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1.
ISME J ; 8(6): 1153-65, 2014 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-24351936

RESUMO

Microbial biogeography is influenced by the combined effects of passive dispersal and environmental selection, but the contribution of either factor can be difficult to discern. As thermophilic bacteria cannot grow in the cold seabed, their inactive spores are not subject to environmental selection. We therefore conducted a global experimental survey using thermophilic endospores that are passively deposited by sedimentation to the cold seafloor as tracers to study the effect of dispersal by ocean currents on the biogeography of marine microorganisms. Our analysis of 81 different marine sediments from around the world identified 146 species-level 16S rRNA phylotypes of endospore-forming, thermophilic Firmicutes. Phylotypes showed various patterns of spatial distribution in the world oceans and were dispersal-limited to different degrees. Co-occurrence of several phylotypes in locations separated by great distances (west of Svalbard, the Baltic Sea and the Gulf of California) demonstrated a widespread but not ubiquitous distribution. In contrast, Arctic regions with water masses that are relatively isolated from global ocean circulation (Baffin Bay and east of Svalbard) were characterized by low phylotype richness and different compositions of phylotypes. The observed distribution pattern of thermophilic endospores in marine sediments suggests that the impact of passive dispersal on marine microbial biogeography is controlled by the connectivity of local water masses to ocean circulation.


Assuntos
Bactérias/classificação , Água do Mar/microbiologia , Regiões Árticas , Bactérias/genética , Bactérias/isolamento & purificação , Sedimentos Geológicos/microbiologia , Oceanos e Mares , Filogenia , Filogeografia , RNA Ribossômico 16S/genética , Esporos Bacterianos/genética , Temperatura , Movimentos da Água
2.
ISME J ; 7(1): 72-84, 2013 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-22832348

RESUMO

Patterns of microbial biogeography result from a combination of dispersal, speciation and extinction, yet individual contributions exerted by each of these mechanisms are difficult to isolate and distinguish. The influx of endospores of thermophilic microorganisms to cold marine sediments offers a natural model for investigating passive dispersal in the ocean. We investigated the activity, diversity and abundance of thermophilic endospore-forming sulfate-reducing bacteria (SRB) in Aarhus Bay by incubating pasteurized sediment between 28 and 85 °C, and by subsequent molecular diversity analyses of 16S rRNA and of the dissimilatory (bi)sulfite reductase (dsrAB) genes within the endospore-forming SRB genus Desulfotomaculum. The thermophilic Desulfotomaculum community in Aarhus Bay sediments consisted of at least 23 species-level 16S rRNA sequence phylotypes. In two cases, pairs of identical 16S rRNA and dsrAB sequences in Arctic surface sediment 3000 km away showed that the same phylotypes are present in both locations. Radiotracer-enhanced most probable number analysis revealed that the abundance of endospores of thermophilic SRB in Aarhus Bay sediment was ca. 10(4) per cm(3) at the surface and decreased exponentially to 10(0) per cm(3) at 6.5 m depth, corresponding to 4500 years of sediment age. Thus, a half-life of ca. 300 years was estimated for the thermophilic SRB endospores deposited in Aarhus Bay sediments. These endospores were similarly detected in the overlying water column, indicative of passive dispersal in water masses preceding sedimentation. The sources of these thermophiles remain enigmatic, but at least one source may be common to both Aarhus Bay and Arctic sediments.


Assuntos
Desulfotomaculum/fisiologia , Desulfovibrio/fisiologia , Sedimentos Geológicos/microbiologia , Regiões Árticas , DNA Bacteriano/genética , Dinamarca , Desulfotomaculum/genética , Desulfotomaculum/isolamento & purificação , Desulfovibrio/genética , Desulfovibrio/isolamento & purificação , Meia-Vida , Oxirredutases atuantes sobre Doadores de Grupo Enxofre/genética , Filogenia , RNA Ribossômico 16S/genética
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