Root systems are the key organs through which plants absorb water and nutrients and perceive the soil environment and thus are easily damaged by salt stress. Melatonin can alleviate stress-induced damage to roots. The present study investigated the effects of exogenous melatonin on the root physiology, transcriptome and metabolome of cotton seedlings under salt stress. Salt stress was observed to damage the cell structure and disorder the physiological system of cotton seedling roots. After subjecting melatonin-soaked seeds to salt stress, the activities of SOD, CAT and POD in cotton seedling roots increased by 10–25%, 50–60% and 50–60%, respectively. The accumulation of H2O2 and MDA were significantly decreased by 30–60% and 30–50%, respec...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin‐mediated amelioration of salinity ...
Abiotic stress adversely affects plant growth and metabolism and as such reduces plant productivity....
Abstract Background Salinization is major abiotic stress limiting cotton production. Melatonin (MT) ...
Melatonin (MT; N-acetyI-5-methoxytryptamine) is an amine hormone involved in abiotic stress resistan...
As one of the cash crops, cotton is facing the threat of abiotic stress during its growth and develo...
Melatonin, a small molecular weight indoleamine molecule, is involved in various biological processe...
AbstractCucumber (Cucumis sativus L.) is sensitive to the salinization of environment. Soil saliniza...
Melatonin, a natural agent, has multiple functions in animals as well as in plants. However, its pos...
Melatonin, an indoleamine widely found in animals and plants, is considered as a candidate phytohorm...
Melatonin, a small molecular weight indoleamine molecule, is involved in various biological processe...
Melatonin (N-acetyl-5-methoxytryptamine) is an essential molecule which regulates plant growth and d...
Salt stress is one of the most serious limiting factors in worldwide agricultural production, result...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin‐mediated amelioration of salinity ...
Abiotic stress adversely affects plant growth and metabolism and as such reduces plant productivity....
Abstract Background Salinization is major abiotic stress limiting cotton production. Melatonin (MT) ...
Melatonin (MT; N-acetyI-5-methoxytryptamine) is an amine hormone involved in abiotic stress resistan...
As one of the cash crops, cotton is facing the threat of abiotic stress during its growth and develo...
Melatonin, a small molecular weight indoleamine molecule, is involved in various biological processe...
AbstractCucumber (Cucumis sativus L.) is sensitive to the salinization of environment. Soil saliniza...
Melatonin, a natural agent, has multiple functions in animals as well as in plants. However, its pos...
Melatonin, an indoleamine widely found in animals and plants, is considered as a candidate phytohorm...
Melatonin, a small molecular weight indoleamine molecule, is involved in various biological processe...
Melatonin (N-acetyl-5-methoxytryptamine) is an essential molecule which regulates plant growth and d...
Salt stress is one of the most serious limiting factors in worldwide agricultural production, result...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin-mediated amelioration of salinity ...
This study aimed to reveal the mechanistic basis of the melatonin‐mediated amelioration of salinity ...
Abiotic stress adversely affects plant growth and metabolism and as such reduces plant productivity....