Bacterial succession on decomposing leaf litter exhibits a specific occurrence pattern of cellulolytic taxa and potential decomposers of fungal mycelia
نویسندگان
چکیده
منابع مشابه
No evidence for leaf-trait dissimilarity effects on litter decomposition, fungal decomposers, and nutrient dynamics.
Biodiversity and ecosystem-functioning theory suggest that litter mixtures composed of dissimilar leaf species can enhance decomposition due to species trait complementarity. Here we created a continuous gradient of litter chemistry trait variability within species mixtures to assess effects of litter dissimilarity on three related processes in a natural stream: litter decomposition, fungal bio...
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Organic matter decomposition in the globally widespread coniferous forests has an important role in the carbon cycle, and cellulose decomposition is especially important in this respect because cellulose is the most abundant polysaccharide in plant litter. Cellulose decomposition was 10 times faster in the fungi-dominated litter of Picea abies forest than in the bacteria-dominated soil. In the ...
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Backgrounds: Neutropenia can be associated with life-threatening infections. Gram negative and staphylococcal infections are the most common pathogens. The spectrum of bacterial isolates has changed considerably over the past four decades. The objective of the present study was to evaluate the pattern of bacterial and fungal infections in neutropenic pediatric patients. Methods: A non-randomize...
متن کاملGrowth and production of aquatic hyphomycetes in decomposing leaf litter
The acetate-to-ergosterol technique was used to estimate fungal productivity of three species of aquatic hyphomycetes growing in decomposing ash leaves in stream microcosms. Following a lag of 20-88 min, incorporation of acetate into ergosterol was linear for at least 10 h. Substrate saturation was reached in the mM range, and there was no indication of isotope dilution. For one species, Articu...
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ژورنال
عنوان ژورنال: FEMS Microbiology Ecology
سال: 2016
ISSN: 1574-6941
DOI: 10.1093/femsec/fiw177