School of Energy & Environmental Engineering, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083, Beijing, China.
College of Resources and Environmental Science, South-Central University for Nationalities, 430074, Wuhan, China.
Environ Pollut. 2020 May;260:113942. doi: 10.1016/j.envpol.2020.113942. Epub 2020 Jan 21.
Natural organic matter (NOM) affects the environmental behaviors of AgNPs, which may change their phytotoxicity to plants. However, more evidence can be provided to illustrate how NOM influences AgNPs-induced phytotoxicity. In this study, using rice (Oryza sativa) as a model, the effects of NOM, Suwannee River humic acid (SRHA) and fulvic acid (FA), on the dissolution and phytotoxicity of AgNPs were investigated. Silver ions decreased in both AgNPs and AgNO solution in the presence of NOM, and the effect of SRHA was stronger than FA. Image-XRF (iXRF) results showed that Ag mainly remained in the root rather than the shoot of rice seedling exposed to AgNPs. NOM mitigated the negative effects of AgNPs and AgNO on rice with lower germination inhibition rate, less chlorophyll reduction, more relative biomass and less O content. Moreover, NOM improved root cell viability according to FDA fluorescent dye as well as maintained the normal root morphology. Interestingly, the neutral sugars content from pectin, hemicellulose 1, hemicellulose 2 and cellulose of root cell wall in AgNPs and AgNO treatments differed from the control, while it was close to the regular content in AgNPs/AgNO+SRHA/FA groups, which implied that NOM regulated the changes. Besides, SRHA led to less germination and less relative biomass than FA due to different chemical characters. Thus, NOM needs to be considered when studying the phytotoxicity of AgNPs.
天然有机物 (NOM) 会影响 AgNPs 的环境行为,从而可能改变它们对植物的毒性。然而,还需要更多的证据来阐明 NOM 如何影响 AgNPs 诱导的植物毒性。在本研究中,以水稻 (Oryza sativa) 为模型,研究了天然有机物、苏皖河腐殖酸 (SRHA) 和富里酸 (FA) 对 AgNPs 溶解和植物毒性的影响。在 NOM 的存在下,AgNPs 和 AgNO 溶液中的银离子减少,且 SRHA 的影响强于 FA。Image-XRF (iXRF) 结果表明,Ag 主要存在于水稻幼苗的根部,而不是地上部分。NOM 减轻了 AgNPs 和 AgNO 对水稻的负面影响,表现为发芽抑制率较低、叶绿素减少较少、相对生物量较高和 O 含量较低。此外,NOM 提高了根细胞活力,荧光染料 FDA 染色和维持了正常的根形态。有趣的是,与对照相比,AgNPs 和 AgNO 处理中根细胞壁中性糖含量(来自果胶、半纤维素 1、半纤维素 2 和纤维素)发生了变化,但与 AgNPs/AgNO+SRHA/FA 组的常规含量接近,这表明 NOM 调节了这些变化。此外,由于化学性质不同,SRHA 导致的发芽率降低和相对生物量减少均低于 FA。因此,在研究 AgNPs 的植物毒性时,需要考虑 NOM 的影响。