During the growing season, the cambium of conifer trees produces successive rows of xylem cells, the tracheids, that sequentially pass through the phases of enlargement and secondary wall thickening before dying and becoming functional. Climate variability can strongly influence the kinetics of morphogenetic processes, eventually affecting tracheid shape and size. This study investigates xylem anatomical structure in the stem of Picea abies to retrospectively infer how, in the long term, climate affects the processes of cell enlargement and wall thickening
Because climate can affect xylem cell anatomy, series of intra-annual cell anatomical features have ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
Because of global warming, high-latitude ecosystems are expected to experience increases in temperat...
During the growing season, the cambium of conifer trees produces successive rows of xylem cells, the...
Climate change can induce substantial modifications in xylem structure and water transport capacity ...
In the conifer tree rings, each tracheid goes through three phases of differentiation before becomin...
One of the most evident effects of the rapid warming occurring recently in cold and high-latitude fo...
Conifer trees possess a typical anatomical tree-ring structure characterized by a transition from la...
Studies on tree-ring formation allow assessing the impact and timing of environmental factors on gro...
Understanding how climate affects xylem formation is critical for predicting the impact of future co...
Seasonal dynamics of the timing and rate in cell production and differentiation imprint climate sign...
International audience& Context The knowledge on cambial activity in water-limited environments, suc...
Background and Aims: Studies on xylogenesis focus essentially on the stem, whereas there is basicall...
The formation of wood results from cambial activity and its anatomical properties reflect the variab...
The effects of climate change on high-latitude forest ecosystems are complex, making forecasts of fu...
Because climate can affect xylem cell anatomy, series of intra-annual cell anatomical features have ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
Because of global warming, high-latitude ecosystems are expected to experience increases in temperat...
During the growing season, the cambium of conifer trees produces successive rows of xylem cells, the...
Climate change can induce substantial modifications in xylem structure and water transport capacity ...
In the conifer tree rings, each tracheid goes through three phases of differentiation before becomin...
One of the most evident effects of the rapid warming occurring recently in cold and high-latitude fo...
Conifer trees possess a typical anatomical tree-ring structure characterized by a transition from la...
Studies on tree-ring formation allow assessing the impact and timing of environmental factors on gro...
Understanding how climate affects xylem formation is critical for predicting the impact of future co...
Seasonal dynamics of the timing and rate in cell production and differentiation imprint climate sign...
International audience& Context The knowledge on cambial activity in water-limited environments, suc...
Background and Aims: Studies on xylogenesis focus essentially on the stem, whereas there is basicall...
The formation of wood results from cambial activity and its anatomical properties reflect the variab...
The effects of climate change on high-latitude forest ecosystems are complex, making forecasts of fu...
Because climate can affect xylem cell anatomy, series of intra-annual cell anatomical features have ...
The present study assessed the effects of climatic conditions on radial growth and functional anatom...
Because of global warming, high-latitude ecosystems are expected to experience increases in temperat...