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消费者驱动的养分循环所产生的时空异质性对藻类多样性的影响。

Effects of temporal and spatial heterogeneities created by consumer-driven nutrient recycling on algal diversity.

作者信息

Kato Satoshi, Urabe Jotaro, Kawata Masakado

出版信息

J Theor Biol. 2007 Mar 21;245(2):364-77. doi: 10.1016/j.jtbi.2006.10.012. Epub 2006 Oct 25.

Abstract

A spatially explicit plant-herbivore model composed of planktonic herbivores, algal preys and nutrients was constructed to examine the effects of consumer-driven nutrient recycling (CNR) on the algal species richness with and without spatial structure. The model assumed that either of two essential nutrients (N and P) limited growth of algal populations and that consumer individuals moved randomly in the lattice and grazed all the algal species with the same efficiency. The results showed that when there was no CNR, the number of persistent algal species was affected by neither supply rates of external nutrients nor spatial structure and was consistently low. When consumers recycled nutrients according to their stoichiometry, the algal species richness changed with supply rates of external nutrients depending on spatial structure: the algal species richness decreased with increasing nutrient loadings when there were no spatial structure because CNR increased the probability of stochastic extinction of algal species by amplifying the oscillation of algae-consumer dynamics. However, when spatial structures were created by the migration of consumers, CNR increased the algal species richness in a range of nutrient loadings because spatial variation of grazing pressure functioned to stabilize the algal-consumer dynamics. The present study suggests that through grazing and nutrient recycling, consumer individuals can create ephemeral heterogeneity in growth environments for algal species and that this ephemerality is one of the keys to understanding algal species in nature.

摘要

构建了一个由浮游食草动物、藻类猎物和营养物质组成的空间明确的植物-食草动物模型,以研究消费者驱动的营养物质循环(CNR)对有无空间结构情况下藻类物种丰富度的影响。该模型假设两种必需营养物质(氮和磷)中的任何一种限制藻类种群的生长,并且消费者个体在晶格中随机移动,并以相同的效率啃食所有藻类物种。结果表明,当不存在CNR时,持久藻类物种的数量既不受外部营养物质供应速率的影响,也不受空间结构的影响,并且一直很低。当消费者根据其化学计量学循环利用营养物质时,藻类物种丰富度随外部营养物质供应速率而变化,这取决于空间结构:当不存在空间结构时,藻类物种丰富度随着营养负荷的增加而降低,因为CNR通过放大藻类-消费者动态的振荡增加了藻类物种随机灭绝的概率。然而,当通过消费者的迁移形成空间结构时,在一定范围的营养负荷下,CNR增加了藻类物种丰富度,因为放牧压力的空间变化起到了稳定藻类-消费者动态的作用。本研究表明,通过放牧和营养物质循环,消费者个体可以为藻类物种在生长环境中创造短暂的异质性,并且这种短暂性是理解自然界中藻类物种的关键之一。

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