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负载N-乙酰半胱氨酸的壳聚糖纳米颗粒减轻硬粒小麦中的臭氧及其他可能的氧化应激

Chitosan Nanoparticles Loaded with N-Acetyl Cysteine to Mitigate Ozone and Other Possible Oxidative Stresses in Durum Wheat.

作者信息

Picchi Valentina, Gobbi Serena, Fattizzo Matteo, Zefelippo Mario, Faoro Franco

机构信息

CREA Research Centre for Engineering and Agro-Food Processing, Via G. Venezian 26, 20133 Milan, Italy.

Department of Agricultural and Environmental Sciences, University of Milano, Via Celoria 2, 20133 Milano, Italy.

出版信息

Plants (Basel). 2021 Apr 2;10(4):691. doi: 10.3390/plants10040691.

Abstract

Modern durum wheat cultivars are more prone to ozone stress because of their high photosynthetic efficiency and leaf gas exchanges that cause a greater pollutant uptake. This, in turn, generates an increased reactive oxygen species (ROS) production that is a challenge to control by the antioxidant system of the plant, therefore affecting final yield, with a reduction up to 25%. With the aim of mitigating oxidative stress in wheat, we used chitosan nanoparticles (CHT-NPs) either unloaded or loaded with the antioxidant compound N-acetyl cysteine (NAC), on plants grown either in a greenhouse or in an open field. NAC-loaded NPs were prepared by adding 0.5 mg/mL NAC to the CHT solution before ionotropic gelation with tripolyphosphate (TTP). Greenhouse experiments evidenced that CHT-NPs and CHT-NPs-NAC were able to increase the level of the leaf antioxidant pool, particularly ascorbic acid (AsA) content. However, the results of field trials, while confirming the increase in the AsA level, at least in the first phenological stages, were less conclusive. The presence of NAC did not appear to significantly affect the leaf antioxidant pool, although the grain yield was slightly higher in NAC-treated parcels. Furthermore, both NAC-loaded and -unloaded CHT-NPs partially reduced the symptom severity and increased the weight of 1000 seeds, thus showing a moderate mitigation of ozone injury.

摘要

现代硬粒小麦品种由于其高光合效率和叶片气体交换导致更多污染物吸收,因而更容易受到臭氧胁迫。这反过来又会增加活性氧(ROS)的产生,而这对植物的抗氧化系统来说是一个难以控制的挑战,从而影响最终产量,减产幅度可达25%。为了减轻小麦中的氧化应激,我们将未负载或负载有抗氧化化合物N-乙酰半胱氨酸(NAC)的壳聚糖纳米颗粒(CHT-NPs)应用于在温室或露天环境中生长的植物。负载NAC的纳米颗粒是通过在与三聚磷酸钠(TTP)进行离子凝胶化之前向CHT溶液中添加0.5 mg/mL NAC来制备的。温室实验证明,CHT-NPs和CHT-NPs-NAC能够提高叶片抗氧化物质库的水平,尤其是抗坏血酸(AsA)的含量。然而,田间试验的结果虽然证实了AsA水平的增加,至少在第一物候期是这样,但结论性较差。NAC的存在似乎并没有显著影响叶片抗氧化物质库,尽管在NAC处理的地块中谷物产量略高。此外,负载和未负载NAC的CHT-NPs都部分降低了症状严重程度,并增加了千粒重,从而显示出对臭氧伤害的适度缓解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/086e/8065401/17fd069223b0/plants-10-00691-g001.jpg

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