Anaerobiosis favors biosynthesis of single and multi-element nanostructures

Rios-Silva, Mirtha; Perez, Myriam; Luraschi, Roberto; Vargas, Esteban; Silva-Andrade, Claudia; Valdes, Jorge; Sandoval, Juan Marcelo; Vasquez, Claudio; Arenas, Felipe

Abstract

Herein we report the use of an environmental multimetal(loid)-resistant strain, MF05, to biosynthesize single- or multi-element nanostructures under anaerobic conditions. Inorganic nanostructure synthesis typically requires methodologies and conditions that are harsh and environmentally hazardous. Thus, green/eco-friendly procedures are desirable, where the use of microorganisms and their extracts as bionanofactories is a reliable strategy. First, MF05 was entirely sequenced and identified as an Escherichia coli-related strain with some genetic differences from the traditional BW25113. Secondly, we compared the CdS nanostructure biosynthesis by whole-cell in a design defined minimal culture medium containing sulfite as the only sulfur source to obtain sulfide reduction from a low-cost chalcogen reactant. Under anaerobic conditions, this process was greatly favored, and irregular CdS (ex. 370 nm; em. 520-530 nm) was obtained. When other chalcogenites were tested (selenite and tellurite), only spherical Se-0 and elongated Te-0 nanostructures were observed by TEM and analyzed by SEM-EDX. In addition, enzymatic-mediated chalcogenite (sulfite, selenite, and tellurite) reduction was assessed by using MF05 crude extracts in anaerobiosis; similar results for nanostructures were obtained; however Se-0 and Te-0 formation were more regular in shape and cleaner (with less background). Finally, the in vitro nanostructure biosynthesis was assessed with salts of Ag, Au, Cd, and Li alone or in combination with chalcogenites. Several single or binary nanostructures were detected. Our results showed that MF05 is a versatile anaerobic bionanofactory for different types of inorganic NS. synthesis.

Más información

Título según WOS: ID WOS:000908422200021 Not found in local WOS DB
Título de la Revista: PLOS ONE
Volumen: 17
Número: 10
Editorial: PUBLIC LIBRARY SCIENCE
Fecha de publicación: 2022
DOI:

10.1371/journal.pone.0273392

Notas: ISI