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NO 水平升高诱导了叶子防御机制在叶子上的表达。

Elevated NO induces leaf defensive mechanisms in Bougainvillea spectabilis seedlings.

机构信息

College of Landscape Architecture, Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.

College of Landscape Architecture, Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Ecotoxicol Environ Saf. 2022 Dec 15;248:114292. doi: 10.1016/j.ecoenv.2022.114292. Epub 2022 Nov 15.

Abstract

With a growing economy, the living standard of people has improved which has led to increased use of urban motor vehicles globally. Consequently, the concentration of nitrogen dioxide (NO) has increased in the ambient air, becoming a major pollutant in urban areas. Plant leaves can absorb, adsorb and fix nitrogen oxides to some extent. Interestingly, NO has been recognized as a positive/negative regulator of plant growth. To comprehensively understand the effect of NO-induced pollution on plants, Bougainvillea spectabilis seedlings were fumigated with different concentrations of nitrogen dioxide (NO) for a short period in the current study. Further, the induced morphological, physiological, and biochemical changes were measured in the treated as well as untreated seedlings. NO exposure caused yellow-brown spotting on the leaf blades in B. spectabilis, which could be the symptoms of oxidative damage. Our findings also reflected the changes in antioxidant enzyme activity and peroxidation of membrane lipids. In addition, the levels of osmotic regulatory substances were also found to be altered to different degrees. In addition, the activities of nitrogen metabolism-related enzymes varied, mainly affecting amino acid metabolism. Overall, the current study would provide a theoretical and scientific basis for selecting and allocating plants in NO-contaminated areas to manage the pollutants level.

摘要

随着经济的增长,人们的生活水平提高了,这导致了全球城市机动车辆的使用增加。因此,二氧化氮(NO)在环境空气中的浓度增加,成为城市地区的主要污染物。植物叶片在一定程度上可以吸收、吸附和固定氮氧化物。有趣的是,NO 已被认为是植物生长的正向/负向调节剂。为了全面了解 NO 诱导的污染对植物的影响,本研究用不同浓度的二氧化氮(NO)对三角梅幼苗进行了短期熏气处理。此外,还测量了处理和未处理幼苗中的诱导形态、生理和生化变化。NO 暴露会导致 B. spectabilis 叶片上出现黄棕色斑点,这可能是氧化损伤的症状。我们的研究结果还反映了抗氧化酶活性和膜脂质过氧化的变化。此外,还发现渗透调节物质的水平也发生了不同程度的改变。此外,氮代谢相关酶的活性也发生了变化,主要影响氨基酸代谢。总的来说,本研究为在 NO 污染地区选择和分配植物提供了理论和科学依据,以管理污染物水平。

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