Javascript must be enabled to continue!
Host Plant Modulated Physio-Biochemical Process Enhances Adaptive Response of Sandalwood (Santalum album L.) under Salinity Stress
View through CrossRef
Salinity is one of the most significant abiotic stress that affects the growth and development of high-value tree species, including sandalwood, which can also be managed effectively on saline soils with the help of suitable host species. Therefore, the current investigation was conducted to understand the physiological processes and antioxidant mechanisms in sandalwood along the different salinity gradients to explore the host species that could support sandalwood growth in salt-affected agro-ecosystems. Sandalwood seedlings were grown with ten diverse host species with saline water irrigation gradients (ECiw~3, 6, and 9 dS m−1) and control (ECiw~0.82 dS m−1). Experimental findings indicate a decline in the chlorophyll content (13–33%), relative water content (3–23%), photosynthetic (27–61%) and transpiration rate (23–66%), water and osmotic potential (up to 137%), and ion dynamics (up to 61%) with increasing salinity levels. Conversely, the carotenoid content (23–43%), antioxidant activity (up to 285%), and membrane injury (82–205%) were enhanced with increasing salinity stress. Specifically, among the hosts, Dalbergia sissoo and Melia dubia showed a minimum reduction in chlorophyll content, relative water content, and plant water relation and gas exchange parameters of sandalwood plants. Surprisingly, most of the host tree species maintained K+/Na+ of sandalwood up to moderate water salinity of ECiw~6 dS m−1; however, a further increase in water salinity decreased the K+/Na+ ratio of sandalwood by many-fold. Salinity stress also enhanced the antioxidative enzyme activity, although the maximum increase was noted with host plants M. dubia, followed by D. sissoo and Azadirachta indica. Overall, the investigation concluded that sandalwood with the host D. sissoo can be successfully grown in nurseries using saline irrigation water and, with the host M. dubia, it can be grown using good quality irrigation water.
Title: Host Plant Modulated Physio-Biochemical Process Enhances Adaptive Response of Sandalwood (Santalum album L.) under Salinity Stress
Description:
Salinity is one of the most significant abiotic stress that affects the growth and development of high-value tree species, including sandalwood, which can also be managed effectively on saline soils with the help of suitable host species.
Therefore, the current investigation was conducted to understand the physiological processes and antioxidant mechanisms in sandalwood along the different salinity gradients to explore the host species that could support sandalwood growth in salt-affected agro-ecosystems.
Sandalwood seedlings were grown with ten diverse host species with saline water irrigation gradients (ECiw~3, 6, and 9 dS m−1) and control (ECiw~0.
82 dS m−1).
Experimental findings indicate a decline in the chlorophyll content (13–33%), relative water content (3–23%), photosynthetic (27–61%) and transpiration rate (23–66%), water and osmotic potential (up to 137%), and ion dynamics (up to 61%) with increasing salinity levels.
Conversely, the carotenoid content (23–43%), antioxidant activity (up to 285%), and membrane injury (82–205%) were enhanced with increasing salinity stress.
Specifically, among the hosts, Dalbergia sissoo and Melia dubia showed a minimum reduction in chlorophyll content, relative water content, and plant water relation and gas exchange parameters of sandalwood plants.
Surprisingly, most of the host tree species maintained K+/Na+ of sandalwood up to moderate water salinity of ECiw~6 dS m−1; however, a further increase in water salinity decreased the K+/Na+ ratio of sandalwood by many-fold.
Salinity stress also enhanced the antioxidative enzyme activity, although the maximum increase was noted with host plants M.
dubia, followed by D.
sissoo and Azadirachta indica.
Overall, the investigation concluded that sandalwood with the host D.
sissoo can be successfully grown in nurseries using saline irrigation water and, with the host M.
dubia, it can be grown using good quality irrigation water.
Related Results
SANDALWOOD AND ITS PRECIOUS OIL TRADE TRENDS
SANDALWOOD AND ITS PRECIOUS OIL TRADE TRENDS
Santalum album L. commercially known as East Indian Sandalwood is indigenous to peninsular India. The Sandalwood tree is highly regarded in the Vedic texts, and the heartwood is co...
The 30/100 Classification System as a Reference for Price of Sandalwood (Santalum album) Wood in Sandalwood Oil Industry
The 30/100 Classification System as a Reference for Price of Sandalwood (Santalum album) Wood in Sandalwood Oil Industry
The perfume and cosmetics industry heavily relies on quality raw materials, particularly Sandalwood oil, known for its unique scent and importance in various products. The presence...
Chloroplast phylogenomics and the dynamic evolution of Santalum (Santalaceae)
Chloroplast phylogenomics and the dynamic evolution of Santalum (Santalaceae)
Abstract
Background
Santalum (Santalaceae, sandalwood) is a hemiparasitic genus including approximately 15 extant species. It is known for its aromatic heartwood oil, whi...
Cool Beats and Timely Accents
Cool Beats and Timely Accents
Ever since I tripped over Tiddles while I was carrying a pile of discs into the studio, I’ve known it was possible to get a laugh out of gramophone records!Max Bygraves In 1978 t...
Local Wisdom of the Community of Rambangaru Village, Sumba District, East Nusa Tenggara East in the Cultivation of Sandalwood Plants (Santalum Album L.)
Local Wisdom of the Community of Rambangaru Village, Sumba District, East Nusa Tenggara East in the Cultivation of Sandalwood Plants (Santalum Album L.)
The sandalwood plant (Santalum album L.) originates from the Indonesian islands in the southeast, mainly on Timor Island and Sumba Island, according to some experts. It is one of t...
The EFFECTS OF CAJUPUT AND CITRONELLA GRASS AS HOST PLANTS ON SANDALWOOD GROWTH
The EFFECTS OF CAJUPUT AND CITRONELLA GRASS AS HOST PLANTS ON SANDALWOOD GROWTH
Sandalwood (S. album) is native species in eastern Indonesia, especially East Nusa Tenggara (NTT). Its species can produce essential oils and have been known to foreign countries. ...
Tamiḻartam cantaṉam pūcum paṇpāṭu [The culture of applying sandalwood in Tamil]
Tamiḻartam cantaṉam pūcum paṇpāṭu [The culture of applying sandalwood in Tamil]
The Tamils of the Sangam period did not have a simple lifestyle of food for the stomach and a place to sleep. The Tamils of the Sangam period lived with cultural practices that...
Sandalwood Sustainable Harvesting Methods
Sandalwood Sustainable Harvesting Methods
Sandalwood oil is one of the most valuable essential oils globally,
extracted primarily from trees of the genus Santalum (Indian
sandalwood, Santalum album) and Osyris (African san...

