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褪黑素增强盐胁迫条件下藜(Chenopodium album (L.) Czern.)的耐受性及恢复机制。

Melatonin Enhances the Tolerance and Recovery Mechanisms in (L.) Czern. Under Saline Conditions.

作者信息

Park Hee-Soon, Kazerooni Elham Ahmed, Kang Sang-Mo, Al-Sadi Abdullah Mohammed, Lee In-Jung

机构信息

School of Applied Biosciences, Kyungpook National University, Daegu, South Korea.

Department of Crop Sciences, College of Agricultural and Marine Sciences, Sultan Qaboos University, Muscat, Oman.

出版信息

Front Plant Sci. 2021 Apr 1;12:593717. doi: 10.3389/fpls.2021.593717. eCollection 2021.

Abstract

Melatonin has been recently known to stimulate plant growth and induce protective responses against different abiotic stresses. However, the mechanisms behind exogenous melatonin pretreatment and restoration of plant vigor from salinity stress remain poorly understood. The present study aimed to understand the effects of exogenous melatonin pretreatment on salinity-damaged green mustard ( L. Czern.) seedlings in terms of oxidative stress regulation and endogenous phytohormone production. Screening of several melatonin concentrations (0, 0.1, 1, 5, and 10 μM) on mustard growth showed that the 1 μM concentration revealed an ameliorative increase of plant height, leaf length, and leaf width. The second study aimed at determining how melatonin application can recover salinity-damaged plants and studying its effects on physiological and biochemical parameters. Under controlled environmental conditions, mustard seedlings were irrigated with distilled water or 150 mM of NaCl for 7 days. This was followed by 1 μM of melatonin application to determine its recovery impact on the damaged plants. Furthermore, several physiological and biochemical parameters were examined in stressed and unstressed seedlings with or without melatonin application. Our results showed that plant height, leaf length/width, and stem diameter were enhanced in 38-day-old salinity-stressed plants under melatonin treatment. Melatonin application obviously attenuated salinity-induced reduction in gas exchange parameters, relative water content, and amino acid and protein levels, as well as antioxidant enzymes, such as superoxide dismutase and catalase. HO accumulation in salinity-damaged plants was reduced by melatonin treatment. A decline in abscisic acid content and an increase in salicylic acid content were observed in salinity-damaged seedlings supplemented with melatonin. Additionally, chlorophyll content decreased during the recovery period in salinity-damaged plants by melatonin treatment. This study highlighted, for the first time, the recovery impact of melatonin on salinity-damaged green mustard seedlings. It demonstrated that exogenous melatonin supplementation significantly improved the physiologic and biochemical parameters in salinity-damaged green mustard seedlings.

摘要

褪黑素最近被发现可刺激植物生长,并诱导植物对不同非生物胁迫产生保护反应。然而,外源褪黑素预处理以及从盐胁迫中恢复植物活力背后的机制仍知之甚少。本研究旨在从氧化应激调节和内源植物激素产生方面,了解外源褪黑素预处理对盐胁迫损伤的青菜(L. Czern.)幼苗的影响。对几种褪黑素浓度(0、0.1、1、5和10 μM)对芥菜生长的筛选表明,1 μM浓度能改善株高、叶长和叶宽。第二项研究旨在确定褪黑素的施用如何使受盐胁迫损伤的植物恢复,并研究其对生理和生化参数的影响。在可控环境条件下,用蒸馏水或150 mM NaCl灌溉芥菜幼苗7天。随后施用1 μM褪黑素以确定其对受损植物的恢复作用。此外,在有或没有施用褪黑素的胁迫和未胁迫幼苗中检测了几个生理和生化参数。我们的结果表明,在褪黑素处理下,38日龄受盐胁迫的植物株高、叶长/宽和茎直径均有所增加。施用褪黑素明显减轻了盐胁迫导致的气体交换参数、相对含水量、氨基酸和蛋白质水平以及抗氧化酶(如超氧化物歧化酶和过氧化氢酶)的降低。褪黑素处理降低了盐胁迫损伤植物中HO的积累。在补充褪黑素的盐胁迫损伤幼苗中,观察到脱落酸含量下降,水杨酸含量增加。此外,在盐胁迫损伤植物的恢复期,褪黑素处理使叶绿素含量降低。本研究首次突出了褪黑素对盐胁迫损伤的青菜幼苗的恢复作用。结果表明,外源补充褪黑素显著改善了盐胁迫损伤的青菜幼苗的生理和生化参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/772e/8048884/c1e1646bfdf5/fpls-12-593717-g001.jpg

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