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叶面喷施氧化石墨烯对生菜吸收镉的影响。

Effects of foliar application of graphene oxide on cadmium uptake by lettuce.

作者信息

Gao Minling, Xu Yalei, Chang Xipeng, Dong Youming, Song Zhengguo

机构信息

Department of Civil and Environmental Engineering, Shantou University, No. 243 Daxue Road, Shantou, Guangdong Province, 515063, China.

School of Environmental Science and Engineering, Tiangong University, No. 399 Binshui West Road, Xiqing District, Tianjin 300387, China.

出版信息

J Hazard Mater. 2020 Nov 5;398:122859. doi: 10.1016/j.jhazmat.2020.122859. Epub 2020 May 19.

Abstract

Although graphene oxide (GO) has been widely used to enhance soil quality and crop yield, there is currently little information regarding the effects of foliar application of GO on cadmium (Cd) toxicity to plants. In this study, we investigated the response to GO in lettuce cultivated under Cd stress in hydroponic conditions. Lettuce was grown from seeds in a nutrient solution supplemented with 2 mg/L Cd and the leaves were sprayed with 0, 30, and 60 mg/L GO. The results indicated that application of 30 mg/L GO significantly increased the total length, surface area, average diameter, and hair number of lettuce roots, and effectively alleviated the negative effects of Cd on root growth. Furthermore, foliar application of 30 mg/L GO, but not 60 mg/L GO, significantly improved the quality of lettuce, including reduction in Cd accumulation in leaves and roots and increase in soluble sugar, protein, and vitamin C content. Transmission electron microscopy revealed that GO nanoparticles, which entered the leaves and were subsequently transported to the roots via the vascular system (phloem), reduced the damaging effect of Cd on cellular organelles, including the cell wall and membrane, chloroplasts, and starch granules. The effect may be attributed to the absorption of GO by lettuce cells, where it fixed Cd, thus reducing Cd bioavailability, or to the improvement of Cd tolerance through regulation of lettuce metabolic pathways. Gaussian simulation analysis revealed that Cd caused significant changes in the GO molecule, resulting in detachment of an epoxy group from the GO carbon ring and breakage of OH bonds in hydroxyl groups, whereupon the oxygen freed from the OH bond formed a new bond with Cd. Collectively, these results indicate that foliar application of 30 mg/L GO can enhance the tolerance of lettuce to Cd, promote plant growth, and improve nutritional quality.

摘要

尽管氧化石墨烯(GO)已被广泛用于改善土壤质量和提高作物产量,但目前关于叶面喷施GO对植物镉(Cd)毒性影响的信息较少。在本研究中,我们调查了水培条件下镉胁迫下生菜对GO的响应。生菜种子在添加2mg/L镉的营养液中生长,叶片分别喷施0、30和60mg/L的GO。结果表明,喷施30mg/L的GO显著增加了生菜根的总长度、表面积、平均直径和根毛数量,并有效缓解了镉对根系生长的负面影响。此外,叶面喷施30mg/L的GO(而非60mg/L的GO)显著改善了生菜品质,包括降低叶片和根系中镉的积累以及增加可溶性糖、蛋白质和维生素C的含量。透射电子显微镜显示,GO纳米颗粒进入叶片后通过维管系统(韧皮部)转运至根部,减少了镉对细胞器(包括细胞壁、细胞膜、叶绿体和淀粉粒)的破坏作用。这种效应可能归因于生菜细胞对GO的吸收,在细胞内GO固定了镉,从而降低了镉的生物有效性,或者是通过调节生菜代谢途径提高了对镉的耐受性。高斯模拟分析表明,镉导致GO分子发生显著变化,使环氧基团从GO碳环上脱离,羟基中的OH键断裂,OH键释放的氧与镉形成新键。总体而言,这些结果表明叶面喷施30mg/L的GO可以提高生菜对镉的耐受性,促进植物生长,并改善营养品质。

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