Cargando…

A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration

Perchlorate anions are produced by chemical industries and are important contaminants in certain natural ecosystems. Perchlorate also occurs in some natural and uncontaminated environments such as the Atacama Desert, the high Arctic or the Antarctic Dry Valleys, and is especially abundant on the sur...

Descripción completa

Detalles Bibliográficos
Autores principales: Gallardo-Carreño, Ignacio, Moreno-Paz, Mercedes, Aguirre, Jacobo, Blanco, Yolanda, Alonso-Pintado, Eduardo, Raymond-Bouchard, Isabelle, Maggiori, Catherine, Rivas, Luis A., Engelbrektson, Anna, Whyte, Lyle, Parro, Víctor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7772991/
https://www.ncbi.nlm.nih.gov/pubmed/33391207
http://dx.doi.org/10.3389/fmicb.2020.590736
_version_ 1783629976676859904
author Gallardo-Carreño, Ignacio
Moreno-Paz, Mercedes
Aguirre, Jacobo
Blanco, Yolanda
Alonso-Pintado, Eduardo
Raymond-Bouchard, Isabelle
Maggiori, Catherine
Rivas, Luis A.
Engelbrektson, Anna
Whyte, Lyle
Parro, Víctor
author_facet Gallardo-Carreño, Ignacio
Moreno-Paz, Mercedes
Aguirre, Jacobo
Blanco, Yolanda
Alonso-Pintado, Eduardo
Raymond-Bouchard, Isabelle
Maggiori, Catherine
Rivas, Luis A.
Engelbrektson, Anna
Whyte, Lyle
Parro, Víctor
author_sort Gallardo-Carreño, Ignacio
collection PubMed
description Perchlorate anions are produced by chemical industries and are important contaminants in certain natural ecosystems. Perchlorate also occurs in some natural and uncontaminated environments such as the Atacama Desert, the high Arctic or the Antarctic Dry Valleys, and is especially abundant on the surface of Mars. As some bacterial strains are capable of using perchlorate as an electron acceptor under anaerobic conditions, their detection is relevant for environmental monitoring on Earth as well as for the search for life on Mars. We have developed an antibody microarray with 20 polyclonal antibodies to detect perchlorate-reducing bacteria (PRB) strains and two crucial and highly conserved enzymes involved in perchlorate respiration: perchlorate reductase and chlorite dismutase. We determined the cross-reactivity, the working concentration, and the limit of detection of each antibody individually and in a multiplex format by Fluorescent Sandwich Microarray Immunoassay. Although most of them exhibited relatively high sensitivity and specificity, we applied a deconvolution method based on graph theory to discriminate between specific signals and cross-reactions from related microorganisms. We validated the system by analyzing multiple bacterial isolates, crude extracts from contaminated reactors and salt-rich natural samples from the high Arctic. The PRB detecting chip (PRBCHIP) allowed us to detect and classify environmental isolates as well as to detect similar strains by using crude extracts obtained from 0.5 g even from soils with low organic-matter levels (<10(3) cells/g of soil). Our results demonstrated that PRBCHIP is a valuable tool for sensitive and reliable detection of perchlorate-reducing bacteria for research purposes, environmental monitoring and planetary exploration.
format Online
Article
Text
id pubmed-7772991
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-77729912020-12-31 A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration Gallardo-Carreño, Ignacio Moreno-Paz, Mercedes Aguirre, Jacobo Blanco, Yolanda Alonso-Pintado, Eduardo Raymond-Bouchard, Isabelle Maggiori, Catherine Rivas, Luis A. Engelbrektson, Anna Whyte, Lyle Parro, Víctor Front Microbiol Microbiology Perchlorate anions are produced by chemical industries and are important contaminants in certain natural ecosystems. Perchlorate also occurs in some natural and uncontaminated environments such as the Atacama Desert, the high Arctic or the Antarctic Dry Valleys, and is especially abundant on the surface of Mars. As some bacterial strains are capable of using perchlorate as an electron acceptor under anaerobic conditions, their detection is relevant for environmental monitoring on Earth as well as for the search for life on Mars. We have developed an antibody microarray with 20 polyclonal antibodies to detect perchlorate-reducing bacteria (PRB) strains and two crucial and highly conserved enzymes involved in perchlorate respiration: perchlorate reductase and chlorite dismutase. We determined the cross-reactivity, the working concentration, and the limit of detection of each antibody individually and in a multiplex format by Fluorescent Sandwich Microarray Immunoassay. Although most of them exhibited relatively high sensitivity and specificity, we applied a deconvolution method based on graph theory to discriminate between specific signals and cross-reactions from related microorganisms. We validated the system by analyzing multiple bacterial isolates, crude extracts from contaminated reactors and salt-rich natural samples from the high Arctic. The PRB detecting chip (PRBCHIP) allowed us to detect and classify environmental isolates as well as to detect similar strains by using crude extracts obtained from 0.5 g even from soils with low organic-matter levels (<10(3) cells/g of soil). Our results demonstrated that PRBCHIP is a valuable tool for sensitive and reliable detection of perchlorate-reducing bacteria for research purposes, environmental monitoring and planetary exploration. Frontiers Media S.A. 2020-12-16 /pmc/articles/PMC7772991/ /pubmed/33391207 http://dx.doi.org/10.3389/fmicb.2020.590736 Text en Copyright © 2020 Gallardo-Carreño, Moreno-Paz, Aguirre, Blanco, Alonso-Pintado, Raymond-Bouchard, Maggiori, Rivas, Engelbrektson, Whyte and Parro. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Gallardo-Carreño, Ignacio
Moreno-Paz, Mercedes
Aguirre, Jacobo
Blanco, Yolanda
Alonso-Pintado, Eduardo
Raymond-Bouchard, Isabelle
Maggiori, Catherine
Rivas, Luis A.
Engelbrektson, Anna
Whyte, Lyle
Parro, Víctor
A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title_full A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title_fullStr A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title_full_unstemmed A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title_short A Multiplex Immunosensor for Detecting Perchlorate-Reducing Bacteria for Environmental Monitoring and Planetary Exploration
title_sort multiplex immunosensor for detecting perchlorate-reducing bacteria for environmental monitoring and planetary exploration
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7772991/
https://www.ncbi.nlm.nih.gov/pubmed/33391207
http://dx.doi.org/10.3389/fmicb.2020.590736
work_keys_str_mv AT gallardocarrenoignacio amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT morenopazmercedes amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT aguirrejacobo amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT blancoyolanda amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT alonsopintadoeduardo amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT raymondbouchardisabelle amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT maggioricatherine amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT rivasluisa amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT engelbrektsonanna amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT whytelyle amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT parrovictor amultipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT gallardocarrenoignacio multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT morenopazmercedes multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT aguirrejacobo multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT blancoyolanda multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT alonsopintadoeduardo multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT raymondbouchardisabelle multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT maggioricatherine multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT rivasluisa multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT engelbrektsonanna multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT whytelyle multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration
AT parrovictor multipleximmunosensorfordetectingperchloratereducingbacteriaforenvironmentalmonitoringandplanetaryexploration