Schriever Tiffany A
Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, Ontario, Canada.
PLoS One. 2015 Apr 16;10(4):e0122719. doi: 10.1371/journal.pone.0122719. eCollection 2015.
The abiotic environment has strong influences on the growth, survival, behavior, and ecology of aquatic organisms. Biotic interactions and species life histories interact with abiotic factors to structure the food web. One measure of food-web structure is food-chain length. Several hypotheses predict a linear relationship between one environmental variable (e.g., disturbance or ecosystem size) and food-chain length. However, many abiotic and biotic variables interact in diverse ways to structure a community, and may affect other measures of food web structure besides food-chain length. This study took a multivariate approach to test the influence of several important environmental variables on four food-web characteristics measured in nine ponds along a hydroperiod gradient over two years. This approach allowed for testing the ecosystem size and dynamic constraints hypotheses while in context of other possibly interacting environmental variables. The relationship between amphibian and invertebrate communities and pond habitat variables was assessed to understand the underlying food-web structure. Hydroperiod and pond area had a strong influence on amphibian and invertebrate communities, trophic diversity and δ15N range. The range in δ13C values responded strongly to dissolved oxygen. Food-chain length responded to multiple environmental variables. Invertebrate and amphibian communities were structured by pond hydroperiod which in turn influenced the trophic diversity of the food web. The results of this study suggest food-chain length is influenced by environmental variation and species assemblage and that a multivariate approach may allow us to better understand the dynamics within and across aquatic food webs.
非生物环境对水生生物的生长、生存、行为和生态有着强烈影响。生物相互作用和物种生活史与非生物因素相互作用,从而构建食物网。食物网结构的一个衡量指标是食物链长度。有几种假说预测了一个环境变量(如干扰或生态系统大小)与食物链长度之间的线性关系。然而,许多非生物和生物变量以多种方式相互作用来构建一个群落,并且可能会影响除食物链长度之外的食物网结构的其他衡量指标。本研究采用多变量方法,以测试在两年时间里沿着水文周期梯度的九个池塘中测量的几个重要环境变量对四种食物网特征的影响。这种方法能够在其他可能相互作用的环境变量的背景下,对生态系统大小和动态约束假说进行测试。评估了两栖动物和无脊椎动物群落与池塘栖息地变量之间的关系,以了解潜在的食物网结构。水文周期和池塘面积对两栖动物和无脊椎动物群落、营养多样性和δ15N范围有强烈影响。δ13C值范围对溶解氧有强烈响应。食物链长度对多个环境变量有响应。无脊椎动物和两栖动物群落由池塘水文周期构建,而池塘水文周期又反过来影响食物网的营养多样性。本研究结果表明,食物链长度受环境变化和物种组合的影响,并且多变量方法可能使我们能够更好地理解水生食物网内部和之间的动态。