Microbial community's shifts in an Andean glacier-fed watershed under anthropogenic pressures.

Fuente: PubMed
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Mayol, Eva, Aguilar-Muñoz, Polette, Pérez, Macarena, Pavlov, María Soledad, Rambaldi, Gabriel, Eissler, Yoanna, Molina, Verónica, Sola, Ivan, Sáez, Claudio A, Cuny, Philippe, Heimbürger-Boavida, Lars-Eric, Lavergne, Céline
Format: Artículo científico
Langue:en
Publié: Journal of environmental management 2026
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1868266071853629440
author Mayol, Eva
Aguilar-Muñoz, Polette
Pérez, Macarena
Pavlov, María Soledad
Rambaldi, Gabriel
Eissler, Yoanna
Molina, Verónica
Sola, Ivan
Sáez, Claudio A
Cuny, Philippe
Heimbürger-Boavida, Lars-Eric
Lavergne, Céline
author_facet Mayol, Eva
Aguilar-Muñoz, Polette
Pérez, Macarena
Pavlov, María Soledad
Rambaldi, Gabriel
Eissler, Yoanna
Molina, Verónica
Sola, Ivan
Sáez, Claudio A
Cuny, Philippe
Heimbürger-Boavida, Lars-Eric
Lavergne, Céline
Mayol, Eva
Aguilar-Muñoz, Polette
Pérez, Macarena
Pavlov, María Soledad
Rambaldi, Gabriel
Eissler, Yoanna
Molina, Verónica
Sola, Ivan
Sáez, Claudio A
Cuny, Philippe
Heimbürger-Boavida, Lars-Eric
Lavergne, Céline
collection PubMed - marine biology
contents Microbial community's shifts in an Andean glacier-fed watershed under anthropogenic pressures. Mayol, Eva Aguilar-Muñoz, Polette Pérez, Macarena Pavlov, María Soledad Rambaldi, Gabriel Eissler, Yoanna Molina, Verónica Sola, Ivan Sáez, Claudio A Cuny, Philippe Heimbürger-Boavida, Lars-Eric Lavergne, Céline RNA, Ribosomal, 16S Chile Bacteria Rivers Ecosystem Microbiota Microorganisms play a crucial role in maintaining ecosystem functions by transforming matter and energy. The impact of environmental perturbations on the cycling and loss of aquatic microbial communities remains poorly characterized, particularly in the Southern Hemisphere. Here, we present the shifts in active microbial community and the maintenance of glacier-derived microbial core along the Aconcagua Basin, Central Chile. Through metabarcoding of the 16S rRNA transcripts and genes in water samples from 13 sites along the river continuum-including glacier-influenced headwaters, mining-proximal zones, agro-industrial reaches, and estuarine environments-distinct shifts in microbial community composition were observed. Glacier-fed waters harbored rich, cold-adapted microbial communities with elevated viral pressure, while mining and/or natural acid drainage promoted the dominance (up to 52% relative abundance) of sulfur-oxidizing bacteria (SOB) and reduced overall diversity. Among the SOB taxa, Thiovirga, Sulfuricurvum, and Thiobacillus-affiliated ASVs dominated together with minor taxa such as Thiomonas, Longilinea, Alishewenella, and Acidithiobacillus. Downstream, runoff and wastewater inputs from agricultural and urban areas altered microbial assemblages, introducing new taxa (e.g., C39 and Cellvibrio) and further diminishing glacier-derived core members. Estuarine sites exhibited pronounced eutrophication and significant loss of upstream microbial diversity. Along the basin, the virus-to-prokaryotes ratio gradually decreased (i.e., 95 to 5) from the glacier-fed lagoon with low prokaryotic biomass to the estuarine wetland with high virus and prokaryotic abundances. This study underscores the importance of integrating microbial diversity into water resource management and conservation policy to ensure ecosystem resilience amid climate change and intensifying human impacts.
format Artículo científico
id pubmed_41855873
institution PubMed
language en
publishDate 2026
publisher Journal of environmental management
record_format pubmed
spellingShingle Microbial community's shifts in an Andean glacier-fed watershed under anthropogenic pressures.
Mayol, Eva
Aguilar-Muñoz, Polette
Pérez, Macarena
Pavlov, María Soledad
Rambaldi, Gabriel
Eissler, Yoanna
Molina, Verónica
Sola, Ivan
Sáez, Claudio A
Cuny, Philippe
Heimbürger-Boavida, Lars-Eric
Lavergne, Céline
RNA, Ribosomal, 16S
Chile
Bacteria
Rivers
Ecosystem
Microbiota
Microbial community's shifts in an Andean glacier-fed watershed under anthropogenic pressures. Mayol, Eva Aguilar-Muñoz, Polette Pérez, Macarena Pavlov, María Soledad Rambaldi, Gabriel Eissler, Yoanna Molina, Verónica Sola, Ivan Sáez, Claudio A Cuny, Philippe Heimbürger-Boavida, Lars-Eric Lavergne, Céline RNA, Ribosomal, 16S Chile Bacteria Rivers Ecosystem Microbiota Microorganisms play a crucial role in maintaining ecosystem functions by transforming matter and energy. The impact of environmental perturbations on the cycling and loss of aquatic microbial communities remains poorly characterized, particularly in the Southern Hemisphere. Here, we present the shifts in active microbial community and the maintenance of glacier-derived microbial core along the Aconcagua Basin, Central Chile. Through metabarcoding of the 16S rRNA transcripts and genes in water samples from 13 sites along the river continuum-including glacier-influenced headwaters, mining-proximal zones, agro-industrial reaches, and estuarine environments-distinct shifts in microbial community composition were observed. Glacier-fed waters harbored rich, cold-adapted microbial communities with elevated viral pressure, while mining and/or natural acid drainage promoted the dominance (up to 52% relative abundance) of sulfur-oxidizing bacteria (SOB) and reduced overall diversity. Among the SOB taxa, Thiovirga, Sulfuricurvum, and Thiobacillus-affiliated ASVs dominated together with minor taxa such as Thiomonas, Longilinea, Alishewenella, and Acidithiobacillus. Downstream, runoff and wastewater inputs from agricultural and urban areas altered microbial assemblages, introducing new taxa (e.g., C39 and Cellvibrio) and further diminishing glacier-derived core members. Estuarine sites exhibited pronounced eutrophication and significant loss of upstream microbial diversity. Along the basin, the virus-to-prokaryotes ratio gradually decreased (i.e., 95 to 5) from the glacier-fed lagoon with low prokaryotic biomass to the estuarine wetland with high virus and prokaryotic abundances. This study underscores the importance of integrating microbial diversity into water resource management and conservation policy to ensure ecosystem resilience amid climate change and intensifying human impacts.
title Microbial community's shifts in an Andean glacier-fed watershed under anthropogenic pressures.
topic RNA, Ribosomal, 16S
Chile
Bacteria
Rivers
Ecosystem
Microbiota
url https://pubmed.ncbi.nlm.nih.gov/41855873/