Plant phenology is the most sensitive biological indicator that responds to climate change. Many climate models predict that extreme precipitation events will occur frequently in the arid areas of northwest China in the future, with an increase in the quantity and unpredictability of rain. Future changes in precipitation will inevitably have a profound impact on plant phenology in arid areas. A recent study has shown that after the simulated enhancement of precipitation, the end time of the leaf unfolding period of Nitraria tangutorum advanced, and the end time of leaf senescence was delayed. Under extreme climatic conditions, such as extremely dry or wet years, it is unclear whether the influence of the simulated enhancement of precipitati...
Current climate change is characterized by an increase in weather variability, which includes altere...
Plant phenology models, especially leafing models, play critical roles in evaluating the impact of c...
Research Highlights: Short-term nitrogen (N) addition did not significantly alter the effects of sea...
We collected publications that focused on how the timing and duration of plant phenophases respond t...
Seed release is crucial in the reproductive cycle of many desert plant species, but their responses ...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
The interactive effects of five seasonal precipitation distribution patterns and two levels of N dep...
Aims Precipitation is predicted to increase in arid and semiarid regions under climate change, with ...
Interannual seasonal variability in precipitation may strongly affect the life history and growth of...
Plasticity of root traits plays an important role in plant growth and survival under changing climat...
Leaf senescence in winter deciduous species signals the transition from the active to the dormant st...
Climate change is a key factor that may cause the extinction of species. The associated reduced weat...
† Background and aims Changes in supplies of resources will modify plant functional traits. However,...
Extreme events such as extreme drought and precipitation are expected to increase in intensity and/o...
Future climate is projected to increase in the intensity and frequency of extreme precipitation even...
Current climate change is characterized by an increase in weather variability, which includes altere...
Plant phenology models, especially leafing models, play critical roles in evaluating the impact of c...
Research Highlights: Short-term nitrogen (N) addition did not significantly alter the effects of sea...
We collected publications that focused on how the timing and duration of plant phenophases respond t...
Seed release is crucial in the reproductive cycle of many desert plant species, but their responses ...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
The interactive effects of five seasonal precipitation distribution patterns and two levels of N dep...
Aims Precipitation is predicted to increase in arid and semiarid regions under climate change, with ...
Interannual seasonal variability in precipitation may strongly affect the life history and growth of...
Plasticity of root traits plays an important role in plant growth and survival under changing climat...
Leaf senescence in winter deciduous species signals the transition from the active to the dormant st...
Climate change is a key factor that may cause the extinction of species. The associated reduced weat...
† Background and aims Changes in supplies of resources will modify plant functional traits. However,...
Extreme events such as extreme drought and precipitation are expected to increase in intensity and/o...
Future climate is projected to increase in the intensity and frequency of extreme precipitation even...
Current climate change is characterized by an increase in weather variability, which includes altere...
Plant phenology models, especially leafing models, play critical roles in evaluating the impact of c...
Research Highlights: Short-term nitrogen (N) addition did not significantly alter the effects of sea...