Atmospheric nitrogen (N) deposition profoundly alters the soil microbial communities and will thus affect nutrient cycles. The effects of N availability on microbial community, however, are not clear. We used PLFA analysis to evaluate the effects of a gradient of N addition (0, 2.8, 5.6, 11.2, and 22.4 g N m-2 y-1) for three years on the rhizospheric microbial community of Pinus tabuliformis seedlings. The main factors influencing the community were quantified using structural equation modelling and redundancy analysis. At the microbial-community level, N addition increased the total phospholipid fatty acids content by increasing the dissolved organic carbon (DOC) and root biomass. Increases in soil microbial biomass carbon and N, however, ...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elucidating the responses of soil microbial abundance and community composition to nitrogen (N) addi...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Atmospheric nitrogen (N) deposition profoundly alters the soil microbial communities and will thus a...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Increasing nitrogen (N) deposition severely impacts terrestrial biogeochemical cycles by altering th...
Nutrient addition to forest ecosystems significantly influences belowground microbial diversity, com...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
<div><p>Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) def...
Forest soil respiration plays an important role in global carbon (C) cycling. Owing to the high degr...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elucidating the responses of soil microbial abundance and community composition to nitrogen (N) addi...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Atmospheric nitrogen (N) deposition profoundly alters the soil microbial communities and will thus a...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Increasing nitrogen (N) deposition severely impacts terrestrial biogeochemical cycles by altering th...
Nutrient addition to forest ecosystems significantly influences belowground microbial diversity, com...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Increasing nitrogen (N) deposition has aroused large concerns because of its potential negative effe...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
<div><p>Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) def...
Forest soil respiration plays an important role in global carbon (C) cycling. Owing to the high degr...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...
Elucidating the responses of soil microbial abundance and community composition to nitrogen (N) addi...
Elevated nitrogen (N) deposition in humid tropical regions may exacerbate phosphorus (P) deficiency ...