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解析聚乙烯微塑料和酸雨共暴露对植物-微生物-土壤系统的影响。

Unraveling consequences of the co-exposure of polyethylene microplastics and acid rain on plant-microbe-soil system.

机构信息

Guangdong Laboratory for Lingnan Modern Agriculture, Guangdong Provincial Key Laboratory of Eco-circular Agriculture, South China Agricultural University, Guangzhou, 510642, China; Department of Ecology, College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, China.

Department of Ecology, College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Chemosphere. 2022 Nov;307(Pt 3):135941. doi: 10.1016/j.chemosphere.2022.135941. Epub 2022 Aug 6.

Abstract

Emerging microplastics (MPs) pollution and continuing acid rain (AR) co-exist in terrestrial ecosystems, and are considered as threats to ecosystems health. However, few data are available on MPs-AR interactions in plant-microbe-soil systems. Here, a microcosm experiment was manipulated to elucidate the co-exposure of polyethylene MPs (PE MPs; 1%, 5% and 10%) and AR (pH 4.0) on soil-lettuce system, in which the properties of soil and lettuce, and their links were explored. We found that 10% PE MPs increased soil CO emission and its temperature sensitivity (Q) in combination with AR, while 1% PE MPs reduced soil CO emission irrespective of AR. PE MPs addition did not influence lettuce production (total biomass) though its photosynthesis was affected. PE MPs exerted negative impact on soil water availability. PE MPs treatments increased NH-N content of soil without AR, and dissolved organic carbon content of soil sprayed with AR. 10% PE MPs combined with AR reduced soil microbial biomass, while soil microbial community diversity was not affected by PE MPs or AR. Interestingly, 10% PE MPs addition altered soil microbial community structure, and promoted the complexity and connectivity of soil microbial networks. 5% and 10% PE MPs addition decreased soil urease activity under AR, but this was not the case without AR. These findings highlight the critical role of AR in regulating PE MPs impacts on plant-microbe-soil ecosystems, and the necessity to incorporate other environmental factors when evaluating the actual impacts or risks of MPs pollution in terrestrial ecosystems.

摘要

新兴的微塑料 (MPs) 污染和持续的酸雨 (AR) 共存于陆地生态系统中,被认为是对生态系统健康的威胁。然而,关于植物-微生物-土壤系统中 MPs-AR 相互作用的资料很少。在这里,进行了一项微宇宙实验来阐明聚乙烯 MPs(PE MPs;1%、5%和 10%)和 AR(pH 4.0)在土壤-生菜系统中的共同暴露,其中探索了土壤和生菜的特性及其联系。我们发现,10% 的 PE MPs 与 AR 结合会增加土壤 CO 排放及其温度敏感性(Q),而 1% 的 PE MPs 则会降低土壤 CO 排放,而与 AR 无关。PE MPs 的添加虽然影响了生菜的光合作用,但并没有影响生菜的产量(总生物量)。PE MPs 对土壤水分的可用性产生了负面影响。PE MPs 处理增加了无 AR 土壤中的 NH-N 含量和喷洒 AR 土壤中的溶解有机碳含量。10% 的 PE MPs 与 AR 结合会降低土壤微生物生物量,而土壤微生物群落多样性不受 PE MPs 或 AR 的影响。有趣的是,10% 的 PE MPs 会改变土壤微生物群落结构,并促进土壤微生物网络的复杂性和连通性。在 AR 下,添加 5%和 10%的 PE MPs 会降低土壤脲酶活性,但在没有 AR 的情况下则不会。这些发现强调了 AR 在调节 PE MPs 对植物-微生物-土壤生态系统的影响方面的关键作用,并且在评估 MPs 污染对陆地生态系统的实际影响或风险时,需要考虑其他环境因素。

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