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褪黑素可挽救低温高湿胁迫下植物的光合作用并触发抗氧化防御反应。

Melatonin Rescues Photosynthesis and Triggers Antioxidant Defense Response in Plants Challenged by Low Temperature and High Humidity.

作者信息

Amin Bakht, Atif Muhammad Jawaad, Meng Huanwen, Ali Muhammad, Li Shuju, Alharby Hesham F, Majrashi Ali, Hakeem Khalid Rehman, Cheng Zhihui

机构信息

College of Horticulture, Northwest A&F University, Yangling, China.

Horticultural Research Institute, National Agricultural Research Centre, Islamabad, Pakistan.

出版信息

Front Plant Sci. 2022 Apr 27;13:855900. doi: 10.3389/fpls.2022.855900. eCollection 2022.

Abstract

Environmental factors such as low temperature (LT) and high humidity (HH) hinder plant growth and development in plastic tunnels and solar greenhouses in the cold season. In this study, we examined the effect of melatonin (MT) on shoot-based tolerance to LT and HH conditions in cucumber () seedlings and explored its underlying mechanism. LT and HH stress inhibited growth and biomass accumulation, produced leaf chlorosis, led to oxidative stress, lowered chlorophyll and carotenoid contents, reduced photosynthetic and photosystem II (PSII) activities, and increased the level of intercellular carbon dioxide and the non-photochemical quenching of photosystem I (PSI) and PSII. However, foliar application of MT significantly improved the morphological indices and photosynthetic efficiency of cucumber seedlings, which entailed the elevation of electrolyte leakage, lipid peroxidation, and reactive oxygen species accumulation by boosting the antioxidant enzyme defense system under LT and HH conditions. Additionally, the measurement of nitrogen (N), magnesium (Mg), and iron (Fe) contents in roots and leaves showed that MT significantly augmented the nutrient uptake of cucumber seedlings exposed to LT and HH stresses. Furthermore, MT application increased the transcripts levels of genes encoding antioxidant enzymes under LT and HH conditions, whereas treatment with LT and HH suppressed these genes, suggesting that MT application increases the LT and HH tolerance of cucumber seedlings. Overall, our results suggest that MT application increases the tolerance of cucumber seedlings to LT and HH stress by enhancing the plant morphometric parameters, regulating PSI and PSII, and activating the antioxidant defense mechanism. Thus, the exogenous application of MT could be potentially employed as a strategy to improve the LT and HH tolerance of cucumber.

摘要

低温(LT)和高湿度(HH)等环境因素在寒冷季节会阻碍塑料大棚和日光温室中植物的生长发育。在本研究中,我们检测了褪黑素(MT)对黄瓜()幼苗地上部分耐受低温和高湿度条件的影响,并探究了其潜在机制。低温和高湿度胁迫抑制了生长和生物量积累,导致叶片黄化,引发氧化应激,降低了叶绿素和类胡萝卜素含量,降低了光合作用和光系统II(PSII)活性,并增加了细胞间二氧化碳水平以及光系统I(PSI)和PSII的非光化学猝灭。然而,叶面喷施MT显著改善了黄瓜幼苗的形态指标和光合效率,这需要通过在低温和高湿度条件下增强抗氧化酶防御系统来提高电解质渗漏、脂质过氧化和活性氧积累。此外,对根和叶中氮(N)、镁(Mg)和铁(Fe)含量的测定表明,MT显著增强了遭受低温和高湿度胁迫的黄瓜幼苗的养分吸收。此外,在低温和高湿度条件下,施用MT增加了编码抗氧化酶的基因的转录水平,而低温和高湿度处理则抑制了这些基因,这表明施用MT提高了黄瓜幼苗对低温和高湿度的耐受性。总体而言,我们的结果表明,施用MT通过增强植物形态参数、调节PSI和PSII以及激活抗氧化防御机制来提高黄瓜幼苗对低温和高湿度胁迫的耐受性。因此,外源施用MT可能潜在地用作提高黄瓜对低温和高湿度耐受性的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebe3/9094117/58202f02f9ab/fpls-13-855900-g001.jpg

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