Belle Simon, Cabana Gilbert
Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, Uppsala, Sweden.
Centre de Recherche sur les Interactions Bassins Versants-Ecosystèmes Aquatiques (RIVE), Université du Québec à Trois-Rivières, Trois-Rivières, Canada.
PeerJ. 2020 Oct 26;8:e9999. doi: 10.7717/peerj.9999. eCollection 2020.
This study aimed to assess whether ecological inferences from isotopic functional indices (IFIs) are impacted by changes in isotopic baselines in aquatic food webs. We used sudden CO-outgassing and associated shifts in DIC- C brought by waterfalls as an excellent natural experimental set-up to quantify impacts of changes in algal isotopic baselines on ecological inferences from IFIs.
Carbon ( C) and nitrogen ( N) stable isotopic ratios of invertebrate communities sharing similar structure were measured at above- and below-waterfall sampling sites from five rivers and streams in Southern Quebec (Canada). For each sampled invertebrate community, the six Laymans IFIs were then calculated in the -space ( C vs. N).
As expected, isotopic functional richness indices, measuring the overall extent of community trophic space, were strongly sensitive to changes in isotopic baselines unlike other IFIs. Indeed, other IFIs were calculated based on the distribution of species within -space and were not strongly impacted by changes in the vertical or horizontal distribution of specimens in the -space. Our results highlighted that IFIs exhibited different sensitivities to changes in isotopic baselines, leading to potential misinterpretations of IFIs in river studies where isotopic baselines generally show high temporal and spatial variabilities. The identification of isotopic baselines and their associated variability, and the use of independent trophic tracers to identify the actual energy pathways through food webs must be a prerequisite to IFIs-based studies to strengthen the reliability of ecological inferences of food web structural properties.
本研究旨在评估水生食物网中同位素基线的变化是否会影响从同位素功能指数(IFI)得出的生态推断。我们利用瀑布引发的突然二氧化碳脱气以及溶解无机碳(DIC)-碳的相关变化,作为一个绝佳的自然实验设置,以量化藻类同位素基线变化对基于IFI的生态推断的影响。
在加拿大魁北克省南部五条河流和溪流的瀑布上下游采样点,测量了结构相似的无脊椎动物群落的碳(C)和氮(N)稳定同位素比率。对于每个采样的无脊椎动物群落,随后在δ空间(δC与δN)中计算六个莱曼斯IFI。
正如预期的那样,与其他IFI不同,衡量群落营养空间总体范围的同位素功能丰富度指数对同位素基线的变化非常敏感。事实上,其他IFI是根据δ空间内物种的分布计算得出的,并且不受δ空间中样本垂直或水平分布变化的强烈影响。我们的结果强调,IFI对同位素基线的变化表现出不同的敏感性,这可能导致在河流研究中对IFI的潜在误解,因为在河流研究中同位素基线通常表现出高度的时间和空间变异性。识别同位素基线及其相关变异性,以及使用独立的营养示踪剂来识别通过食物网的实际能量途径,必须是基于IFI的研究的先决条件,以加强对食物网结构特性生态推断的可靠性。