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Genome-wide transcriptional response to silver stress in extremely halophilic archaeon Haloferax alexandrinus DSM 27206 T.
Buda, Doriana Madalina; Szekeres, Edina; Tudoran, Lucian Barbu; Esclapez, Julia; Banciu, Horia Leonard.
Afiliação
  • Buda DM; Doctoral School of Integrative Biology, Faculty of Biology and Geology, Babeș-Bolyai University, Cluj-Napoca, Romania. doriana.buda@gmail.com.
  • Szekeres E; Department of Molecular Biology and Biotechnology, Babeș-Bolyai University, Cluj-Napoca, Romania. doriana.buda@gmail.com.
  • Tudoran LB; Institute of Biological Research Cluj, NIRDBS, Cluj-Napoca, Romania.
  • Esclapez J; Centre for Systems Biology, Biodiversity and Bioresources, Babeș-Bolyai University, Cluj-Napoca, Romania.
  • Banciu HL; Department of Molecular Biology and Biotechnology, Babeș-Bolyai University, Cluj-Napoca, Romania.
BMC Microbiol ; 23(1): 381, 2023 Dec 04.
Article em En | MEDLINE | ID: mdl-38049746
BACKGROUND: The extremely halophilic archaeon Haloferax (Hfx.) alexandrinus DSM 27206 T was previously documented for the ability to biosynthesize silver nanoparticles while mechanisms underlying its silver tolerance were overlooked. In the current study, we aimed to assess the transcriptional response of this haloarchaeon to varying concentrations of silver, seeking a comprehensive understanding of the molecular determinants underpinning its heavy metal tolerance. RESULTS: The growth curves confirmed the capacity of Hfx. alexandrinus to surmount silver stress, while the SEM-EDS analysis illustrated the presence of silver nanoparticles in cultures exposed to 0.5 mM silver nitrate. The RNA-Seq based transcriptomic analysis of Hfx. alexandrinus cells exposed to 0.1, 0.25, and 0.5 mM silver nitrate revealed the differential expression of multiple sets of genes potentially employed in heavy-metal stress response, genes mostly related to metal transporters, basic metabolism, oxidative stress response and cellular motility. The RT-qPCR analysis of selected transcripts was conducted to verify and validate the generated RNA-Seq data. CONCLUSIONS: Our results indicated that copA, encoding the copper ATPase, is essential for the survival of Hfx. alexandrinus cells in silver-containing saline media. The silver-exposed cultures underwent several metabolic adjustments that enabled the activation of enzymes involved in the oxidative stress response and impairment of the cellular movement capacity. To our knowledge, this study represents the first comprehensive analysis of gene expression in halophillic archaea facing increased levels of heavy metals.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Haloferax / Haloferax volcanii / Nanopartículas Metálicas Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Haloferax / Haloferax volcanii / Nanopartículas Metálicas Idioma: En Ano de publicação: 2023 Tipo de documento: Article