Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

IMPACT OF VARIOUS CONCENTRATIONS OF NACL ON MORPHOLOGICAL ATTRIBUTES OF DIFFERENT CITRUS ROOTSTOCKS UNDER FIELD CONDITIONS

View through CrossRef
Citrus (Poncirus trifoliata), a widely cultivated fruit crop, is known for its salt sensitivity. Salinity poses a significant challenge to citrus production across various regions worldwide, where it acts as a limiting factor. When citrus trees are irrigated with saline water, their yields are significantly reduced. The accumulation of excessive chloride ions (Cl-) and sodium ions (Na+) can lead to specific ion toxicities, further exacerbating salinity's negative impact on citrus plants. However, this issue can be minimized by selecting proper rootstocks. Six treatments were administered to the plants in a study to assess the effects of different stress levels on citrus plants. These treatments involved varying concentrations of salt stress: 0mM, 10mM, 20mM, 30mM, 60mM, and 80mM. By subjecting the plants to these different stress levels, researchers aimed to understand the response of citrus plants to increasing salinity. Water salinity presents a significant issue for citrus cultivation due to its detrimental influence on crop yields. The high salt content in irrigation water negatively affects the growth of citrus trees and induces physiological disorders. In addition to impeding growth, salinity harms plant height and root development. These combined effects of salinity contribute to the overall decline in citrus productivity. Among the various citrus rootstocks tested in the study, C-35 exhibited the most significant susceptibility to salinity stress. As the salt concentrations increased, C-35 experienced the most severe adverse effects on growth and productivity. On the other hand, Poncirus trifoliata, a commonly used rootstock, demonstrated a higher degree of tolerance to salinity. Poncirus trifoliata remained relatively unaffected even at higher salt concentrations, making it a more suitable choice for citrus cultivation in saline environments.
Title: IMPACT OF VARIOUS CONCENTRATIONS OF NACL ON MORPHOLOGICAL ATTRIBUTES OF DIFFERENT CITRUS ROOTSTOCKS UNDER FIELD CONDITIONS
Description:
Citrus (Poncirus trifoliata), a widely cultivated fruit crop, is known for its salt sensitivity.
Salinity poses a significant challenge to citrus production across various regions worldwide, where it acts as a limiting factor.
When citrus trees are irrigated with saline water, their yields are significantly reduced.
The accumulation of excessive chloride ions (Cl-) and sodium ions (Na+) can lead to specific ion toxicities, further exacerbating salinity's negative impact on citrus plants.
However, this issue can be minimized by selecting proper rootstocks.
Six treatments were administered to the plants in a study to assess the effects of different stress levels on citrus plants.
These treatments involved varying concentrations of salt stress: 0mM, 10mM, 20mM, 30mM, 60mM, and 80mM.
By subjecting the plants to these different stress levels, researchers aimed to understand the response of citrus plants to increasing salinity.
Water salinity presents a significant issue for citrus cultivation due to its detrimental influence on crop yields.
The high salt content in irrigation water negatively affects the growth of citrus trees and induces physiological disorders.
In addition to impeding growth, salinity harms plant height and root development.
These combined effects of salinity contribute to the overall decline in citrus productivity.
Among the various citrus rootstocks tested in the study, C-35 exhibited the most significant susceptibility to salinity stress.
As the salt concentrations increased, C-35 experienced the most severe adverse effects on growth and productivity.
On the other hand, Poncirus trifoliata, a commonly used rootstock, demonstrated a higher degree of tolerance to salinity.
Poncirus trifoliata remained relatively unaffected even at higher salt concentrations, making it a more suitable choice for citrus cultivation in saline environments.

Related Results

Characterization of berry and wine aroma development in interspecific hybrids important to Missouri using a metabolomics based approach
Characterization of berry and wine aroma development in interspecific hybrids important to Missouri using a metabolomics based approach
With increases in climate extremes resulting in more abiotic and biotic stress on crops such as grapes, it is essential to develop new cultivars that are more robust than the tradi...
Molecular diversity estimates of Pakistani citrus rootstocks
Molecular diversity estimates of Pakistani citrus rootstocks
Quality rootstocks are mandatory to fortify and boost up the citrus industry. Traditionally, Pakistani citrus industry is based on two rootstocks (rough lemon and sour orange), and...
Sorption Isotherms and WaterDiffusitivity in Muscles of Pork Ham at Different NaCl Contents
Sorption Isotherms and WaterDiffusitivity in Muscles of Pork Ham at Different NaCl Contents
El pernil curat és actualment el producte càrnic més important a nivell d'Espanya. En l'elaboració d'aquest producte, l'assecat és la part més costosa i la que requereix la major p...
Rootstock influence on performance of different citrus scion cultivars: A review
Rootstock influence on performance of different citrus scion cultivars: A review
Citrus is one of the most important fruit crop of Pakistan in terms of area and production. Pakistan ranks 7th according to area and 13th according to production. While comparing w...
HEAT STRESS IN CITRUS: A MOLECULAR FUNCTIONAL AND BIOCHEMICAL PERCEPTION
HEAT STRESS IN CITRUS: A MOLECULAR FUNCTIONAL AND BIOCHEMICAL PERCEPTION
Misfortunes caused by high temperatures compel us to more readily comprehend the physiological, hormonal, and sub-atomic systems of reactions, particularly in humid and subhumid yi...
Influence of Rootstocks (Gisela 5, Gisela 6, MaxMa, SL 64) on Performance of ‘0900 Ziraat’ Sweet Cherry
Influence of Rootstocks (Gisela 5, Gisela 6, MaxMa, SL 64) on Performance of ‘0900 Ziraat’ Sweet Cherry
 This study was carried out in order to determine the effect of rootstocks (Gisela 5, Gisela 6, MaxMa 14 and SL 64) on performance of sweet cherry cultivar ‘0 900 Ziraat’ during 20...
Tomato rootstocks for the control of Meloidogyne spp.
Tomato rootstocks for the control of Meloidogyne spp.
Se determinó la respuesta de resistencia de 10 patrones de tomate a una población avirulenta de Meloidogyne javanica en maceta. Los ensayos se realizaron en primavera, cuando las t...
Nutrient uptake, osmolytes and antioxidant potential of different citrus rootstocks subjected to acidic soils
Nutrient uptake, osmolytes and antioxidant potential of different citrus rootstocks subjected to acidic soils
The present experiment was conducted during 2021–23 at ICAR-Indian Agricultural Research Institute, New Delhi to evaluate the response of five citrus rootstocks, viz. Rangpur lime ...

Back to Top