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1.
Electron. j. biotechnol ; Electron. j. biotechnol;11(1): 1-12, Jan. 2008. ilus, graf, tab
Artículo en Inglés | LILACS | ID: lil-522156

RESUMEN

This study presents bacterial population analyses of microbial communities inhabiting three sites of acid mine drainage (AMD) in the Shen-bu copper mine, Gansu Province, China. These sites were located next to acid-leached chalcopyrite slagheaps that had been abandoned since 1995. The pH values of these samples with high concentrations of metals ranged from 2.0 to 3.5. Amplified ribosomal DNA restriction analysis (ARDRA) was used to characterize the bacterial population by amplifying the 16S rRNA gene of microorganisms. A total of 39 operational taxonomic units (OTUs) were obtained from the three samples and sequenced from 384 clones. Sequence data and phylogenetic analyses showed that two dominant clones (JYC-1B, JYC-1D) in sample JYC-1 represented 69.5 percent of the total clones affiliated with Acidithiobacillus ferrooxidans (gamma-Proteobacteria), and the most dominant clones of JYC-2 and JYC-3 were affiliated with Caulobacter crescentus (alpha-Protebacteria). At the level of bacterial divisions, differences in the relative incidence of particular phylogenetic groups among the three samples and discrepancies in physicochemical characteristics suggested that the physico-chemical characteristics had an influence on phylogenetic diversity. Furthermore, the relationships between the discrepancies of physicochemical characteristics and the diversity of the bacteria communities in the three samples suggested that the biogeochemical properties, pH and concentration of soluble metal, could be key factors in controlling the structure of the bacterial population.


Asunto(s)
Bacterias/clasificación , Agua Ácida de Minas , Drenaje del Suelo , China , Cobre/aislamiento & purificación , Cobre/análisis , ADN Ribosómico , Percolación , Reacción en Cadena de la Polimerasa
2.
Appl Environ Microbiol ; 69(10): 6073-81, 2003 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-14532064

RESUMEN

This study examined the natural diversity and distributions of sulfate-reducing bacteria along a natural carbon gradient extending down the shelf-slope transition zone of the eastern Pacific continental margin. Dissimilatory (bi)sulfite reductase gene sequences (dsrAB) were PCR amplified and cloned from five different sampling sites, each at a discrete depth, from two different margin systems, one off the Pacific coast of Mexico and another off the coast of Washington State. A total of 1,762 clones were recovered and evaluated by restriction fragment length polymorphism (RFLP) analysis. The majority of the gene sequences recovered showed site and depth restricted distributions; however, a limited number of gene sequences were widely distributed within and between the margin systems. Cluster analysis identified 175 unique RFLP patterns, and nucleotide sequences were determined for corresponding clones. Several different continental margin DsrA sequences clustered with those from formally characterized taxa belonging to the delta subdivision of the class Proteobacteria (Desulfobulbus propionicus, Desulfosarcina variabilis) and the Bacillus-Clostridium (Desulfotomaculum putei) divisions, although the majority of the recovered sequences were phylogenetically divergent relative to all of the other DsrA sequences available for comparison. This study revealed extensive new genetic diversity among sulfate-reducing bacteria in continental margin sedimentary habitats, which appears to be tightly coupled to slope depth, specifically carbon bioavailability.


Asunto(s)
Variación Genética , Bacterias Reductoras del Azufre/clasificación , Deltaproteobacteria/clasificación , Deltaproteobacteria/enzimología , Deltaproteobacteria/genética , Deltaproteobacteria/aislamiento & purificación , Ambiente , Sedimentos Geológicos/microbiología , Hidrogenosulfito Reductasa , México , Datos de Secuencia Molecular , Oxidorreductasas actuantes sobre Donantes de Grupos Sulfuro/genética , Océano Pacífico , Filogenia , Polimorfismo de Longitud del Fragmento de Restricción , Agua de Mar/microbiología , Análisis de Secuencia de ADN , Sulfatos/metabolismo , Bacterias Reductoras del Azufre/enzimología , Bacterias Reductoras del Azufre/genética , Bacterias Reductoras del Azufre/aislamiento & purificación , Washingtón
3.
Appl Environ Microbiol ; 69(6): 3549-60, 2003 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-12788762

RESUMEN

To understand the composition and structure of denitrifying communities in the oxygen-deficient zone off the Pacific coast of Mexico, the molecular diversity of nir genes from sediments obtained at four stations was examined by using a PCR-based cloning approach. A total of 50 operational taxonomic units (OTUs) for nirK and 82 OTUs for nirS were obtained from all samples. Forty-four of the nirS clones and 31 of the nirK clones were sequenced; the levels of similarity of the nirS clones were 52 to 92%, and the levels of similarity of the nirS clones were 50 to 99%. The percentages of overlapping OTUs between stations were 18 to 30% for nirS and 5 to 8% for nirK. Sequence analysis revealed that 26% of the nirS clones were related to the nirS genes of Alcaligenes faecalis (80 to 94% similar) and Pseudomonas stutzeri (80 to 99%), whereas 3 to 31% of the nirK clones were closely related to the nirK genes of Pseudomonas sp. strain G-179 (98 to 99%), Bradyrhizobium japonicum (91%), Blastobacter denitrificans (83%), and Alcaligenes xylosoxidans (96%). The rest of the clones, however, were less than 80% similar to nirS and nirK sequences available in sequence databases. The results of a principal-component analysis (PCA) based on the percentage of OTUs and biogeochemical data indicated that the nitrate concentration and oxygen have an effect on the denitrifying communities. The communities at the stations in oxygen-deficient zones were more similar than the communities at the stations in the oxygenated zone. The denitrifying communities were more similar at the stations that were closer together and had similar nitrate levels. Also, the results of PCA based on biogeochemical properties suggest that geographic location and biogeochemical conditions, especially the nitrate and oxygen levels, appear to be the key factors that control the structure of denitrifying communities.


Asunto(s)
Variación Genética , Sedimentos Geológicos/microbiología , Nitrito Reductasas/genética , Oxígeno/farmacología , Proteobacteria/enzimología , Agua de Mar/microbiología , Clonación Molecular , Sedimentos Geológicos/química , Datos de Secuencia Molecular , Nitratos/metabolismo , Filogenia , Polimorfismo de Longitud del Fragmento de Restricción , Proteobacteria/genética , Proteobacteria/crecimiento & desarrollo , Análisis de Secuencia de ADN
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