To reveal the ecological mechanism of spatial patterns of plant phenology and spatial sensitivity of plant phenology responses to climate change, we used Ulmus pumila leaf unfolding and leaf fall data at 46 stations of China's temperate zone during the period 1986-2005 to simulate 20-year mean and yearly spatial patterns of the beginning and end dates of the Ulmus pumila growing season by establishing air temperature-based spatial phenology models, and validate these models by extensive spatial extrapolation. Results show that the spatial patterns of 20-year mean and yearly February-April or September-November temperatures control the spatial patterns of 20-year mean and yearly beginning or end dates of the growing season. Spatial seri...
Recent shifts in phenology reflect the biological response to current climate change. Aiming to enha...
Climate warming has substantially advanced the timing of spring leaf-out of woody species at middle ...
Based on plant phenology data from 26 stations of the Chinese Phenology Observation Network of the C...
We used Ulmus pumila leaf unfolding and leaf fall data collected at 46 stations during the 1986-2005...
Using spatial phenology model-based Ulmus pumila leaf unfolding and leaf fall data at 8 kmx8 km grid...
Using Ulmus pumila (Siberian Elm) leaf unfolding and leaf fall phenological data from 46 stations in...
Leaf phenology has been shown to be one of the most important indicators of the effects of climate c...
Autumn phenology can regulate climate-biosphere interactions and net primary production within the e...
Using phenological and normalized difference vegetation index (NDVI) data from 1982 to 1993 at seven...
Using first leaf unfolding data of Salix matsudana, Populus simonii, Ulmus pumila, and Prunus armeni...
Using normalized difference vegetation index data, we fitted unified forcing and chilling phenology ...
In order to understand past plant phenological responses to climate change in China (1963–2009), we ...
Using leaf unfolding and leaf coloration data of a widely distributed herbaceous species, Taraxacum ...
Existing evidence of plant phenological change to temperature increase demonstrates that the phenolo...
Autumn vegetation phenology plays a critical role in identifying the end of the growing season and i...
Recent shifts in phenology reflect the biological response to current climate change. Aiming to enha...
Climate warming has substantially advanced the timing of spring leaf-out of woody species at middle ...
Based on plant phenology data from 26 stations of the Chinese Phenology Observation Network of the C...
We used Ulmus pumila leaf unfolding and leaf fall data collected at 46 stations during the 1986-2005...
Using spatial phenology model-based Ulmus pumila leaf unfolding and leaf fall data at 8 kmx8 km grid...
Using Ulmus pumila (Siberian Elm) leaf unfolding and leaf fall phenological data from 46 stations in...
Leaf phenology has been shown to be one of the most important indicators of the effects of climate c...
Autumn phenology can regulate climate-biosphere interactions and net primary production within the e...
Using phenological and normalized difference vegetation index (NDVI) data from 1982 to 1993 at seven...
Using first leaf unfolding data of Salix matsudana, Populus simonii, Ulmus pumila, and Prunus armeni...
Using normalized difference vegetation index data, we fitted unified forcing and chilling phenology ...
In order to understand past plant phenological responses to climate change in China (1963–2009), we ...
Using leaf unfolding and leaf coloration data of a widely distributed herbaceous species, Taraxacum ...
Existing evidence of plant phenological change to temperature increase demonstrates that the phenolo...
Autumn vegetation phenology plays a critical role in identifying the end of the growing season and i...
Recent shifts in phenology reflect the biological response to current climate change. Aiming to enha...
Climate warming has substantially advanced the timing of spring leaf-out of woody species at middle ...
Based on plant phenology data from 26 stations of the Chinese Phenology Observation Network of the C...