Seed release is crucial in the reproductive cycle of many desert plant species, but their responses to precipitation changes are still unclear. To clarify the response patterns, we conducted a long-term in situ water addition experiment with five treatments, including natural precipitation (control) plus an extra 25%, 50%, 75%, and 100% of the local mean annual precipitation (145 mm), in a temperate desert in northwestern China. Both the onset and end of the seed release phenophase of the locally dominant shrub, Nitraria tangutorum, were observed from 2012 to 2018. The results showed that both the onset and end time of seed release, especially the end time, were significantly affected by water addition treatment. On average, the end time of...
Variations in species diversity and soil properties in response to future climate change is a key fo...
As part of global climate change, variation in precipitation in arid ecosystems is leading to plant ...
Alterations in global and regional precipitation patterns are expected to affect plant and ecosystem...
Plant phenology is the most sensitive biological indicator that responds to climate change. Many cli...
Interannual seasonal variability in precipitation may strongly affect the life history and growth of...
Investigating how seed germination of multiple species in an ecosystem responds to environmental con...
Future climate is projected to increase in the intensity and frequency of extreme precipitation even...
We collected publications that focused on how the timing and duration of plant phenophases respond t...
Serotiny and delayed seed dispersal are thought to have evolved to cope with environmental variabili...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
Due to significant decreases in precipitation in northern China, knowledge of the response of seed g...
Plants have evolved diverse strategies to ensure their survival and regeneration in specific environ...
Drought is often thought to stimulate flowering in desert, and sometimes in mesic, annuals. I review...
1.Organisms living in highly variable environments have to display integrated strategies to deal wit...
Climate models predict greater rainfall will occur in the arid and semiarid regions of Northwest Chi...
Variations in species diversity and soil properties in response to future climate change is a key fo...
As part of global climate change, variation in precipitation in arid ecosystems is leading to plant ...
Alterations in global and regional precipitation patterns are expected to affect plant and ecosystem...
Plant phenology is the most sensitive biological indicator that responds to climate change. Many cli...
Interannual seasonal variability in precipitation may strongly affect the life history and growth of...
Investigating how seed germination of multiple species in an ecosystem responds to environmental con...
Future climate is projected to increase in the intensity and frequency of extreme precipitation even...
We collected publications that focused on how the timing and duration of plant phenophases respond t...
Serotiny and delayed seed dispersal are thought to have evolved to cope with environmental variabili...
Understanding how plant ecophysiological traits of coexisting species within a community respond to ...
Due to significant decreases in precipitation in northern China, knowledge of the response of seed g...
Plants have evolved diverse strategies to ensure their survival and regeneration in specific environ...
Drought is often thought to stimulate flowering in desert, and sometimes in mesic, annuals. I review...
1.Organisms living in highly variable environments have to display integrated strategies to deal wit...
Climate models predict greater rainfall will occur in the arid and semiarid regions of Northwest Chi...
Variations in species diversity and soil properties in response to future climate change is a key fo...
As part of global climate change, variation in precipitation in arid ecosystems is leading to plant ...
Alterations in global and regional precipitation patterns are expected to affect plant and ecosystem...