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Conrado Moreno-Vivian

Explore the profile of Conrado Moreno-Vivian including associated specialties, affiliations and a list of published articles. Areas
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Articles 38
Citations 598
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Recent Articles
11.
Saez L, Cabello P, Ibanez M, Luque-Almagro V, Roldan M, Moreno-Vivian C
Int J Mol Sci . 2019 Jun; 20(12). PMID: 31226739
The alkaliphilic bacterium CECT5344 can grow with cyanate, cyanide, or cyanide-containing industrial residues as the sole nitrogen source, but the assimilation of cyanide and cyanate takes place through independent pathways....
12.
Olaya-Abril A, Luque-Almagro V, Perez M, Lopez C, Amil F, Cabello P, et al.
PLoS One . 2019 Feb; 14(2):e0212032. PMID: 30735537
The alkaliphilic bacterium Pseudomonas pseudoalcaligenes CECT5344 uses free cyanide and several metal-cyanide complexes as the sole nitrogen source and tolerates high concentrations of metals like copper, zinc and iron, which...
13.
Olaya-Abril A, Hidalgo-Carrillo J, Luque-Almagro V, Fuentes-Almagro C, Urbano F, Moreno-Vivian C, et al.
Front Microbiol . 2018 Jun; 9:1137. PMID: 29896187
Denitrification is a respiratory process that produces nitrous oxide as an intermediate, which may escape to the atmosphere before its reduction to dinitrogen through the nitrous oxide reductase NosZ. In...
14.
Cabello P, Luque-Almagro V, Olaya-Abril A, Saez L, Moreno-Vivian C, Roldan M
FEMS Microbiol Lett . 2018 Feb; 365(6). PMID: 29438505
Mining, jewellery and metal-processing industries use cyanide for extracting gold and other valuable metals, generating large amounts of highly toxic wastewater. Biological treatments may be a clean alternative under the...
15.
Olaya-Abril A, Luque-Almagro V, Manso I, Gates A, Moreno-Vivian C, Richardson D, et al.
FEMS Microbiol Lett . 2017 Dec; 365(1). PMID: 29228177
Paracoccus denitrificans PD1222 accumulates short-length polyhydroxyalkanoates, poly(3-hydroxybutyrate), under nitrogen-deficient conditions. Polyhydroxybutyrate metabolism requires the 3-ketoacyl-CoA thiolase PhaA, the acetoacetyl-CoA dehydrogenase/reductase PhaB and the synthase PhaC for polymerization. Additionally, P. denitrificans...
16.
Luque-Almagro V, Cabello P, Saez L, Olaya-Abril A, Moreno-Vivian C, Roldan M
Appl Microbiol Biotechnol . 2017 Dec; 102(3):1067-1074. PMID: 29209795
Cyanide is one of the most toxic chemicals for living organisms described so far. Its toxicity is mainly based on the high affinity that cyanide presents toward metals, provoking inhibition...
17.
Luque-Almagro V, Manso I, Sullivan M, Rowley G, Ferguson S, Moreno-Vivian C, et al.
Biochem J . 2017 Apr; 474(11):1769-1787. PMID: 28385879
Transcriptional adaptation to nitrate-dependent anabolism by PD1222 was studied. A total of 74 genes were induced in cells grown with nitrate as N-source compared with ammonium, including and genes. The...
18.
Ibanez M, Cabello P, Luque-Almagro V, Saez L, Olaya A, Sanchez de Medina V, et al.
PLoS One . 2017 Mar; 12(3):e0172908. PMID: 28253357
Biological treatments to degrade cyanide are a powerful technology for cyanide removal from industrial wastewaters. It has been previously demonstrated that the alkaliphilic bacterium Pseudomonas pseudoalcaligenes CECT5344 is able to...
19.
Blanco-Moreno R, Saez L, Luque-Almagro V, Roldan M, Moreno-Vivian C
N Biotechnol . 2016 Nov; 35:35-41. PMID: 27884748
Thermo-solar plants use eutectic mixtures of diphenyl ether (DE) and biphenyl (BP) as heat transfer fluid (HTF). Potential losses of HTF may contaminate soils and bioremediation is an attractive tool...
20.
Wibberg D, Bremges A, Dammann-Kalinowski T, Maus I, Igeno M, Vogelsang R, et al.
J Biotechnol . 2016 Apr; 232:61-8. PMID: 27060556
Pseudomonas pseudoalcaligenes CECT5344 tolerates cyanide and is also able to utilize cyanide and cyano-derivatives as a nitrogen source under alkaline conditions. The strain is considered as candidate for bioremediation of...