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一系列土壤细菌和真菌产生的细胞外聚合物(EPS)的组成成分。

Constituent of extracellular polymeric substances (EPS) produced by a range of soil bacteria and fungi.

作者信息

Oliva Rebeca Leme, Khadka Umesh B, Camenzind Tessa, Dyckmans Jens, Joergensen Rainer Georg

机构信息

Soil Biology and Plant Nutrition, University of Kassel, Nordbahnhofstr. 1a, Witzenhausen, 37213, Germany.

Institute of Biology, Freie Universität Berlin, Altensteinstr. 6, Berlin, 14195, Germany.

出版信息

BMC Microbiol. 2025 May 15;25(1):298. doi: 10.1186/s12866-025-04034-z.

Abstract

Extracellular polymeric substances (EPS) produced by soil bacteria and fungi are crucial for microbial growth and provide many functions for the soil and its microbes. EPS composition may depend on microbial community composition and the soil physical and chemical environment, nevertheless, not much is known about the EPS constituents' specific roles nor how they interact to alter biofilm's functions. We hypothesized that EPS production would be enhanced with the presence of a surface and with a more labile carbon source. Also, that even though carbohydrates and proteins are the main constituents of EPS, we could still find quantifiable amounts of mannosamine and galactosamine (two amino sugars previously shown to be part of microbial biofilms). Ten soil bacterial and ten soil fungal species were cultured with glycerol or starch and with or without a quartz matrix. After a 4-day cultivation, EPS were extracted, and seven constituents were determined: carbohydrates, DNA, proteins, muramic acid, mannosamine, galactosamine, and glucosamine. We found EPS composition was strongly modified by microbial type, whereas differences in EPS production were driven mostly by environmental conditions. The EPS-carbohydrate/protein ratio was higher for cultures grown in starch media than in glycerol and increased in the presence of quartz. EPS-carbohydrate concentration reflected environmental changes of substrate quality and surface presence. Contrastingly, changes in the other EPS constituent composition are likely due to intrinsic microbial characteristics. Our findings open the pathway to study microbial biofilms in more complex environments (such as soils) and shed light to the importance of extracellular structures to microbial processes.

摘要

土壤细菌和真菌产生的胞外聚合物(EPS)对微生物生长至关重要,并为土壤及其微生物提供多种功能。EPS的组成可能取决于微生物群落组成以及土壤物理和化学环境,然而,对于EPS成分的具体作用以及它们如何相互作用以改变生物膜功能,人们了解得并不多。我们假设,在有表面和更不稳定碳源存在的情况下,EPS的产生会增强。此外,尽管碳水化合物和蛋白质是EPS的主要成分,但我们仍能检测到可量化的甘露糖胺和半乳糖胺(此前已证明这两种氨基糖是微生物生物膜的一部分)。将十种土壤细菌和十种土壤真菌分别与甘油或淀粉一起培养,并设置有无石英基质的条件。培养4天后,提取EPS,并测定七种成分:碳水化合物、DNA、蛋白质、胞壁酸、甘露糖胺、半乳糖胺和葡萄糖胺。我们发现,EPS的组成受到微生物类型的强烈影响,而EPS产量的差异主要由环境条件驱动。在淀粉培养基中生长的培养物的EPS-碳水化合物/蛋白质比率高于在甘油中生长的培养物,并且在有石英存在时增加。EPS-碳水化合物浓度反映了底物质量和表面存在的环境变化。相比之下,其他EPS成分组成的变化可能归因于微生物的内在特性。我们的研究结果为在更复杂的环境(如土壤)中研究微生物生物膜开辟了道路,并揭示了细胞外结构对微生物过程的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2296/12079940/caecb1c475a7/12866_2025_4034_Fig1_HTML.jpg

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