Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeochemical processes, but the importance of shifts in soil stoichiometry are complicated by the nearly limitless interactions between an immensely rich species pool and a multiple chemical resource forms. To more clearly identify the impact of soil C:N:P on bacteria, we evaluated the cumulative effects of single and coupled long-term nutrient additions (i.e., C as mannitol, N as equal concentrations NH4+ and NO3−, and P as Na3PO4) and water on communities in an Antarctic polar desert, Taylor Valley. Untreated soils possessed relatively low bacterial diversity, simplified organic C sources due to the absence of plants, limited inorganic N, and excess...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...
Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeochemi...
Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeochemi...
<p>Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeoch...
Both nitrogen (N) and phosphorus (P) may limit plant production in steppes and affect plant communit...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Anthropogenic nitrogen (N) input is known to alter the soil microbiome, but how N enrichment influen...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
Subarctic tundra soils store large quantities of the global organic carbon (C) pool as the decomposi...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
Anthropogenic nitrogen (N) input is known to alter the soil microbiome, but how N enrichment influen...
At the early stage of primary succession, there are deficient nutrient resources as well as competit...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...
Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeochemi...
Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeochemi...
<p>Imbalances in C:N:P supply ratios may cause bacterial resource limitations and constrain biogeoch...
Both nitrogen (N) and phosphorus (P) may limit plant production in steppes and affect plant communit...
© The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attributi...
Anthropogenic nitrogen (N) input is known to alter the soil microbiome, but how N enrichment influen...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
Subarctic tundra soils store large quantities of the global organic carbon (C) pool as the decomposi...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
With anthropogenic nutrient inputs to ecosystems increasing globally, there are long-standing, funda...
Anthropogenic nitrogen (N) input is known to alter the soil microbiome, but how N enrichment influen...
At the early stage of primary succession, there are deficient nutrient resources as well as competit...
Aim: Soil nitrogen (N) cycling is critical to the productivity of terrestrial ecosystems. However, t...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...
Free to read Soil microorganisms are critical to ecosystem functioning and the maintenance of soil f...