细菌胞外聚合物:基于土壤生态功能的视角
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国家自然科学基金项目(41877029,41961130383)和牛顿高级学者基金(NAF\R1\191017)资助


Bacterial Extracellular Polymeric Substances: From the Perspective of Soil Ecological Functions
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Supported by the National Natural Science Foundation of China (No. 41877029, 41961130383) and Newton Advanced Fellowship (NAF\R1\191017)

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    摘要:

    胞外聚合物(Extracellular Polymeric Substances,EPS)是微生物分泌到胞外环境的高分子量天然聚合物,其建立了生物膜结构和功能的完整性,是决定生物膜物理化学特性的关键组分。EPS是细菌生命的基础,为化学反应发生、养分捕获和抵抗环境胁迫提供了理想的环境。细菌分泌的EPS可以通过自身特性(如粘着性、吸湿性和络合性能等)实现土壤功能增益,如提高团聚体稳定性、增强保水持水能力、以及固持重金属等。本文梳理了细菌EPS的土壤生态功能,即充当细胞保护层、调节土壤生物响应、缓解土壤非生物胁迫和改善土壤整体功能,并探讨了土壤中细菌EPS未来研究的着眼点,以期呼吁更多学者关注细菌EPS及其在土壤生态系统中的功能。

    Abstract:

    Extracellular polymeric substances (EPS) are high-molecular-weight natural polymers secreted by microorganisms into their surrounding environment. EPS establish the structural and functional integrity of biofilms, and are the key component that determines the physicochemical properties of biofilms. As the basis of bacterial life activities, EPS can provide an ideal environment for chemical reactions, nutrient capture, and resistance to environmental stress. EPS secreted by bacteria can benefit soil functions through its properties (such as adhesiveness, hydroscopicity, and complexation), e.g. increasing aggregate stability, enhancing water retention, and fixing heavy metals. Therefore, in-depth research on soil EPS is key to better management of biologically mediated nutrient turnover and soil health. To this end, this review first introduces the concept, components, and controlled factors of EPS, and especially emphasizes the interdisciplinary consistency of the term EPS. The paper then summarizes the soil ecological functions of bacterial EPS:1) Act as cells' protection layer, such as preventing cell desiccation, maintaining the stabilization of extracellular metabolism, and affecting the adhesion process of cells on the solid surface; 2) Regulate biological response, such as assisting the symbiosis between bacteria and plants, resisting the sterilization of antimicrobial compounds, and influencing genetic material transfer; 3) Alleviate abiotic stress, such as enhancing the water-holding capacity of soils, improving salt tolerance of organisms, and adapting microbes to extreme environments; and 4) Improve the overall functions of soil, such as driving soil particle aggregation, promoting soil aggregates stabilization, achieving the capture of nutrients and extracellular storage, holding heavy metals and reducing them by acting as electron transfer media and electron donors, and adsorbing organic pollutants and accelerating their biodegradation. Finally, we suggest future research opportunities of bacterial EPS in soil:a) Promote the specific extraction and accurate analysis of soil EPS; b) Clarify the relative contribution of EPS-protein and Glomalin-related soil proteins to soil aggregates stability; c) Evaluate the relative importance and correlation between soil EPS and other soil health indicators; d) Consider the benefits of bacterial EPS for the research and development of novel biofertilizers. This review calls for more scholars to pay attention to and study bacterial EPS and its functions in soil ecosystems, and to explore its potential application in the development of environmental-friendly agriculture.

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张铭,蔡鹏,吴一超,高春辉,刘俊,黄巧云.细菌胞外聚合物:基于土壤生态功能的视角[J].土壤学报,2022,59(2):308-323. DOI:10.11766/trxb202107310271 ZHANG Ming, CAI Peng, WU Yichao, GAO Chunhui, LIU Jun, HUANG Qiaoyun. Bacterial Extracellular Polymeric Substances: From the Perspective of Soil Ecological Functions[J]. Acta Pedologica Sinica,2022,59(2):308-323.

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  • 收稿日期:2021-07-31
  • 最后修改日期:2021-09-25
  • 录用日期:2021-10-09
  • 在线发布日期: 2022-01-05
  • 出版日期: 2022-02-11