首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Propagule supply controls grazer community structure and primary production in a benthic marine ecosystem
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Propagule supply controls grazer community structure and primary production in a benthic marine ecosystem

机译:繁殖体供应控制底栖海洋生态系统中的放牧者群落结构和初级生产

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Early theories of species diversity proposed that communities at equilibrium are saturated with species. However, experiments in plant communities suggest that many communities are unsatur-ated and species richness can be increased by adding propagules of new species. We experimentally tested for community saturation and measured the effects of propagule supply on community structure in a benthic marine system. We manipulated propagule supply (arrival of individuals of numerous species) of mobile grazers in experimental mesocosms over multiple generations and, unlike previous tests, we examined the cascading effects of propagule supply on prey (macroalgae) biomass. We found little evidence for saturation, despite the absence of processes such as disturbance and predation that are thought to alleviate saturation in nature. Increasing propagule supply increased the total number of species and made rare species more abundant. Perhaps surprisingly, given the strong effect of propagule supply on species richness, supply-related changes in body size and composition suggest that competitive interactions remained important. Grazer supply also had strong cascading effects on primary production, possibly because of dietary complementarity modified by territorial behavior. Our results indicate that propagule supply can directly influence the diversity and composition of communities of mobile animals. Furthermore, the supply of consumer propagules can have strong indirect effects on prey and fundamental ecosystem properties.
机译:早期的物种多样性理论提出,处于平衡状态的社区充满了物种。但是,植物群落中的实验表明,许多群落是不饱和的,可以通过添加新物种的繁殖来增加物种丰富度。我们通过实验测试了群落的饱和度,并测量了底栖海洋系统中繁殖体供应对群落结构的影响。我们在实验性中观世代中操纵了移动放牧者的繁殖体供应(多种物种的到达),并且与以前的测试不同,我们检查了繁殖体供应对猎物(巨藻)生物量的级联效应。尽管没有诸如扰动和掠食这样的过程被认为可以减轻自然界的饱和,但我们几乎没有发现饱和的证据。繁殖体供应的增加增加了物种总数,并使稀有物种更加丰富。令人惊讶的是,鉴于繁殖体供应对物种丰富性的强烈影响,与供应相关的体型和组成变化表明竞争性相互作用仍然很重要。 Grazer供应对初级生产也有很强的连锁效应,这可能是因为领土行为改变了饮食的互补性。我们的结果表明,繁殖体的供应可以直接影响流动动物群落的多样性和组成。此外,消费者繁殖体的供应可能对猎物和基本的生态系统特性产生强烈的间接影响。

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