Polyphasic Approach and Potential Cyanotoxin Production by Planktothrix from the Río Grande de Comitán and Montebello Lakes National Park, Southern Mexico

Author:

Carmona Jiménez Javier1ORCID,Caro Borrero Angela1ORCID,Sánchez-Salas Aída Isabel12ORCID,Becerra-Absalón Itzel3ORCID,Cirés Gómez Samuel4ORCID,Quesada del Corral Antonio4ORCID,Perona Urizar Elvira4ORCID,Ortíz Suárez David5ORCID,Mazari-Hiriart Marisa6ORCID

Affiliation:

1. River Ecosystem Laboratory, Department of Ecology and Natural Resources, Faculty of Science, National Autonomous University of Mexico (UNAM), Exterior Circuit, University City, Coyoacan, Mexico City 04510, Mexico

2. Postgraduate Program in Marine Science and Limnology, UNAM, Exterior Circuit, University City, Coyoacan, Mexico City 04510, Mexico

3. Laboratory of Ficology, Department of Comparative Biology, Faculty of Sciences, UNAM, Exterior Circuit, University City, Coyoacan, Mexico City 04510, Mexico

4. Department of Biology, Faculty of Sciences, Autonomous University of Madrid (UAM), C/Darwin 2, Cantoblanco, Madrid 28049, Spain

5. Department of Chemical Engineering, Faculty of Sciences, UAM, C/Francisco Tomás y Valiente 7, Cantoblanco, Madrid 28049, Spain

6. National Laboratory of Sustainability Sciences, Institute of Ecology, UNAM. Exterior Circuit, University City, Coyoacan, Mexico City 04510, Mexico

Abstract

The development of anthropic activities during recent years has led to an increase in nutrient fluxes in the Río Grande de Comitán and Montebello Lakes National Park, Mexico. In turn, this has modified the dynamics of the biotic community, specifically favoring the presence of cyanobacteria tolerant to contamination. The continual and massive presence of Planktothrix species (spp.) in the system suggests a potential detrimental impact for economic issues and human health. In this study, we identify the morphological and molecular characteristics of Planktothrix populations from seven tropical (1,380–1,740 masl, 23.0–25.5°C) and calcareous lakes and two ponds from a water treatment plant. We also assess the ecological drivers that could be related to the presence of cyanotoxins in the system. The ecological preferences, morphology, 16S rRNA structure, and 16S-23S rRNA internal transcribed spacer found evidence for three species: P. agardhii distributed in neutral to slightly basic water (pH = 7.7–8.7), and P. spiroides and Planktothrix sp. in alkaline waters (pH = 9.1). The presence of the mcyE gene and its validation by liquid chromatography confirmed the presence of two microcystin variants (MC-RR and MC-LR) in at least three populations of P. agardhii. These microcystins put the health of the ecosystem and its inhabitants at risk, a condition that should be addressed and resolved with a water management and detoxification strategy in the basin.

Funder

Fundación Gonzalo Río Arronte

Publisher

Hindawi Limited

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4. Municipal Planning Institute of Comitán de Domínguez, In Spanish: Instituto Municipal de Planeación de Comitán de Domínguez;Implan;Management Plan for the Río Grande basin, Lagunas de Montebello, Chiapas, Mexico,2009

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