In this study, we investigated the impact of different land use intensities (LUI) on the root-associated microbiome of Dactylis glomerata (orchardgrass). For this purpose, eight sampling sites with different land use intensity levels but comparable soil properties were selected in the southwest of Germany. Experimental plots covered land use levels from natural grassland up to intensively managed meadows. We used 16S rRNA gene based barcoding to assess the plant-associated community structure in the endosphere, rhizosphere and bulk soil of D. glomerata. Samples were taken at the reproductive stage of the plant in early summer. Our data indicated that roots harbor a distinct bacterial community, which clearly differed from the microbiome of ...
To examine the relationship between plant species composition and microbial community diversity and ...
Interactions between plants and bacteria in the non-rhizosphere soil are rarely assessed, because th...
The extent of soil microbial diversity is seen to be critical to the maintenance of soil health and ...
In this study, we investigated the impact of different land use intensities (LUI) on the root-associ...
Plant-associated bacterial assemblages are critical for plant fitness. Thus, identifying a consisten...
Background Soil microbial communities are major drivers of cycling of soil nutrients that sustain pl...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
Abstract: Microbial community ecology studies have traditionally utilized culture-based methodologie...
Microbiomes inhabiting plants are crucial for plant productivity and well-being. A plethora of inter...
Microbial community ecology studies have traditionally utilized culture-based methodologies, though ...
ABSTRACT Plant roots influence the soil microbiota via physical interaction, secretion, and plant im...
Terrestrial plants and microbes have co-evolved since the emergence of the former on Earth. Associat...
To examine the relationship between plant species composition and microbial community diversity and ...
Interactions between plants and bacteria in the non-rhizosphere soil are rarely assessed, because th...
The extent of soil microbial diversity is seen to be critical to the maintenance of soil health and ...
In this study, we investigated the impact of different land use intensities (LUI) on the root-associ...
Plant-associated bacterial assemblages are critical for plant fitness. Thus, identifying a consisten...
Background Soil microbial communities are major drivers of cycling of soil nutrients that sustain pl...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
The rhizosphere encompasses the soil surrounding the surface of plants’ fine roots. Accordingly, the...
Abstract: Microbial community ecology studies have traditionally utilized culture-based methodologie...
Microbiomes inhabiting plants are crucial for plant productivity and well-being. A plethora of inter...
Microbial community ecology studies have traditionally utilized culture-based methodologies, though ...
ABSTRACT Plant roots influence the soil microbiota via physical interaction, secretion, and plant im...
Terrestrial plants and microbes have co-evolved since the emergence of the former on Earth. Associat...
To examine the relationship between plant species composition and microbial community diversity and ...
Interactions between plants and bacteria in the non-rhizosphere soil are rarely assessed, because th...
The extent of soil microbial diversity is seen to be critical to the maintenance of soil health and ...