The increase in severe drought events due to climate change in the areas traditionally suitable for viticulture is enhancing the need to understand how grapevines regulate their photosynthetic metabolism in order to forecast specific cultivar adaptive responses to the changing environment. This study aims at evaluating the association between leaf anatomical traits and eco-physiological adjustments of the 'Falanghina' grapevine under different microclimatic conditions at four sites in southern Italy. Sites were characterized by different pedoclimatic conditions but, as much as possible, were similar for plant material and cultivation management. Microscopy analyses on leaves were performed to quantify stomata and vein traits, while eco-phys...
This article belongs to the Special Issue Tackling Grapevine Water Relations in a Global Warming Sce...
Vitis vinifera L. is the most widely cultivated and economically important fruit crop in the world (...
Stomata control CO2 uptake for photosynthesis and water loss through transpiration, thus playing a k...
The increase in severe drought events due to climate change in the areas traditionally suitable for ...
The identification of drought-resistant genotypes of Vitis vinifera that can optimize their water us...
Aims: The aim of this paper is to evaluate the photoinhibition capability, CO2 fixation activity and...
Abstract. Knowledge on variety traits and physiological responses to stress is still scarce in Vitis...
From an ecological perspective, grape production is a result of the many tiered interactions between...
In Italy, grapevines are extensively cultivated, with Sicily representing one of the most significan...
Several studies have investigated water relationships in grapevines, but the responses to water limi...
Several studies have investigated water relationships in grapevines, but the responses to water limi...
Climate change forecasts suggest temperature increases and lower rainfall rates, both of which chall...
Aims: Genetic variability in grapevine cultivars may influence their strategy to cope with drought t...
Grapevine (Vitis vinifera L.) is an economically important crop with a wide geographical distributio...
As a result of global climate change, strongly felt in recent years, the grapevine is becoming incre...
This article belongs to the Special Issue Tackling Grapevine Water Relations in a Global Warming Sce...
Vitis vinifera L. is the most widely cultivated and economically important fruit crop in the world (...
Stomata control CO2 uptake for photosynthesis and water loss through transpiration, thus playing a k...
The increase in severe drought events due to climate change in the areas traditionally suitable for ...
The identification of drought-resistant genotypes of Vitis vinifera that can optimize their water us...
Aims: The aim of this paper is to evaluate the photoinhibition capability, CO2 fixation activity and...
Abstract. Knowledge on variety traits and physiological responses to stress is still scarce in Vitis...
From an ecological perspective, grape production is a result of the many tiered interactions between...
In Italy, grapevines are extensively cultivated, with Sicily representing one of the most significan...
Several studies have investigated water relationships in grapevines, but the responses to water limi...
Several studies have investigated water relationships in grapevines, but the responses to water limi...
Climate change forecasts suggest temperature increases and lower rainfall rates, both of which chall...
Aims: Genetic variability in grapevine cultivars may influence their strategy to cope with drought t...
Grapevine (Vitis vinifera L.) is an economically important crop with a wide geographical distributio...
As a result of global climate change, strongly felt in recent years, the grapevine is becoming incre...
This article belongs to the Special Issue Tackling Grapevine Water Relations in a Global Warming Sce...
Vitis vinifera L. is the most widely cultivated and economically important fruit crop in the world (...
Stomata control CO2 uptake for photosynthesis and water loss through transpiration, thus playing a k...