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消费者营养级位置对季节性波动的环境有不同的响应。

Consumer trophic positions respond variably to seasonally fluctuating environments.

机构信息

Department of Biology, University of Toronto Mississauga, Mississauga, Ontario, L5L 1C6, Canada.

School of Environmental Sciences, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.

出版信息

Ecology. 2019 Feb;100(2):e02570. doi: 10.1002/ecy.2570. Epub 2019 Jan 18.

Abstract

The effects of environmental seasonality on food web structure have been notoriously understudied in empirical ecology. Here, we focus on seasonal changes in one key attribute of a food web, consumer trophic position. We ask whether fishes inhabiting tropical river-floodplain ecosystems behave as seasonal omnivores, by shifting their trophic positions in relation to the annual flood pulse, or whether they feed at the same trophic position all year, as much empirical work implicitly assumes. Using dietary data from the Tonle Sap Lake, Cambodia, and a literature review, we find evidence that some fishes, especially small piscivores, increased consumption of invertebrates and/or plant material during the wet season, as predicted. However, nitrogen stable isotope (δ N) data for 26 Tonle Sap fishes, spanning a broader range of functional groups, uncovered high variation in seasonal trophic position responses among species (0 to ±0.52 trophic positions). Based on these findings, species respond to the flood pulse differently. Diverse behavioral responses to seasonality, underpinned by spatiotemporal variation at multiple scales, could be central for rerouting matter and energy flow in these dynamic ecosystems. Seasonally flexible foraging behaviors warrant further study given their potential influence on food web dynamics in a range of fluctuating environments.

摘要

环境季节性对食物网结构的影响在经验生态学中一直是研究甚少的。在这里,我们关注食物网的一个关键属性——消费者营养级的季节性变化。我们想知道,栖息在热带河流泛滥平原生态系统中的鱼类是否表现为季节性杂食者,即根据年度洪水脉冲来改变其营养级,或者像许多经验工作所隐含假设的那样,它们全年都以相同的营养级进食。我们利用柬埔寨洞里萨湖的饮食数据和文献综述,找到了一些鱼类(尤其是小型肉食性鱼类)在雨季增加了对无脊椎动物和/或植物物质的消费的证据,这与预测结果相符。然而,对 26 种洞里萨湖鱼类的氮稳定同位素(δ N)数据进行分析,涵盖了更广泛的功能群,发现物种之间的季节性营养级响应存在很大差异(0 到±0.52 个营养级)。基于这些发现,物种对洪水脉冲的反应是不同的。在多个尺度上的时空变化的基础上,对季节性的多样化行为反应可能是这些动态生态系统中物质和能量流动重新路由的核心。鉴于其对各种波动环境中食物网动态的潜在影响,季节性灵活的觅食行为值得进一步研究。

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