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April 10, 2026Scientific Reports0 citationsOpen Access

Reservoir proximity explains long-term transformation of riverine fish assemblage structure and function

JEJohnathan K. EllardRMRebecca D. MangoldAUAnastasia Umstott

Key Points

  • This research aims to understand how the proximity of reservoirs affects fish assemblage structure and function over time.
  • Reviewed historical fish assemblage data from 1954-1955 in the upper Sabine River.
  • Conducted repeated fish surveys in 2023 after decades of reservoir presence.
  • Measured deviations from historical conditions using a gradient of proximity to reservoirs.
  • Tested multiple hypotheses regarding fish assemblage changes.
  • Found highest temporal beta diversity in fish assemblages nearest to reservoirs.
  • Observed a recovery of periodic life history strategists further downstream.
  • Noted declines in fishes serving as hosts for Unionid mussels in reservoir tailwaters.
  • Identified increases in host fishes at the river-reservoir interface upstream of dams.

Abstract

Dams and their associated reservoirs have become so ubiquitous on the world's riverscapes that only 23% of rivers now flow freely to the ocean. These artificial structures have known ecological consequences, but ecological studies often suffer from a lack of historical baseline data and uncertainty regarding the degree to which concepts are transferable among altered river systems. We reviewed historical fish assemblage survey data collected over 373 km of the upper Sabine River, Texas, USA during 1954-1955, prior to construction of large reservoirs at the upstream and downstream extents of the study area. We then repeated surveys using identical methods in 2023 after reservoirs were in place for multiple decades. The resulting dataset provided opportunity to measure impoundment-driven deviations from historical baseline conditions and test a suite of hypotheses centered on fish assemblage changes across a gradient of proximities (i.e., distances) from reservoirs. We found support for the proximity replacement hypothesis in which fish assemblages nearest to reservoirs experience the highest temporal beta diversity; support for the longitudinal recovery gradient hypothesis in which relative abundance of periodic life history strategists returns to a natural baseline with greater downstream distance from dam tailwaters; support for the proximity host loss hypothesis in which fishes that serve as hosts to Unionid mussels decline in reservoir tailwaters; and support for the proximity host gain hypothesis in which fishes that serve as hosts to Unionid mussels increase in the river-reservoir interface upstream of a dam. This work advances knowledge of ecological consequences associated with dam construction by revealing that concepts developed using space-for-time substitutions (i.e., without historical baseline information) remain pertinent when tested against historical benchmarks and these same concepts are applicable to unstudied systems.

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Cite This Study

Ellard et al. (2026) studied this question.

synapsesocial.com/papers/69d892886c1944d70ce03e31https://doi.org/10.1038/s41598-026-43222-3
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Damming affects the taxonomic but not the functional beta diversity of fish in a neotropical reservoir ecosystem2026
  2. 2Responses of Fish Trophic Guilds to Dams in Neotropical River Systems: A Systematic Meta‐Analytic Review2026
  3. 3Major Ecological Threats for Young Fish in Human-Made Reservoirs: Modified Downstream Migration Causes Reduced Fitness and Increased Mortality2026
  4. 4Damming creates winners and losers: Life history traits fail to predict vulnerability in freshwater fishes2024 · 5 citations
  5. 5Fish assemblage and functional trait responses to small‐dam removal2024 · 4 citations