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José M Luengo

Showing results (1-10 of 26) with videos related to

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Environmental Microbiology|January 9, 2020
Catabolism of biogenic amines in Pseudomonas speciesJosé M Luengo, Elías R Olivera
Methods in Molecular Biology (Clifton, N.J.)|August 29, 2023
Identification and Characterization of Some Genes, Enzymes, and Metabolic Intermediates Belonging to the Bile Acid Aerobic Catabolic Pathway from PseudomonasJosé M Luengo, Elias R Olivera
Methods in Molecular Biology (Clifton, N.J.)|July 16, 2017
Identification and Characterization of the Genes and Enzymes Belonging to the Bile Acid Catabolic Pathway in PseudomonasJosé M Luengo, Elías R Olivera
Genes|July 10, 2019
Steroids as Environmental Compounds Recalcitrant to Degradation: Genetic Mechanisms of Bacterial Biodegradation PathwaysElías R Olivera, José M Luengo
Microbiology (Reading, England)|May 1, 1997
Catabolism of D-glucose by Pseudomonas putida U occurs via extracellular transformation into D-gluconic acid and induction of a specific gluconate transport systemCarmen Schleissner, Angel Reglero, José M Luengo
Methods in Molecular Biology (Clifton, N.J.)|August 29, 2023
Isolation of Environmental Bacteria Able to Degrade Sterols and/or Bile Acids: Determination of Cholesterol Oxidase and Several Hydroxysteroid Dehydrogenase Activities in Rhodococcus, Gordonia, and Pseudomonas putidaAlejandro Chamizo-Ampudia, Luis Getino, José M Luengo, et al.
Methods in Molecular Biology (Clifton, N.J.)|July 16, 2017
Steroid 11-Alpha-Hydroxylation by the Fungi Aspergillus nidulans and Aspergillus ochraceusLidia Ortega-de Los Ríos, José M Luengo, José M Fernández-Cañón
Environmental Microbiology|January 8, 2008
Genetic analyses and molecular characterization of the pathways involved in the conversion of 2-phenylethylamine and 2-phenylethanol into phenylacetic acid in Pseudomonas putida USagrario Arias, Elías R Olivera, Mario Arcos, et al.
Environmental Microbiology|May 21, 2010
The 3,4-dihydroxyphenylacetic acid catabolon, a catabolic unit for degradation of biogenic amines tyramine and dopamine in Pseudomonas putida UMario Arcos, Elías R Olivera, Sagrario Arias, et al.
Current Opinion in Microbiology|July 2, 2003
Bioplastics from microorganismsJosé M Luengo, Belén García, Angel Sandoval, et al.
Pageof 3

Showing results (1-10 of 26) with videos related to

Sort By:
Pageof 3
Environmental Microbiology|January 9, 2020
Catabolism of biogenic amines in Pseudomonas speciesJosé M Luengo, Elías R Olivera
Methods in Molecular Biology (Clifton, N.J.)|August 29, 2023
Identification and Characterization of Some Genes, Enzymes, and Metabolic Intermediates Belonging to the Bile Acid Aerobic Catabolic Pathway from PseudomonasJosé M Luengo, Elias R Olivera
Methods in Molecular Biology (Clifton, N.J.)|July 16, 2017
Identification and Characterization of the Genes and Enzymes Belonging to the Bile Acid Catabolic Pathway in PseudomonasJosé M Luengo, Elías R Olivera
Genes|July 10, 2019
Steroids as Environmental Compounds Recalcitrant to Degradation: Genetic Mechanisms of Bacterial Biodegradation PathwaysElías R Olivera, José M Luengo
Microbiology (Reading, England)|May 1, 1997
Catabolism of D-glucose by Pseudomonas putida U occurs via extracellular transformation into D-gluconic acid and induction of a specific gluconate transport systemCarmen Schleissner, Angel Reglero, José M Luengo
Methods in Molecular Biology (Clifton, N.J.)|August 29, 2023
Isolation of Environmental Bacteria Able to Degrade Sterols and/or Bile Acids: Determination of Cholesterol Oxidase and Several Hydroxysteroid Dehydrogenase Activities in Rhodococcus, Gordonia, and Pseudomonas putidaAlejandro Chamizo-Ampudia, Luis Getino, José M Luengo, et al.
Methods in Molecular Biology (Clifton, N.J.)|July 16, 2017
Steroid 11-Alpha-Hydroxylation by the Fungi Aspergillus nidulans and Aspergillus ochraceusLidia Ortega-de Los Ríos, José M Luengo, José M Fernández-Cañón
Environmental Microbiology|January 8, 2008
Genetic analyses and molecular characterization of the pathways involved in the conversion of 2-phenylethylamine and 2-phenylethanol into phenylacetic acid in Pseudomonas putida USagrario Arias, Elías R Olivera, Mario Arcos, et al.
Environmental Microbiology|May 21, 2010
The 3,4-dihydroxyphenylacetic acid catabolon, a catabolic unit for degradation of biogenic amines tyramine and dopamine in Pseudomonas putida UMario Arcos, Elías R Olivera, Sagrario Arias, et al.
Current Opinion in Microbiology|July 2, 2003
Bioplastics from microorganismsJosé M Luengo, Belén García, Angel Sandoval, et al.
Pageof 3