient supply and disturbance rates favor successions from rooty to leafy species, and high soil nutrient supply and disturbance rates favor the converse. Experimental research is needed to determine whether this pattern exists in nature. Light "consumption" by plants is fundamentally different from soil nutrient consumption in our model. This difference in light and nutrient consumption makes all possible two-species equilibria unstable and leads to founder control. In our model founder control can result in arrested succession and contributes to community diversity.

摘要

通过仅将生物量分配限制在两个部分——根和叶,我们能够对植物资源竞争进行分析处理。我们推导出入侵裸地生境的最优分配策略Ai以及平衡生境中优势物种的分配策略Af。此外,我们证明,只要存在足够多的中间物种,在给定生境中演替会从物种Ai向物种Af发展。对Ai与Af之间的关系以及生境的土壤养分供应和干扰率的分析预测,演替中存在一种二分法。低土壤养分供应和干扰率有利于从多根物种到多叶物种的演替,而高土壤养分供应和干扰率则有利于相反的演替。需要进行实验研究来确定这种模式在自然界中是否存在。在我们的模型中,植物对光的“消耗”与对土壤养分的消耗有根本区别。光和养分消耗的这种差异使得所有可能的两物种平衡都不稳定,并导致奠基者控制。在我们的模型中,奠基者控制可能导致演替停滞,并有助于群落多样性。

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