土壤中生物可降解塑料的生态效应及微生物降解研究进展
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1.山东省农业科学院蔬菜研究所/农业农村部黄淮设施园艺工程重点实验室/山东省大宗露地蔬菜育种重点实验室/养分资源高效利用全国重点实验室;2.土壤与农业可持续发展国家重点实验室(中国科学院南京土壤研究所)

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国家自然科学基金项目(42130718)、山东省自然科学基金项目(ZR2023QD009)和山东省农业科学院农业科技创新工程项目(CXGC2024A07)资助


Research Progress on Ecological Effects and Microbial Degradation of Biodegradable Plastics in Soils
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1.State Key Laboratory of Nutrient Use and Management, Shandong Key Laboratory of Bulk Open-field Vegetable Breeding, Ministry of Agriculture and Rural Affairs Key Laboratory of Huang Huai Protected Horticulture Engineering, Institute of Vegetables, Shandong Academy of Agricultural Sciences;2.State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences

Fund Project:

Supported by the National Natural Science Foundation of China (No. 42130718), the Natural Science Foundation of Shandong Province, China (No. ZR2023QD009), and the Agricultural Scientific and Technological Innovation Project of Shandong Academy of Agricultural Sciences, China (No. CXGC2024A07)

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    摘要:

    生物可降解塑料因其易生物降解的特性,被认为是传统塑料的理想替代品,应用前景广阔。土壤是各类生物可降解塑料废弃物的重要归趋,全面了解生物可降解塑料在土壤环境中的生态效应,可为评价生物可降解塑料的生态安全性提供科学依据,是实现其大规模推广应用的基础和前提。同时,微生物降解是土壤中生物可降解塑料降解的主要途径,对土壤环境中生物可降解塑料微生物降解过程及其降解机理的透彻掌握,可为实现生物可降解塑料的原位高效可控降解提供理论指导。本文首先从土壤理化性质、土壤微生物、植物、动物角度综述了生物可降解塑料对土壤生态系统的生态毒理效应。进入土壤环境中的生物可降解塑料不但是一种物理输入,更是一种化学输入,其能够改变土壤容重、孔隙度、养分含量等理化性质,直接或间接地影响土壤微生物群落结构与功能,并会对植物生长发育及土壤动物的存活、繁殖等行为产生影响,具有一定的动植物毒性。然后,进一步归纳总结了土壤中生物可降解塑料的微生物降解机制及影响降解效率的关键因素。土壤微生物主要通过“在塑料表面定殖—分泌胞外酶催化聚合物解聚—低聚物或小分子单体被矿化”这3个关键步骤实现对生物可降解塑料的完全降解。生物可降解塑料在实际土壤环境中的降解速度较为缓慢,其降解效率受到塑料本身性质、土壤环境及气候条件等多种因素的影响。同时,对参与生物可降解塑料降解的微生物和酶进行了系统梳理。最后,针对目前研究现状与不足,展望了未来的重点研究方向,旨在为土壤中生物可降解塑料的生态效应与微生物降解研究提供科学参考。

    Abstract:

    Biodegradable plastics are considered ideal replacements for traditional plastics due to their easy biodegradability, and have broad application prospects. Soil is an important destination for various biodegradable plastic waste. A comprehensive understanding of the ecological effects of biodegradable plastics in the soil environment can provide a scientific basis for evaluating the ecological safety of biodegradable plastics, which is the foundation and prerequisite for their large-scale promotion and application. Given that microbial degradation is the main pathway for the degradation of biodegradable plastics in soil, a thorough understanding of the degradation process and mechanism can provide theoretical guidance for achieving efficient and controllable in-situ degradation of biodegradable plastics. This paper first summarized the ecological toxicological effects of biodegradable plastics on soil ecosystems from the perspectives of soil physicochemical properties, soil microorganisms, plants, and animals. Biodegradable plastics entering the soil environment are not only a physical input, but also a chemical input, which can change the physicochemical properties of soil, such as bulk density, porosity, and nutrient content. They can directly or indirectly affect the structure and function of soil microbial communities, and affect the growth and development of plants as well as the survival and reproduction of soil animals. Furthermore, the microbial degradation mechanism of biodegradable plastics in soil and the key factors affecting degradation efficiency were further summarized. Soil microorganisms degrade biodegradable plastics mainly through three key steps: colonization on the plastic surface, secretion of extracellular enzymes that catalyze polymer depolymerization, and mineralization of oligomers or monomers. The degradation rate of biodegradable plastics in the actual soil environment is relatively slow, and their degradation efficiency is affected by various factors such as the properties of plastics, soil environment, and climate conditions. At the same time, the microorganisms and enzymes involved in the degradation of biodegradable plastics were systematically combed. Because of the current research status and shortcomings, the key research directions in the future are prospected, aiming to provide scientific reference for the study of environmental impacts and microbial degradation of biodegradable plastics in soil.

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韩玉娟,滕应.土壤中生物可降解塑料的生态效应及微生物降解研究进展[J].土壤学报,DOI:10.11766/trxb202405270210,[待发表]
HAN Yujuan, TENG Ying. Research Progress on Ecological Effects and Microbial Degradation of Biodegradable Plastics in Soils[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202405270210,[In Press]

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  • 收稿日期:2024-05-27
  • 最后修改日期:2024-08-26
  • 录用日期:2024-09-12
  • 在线发布日期: 2024-09-14
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