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February 26, 2026Aquatic Sciences1 citationsOpen Access

Functional diversity of freshwater phytoplankton under multiple environmental filters and seasonal variability in contrasting tropical ecosystems

FBFabrício Bronzoni-OliveiraLCLuciane Oliveira CrossettiEEEneida Maria Eskinazi-Sant’Anna

Key Points

  • This research aims to identify the main environmental drivers affecting the functional diversity of phytoplankton across different ecosystems and seasonal periods.
  • Sampling conducted from October 2018 to September 2021 in the Doce River and shallow and deep lakes.
  • Functional diversity indices measured using seven functional traits.
  • Comparison of environmental conditions, including hydrological stability and contamination levels.
  • Deep lakes showed higher functional diversity due to lower eutrophication and metal contamination.
  • Increased functional diversity in the river during the dry season suggested reduced anthropogenic pressures.
  • Resource availability and lower grazing pressure positively impacted phytoplankton diversity.

Abstract

Abstract The relationships between the functional diversity of phytoplankton and environmental conditions offer insights into phytoplankton community structure under environmental gradients in basins influenced by anthropogenic disturbances, including mining residues. Thus, we aimed to identify the main environmental drivers of the functional diversity of phytoplankton by considering three types of ecosystems and two distinct seasonal periods. We hypothesized that (1) ecosystems with higher hydrological stability and lower contamination—particularly deep lakes—support greater phytoplankton functional diversity, and (2) seasonal effects on functional diversity are more pronounced in rivers. Sampling was conducted between October 2018 and September 2021 in the Doce River and in shallow lakes and deep lakes of the floodplain. Functional diversity indices were measured based on seven functional traits comprising species volume, silica demand, heterocyst presence, mixotrophy potential, aerotope presence, flagella presence, and life form. Deep lakes exhibited higher functional diversity due to lower eutrophication conditions, metal contamination, and greater light availability. In the river, the increase in functional diversity during the dry season suggested an attenuation of anthropogenic pressures, considering the improvement in environmental conditions. Our results showed a dependence of the functional diversity of phytoplankton on the type of environment, and that the environments experienced distinct effects according to seasonality. Additionally, we demonstrated that resource availability, lower levels of metal contamination, and reduced grazing pressure resulted in greater functional diversity of the phytoplankton. We thus emphasize the importance of assessing functional aspects of phytoplankton in the biomonitoring of areas strongly impacted by anthropogenic activities.

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Cite This Study

Bronzoni-Oliveira et al. (2026) studied this question.

synapsesocial.com/papers/699fe32295ddcd3a253e6bb5https://doi.org/10.1007/s00027-026-01278-3
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