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捕食者的食物宽度会影响自下而上和自上而下控制猎物生物量及多样性的相对重要性。

Predator diet breadth influences the relative importance of bottom-up and top-down control of prey biomass and diversity.

作者信息

Jiang Lin, Morin Peter J

机构信息

Department of Ecology, Evolution, and Natural Resources, Cook College, Rutgers University, New Brunswick, New Jersey 08901, USA.

出版信息

Am Nat. 2005 Mar;165(3):350-63. doi: 10.1086/428300. Epub 2005 Feb 9.

Abstract

We investigated the effects of predator diet breadth on the relative importance of bottom-up and top-down control of prey assemblages, using microbial food webs containing bacteria, bacterivorous protists and rotifers, and two different top predators. The experiment used a factorial design that independently manipulated productivity and the presence or absence of two top predators with different diet breadths. Predators included a "specialist" predatory ciliate Euplotes aediculatus, which was restricted to feeding on small prey, and a "generalist" predatory ciliate Stentor coeruleus, which could feed on the entire range of prey sizes. Both total prey biomass and prey diversity increased with productivity in the predator-free control and specialist predator treatments, a pattern consistent with bottom-up control, but both remained unchanged by productivity in the generalist predator treatment, a pattern consistent with top-down control. Linear food chain models adequately described responses in the generalist predator treatment, whereas food web models incorporating edible and inedible prey (which can coexist in the absence of predators) adequately described responses in the specialist predator treatment. These results suggest that predator diet breadth can play an important role in modulating the relative strength of bottom-up and top-down forces in ecological communities.

摘要

我们利用包含细菌、食细菌原生生物和轮虫的微生物食物网以及两种不同的顶级捕食者,研究了捕食者饮食广度对猎物组合的自下而上和自上而下控制的相对重要性的影响。该实验采用析因设计,独立操纵生产力以及两种具有不同饮食广度的顶级捕食者的有无。捕食者包括一种“特化”的捕食性纤毛虫——艾氏游仆虫,它只以小型猎物为食;以及一种“泛化”的捕食性纤毛虫——天蓝喇叭虫,它能捕食各种大小的猎物。在无捕食者的对照处理和特化捕食者处理中,猎物总生物量和猎物多样性均随生产力的增加而增加,这一模式与自下而上的控制一致,但在泛化捕食者处理中,两者均不受生产力变化的影响,这一模式与自上而下的控制一致。线性食物链模型充分描述了泛化捕食者处理中的响应,而纳入可食和不可食猎物(在无捕食者时可共存)的食物网模型充分描述了特化捕食者处理中的响应。这些结果表明,捕食者饮食广度在调节生态群落中自下而上和自上而下力量的相对强度方面可能发挥重要作用。

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