首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Prey size diversity hinders biomass trophic transfer and predator size diversity promotes it in planktonic communities
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Prey size diversity hinders biomass trophic transfer and predator size diversity promotes it in planktonic communities

机译:猎物大小的多样性阻碍了生物质的营养转移而捕食者的大小多样性则促进了浮游生物的发展。

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摘要

Body size exerts multiple effects on plankton food-web interactions. However, the influence of size structure on trophic transfer remains poorly quantified in the field. Here, we examine how the size diversity of prey (nano-microplankton) and predators (mesozooplankton) influence trophic transfer efficiency (using biomass ratio as a proxy) in natural marine ecosystems. Our results support previous studies on single trophic levels: transfer efficiency decreases with increasing prey size diversity and is enhanced with greater predator size diversity. We further show that communities with low nano-microplankton size diversity and high mesozooplankton size diversity tend to occur in warmer environments with low nutrient concentrations, thus promoting trophic transfer to higher trophic levels in those conditions. Moreover, we reveal an interactive effect of predator and prey size diversities: the positive effect of predator size diversity becomes influential when prey size diversity is high. Mechanistically, the negative effect of prey size diversity on trophic transfer may be explained by unicellular size-based metabolic constraints as well as trade-offs between growth and predation avoidance with size, whereas increasing predator size diversity may enhance diet niche partitioning and thus promote trophic transfer. These findings provide insights into size-based theories of ecosystem functioning, with implications for ecosystem predictive models.
机译:体型对浮游生物的食物网相互作用产生多种影响。但是,尺寸结构对营养传递的影响在该领域仍然难以量化。在这里,我们研究了自然海洋生态系统中猎物(纳米微浮游生物)和捕食者(中微浮游动物)的大小多样性如何影响营养传递效率(以生物量比为代表)。我们的研究结果支持以前关于单个营养级的研究:转移效率随着猎物大小多样性的增加而降低,而随着更大的捕食者大小多样性而增强。我们进一步表明,具有较低的纳米微浮游生物大小多样性和较高的中游浮游动物大小多样性的社区倾向于发生在营养水平较低的较温暖环境中,从而在这些条件下促进营养向较高营养水平的转移。此外,我们揭示了捕食者与猎物大小多样性的相互作用:当猎物大小多样性较高时,捕食者大小多样性的积极影响会产生影响。从机理上讲,猎物大小多样性对营养传递的负面影响可以通过基于单细胞大小的代谢限制以及生长和避免捕食与大小之间的权衡来解释,而增加捕食者大小多样性可以增强饮食的生态位分配,从而促进营养。传递。这些发现为基于规模的生态系统功能理论提供了见识,并为生态系统预测模型带来了启示。

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