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不同微塑料对小麦(L.)生长特性及根际土壤环境的影响

Effects of Different Microplastics on Wheat's ( L.) Growth Characteristics and Rhizosphere Soil Environment.

作者信息

Zhang Yan, Hao Songze, Li Ping, Du Zhenjie, Zhou Yuze, Wang Guohao, Liang Zhijie, Dou Ming

机构信息

Farmland Irrigation Research Institute, Chinese Academy of Agricultural Sciences, Xinxiang 453002, China.

School of Water Conservancy and Transportation, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Plants (Basel). 2024 Dec 12;13(24):3483. doi: 10.3390/plants13243483.

Abstract

In order to reveal the effects of microplastics (MPs) on the growth and rhizosphere soil environmental effects of wheat ( L.), three microplastic types (polypropylene MPs (PP-MPs), high-density polyethylene MPs (HDPE-MPs), and polylactic acid MPs (PLA-MPs)), particle sizes (150, 1000, and 4000 μm), and concentrations (0.1, 0.5, and 1 g·kg) were selected for a pot experiment under natural environment conditions. The differences in germination rate (), germination inhibition rate (), growth characteristics, physicochemical properties, and enzymatic activities of wheat in rhizosphere soil were analyzed using statistical analysis and variance analysis. The results show that the germination rate of wheat seeds decreased under different MPs, and the HDPE-MPs, medium particle size (1000 μm), and medium concentration (0.5 g·kg) had the greatest inhibitory effect on wheat seed germination. The effects of MPs on wheat seed growth characteristics were inconsistent; the germination potential (), germination index (), and vitality index () showed a significant decreasing trend under the PLA-MPs and medium-concentration (0.5 g·kg) treatment, while the mean germination time () showed a significant increasing trend; the and showed a significant decreasing and increasing trend under the high-particle-size (4000 μm) treatment, respectively, while the and showed a significant decreasing trend under the medium-particle-size (1000 μm) treatment. The growth characteristics of wheat plants showed a significant decreasing trend under different MPs, with the SPAD, nitrogen concentration of the leaves, and plant height decreasing the most under PLA-MP treatment, the SPAD and nitrogen concentration of leaves decreasing the most under low-particle-size (150 μm) and low-concentration (0.1 g·kg) treatments, and the decreases in plant height under the high-particle-size (4000 μm) and high-concentration (1 g·kg) treatments being the largest. There were significant increasing trends for ammonium nitrogen (NH), total phosphorus (TP), soil urease (S-UE), soil acid phosphatase (S-ACP), and soil sucrase (S-SC) under different microplastics, while the PLA-MPs had a significant increasing trend for nitrate nitrogen (NO) and a significant decreasing trend for pH; there was a significant decreasing trend for total nitrogen (TN) under the HDPE-MPs and PLA-MPs, and for each particle size and concentration, the PLA-MPs and low-concentration (0.1 g·kg) treatments showed a significant decreasing trend for soil catalase (S-CAT). The research results could provide certain data and theoretical bases for evaluating the effects of MPs on crop growth and soil ecological environments.

摘要

为揭示微塑料(MPs)对小麦(L.)生长及根际土壤环境的影响,选取了三种微塑料类型(聚丙烯微塑料(PP - MPs)、高密度聚乙烯微塑料(HDPE - MPs)和聚乳酸微塑料(PLA - MPs))、粒径(150、1000和4000μm)以及浓度(0.1、0.5和1 g·kg),在自然环境条件下进行盆栽试验。运用统计分析和方差分析,对小麦根际土壤中种子的发芽率()、发芽抑制率()、生长特性、理化性质及酶活性的差异进行了分析。结果表明,不同微塑料处理下小麦种子的发芽率降低,其中HDPE - MPs、中等粒径(1000μm)和中等浓度(0.5 g·kg)对小麦种子发芽的抑制作用最大。微塑料对小麦种子生长特性的影响不一致;在PLA - MPs和中等浓度(0.5 g·kg)处理下,发芽势()、发芽指数()和活力指数()呈显著下降趋势,而平均发芽时间()呈显著上升趋势;在大粒径(4000μm)处理下,和分别呈显著下降和上升趋势,而在中等粒径(1000μm)处理下,和呈显著下降趋势。不同微塑料处理下小麦植株的生长特性呈显著下降趋势,其中PLA - MP处理下叶片的SPAD值、氮浓度和株高下降最为明显,小粒径(150μm)和低浓度(0.1 g·kg)处理下叶片的SPAD值和氮浓度下降最为明显,大粒径(4000μm)和高浓度(1 g·kg)处理下株高下降幅度最大。不同微塑料处理下铵态氮(NH)、总磷(TP)、土壤脲酶(S - UE)、土壤酸性磷酸酶(S - ACP)和土壤蔗糖酶(S - SC)均呈显著上升趋势,而PLA - MPs处理下硝态氮(NO)呈显著上升趋势,pH呈显著下降趋势;HDPE - MPs和PLA - MPs处理下总氮(TN)呈显著下降趋势,对于每种粒径和浓度,PLA - MPs和低浓度(0.1 g·kg)处理下土壤过氧化氢酶(S - CAT)呈显著下降趋势。研究结果可为评估微塑料对作物生长和土壤生态环境的影响提供一定的数据和理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebaa/11728810/3d78edf4e401/plants-13-03483-g001.jpg

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