Potential of arsenic bioremediation by a cyanobacterium isolated from the Salado River in the Atacama Desert

Author:

Pérez-Portilla Pablo1ORCID,Araya Juan12,Gallardo Karem2,Aránguiz-Acuña Adriana3

Affiliation:

1. Programa de Doctorado en Ciencias mención Geología, Universidad Católica del Norte, Chile

2. Centro de Investigación Tecnológica del Agua en el Desierto (CEITSAZA), Universidad Católica del Norte, Antofagasta, Chile

3. Departamento de Biología, Facultad de Ciencias, Universidad de Tarapacá, Arica, Chile

Abstract

Abstract Cyanobacteria and microalgae are recognized as excellent metal(loid)s-bioremediators of aquatic systems. We isolated a cyanobacterium from the Salado River in the Atacama Desert, northern Chile, which was identified as Cyanobium sp. Growth inhibition bioassays were conducted with arsenic and cadmium, and tolerance of Cyanobium to these metals was estimated. Removal of arsenic was assessed under different pH conditions and over time. We showed that the Cyanobium strain isolated from the Salado River has a greater tolerance to the arsenic and cadmium compounds than other species commonly used in metal(loid)s-bioremediation. Removal of up to 90% of arsenic was obtained in alkaline conditions, within the first 3 hours of exposure suggesting that Cyanobium sp. isolated from the Atacama Desert could be further studied with biotechnological purposes and to understand the evolutionary mechanisms of adaption to arid environments.

Funder

Fondo de Investigación Científica y Tecnológica

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference23 articles.

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2. Aquatic community structure as sentinel of recent environmental changes unraveled from lake sedimentary records from the Atacama Desert, Chile;Aránguiz-Acuña;PLoS ONE,2020

3. Removal of cadmium ions with olive stones: the effect of some parameters;Blázquez;Process Biochem.,2005

4. Arsenic tolerance of Microcystis novacekii (Komárek-Compère, 1974) and its arsenic decontamination potential;Ferreira;Braz. Arch. Biol. Technol.,2018

5. DNA primers for amplification of mitochondrial cytochrome c oxidase subunit I from diverse metazoan invertebrates;Folmer;Mol. Mar. Biol. Biotechnol.,1994

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