To examine the relationship between plant species composition and microbial community diversity and structure, we carried out a molecular analysis of microbial community structure and diversity in two field experiments. In the first experiment, we examined bacterial community structure in bulk and rhizosphere soils in fields exposed to different plant diversity treatments, via a 16S rRNA gene clone library approach. Clear differences were observed between bacterial communities of the bulk soil and the rhizosphere, with the latter containing lower bacterial diversity. The second experiment focused on the influence of 12 different native grassland plant species on bacterial community size and structure in the rhizosphere, as well as the struc...
The original publication is available at www.springerlink.comRhizosphere microbial communities are i...
Plant and soil properties cooperatively structure soil microbial communities, with implications for ...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
To examine the relationship between plant species composition and microbial community diversity and ...
A coupling of above-ground plant diversity and below-ground microbial diversity has been implied in ...
Molecular analysis of grassland rhizosphere soil has demonstrated complex and diverse bacterial comm...
Molecular analysis of grassland rhizosphere soil has demonstrated complex and diverse bacterial comm...
Soil microbes are known to be key drivers of several essential ecosystem processes such as nutrient ...
Vegetation is known to influence the composition of microbial communities. Bacteria can act as roots...
Soil bacteria are important contributors to primary productivity and nutrient cycling in arid land e...
Plants are known to influence belowground microbial community structure along their roots, but the i...
The plant rhizosphere is a dynamic environment in which many parameters may influence the population...
Soil bacteria are important contributors to primary productivity and nutrient cycling in arid land e...
Plant growth can be affected by soil bacteria. In turn, plants are known to influence soil bacteria ...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
The original publication is available at www.springerlink.comRhizosphere microbial communities are i...
Plant and soil properties cooperatively structure soil microbial communities, with implications for ...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
To examine the relationship between plant species composition and microbial community diversity and ...
A coupling of above-ground plant diversity and below-ground microbial diversity has been implied in ...
Molecular analysis of grassland rhizosphere soil has demonstrated complex and diverse bacterial comm...
Molecular analysis of grassland rhizosphere soil has demonstrated complex and diverse bacterial comm...
Soil microbes are known to be key drivers of several essential ecosystem processes such as nutrient ...
Vegetation is known to influence the composition of microbial communities. Bacteria can act as roots...
Soil bacteria are important contributors to primary productivity and nutrient cycling in arid land e...
Plants are known to influence belowground microbial community structure along their roots, but the i...
The plant rhizosphere is a dynamic environment in which many parameters may influence the population...
Soil bacteria are important contributors to primary productivity and nutrient cycling in arid land e...
Plant growth can be affected by soil bacteria. In turn, plants are known to influence soil bacteria ...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...
The original publication is available at www.springerlink.comRhizosphere microbial communities are i...
Plant and soil properties cooperatively structure soil microbial communities, with implications for ...
Soils support an enormous microbial diversity, but the ecological drivers of this diversity are poor...