Redmile-Gordon Marc, Chen Lin
Department of Sustainable Soils and Grassland Systems, Rothamsted Research, Harpenden, Herts AL5 2JQ, UK.
State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.
Int Biodeterior Biodegradation. 2017 Apr;119:413-418. doi: 10.1016/j.ibiod.2016.10.004.
The production of extracellular polymeric substances (EPS) is crucial for biofilm structure, microbial nutrition and proximal stability of habitat in a variety of environments. However, the production patterns of microbial EPS in soils as affected by heavy metal contamination remain uncertain. Here we investigate the extracellular response of the native microbial biomass in a grassland soil treated with refined glycerol or crude unrefined biodiesel co-product (BCP) with and without ZnCl. We extracted microbial EPS and more readily soluble microbial products (SMP), and quantified total polysaccharide, uronic acid, and protein content in these respective extracts. Organic addition, especially BCP, significantly stimulated the production of EPS-polysaccharide and protein but had no impact on EPS-uronic acids, while in the SMP-fraction, polysaccharides and uronic acids were both significantly increased. In response to the inclusion of Zn, both EPS- and SMP-polysaccharides increased. This implies firstly that a tolerance mechanism of soil microorganisms against Zn toxicity exists through the stimulation of SMP and EPS production, and secondly that co-products of biofuel industries may have value-added use in bioremediation efforts to support production of microbial biopolymers. Microbial films and mobile polymers are likely to impact a range of soil properties. The recent focus on EPS research in soils is anticipated to help contribute an improved understanding of biofilm dynamics in other complex systems - such as continuously operated bioreactors.
胞外聚合物(EPS)的产生对于生物膜结构、微生物营养以及多种环境中栖息地的近端稳定性至关重要。然而,受重金属污染影响的土壤中微生物EPS的产生模式仍不确定。在此,我们研究了在添加和不添加ZnCl₂的情况下,用精制甘油或粗制未精炼生物柴油副产物(BCP)处理的草地土壤中天然微生物生物量的胞外反应。我们提取了微生物EPS和更易溶解的微生物产物(SMP),并对这些提取物中总多糖、糖醛酸和蛋白质含量进行了定量分析。添加有机物,尤其是BCP,显著刺激了EPS-多糖和蛋白质的产生,但对EPS-糖醛酸没有影响,而在SMP部分,多糖和糖醛酸均显著增加。响应于Zn的添加,EPS-和SMP-多糖均增加。这首先意味着土壤微生物通过刺激SMP和EPS的产生存在对Zn毒性的耐受机制,其次生物燃料工业的副产物在支持微生物生物聚合物生产的生物修复努力中可能具有增值用途。微生物膜和移动聚合物可能会影响一系列土壤性质。近期对土壤中EPS研究的关注有望有助于增进对其他复杂系统(如连续运行的生物反应器)中生物膜动态的理解。