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酸雨相关土壤酶活性的响应及驱动因素:一项荟萃分析

Response and driving factors of soil enzyme activity related to acid rain: a meta-analysis.

作者信息

Shi Zhaoji, Zhang Jiaen, Zhang Huicheng, Wei Hui, Lu Tiantian, Chen Xuan, Li Hongru, Yang Jiayue, Liu Ziqiang

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.

出版信息

Environ Sci Pollut Res Int. 2023 Oct;30(48):105072-105083. doi: 10.1007/s11356-023-29585-4. Epub 2023 Sep 20.

Abstract

As a global pollution, acid rain can significantly alter soil physicochemical and biochemical processes, but our knowledge of how acid rain affects soil enzyme activity is still limited. To quantify the overall magnitude and direction of the response of soil enzyme activity to acid rain, we conducted a linear mixed model-based meta-analysis of 40 articles. Our analysis revealed that acid rain decreased enzyme activity by an average of 4.87%. Soil dehydrogenase and protease activities were particularly sensitive to acid rain, with significant inhibitions observed. The effect of acid rain was moderated by acid rain intensity (i.e., H addition rate, total H added, and acid rain pH) and soil fraction (i.e., rhizosphere and bulk soil). Structural equation modelling further revealed that acid rain suppressed soil microbial biomass by acidifying the soil and that the reduction in microbial biomass directly led to the inhibition of enzyme activity in bulk soil. However, the enzyme activity in the rhizosphere soil was not affected by acid rain due to the rhizosphere effect, which was also not impacted by the decreased soil pH induced by acid rain in rhizosphere. Our study gives an insight into how bulk soil enzyme activity is impacted by acid rain and highlights the need to incorporate rhizosphere processes into acid rain-terrestrial ecosystem models.

摘要

作为一种全球性污染,酸雨会显著改变土壤的物理化学和生物化学过程,但我们对酸雨如何影响土壤酶活性的了解仍然有限。为了量化土壤酶活性对酸雨响应的总体幅度和方向,我们对40篇文章进行了基于线性混合模型的荟萃分析。我们的分析表明,酸雨使酶活性平均降低了4.87%。土壤脱氢酶和蛋白酶活性对酸雨尤为敏感,观察到有显著抑制作用。酸雨的影响受酸雨强度(即H添加速率、总H添加量和酸雨pH值)和土壤组分(即根际和非根际土壤)的调节。结构方程模型进一步表明,酸雨通过酸化土壤抑制了土壤微生物生物量,而微生物生物量的减少直接导致了非根际土壤中酶活性的抑制。然而,由于根际效应,根际土壤中的酶活性不受酸雨影响,根际效应也不受酸雨在根际引起的土壤pH值降低的影响。我们的研究深入了解了非根际土壤酶活性如何受到酸雨的影响,并强调了将根际过程纳入酸雨-陆地生态系统模型的必要性。

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