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Food Web Architecture and Basal Resources Interact to Determine Biomass and Stoichiometric Cascades along a Benthic Food Web

机译:食物网架构和基础资源相互作用确定沿底栖食物网的生物量和化学计量级联

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摘要

Understanding the effects of predators and resources on primary producers has been a major focus of interest in ecology. Within this context, the trophic cascade concept especially concerning the pelagic zone of lakes has been the focus of the majority of these studies. However, littoral food webs could be especially interesting because base trophic levels may be strongly regulated by consumers and prone to be light limited. In this study, the availability of nutrients and light and the presence of an omnivorous fish (Hyphessobrycon bifasciatus) were manipulated in enclosures placed in a humic coastal lagoon (Cabiúnas Lagoon, Macaé – RJ) to evaluate the individual and interactive effects of resource availability (nutrients and light) and food web configuration on the biomass and stoichiometry of periphyton and benthic grazers. Our findings suggest that light and nutrients interact to determine periphyton biomass and stoichiometry, which propagates to the consumer level. We observed a positive effect of the availability of nutrients on periphytic biomass and grazers' biomass, as well as a reduction of periphytic C∶N∶P ratios and an increase of grazers' N and P content. Low light availability constrained the propagation of nutrient effects on periphyton biomass and induced higher periphytic C∶N∶P ratios. The effects of fish presence strongly interacted with resource availability. In general, a positive effect of fish presence was observed for the total biomass of periphyton and grazer's biomass, especially with high resource availability, but the opposite was found for periphytic autotrophic biomass. Fish also had a significant effect on periphyton stoichiometry, but no effect was observed on grazers' stoichiometric ratios. In summary, we observed that the indirect effect of fish predation on periphyton biomass might be dependent on multiple resources and periphyton nutrient stoichiometric variation can affect consumers' stoichiometry.
机译:了解捕食者和资源对初级生产者的影响一直是生态学关注的重点。在这种情况下,营养级联概念特别是有关湖泊中上层带的问题一直是这些研究的重点。但是,沿海食物网可能特别有趣,因为基本营养水平可能受到消费者的严格监管,并且容易受到光照的限制。在这项研究中,对营养物质和光照的可用性以及杂食性鱼类(Hyphessobrycon bifasciatus)的存在进行了控制,将其放置在腐殖质沿海泻湖(CabiúnasLagoon,Macaé– RJ)的围栏中,以评估资源可用性的个体和互动影响(养分和光)和食物网配置对浮游生物和底栖放牧者生物量和化学计量的影响。我们的发现表明,光和养分相互作用决定了浮游植物的生物量和化学计量,其传播到了消费者的水平。我们观察到养分有效性对周围植物生物量和放牧者生物量的积极影响,同时降低了周围植物C∶N∶P比值和增加了放牧者N和P含量。低光利用率限制了养分对藻类生物量的传播,并导致较高的植株C∶N∶P比。鱼类存在的影响与资源可利用性密切相关。通常,鱼的存在对附生植物和放牧者的生物量的总生物量具有积极影响,特别是在资源利用率高的情况下,但对附生自养生物质却相反。鱼对浮游植物的化学计量也有显着影响,但对放牧者的化学计量比没有影响。总而言之,我们观察到鱼类捕食对鱼类周围植物生物量的间接影响可能取决于多种资源,并且鱼类周围营养物质化学计量的变化会影响消费者的化学计量。

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