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Linking primary producer diversity and food quality effects on herbivores: A biochemical perspective

机译:将初级生产者的多样性和食品质量对食草动物的影响联系起来:一种生化视角

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摘要

Biodiversity can strongly influence trophic interactions. The nutritional quality of prey communities and how it is related to the prey diversity is suspected to be a major driver of biodiversity effects. As consumer growth can be co-limited by the supply of several biochemical components, biochemically diverse prey communities should promote consumer growth. Yet, there is no clear consensus on how prey specific diversity is linked to community biochemical diversity since previous studies have considered only single nutritional quality traits. Here, we demonstrate that phytoplankton biochemical traits (fatty acids and sterols) can to a large extent explain Daphnia magna growth and its apparent dependence on phytoplankton species diversity. We find strong correlative evidence between phytoplankton species diversity, biochemical diversity, and growth. The relationship between species diversity and growth was partially explained by the fact that in many communities Daphnia was co-limited by long chained polyunsaturated fatty acids and sterols, which was driven by different prey taxa. We suggest that biochemical diversity is a good proxy for the presence of high food quality taxa, and a careful consideration of the distribution of the different biochemical traits among species is necessary before concluding about causal links between species diversity and consumer performance.
机译:生物多样性可以极大地影响营养相互作用。猎物社区的营养质量及其与猎物多样性的关系被怀疑是生物多样性影响的主要驱动力。由于消费者的增长可能受到几种生化成分的供应的共同限制,因此生化多样化的猎物社区应促进消费者的增长。然而,由于先前的研究仅考虑了单一的营养品质性状,因此关于猎物特异性多样性与社区生化多样性之间的联系尚无明确共识。在这里,我们证明了浮游植物的生化特性(脂肪酸和固醇)可以在很大程度上解释水蚤的生长及其对浮游植物物种多样性的明显依赖性。我们发现浮游植物物种多样性,生化多样性和生长之间有很强的相关证据。物种多样性与生长之间的关系部分地由以下事实解释:水蚤在许多社区受到长链多不饱和脂肪酸和固醇的共同限制,而长链多不饱和脂肪酸和固醇是由不同的猎物类群驱动的。我们建议,生物化学多样性可以很好地代表食品质量高的分类单元的存在,在总结物种多样性与消费者行为之间的因果关系之前,有必要仔细考虑物种之间不同生物化学特征的分布。

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