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January 23, 2026Journal of Plankton Research0 citations

The dynamics of planktonic heterotrophic nanoflagellates in response to environmental drivers during initial reservoir filling

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MMMatheus Henrique de Oliveira de MatosFOFelipe Rafael de OliveiraBMBianca Ramos de Meira

Key Points

  • The research aims to understand how environmental factors influence heterotrophic nanoflagellate dynamics during the initial filling of a reservoir.
  • Measured HNF density and biomass over 60 days during reservoir filling.
  • Collected data at both surface and bottom strata near the dam.
  • Evaluated abiotic variables like oxygen concentration and biotic factors such as predation and resource availability.
  • HNF density and biomass peaked in the middle of the filling period, particularly at the surface.
  • Initial growth was limited by high water flow, later influenced by oxygen levels and predation.
  • Bacteria resources drove bottom-up dynamics, while predation shifted from ciliates to zooplankton over time.

Abstract

ABSTRACT Heterotrophic nanoflagellates (HNF) are a functionally essential group in freshwater ecosystems metabolism, mediating the transfer of nutrients from bacteria to higher trophic levels, and playing a central role in biogeochemical cycles, including the carbon balance. Despite that, it has been systematically overlooked. This study assessed changes in HNF density and biomass during initial filling phase of a neotropical reservoir, as well the factors influencing this dynamic. Abiotic and biotic variables were measured in a sample station close to the dam, at surface and bottom strata over 60 days. HNF density and biomass were higher at the middle of the filling period, especially at the surface. With impoundment, HNF growth was no longer limited by physical factors (high water flow), and became structured by abiotic (oxygen concentration) and biotic (resources and predation) factors. Over time, changes in the influence between bottom–up, such as bacteria resource, and top–down mechanisms, with the control by ciliates at the beginning of filling, while zooplankton assumed the predator role by the end. The results highlight the relevance of microbial food webs in the ecological functioning of newly formed reservoirs, emphasizing the importance of integrating HNF communities and their interactions into assessment of reservoir ecosystems.

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Cite This Study

Matos et al. (2025) studied this question.

synapsesocial.com/papers/69730ef2c8125b09b0d1ebdchttps://doi.org/10.1093/plankt/fbaf074
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