Seasonality, an exogenous driver, motivates the biological and ecological temporal dynamics of animal and plant communities. Underexplored microbial temporal endogenous dynamics hinders the prediction of microbial response to climate change. To elucidate temporal dynamics of microbial communities, temporal turnover rates, phylogenetic relatedness, and species interactions were integrated to compare those of a series of forest ecosystems along latitudinal gradients. The seasonal turnover rhythm of microbial communities, estimated by the slope (w value) of similarity-time decay relationship, was spatially structured across the latitudinal gradient, which may be caused by a mixture of both diurnal temperature variation and seasonal patterns of...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
Seasonality, an exogenous driver, motivates the biological and ecological temporal dynamics of anima...
Climate warming is increasingly leading to marked changes in plant and animal biodiversity, but it r...
Climate change globally affects soil microbial community assembly across ecosystems. However, little...
Soil microbial communities are crucial in ecosystem-level decomposition and nutrient cycling process...
The soil microbial community and nitrogen (N) dynamics change seasonally due to several factors. The...
Temperature is known to influence ecosystem processes through its direct effect on biological rates ...
Understanding soil CO2 flux temperature sensitivity (Q(10)) is critical for predicting ecosystem-lev...
The metabolic theory of ecology assumes that rates of selection and adaptation for organisms are fun...
Environmental change will influence the ecosystem processes regulated by microbial communities, incl...
Temperature is a major determinant of biological process rates, and microorganisms are key regulator...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
Seasonality, an exogenous driver, motivates the biological and ecological temporal dynamics of anima...
Climate warming is increasingly leading to marked changes in plant and animal biodiversity, but it r...
Climate change globally affects soil microbial community assembly across ecosystems. However, little...
Soil microbial communities are crucial in ecosystem-level decomposition and nutrient cycling process...
The soil microbial community and nitrogen (N) dynamics change seasonally due to several factors. The...
Temperature is known to influence ecosystem processes through its direct effect on biological rates ...
Understanding soil CO2 flux temperature sensitivity (Q(10)) is critical for predicting ecosystem-lev...
The metabolic theory of ecology assumes that rates of selection and adaptation for organisms are fun...
Environmental change will influence the ecosystem processes regulated by microbial communities, incl...
Temperature is a major determinant of biological process rates, and microorganisms are key regulator...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...
As two central issues of global climate change, the continuous increase of both atmospheric CO2 conc...