
Marisol Goni - Google Scholar
Marisol Goni. Microbial Ecology, University of Pau, France. Adresse e-mail validée de univ-pau.fr. Microbial Ecology mercury methylation sulphate reducing bacteria microbial mats. Articles Citée par Accès public. Titre. Trier. Trier par citations Trier par année Trier par titre.
Marisol Goni - ResearchGate
Marisol GONI, Researcher | Cited by 2,715 | of Université de Pau et des Pays de l'Adour, Pau (UPPA) | Read 77 publications | Contact Marisol GONI
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Meta-omics Provides Insights into the Impact of Hydrocarbon ...
Photosynthetic microbial mats are stable, self-supported communities. Due to their coastal localization, these mats are frequently exposed to hydrocarbon contamination and are able to grow on it.
Dec 10, 2024 · 13 E-mail address: [email protected], [email protected] 14 Postal address: Technopôle Hélioparc, 2 Av. Du Président Pierre Angot, 64053 Pau Cedex 9 15 16 perpetuity. It is made available under aCC-BY-NC-ND 4.0 International license. preprint (which was not certified by peer review) is the author/funder, who has granted ...
GONI URRIZA Marisol (IPREM Université de Pau et des
First Name: Marisol. Name: Goñi Urriza. Position: Assistant Professor. Email: [email protected]. Institute / University / Company: IPREM Université de Pau et des Pays de l’Adour. Research Unit: UMR5254. Address (city, state): Av de l’université, Pau cedex. Country: France.
Relationships between bacterial energetic metabolism, mercury ...
This study aimed to decipher the effect of growth conditions on methylmercury production and the relationships between hgcA and hgcB expression levels and net methylation. Desulfovibrio dechloroacetivorans strain BerOc1 was grown under sulfidogenic conditions with different carbon sources and electron donors as well as under fumarate respiration.
The impact of long-term hydrocarbon exposure on the structure, …
Oct 15, 2016 · Electronic address: [email protected]. Photosynthetic microbial mats are metabolically structured systems driven by solar light. They are ubiquitous and can grow in hydrocarbon-polluted sites. Our aim is to determine the impact of chronic hydrocarbon contamination on the structure, activity, and functioning of a microbial mat.
Mercury (Hg) is a global pollutant of environmental and health concern; its methylated form, methylmercury (MeHg), is a potent neurotoxin. Sulfur-containing molecules play a role in MeHg production by microorganisms. While sulfides are considered to limit Hg methylation, sulfate and cysteine were shown to favor this process.
Mes premiers remerciements s‱adressent à Marisol Goni et Stéphane Pesce, ainsi que Lise Barthelmebs, Morgan Deroiné, Boris Eyheraguibel et Pierre Galand, d‱avoir accepté de faire partie de mon jury et d‱évaluer mon travail.