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Environmental Microbiology · 2017 · Vol. 19 · Issue 11 · Wiley
Summary Different factors may modulate the gut microbiota of animals. In any particular environment, diet, genetic factors and human influences can shape the bacterial communities residing in the gastrointestinal tract. Metagenomic approaches have significantly expanded our knowledge on microbiota dynamics inside hosts, yet cultivation and isolation of bacterial members of these complex ecosystems may still be necessary to ful...
Environmental Microbiology · 2017 · Vol. 19 · Issue 7 · Wiley
Summary Fibrobacter succinogenes is an anaerobic bacterium naturally colonising the rumen and cecum of herbivores where it utilizes an enigmatic mechanism to deconstruct cellulose into cellobiose and glucose, which serve as carbon sources for growth. Here, we illustrate that outer membrane vesicles (OMVs) released by F. succinogenes are enriched with carbohydrate‐active enzymes and that intact OMVs were able to depolymerize a...
Environmental Microbiology · 2016 · Vol. 18 · Issue 5 · Wiley
Summary A reciprocal cross‐fostering model with an obese typical Chinese piglet breed and a lean Western breed was used to identify genetic and maternal effects on the acquisition and development gut bacteria from birth until after weaning. Pyrosequencing of 16S rRNA genes results revealed an age‐ and diet‐dependent bacterial succession process in piglets. During the first 3 days after birth, the bacterial community was relati...
Environmental Microbiology · 2014 · Vol. 16 · Issue 9 · Wiley
Summary Symbiotic gut microbes have facilitated the success of herbivorous mammals, which are generally grouped into foregut‐ and hindgut‐fermenters. However, rodents are primarily herbivorous and exhibit a variety of gastrointestinal anatomies. Most rodents house microbes in hindgut chambers, such as the caecum and colon. Some rodents also exhibit stomach segmentation with a foregut chamber proximal to the stomach. For over a...
Environmental Microbiology · 2014 · Vol. 16 · Issue 6 · Wiley
Summary A low‐diversity microbial community, dominated by the γ ‐proteobacterium H alomonas sulfidaeris , was detected in samples of warm saline formation porewater collected from the C ambrian Mt. S imon S andstone in the I llinois B asin of the N orth A merican M idcontinent (1.8 km/5872 ft burial depth, 50° C , pH 8, 181 bars pressure). These highly porous and permeable quartz arenite sandstones are directly analogous to re...
Environmental Microbiology · 2013 · Vol. 15 · Issue 3 · Wiley
Summary Biomass production for bioenergy may change soil microbes and influence ecosystem properties. To explore the impact of different bioenergy cropping systems on soil microorganisms, the compositions and quantities of soil microbial communities (16S rRNA gene) and N‐cycling functional groups ( nifH , bacterial amoA , archaeal amoA and nosZ genes) were assessed under maize, switchgrass and Miscanthus x giganteus at seven s...
Environmental Microbiology · 2012 · Vol. 14 · Issue 6 · Wiley
Summary Given the growing concerns over human and animal health issues related to confined animal feeding operations, an in‐depth examination is required to monitor for airborne bacteria and associated antibiotic resistance genes. Our 16S rRNA‐based pyrosequencing revealed that the airborne microbial community skewed towards a higher abundance of Firmicutes (> 59.2%) and Bacteroidetes (4.2–31.4%) within the confinement buildin...
Molecular Ecology · 2012 · Vol. 21 · Issue 7 · Wiley
Diet strongly influences the intestinal microbial communities through species sorting. Alternatively, these communicates may differ because of chance variation in local microbial exposures or species losses among allopatric host populations (i.e. ecological drift). We investigated how these forces shape enteric communities of Galápagos marine and land iguanas. Geographically proximate populations shared more similar communitie...
Environmental Microbiology · 2000 · Vol. 2 · Issue 2 · Wiley
Based on comparative analysis of 16S rRNA sequences and the recently established phylogeny of the genus Desulfotomaculum , a set of phylogenetically nested hybridization probes was developed and characterized. A genus‐specific probe targets all known Desulfotomaculum species (with the exception of Desulfotomaculum acetoxidans ), and five specific probes target subclusters within the Desulfotomaculum genus. The dissociation tem...