Abstract Investigating the responses of plant anatomical traits of trees to drought–rewatering cycles helps us to understand their responses to climate change; however, such work has not been adequately reported. In this study, Ginkgo biloba L. saplings were subjected to moderate, severe, extreme and lethal drought conditions by withholding water according to the percentage loss of hydraulic conductivity (PLC) and rewatering on a regular basis. Samples of phloem, cambium and xylem were collected to quantify their cellular properties including cambium and phloem cell vitality, xylem growth ring width, pit aspiration rates and pit membrane thickness using light microscopy and transmission microscopy. The results showed that the mortality rate...
Hydraulic failure caused by severe drought contributes to aboveground dieback and whole-plant death....
Background and Aims The ability to avoid drought-induced embolisms in the xylem is one of the essent...
Centro de Investigación Forestal (CIFOR)Increasing dryness challenges trees' ability to maintain wat...
Abstract Investigating the responses of plant anatomical traits of trees to drought–rewatering cycle...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Drought is one of the most challenging environmental factors inducing world-wide forest die-back and...
Summary: Hydraulic dysfunction in leaves determines key aspects of whole-plant responses to water st...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Intensified droughts are affecting tropical forests across the globe. However, the underlying mechan...
Background and Aims The structural properties of leaf venation and xylem anatomy strongly influence ...
International audienceAbstract The capacity of trees to tolerate and survive increasing drought cond...
Drought-induced tree mortality alters forest structure and function, yet our ability to predict when...
13 páginas.- 7 figuras.- 92 referenciasThe mechanisms by which woody plants recover xylem hydraulic ...
Hydraulic failure caused by severe drought contributes to aboveground dieback and whole-plant death....
Background and Aims The ability to avoid drought-induced embolisms in the xylem is one of the essent...
Centro de Investigación Forestal (CIFOR)Increasing dryness challenges trees' ability to maintain wat...
Abstract Investigating the responses of plant anatomical traits of trees to drought–rewatering cycle...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
Drought is one of the most challenging environmental factors inducing world-wide forest die-back and...
Summary: Hydraulic dysfunction in leaves determines key aspects of whole-plant responses to water st...
International audienceBackground - Several traits, mostly related to stomatal and xylem functioning,...
In woody plants, photosynthetic capacity is closely linked to rates at which the plant hydraulic sys...
Intensified droughts are affecting tropical forests across the globe. However, the underlying mechan...
Background and Aims The structural properties of leaf venation and xylem anatomy strongly influence ...
International audienceAbstract The capacity of trees to tolerate and survive increasing drought cond...
Drought-induced tree mortality alters forest structure and function, yet our ability to predict when...
13 páginas.- 7 figuras.- 92 referenciasThe mechanisms by which woody plants recover xylem hydraulic ...
Hydraulic failure caused by severe drought contributes to aboveground dieback and whole-plant death....
Background and Aims The ability to avoid drought-induced embolisms in the xylem is one of the essent...
Centro de Investigación Forestal (CIFOR)Increasing dryness challenges trees' ability to maintain wat...