Environmental Microbiology: Fundamentals and Applications: Microbial Ecology
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Compost, MPA and M were made that the soil increased the fertility from before transplantation, and until the harvest is continued providing enough nutrients, with the exception to Cl and S, which were not detected after harvest. Deficiencies of Cl and S perhaps were one of the causes of that plants did not produced beyond that achieved with Steiner solution or T8, this latter that in turn allowed manage more sustainably the soil and plants that with Steiner solution, while with T8 was supplied organic matter and assimilable mineral by plants.
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Branches of microbiology
Appl Environ Microbiol. Characterization of the active bacterial community involved in natural attenuation processes in arsenic-rich creek sediments. Bruneel, A. Volant, S. Chaumande, C. Casiot, C.
Branches of microbiology
Carapito, A. Bardil, G. Morin, G. Brown Jr. Le Paslier, C.
Branches of microbiology - Wikipedia
Van Dorsselaer, P. Bertin, F. Elbaz-Pouliche, F.
reimulgame.tk Microbial Ecology. Temporal transcriptomic response during arsenic stress in Herminiimonas arsenicoxydans. BMC Genomics.
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Arsenite oxidase from Ralstonia sp. J Biol Chem. Effect of arsenite on swimming motility delays the surface colonization in Herminiimonas arsenicoxydans. Marchal M. Microbiology, Structure, function, and evolution of the Thiomonas spp. PLoS Genet. Multiple controls affect arsenite oxidase gene expression in Herminiimonas arsenicoxydans. BMC Microbiol. Arsenic in contaminated waters: biogeochemical cycle, microbial metabolism and biotreatment processes.
Carbon and arsenic metabolism in Thiomonas strains: differences revealed diverse adaptation processes. Enhanced structural and functional genome elucidation of the arsenite-oxidizing strain Herminiimonas arsenicoxydans by proteomics data. Diversity surveys and evolutionary relationships of aoxB genes in aerobic arsenite-oxidizing bacteria.
Arsenite oxidation by a chemoautotrophic moderately acidophilic Thiomonas sp. Heat-treated Saccharomyces cerevisiae for antimony speciation and antimony III preconcentration in water samples. Anal Chim Acta. Gouhlen-Chollet, B. Chaumande, S. Weiss, C.
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Carapito, J. Cleiss, S. Gallien, C. Schaeffer, Alain Van Dorsselaer and P. Les Actes du BRG. Advances in environmental genomics: towards an integrated view of micro-organisms and ecosystems.
A tale of two oxidation states: bacterial colonization of arsenic-rich environments. Herminiimonas arsenicoxydans sp. Int J Syst Evol Microbiol. Identification of genes and proteins involved in the pleiotropic response to arsenic stress in Caenibacter arsenoxydans, a metalloresistant beta-proteobacterium with an unsequenced genome. Arsenite oxidation in batch reactors with alginate-immobilized ULPAs1 strain. Biotechnol Bioeng. Microplate screening assay for the detection of arsenite-oxidizing and arsenate-reducing bacteria. Arsenite oxidase, an ancient bioenergetic enzyme.
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Biological oxidation of arsenite: batch reactor experiments in presence of kutnahorite and chabazite. Arsenite oxidase aox genes from a metal-resistant beta-proteobacterium. J Bacteriol.
Oxidation of arsenite to arsenate by a bacterium isolated from an aquatic environment. Rechercher dans le site. Debard Cours de H. Andreas Teske, Jennifer F. Biddle, Virginia P. Edgcomb, Axel Schippers. Deep subsurface microbiology is a highly active and rapidly advancing research field at the This action requires you to be registered with Frontiers and logged in.