It is well known that spring phenology has advanced in temperate regions over the last few decades in response to climate change. However, we understand much less about climate-driven changes in phenology within subtropical and tropical regions, where the timing of events is less predictable and has not been well-studied. It is not known whether subtropical plants have a similar winter chilling requirement to what has been well-documented in temperate species. To explore this possibility, we established a climate chamber experiment to test the effects of photoperiod and chilling on the timing of budburst within 37 subtropical woody species. We found that both moderate and strong chilling treatments advanced budburst and reduced forcing requ...
A warmer world could extend the growing seasons for plants. Changes in spring phenology have been st...
© 2019 Elsevier B.V. The timing of flowering phenology in most temperate trees results from the inte...
The onset of spring is a critical time in mid-latitude atmosphere-biosphere interactions. Deciduous ...
Climate drivers of plant phenology in the subtropics and tropics are still unclear, which significan...
Constraints of temperature on spring plant phenology are closely related to plant growth, vegetation...
The timing of spring phenology in most temperate zone plants results from the combined effects of bo...
Winter chilling, spring forcing temperature and photoperiod are the most important drivers explainin...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Anthropogenic climate change has altered temperate forest phenology, but how these trends will play ...
Anthropogenic climate change has altered temperate forest phenology, but how these trends will play ...
Winter temperature-related chilling and spring temperature-related forcing are two major environment...
An increase in temperature due to greenhouse effects is manifest in the changes in diurnal, annual a...
A warmer world could extend the growing seasons for plants. Changes in spring phenology have been st...
© 2019 Elsevier B.V. The timing of flowering phenology in most temperate trees results from the inte...
The onset of spring is a critical time in mid-latitude atmosphere-biosphere interactions. Deciduous ...
Climate drivers of plant phenology in the subtropics and tropics are still unclear, which significan...
Constraints of temperature on spring plant phenology are closely related to plant growth, vegetation...
The timing of spring phenology in most temperate zone plants results from the combined effects of bo...
Winter chilling, spring forcing temperature and photoperiod are the most important drivers explainin...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Climate change has affected the rates of chilling and heat accumulation, which are vital for floweri...
Anthropogenic climate change has altered temperate forest phenology, but how these trends will play ...
Anthropogenic climate change has altered temperate forest phenology, but how these trends will play ...
Winter temperature-related chilling and spring temperature-related forcing are two major environment...
An increase in temperature due to greenhouse effects is manifest in the changes in diurnal, annual a...
A warmer world could extend the growing seasons for plants. Changes in spring phenology have been st...
© 2019 Elsevier B.V. The timing of flowering phenology in most temperate trees results from the inte...
The onset of spring is a critical time in mid-latitude atmosphere-biosphere interactions. Deciduous ...