High relative air humidity (RH = 85 %) during leaf development disturbs stomatal functioning leading to excessive water loss in conditions of high evaporative demand, resulting in severe reduction in postharvest longevity. In roses, this effect depends on the genotype, opening the possibility for breeding cultivars with more responsive stomata. In this study, we aim at identifying genomic regions associated with the control of water loss following growth at high RH. The F1 generation (108 offspring) and the two parents (P540 and P867) of a tetraploid cut rose population grown at high (85 %) RH were phenotyped for stomatal control to water loss by assessing the relative water content after 4 h of leaflet desiccation (RWC_4 h). The RWC_4 h va...
A constant highrelativeairhumidity (RH) during cultivation can strongly reduce the vase life in some...
A constant high relative air humidity (RH) during cultivation can strongly reduce the vase life in s...
This paper summarises our recent research on the physiological effects of prolonged high RH during g...
High relative air humidity (RH = 85 %) during leaf development disturbs stomatal functioning leading...
Water stress is one of the most common postharvest quality problems, resulting in shorter vase life ...
To better understand the poor regulation of water loss after leaf development at high relative air h...
High relative air humidity (RH>85%) during cultivation is known to reduce the vase life of cut ro...
High relative air humidity (RH ≥ 85%) during growth disturbs stomatal functioning, resulting in exce...
High relative air humidity (RH>85%) during cultivation is known to reduce the vase life of cut rose...
tHigh relative air humidity (RH ≥ 85%) during growth disturbs stomatal functioning, resulting in exc...
Several studies have shown that stomata developed under long-term high relative air humidity (RH =85...
Cultivation of cut flowers with high postharvest longevity is of extreme importance for consumer’s s...
In greenhouse horticulture, evaporative demand varies between seasons. For instance, plants are typi...
High relative air humidity (RH > 85%) during growth has a negative impact on postharvest longevity ...
Water limitation is one of the most important factors limiting crop productivity world-wide and has ...
A constant highrelativeairhumidity (RH) during cultivation can strongly reduce the vase life in some...
A constant high relative air humidity (RH) during cultivation can strongly reduce the vase life in s...
This paper summarises our recent research on the physiological effects of prolonged high RH during g...
High relative air humidity (RH = 85 %) during leaf development disturbs stomatal functioning leading...
Water stress is one of the most common postharvest quality problems, resulting in shorter vase life ...
To better understand the poor regulation of water loss after leaf development at high relative air h...
High relative air humidity (RH>85%) during cultivation is known to reduce the vase life of cut ro...
High relative air humidity (RH ≥ 85%) during growth disturbs stomatal functioning, resulting in exce...
High relative air humidity (RH>85%) during cultivation is known to reduce the vase life of cut rose...
tHigh relative air humidity (RH ≥ 85%) during growth disturbs stomatal functioning, resulting in exc...
Several studies have shown that stomata developed under long-term high relative air humidity (RH =85...
Cultivation of cut flowers with high postharvest longevity is of extreme importance for consumer’s s...
In greenhouse horticulture, evaporative demand varies between seasons. For instance, plants are typi...
High relative air humidity (RH > 85%) during growth has a negative impact on postharvest longevity ...
Water limitation is one of the most important factors limiting crop productivity world-wide and has ...
A constant highrelativeairhumidity (RH) during cultivation can strongly reduce the vase life in some...
A constant high relative air humidity (RH) during cultivation can strongly reduce the vase life in s...
This paper summarises our recent research on the physiological effects of prolonged high RH during g...