Javascript must be enabled to continue!
Impact of Drought Stress on the Accumulation of Capsaicinoids in Capsicum Cultivars with Different Initial Capsaicinoid Levels
View through CrossRef
Capsaicinoids are the alkaloids in hot pepper that cause the sensation of heat when eaten and are affected by a genetic and environment interaction. Drought stress is well recognized as an environmental condition that influences capsaicinoid accumulation. This investigation identified the responses of capsaicinoid accumulation in hot pepper cultivars under drought stress condition. A total of nine cultivars with a different initial pungency level, i.e., low, medium, and high, was subjected to gradual drought stress during the flowering stage. Plants in this drought stress group were supplied with reduced water applications of 25%, 50%, and 75% by volume at 10, 20, and 30 days after flowering (DAF), respectively. Leaf water potential and relative water content were recorded to measure the level of drought stress. The results indicated that all cultivars were subjected to drought stress because of their decrease in leaf water potential and changes in physiological characteristics, e.g., growth and yield performance. In addition, leaf area and shoot-to-root ratio were good criteria for identifying hot pepper cultivars under drought stress because their responses were correlated with the stress level and yield components. Yield performances of the high pungency group did not decrease under drought stress, whereas those of the low pungency group did decrease. In conclusion, capsaicinoid levels increased for all cultivars studied when subjected to drought stress, except for the cultivars in the high pungency group. A yield response under drought stress for the medium pungency group varied and was not found to be associated with drought stress.
American Society for Horticultural Science
Title: Impact of Drought Stress on the Accumulation of Capsaicinoids in Capsicum Cultivars with Different Initial Capsaicinoid Levels
Description:
Capsaicinoids are the alkaloids in hot pepper that cause the sensation of heat when eaten and are affected by a genetic and environment interaction.
Drought stress is well recognized as an environmental condition that influences capsaicinoid accumulation.
This investigation identified the responses of capsaicinoid accumulation in hot pepper cultivars under drought stress condition.
A total of nine cultivars with a different initial pungency level, i.
e.
, low, medium, and high, was subjected to gradual drought stress during the flowering stage.
Plants in this drought stress group were supplied with reduced water applications of 25%, 50%, and 75% by volume at 10, 20, and 30 days after flowering (DAF), respectively.
Leaf water potential and relative water content were recorded to measure the level of drought stress.
The results indicated that all cultivars were subjected to drought stress because of their decrease in leaf water potential and changes in physiological characteristics, e.
g.
, growth and yield performance.
In addition, leaf area and shoot-to-root ratio were good criteria for identifying hot pepper cultivars under drought stress because their responses were correlated with the stress level and yield components.
Yield performances of the high pungency group did not decrease under drought stress, whereas those of the low pungency group did decrease.
In conclusion, capsaicinoid levels increased for all cultivars studied when subjected to drought stress, except for the cultivars in the high pungency group.
A yield response under drought stress for the medium pungency group varied and was not found to be associated with drought stress.
Related Results
Impact of Environments on the Accumulation of Capsaicinoids in Capsicum spp.
Impact of Environments on the Accumulation of Capsaicinoids in Capsicum spp.
The use of a chili fruit is distinguished by its capsaicinoid content, which shows many beneficial effects in food and pharmaceutical applications. However, chilies exhibit wide va...
Stability analysis of yield and capsaicinoids content in chili (Capsicum spp.) grown across six environments
Stability analysis of yield and capsaicinoids content in chili (Capsicum spp.) grown across six environments
AbstractThere is a need for identifying chili cultivars with stable amounts of capsaicinoids so that the amount of pungency in the final product can be controlled. Therefore, six c...
Response of lignin and flavonoid metabolic pathways in Capsicum annuum to drought and waterlogging stresses
Response of lignin and flavonoid metabolic pathways in Capsicum annuum to drought and waterlogging stresses
Water stress is a critical factor limiting the growth and development of Capsicum annuum. Flavonoids and lignin are important secondary metabolites that serve as signaling molecule...
Comparison of Flash Drought and Traditional Drought on Characteristics and Driving Forces in Xinjiang
Comparison of Flash Drought and Traditional Drought on Characteristics and Driving Forces in Xinjiang
In the context of climate warming, flash drought has become increasingly frequent, posing significant threats to agriculture, ecosystems, and the environment. Xinjiang, located in ...
Meteorological Drought Variability over Africa from Multisource Datasets
Meteorological Drought Variability over Africa from Multisource Datasets
This study analyses the spatiotemporal variability of meteorological drought over Africa and its nine climate subregions from an ensemble of 19 multisource datasets (gauge-based, s...
Growth, Physiological, and Biochemical Responses of Ethiopian Red Pepper (Capsicum annum L.) Cultivars to Drought Stress
Growth, Physiological, and Biochemical Responses of Ethiopian Red Pepper (Capsicum annum L.) Cultivars to Drought Stress
Red pepper (Capsicum annum L.) is an increasingly important economic crop in the world. Thus, this study aimed to investigate the growth, physiological, and biochemical responses o...
Fertilization Management Improves the Yield and Capsaicinoid Content of Chili Peppers
Fertilization Management Improves the Yield and Capsaicinoid Content of Chili Peppers
Chili, one of the most cultivated plants in the world, from the genus Capsicum sp., has great importance both in human nutrition and in the pharmaceutical industry. This study prov...
A Statistical Method for Categorical Drought Prediction Based on NLDAS-2
A Statistical Method for Categorical Drought Prediction Based on NLDAS-2
AbstractDrought is a slowly varying natural phenomenon and may have wide impacts on a range of sectors. Tremendous efforts have therefore been devoted to drought monitoring and pre...

