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655 related items for PubMed ID: 26055753
1. Pseudomonas pseudoalcaligenes CECT5344, a cyanide-degrading bacterium with by-product (polyhydroxyalkanoates) formation capacity. Manso Cobos I, Ibáñez García MI, de la Peña Moreno F, Sáez Melero LP, Luque-Almagro VM, Castillo Rodríguez F, Roldán Ruiz MD, Prieto Jiménez MA, Moreno Vivián C. Microb Cell Fact; 2015 Jun 10; 14():77. PubMed ID: 26055753 [Abstract] [Full Text] [Related]
2. Quantitative proteomic analysis of Pseudomonas pseudoalcaligenes CECT5344 in response to industrial cyanide-containing wastewaters using Liquid Chromatography-Mass Spectrometry/Mass Spectrometry (LC-MS/MS). Ibáñez MI, Cabello P, Luque-Almagro VM, Sáez LP, Olaya A, Sánchez de Medina V, Luque de Castro MD, Moreno-Vivián C, Roldán MD. PLoS One; 2017 Jun 10; 12(3):e0172908. PubMed ID: 28253357 [Abstract] [Full Text] [Related]
3. Putative small RNAs controlling detoxification of industrial cyanide-containing wastewaters by Pseudomonas pseudoalcaligenes CECT5344. Olaya-Abril A, Luque-Almagro VM, Pérez MD, López CM, Amil F, Cabello P, Sáez LP, Moreno-Vivián C, Roldán MD. PLoS One; 2019 Jun 10; 14(2):e0212032. PubMed ID: 30735537 [Abstract] [Full Text] [Related]
4. Alternative Pathway for 3-Cyanoalanine Assimilation in Pseudomonas pseudoalcaligenes CECT5344 under Noncyanotrophic Conditions. Pérez MD, Olaya-Abril A, Cabello P, Sáez LP, Roldán MD, Moreno-Vivián C, Luque-Almagro VM. Microbiol Spectr; 2021 Dec 22; 9(3):e0077721. PubMed ID: 34730416 [Abstract] [Full Text] [Related]
8. DNA microarray analysis of the cyanotroph Pseudomonas pseudoalcaligenes CECT5344 in response to nitrogen starvation, cyanide and a jewelry wastewater. Luque-Almagro VM, Escribano MP, Manso I, Sáez LP, Cabello P, Moreno-Vivián C, Roldán MD. J Biotechnol; 2015 Nov 20; 214():171-81. PubMed ID: 26432339 [Abstract] [Full Text] [Related]
9. Draft whole genome sequence of the cyanide-degrading bacterium Pseudomonas pseudoalcaligenes CECT5344. Luque-Almagro VM, Acera F, Igeño MI, Wibberg D, Roldán MD, Sáez LP, Hennig M, Quesada A, Huertas MJ, Blom J, Merchán F, Escribano MP, Jaenicke S, Estepa J, Guijo MI, Martínez-Luque M, Macías D, Szczepanowski R, Becerra G, Ramirez S, Carmona MI, Gutiérrez O, Manso I, Pühler A, Castillo F, Moreno-Vivián C, Schlüter A, Blasco R. Environ Microbiol; 2013 Jan 20; 15(1):253-70. PubMed ID: 22998548 [Abstract] [Full Text] [Related]
10. Gas chromatography-mass spectrometry-based monomer composition analysis of medium-chain-length polyhydroxyalkanoates biosynthesized by Pseudomonas spp. Huang P, Okoshi T, Mizuno S, Hiroe A, Tsuge T. Biosci Biotechnol Biochem; 2018 Sep 20; 82(9):1615-1623. PubMed ID: 29804521 [Abstract] [Full Text] [Related]
11. Quantitative Proteomic Analysis of Cyanide and Mercury Detoxification by Pseudomonas pseudoalcaligenes CECT 5344. Biełło KA, Olaya-Abril A, Cabello P, Rodríguez-Caballero G, Sáez LP, Moreno-Vivián C, Luque-Almagro VM, Roldán MD. Microbiol Spectr; 2023 Aug 17; 11(4):e0055323. PubMed ID: 37432117 [Abstract] [Full Text] [Related]
12. Characterization of the Pseudomonas pseudoalcaligenes CECT5344 Cyanase, an enzyme that is not essential for cyanide assimilation. Luque-Almagro VM, Huertas MJ, Sáez LP, Luque-Romero MM, Moreno-Vivián C, Castillo F, Roldán MD, Blasco R. Appl Environ Microbiol; 2008 Oct 17; 74(20):6280-8. PubMed ID: 18708510 [Abstract] [Full Text] [Related]
19. Bacterial degradation of cyanide and its metal complexes under alkaline conditions. Luque-Almagro VM, Huertas MJ, Martínez-Luque M, Moreno-Vivián C, Roldán MD, García-Gil LJ, Castillo F, Blasco R. Appl Environ Microbiol; 2005 Feb 17; 71(2):940-7. PubMed ID: 15691951 [Abstract] [Full Text] [Related]
20. The influence of nitrogen limitation on mcl-PHA synthesis by two newly isolated strains of Pseudomonas sp. Ciesielski S, Mozejko J, Przybyłek G. J Ind Microbiol Biotechnol; 2010 May 17; 37(5):511-20. PubMed ID: 20204456 [Abstract] [Full Text] [Related] Page: [Next] [New Search]