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Landscape diversity promotes stable food-web architectures in large rivers
Authors:Eric A Scholl  Wyatt F Cross  Christopher S Guy  Adeline J Dutton  James R Junker
Institution:1. Correspondence;2. Department of Ecology, Montana State University, Bozeman, Montana, USA;3. U.S. Geological Survey, Montana Cooperative Fishery Research Unit, Department of Ecology, Montana State University, Bozeman, Montana, USA;4. Michigan Department of Natural Resources, Lansing, Michigan, USA

Montana Cooperative Fishery Research Unit, Bozeman, Montana, USA

Abstract:Uncovering relationships between landscape diversity and species interactions is crucial for predicting how ongoing land-use change and homogenization will impact the stability and persistence of communities. However, such connections have rarely been quantified in nature. We coupled high-resolution river sonar imaging with annualized energetic food webs to quantify relationships among habitat diversity, energy flux, and trophic interaction strengths in large-river food-web modules that support the endangered Pallid Sturgeon. Our results demonstrate a clear relationship between habitat diversity and species interaction strengths, with more diverse foraging landscapes containing higher production of prey and a greater proportion of weak and potentially stabilizing interactions. Additionally, rare patches of large and relatively stable river sediments intensified these effects and further reduced interaction strengths by increasing prey diversity. Our findings highlight the importance of landscape characteristics in promoting stabilizing food-web architectures and provide direct relevance for future management of imperilled species in a simplified and rapidly changing world.
Keywords:energy flows  food web  habitat diversity  interaction strength  large river  riverscape  pallid sturgeon  secondary production  stability  sturgeon
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