Climatically controlled allocation to reproduction is a key mechanism by which climate influences tree growth and may explain lagged correlations between climate and growth. We used continent‐wide datasets of tree‐ring chronologies and annual reproductive effort in Fagus sylvatica from 1901 to 2015 to characterise relationships between climate, reproduction and growth. Results highlight that variable allocation to reproduction is a key factor for growth in this species, and that high reproductive effort (‘mast years’) is associated with stem growth reduction. Additionally, high reproductive effort is associated with previous summer temperature, creating lagged climate effects on growth. Consequently, understanding growth variability in fore...
Tree growth is frequently linked to weather conditions prior to the growing season but our understan...
The role of future forests in global biogeochemical cycles will depend on how different tree species...
In the future, climate change is expected to affect the spatial distribution of most tree species in...
Climatically controlled allocation to reproduction is a key mechanism by which climate influences tr...
Climatically controlled allocation to reproduction is a key mechanism by which climate influences tr...
Interannual variation in radial growth is influenced by a range of physiological processes, includin...
The aim of our study was to determine variation in the response of radial growth in Fagus sylvatica ...
Tree growth is frequently linked to weather conditions prior to the growing season but our understan...
peer reviewedRadial stem growth dynamics at seasonal resolution are essential to understand how fore...
Ongoing changes in global climate are altering ecological conditions for many species. The consequen...
Tree growth is frequently linked to weather conditions prior to the growing season but our understan...
The role of future forests in global biogeochemical cycles will depend on how different tree species...
In the future, climate change is expected to affect the spatial distribution of most tree species in...
Climatically controlled allocation to reproduction is a key mechanism by which climate influences tr...
Climatically controlled allocation to reproduction is a key mechanism by which climate influences tr...
Interannual variation in radial growth is influenced by a range of physiological processes, includin...
The aim of our study was to determine variation in the response of radial growth in Fagus sylvatica ...
Tree growth is frequently linked to weather conditions prior to the growing season but our understan...
peer reviewedRadial stem growth dynamics at seasonal resolution are essential to understand how fore...
Ongoing changes in global climate are altering ecological conditions for many species. The consequen...
Tree growth is frequently linked to weather conditions prior to the growing season but our understan...
The role of future forests in global biogeochemical cycles will depend on how different tree species...
In the future, climate change is expected to affect the spatial distribution of most tree species in...