Publication:
Representative Bacillus sp. AM1 from Gut Microbiota Harbor Versatile Molecular Pathways for Bisphenol A Biodegradation

dc.contributor.authorLópez-Moreno, Ana
dc.contributor.authorTorres-Sánchez, Alfonso
dc.contributor.authorAcuña, Inmaculada
dc.contributor.authorSuárez, Antonio
dc.contributor.authorAguilera, Margarita
dc.contributor.authoraffiliation[López-Moreno,A; Torres-Sánchez,A; Aguilera,M] Department of Microbiology, Faculty of Pharmacy, University of Granada, Granada, Spain. [López-Moreno,A; Torres-Sánchez,A; Acuña,I; Suárez,A; Aguilera,M] Instituto de Nutrición y Tecnología de los Alimentos, INYTA-Granada, Granada, Spain. [Acuña,I; Suárez,A] Department of Biochemistry and Molecular Biology, Faculty of Pharmacy, University of Granada, Granada, Spain. [Aguilera,M] IBS: Instituto de Investigación Biosanitaria ibs., Granada, Spain.
dc.contributor.funderThis research was partially funded by grant number GP/EFSA/ENCO/380 2018/03/G04:OBEMIRISK: Knowledge platform for assessing the risk of Bisphenols on gut microbiota and its role in obesogenic phenotype: looking for biomarkers. This research was also funded by FEDER Infrastructure: IE_2019-198. The APC was funded by EIN-2019-103082.
dc.date.accessioned2022-10-03T06:49:42Z
dc.date.available2022-10-03T06:49:42Z
dc.date.issued2021-05-07
dc.description.abstractHuman gut microbiota harbors numerous microbial species with molecular enzymatic potential that impact on the eubiosis/dysbiosis and health/disease balances. Microbiota species isolation and description of their specific molecular features remain largely unexplored. In the present study, we focused on the cultivation and selection of species able to tolerate or biodegrade the endocrine disruptor bisphenol A (BPA), a xenobiotic extensively found in food plastic containers. Chemical xenobiotic addition methods for the directed isolation, culturing, Whole Genome Sequencing (WGS), phylogenomic identification, and specific gene-encoding searches have been applied to isolate microorganisms, assess their BPA metabolization potential, and describe encoded catabolic pathways. BPA-tolerant strains were isolated from 30% of infant fecal microbial culture libraries analyzed. Most isolated strains were phylogenetically related to the operational taxonomic group Bacillus amyloliquefaciens spp. Importantly, WGS analysis of microbial representative strain, Bacillus sp. AM1 identified the four complete molecular pathways involved on BPA degradation indicating its versatility and high potential to degrade BPA. Pathways for Exopolysaccharide (EPS) and Polyhydroxyalkanates (PHA) biopolymer synthesis were also identified and phenotypically confirmed by transmission electronic microscopy (TEM). These microbial biopolymers could generally contribute to capture and/or deposit xenobiotics.es_ES
dc.description.versionYeses_ES
dc.identifier.citationLópez-Moreno A, Torres-Sánchez A, Acuña I, Suárez A, Aguilera M. Representative Bacillus sp. AM1 from Gut Microbiota Harbor Versatile Molecular Pathways for Bisphenol A Biodegradation. Int J Mol Sci. 2021 May 7;22(9):4952es_ES
dc.identifier.doi10.3390/ijms22094952es_ES
dc.identifier.essn1422-0067
dc.identifier.issn1661-6596
dc.identifier.pmcPMC8125285
dc.identifier.pmid34066922es_ES
dc.identifier.urihttp://hdl.handle.net/10668/4206
dc.journal.titleInternational Journal of Molecular Sciences
dc.language.isoen
dc.page.number12 p.
dc.publisherMDPIes_ES
dc.relation.publisherversionhttps://www.mdpi.com/1422-0067/22/9/4952/htmes_ES
dc.rightsAtribución 4.0 Internacional*
dc.rights.accessRightsAcceso abiertoes_ES
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectHuman microbiotaes_ES
dc.subjectBacilluses_ES
dc.subjectBisphenolses_ES
dc.subjectMolecular pathwayses_ES
dc.subjectEnzymeses_ES
dc.subjectEPSes_ES
dc.subjectPHAes_ES
dc.subjectMicrobiotaes_ES
dc.subjectBiología moleculares_ES
dc.subjectEnzimases_ES
dc.subjectPolisacáridoses_ES
dc.subjectPolihidroxialcanoatoses_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Chemical Actions and Uses::Pharmacologic Actions::Therapeutic Uses::Anti-Infective Agents::Anti-Bacterial Agentses_ES
dc.subject.meshMedical Subject Headings::Organisms::Bacteria::Gram-Positive Bacteria::Bacillales::Bacillaceae::Bacilluses_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Organic Chemicals::Hydrocarbons::Hydrocarbons, Cyclic::Hydrocarbons, Aromatic::Benzene Derivatives::Benzhydryl Compoundses_ES
dc.subject.meshMedical Subject Headings::Health Care::Environment and Public Health::Public Health::Environmental Pollution::Environmental Remediation::Biodegradation, Environmentales_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Genetic Phenomena::Genetic Structures::Genome::Genome, Microbial::Genome, Bacteriales_ES
dc.subject.meshMedical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humanses_ES
dc.subject.meshMedical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Diagnosis::Diagnostic Techniques and Procedures::Clinical Laboratory Techniques::Microbiological Techniques::Microbial Sensitivity Testses_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Organic Chemicals::Hydrocarbons::Hydrocarbons, Cyclic::Hydrocarbons, Aromatic::Benzene Derivatives::Phenolses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Genetic Phenomena::Phylogenyes_ES
dc.subject.meshMedical Subject Headings::Chemicals and Drugs::Nucleic Acids, Nucleotides, and Nucleosides::Nucleic Acids::RNA::RNA, Ribosomal::RNA, Ribosomal, 16Ses_ES
dc.subject.meshMedical Subject Headings::Phenomena and Processes::Chemical Phenomena::Chemical Processes::Biochemical Processes::Signal Transductiones_ES
dc.titleRepresentative Bacillus sp. AM1 from Gut Microbiota Harbor Versatile Molecular Pathways for Bisphenol A Biodegradationes_ES
dc.typeresearch article
dc.type.hasVersionVoR
dspace.entity.typePublication

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