Global change experiments often observe shifts in bacterial community composition based on 16S rRNA gene sequences. However, this genetic region can mask a large amount of genetic and phenotypic variation among bacterial strains sharing even identical 16S regions. As such, it remains largely unknown whether variation at the sub-16S level, sometimes termed microdiversity, responds to environmental perturbations and whether such changes are relevant to ecosystem processes. Here, we investigated microdiversity within Curtobacterium, the dominant bacterium found in the leaf litter layer of soil, to simulated drought and nitrogen addition in a field experiment. We first developed and validated Curtobacterium-specific primers of the groEL gene to...
Microbial physiology may be critical for projecting future changes in soil carbon. Still, predicting...
Bacteria and fungi drive the decomposition of dead plant biomass (litter), an important step in the ...
Soil bacterial communities are altered by anthropogenic drivers such as climate change-related warmi...
Global change experiments often observe shifts in bacterial community composition based on 16S rRNA ...
Much genetic diversity within a bacterial community is likely obscured by microdiversity within oper...
Global changes such as increased frequency of fire, drought, and nitrogen deposition, perturb microo...
Microbial community responses to environmental change are largely associated with ecological process...
The high diversity of microbial communities hampers predictions about their responses to global chan...
Microbial ecology has been transformed by the advent of high-throughput marker gene and metagenomic ...
Despite our ability to characterize diverse microbial communities, we currently lack the capability ...
Abstract Microbial traits related to ecological responses and functions could provide a common curre...
Global changes such as increased drought and atmospheric nitrogen deposition perturb both the microb...
Bacteria and fungi drive the decomposition of dead plant biomass (litter), an important step in the ...
The high diversity of soil bacteria is attributed to the spatial complexity of soil systems, where h...
Bacterial communities in the organic leaf litter layer and bulk (mineral and organic) soil are sensi...
Microbial physiology may be critical for projecting future changes in soil carbon. Still, predicting...
Bacteria and fungi drive the decomposition of dead plant biomass (litter), an important step in the ...
Soil bacterial communities are altered by anthropogenic drivers such as climate change-related warmi...
Global change experiments often observe shifts in bacterial community composition based on 16S rRNA ...
Much genetic diversity within a bacterial community is likely obscured by microdiversity within oper...
Global changes such as increased frequency of fire, drought, and nitrogen deposition, perturb microo...
Microbial community responses to environmental change are largely associated with ecological process...
The high diversity of microbial communities hampers predictions about their responses to global chan...
Microbial ecology has been transformed by the advent of high-throughput marker gene and metagenomic ...
Despite our ability to characterize diverse microbial communities, we currently lack the capability ...
Abstract Microbial traits related to ecological responses and functions could provide a common curre...
Global changes such as increased drought and atmospheric nitrogen deposition perturb both the microb...
Bacteria and fungi drive the decomposition of dead plant biomass (litter), an important step in the ...
The high diversity of soil bacteria is attributed to the spatial complexity of soil systems, where h...
Bacterial communities in the organic leaf litter layer and bulk (mineral and organic) soil are sensi...
Microbial physiology may be critical for projecting future changes in soil carbon. Still, predicting...
Bacteria and fungi drive the decomposition of dead plant biomass (litter), an important step in the ...
Soil bacterial communities are altered by anthropogenic drivers such as climate change-related warmi...