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Tolerance to Stress Combination in Tomato Plants: New Insights in the Protective Role of Melatonin

机译:番茄植物中应力组合的耐受性:褪黑素保护作用的新见解

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摘要

Abiotic stresses such as drought, heat or salinity are major causes of yield loss worldwide. Recent studies have revealed that the acclimation of plants to a combination of different environmental stresses is unique and therefore cannot be directly deduced from studying the response of plants to each of the different stresses applied individually. The efficient detoxification of reactive oxygen species (ROS) is thought to play a key role in enhancing the tolerance of plants to abiotic stresses. Here, we report on the role of melatonin in the protection of the photosynthetic apparatus through the increase in ROS detoxification in tomato plants grown under the combination of salinity and heat, two of the most common abiotic stresses known to act jointly. Plants treated with exogenous melatonin showed a different modulation in the expression on some antioxidant-related genes and their related enzymes. More specifically, ascorbate peroxidase, glutathione reductase, glutathione peroxidase and phospholipid hydroperoxide glutathione peroxidase (APX, GR, GPX and Ph-GPX, resepctively) showed an antagonistic regulation as compared to plants that did not receive melatonin. This translated into a better antioxidant capacity and to a lesser ROS accumulation under stress combination. The performance of the photosynthesis parameters and the photosystems was also increased in plants treated with exogenous melatonin under the combination of salinity and heat. In accordance with these findings, tomato plants treated with melatonin were found to grow better under stress combination that the non-treated ones. Our study highlights the important role that exogenous melatonin plays in the acclimation of plants to a combination of two different abiotic stresses, and how this compound can specifically regulate oxidative stress-related genes and enzymes to increase plant tolerance.
机译:诸如干旱,热或盐度等非生物胁迫是全球产量损失的主要原因。最近的研究表明,植物适应不同环境应力的组合是独特的,因此不能直接推导出研究植物对单独应用的每个不同应力的响应。有效的反应性氧物质(ROS)的解毒被认为在提高植物耐受性对非生物胁迫方面发挥关键作用。在此,我们报告了褪黑素在番茄植物中的增加在盐度和热量的组合中增加了番茄植物中的番茄毒品的作用,其中两种最常见的非生物应力共同作用。用外源褪黑素处理的植物在一些抗氧化相关基因及其相关酶的表达中显示出不同的调节。更具体地,抗坏血酸过氧化物酶,谷胱甘肽还原酶,谷胱甘肽过氧化物酶和磷脂氢过氧化物酶(APX,GR,GPX和pH-GPX,ective)显示出与未接受褪黑素的植物相比的拮抗作用。这转化为更好的抗氧化能力和较小的ROS积累在应力组合下。在盐度和热的组合下用外源褪黑素处理的植物中,光合作用参数和光系统的性能也增加。根据这些发现,发现用褪黑激素处理的番茄植物在未处理的胁迫组合下更好地生长。我们的研究突出了外源褪黑激素在植物适应到两种不同的非生物应激的组合中的重要作用,以及该化合物如何具体调节氧化应激相关基因和酶以增加植物耐受性。

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