Ahmad Riaz, Manzoor Meryam, Muhammad Hafiza Muniba Din, Altaf Muhammad Ahsan, Shakoor Awais
Department of Horticulture, The University of Agriculture, Dera Ismail Khan 29220, Pakistan.
Department of Horticulture, Bahauddin Zakariya University, Multan 60800, Pakistan.
Life (Basel). 2023 Feb 10;13(2):493. doi: 10.3390/life13020493.
Fruit orchards are frequently irrigated with brackish water. Irrigation with poor quality water is also a major cause of salt accumulation in soil. An excess of salts results in stunted growth, poor yield, inferior quality and low nutritional properties. Melatonin is a low molecular weight protein that shows multifunctional, regulatory and pleiotropic behavior in the plant kingdom. Recently, its discovery brought a great revolution in sustainable fruit production under salinity-induced environments. Melatonin contributed to enhanced tolerance in fruit species by improving the plant defense system's potential to cope with the adverse effects of salinity. The supplemental application of melatonin has improved the generation of antioxidant assays and osmolytes involved in the scavenging of toxic ROS. The tolerance level of the germplasm is chiefly based on the activation of the defense system against the adverse effects of salinity. The current study explored the contribution of melatonin against salinity stress and provides information regarding which biochemical mechanism can be effective and utilized for the development of salt-tolerant germplasm in .
果园经常用微咸水灌溉。用劣质水灌溉也是土壤中盐分积累的主要原因。盐分过多会导致生长发育迟缓、产量低、品质差和营养特性低。褪黑素是一种低分子量蛋白质,在植物界表现出多功能、调节和多效性。最近,它的发现给盐胁迫环境下的可持续水果生产带来了巨大变革。褪黑素通过提高植物防御系统应对盐害不利影响的潜力,有助于增强水果品种的耐受性。褪黑素的补充应用改善了参与清除有毒活性氧的抗氧化测定和渗透调节物质的生成。种质的耐受水平主要基于针对盐害不利影响的防御系统的激活。本研究探讨了褪黑素对盐胁迫的作用,并提供了有关哪种生化机制可有效用于开发耐盐种质的信息。