Jung Jaejoon, Philippot Laurent, Park Woojun
Laboratory of Molecular Environmental Microbiology, Department of Environmental Science and Ecological Engineering, Korea University, Seoul, 02841, Republic of Korea.
INRA Dijon, UMR 1347 Agroecologie, Dijon, France.
Sci Rep. 2016 Mar 14;6:23012. doi: 10.1038/srep23012.
The relationship between microbial biodiversity and soil function is an important issue in ecology, yet most studies have been performed in pristine ecosystems. Here, we assess the role of microbial diversity in ecological function and remediation strategies in diesel-contaminated soils. Soil microbial diversity was manipulated using a removal by dilution approach and microbial functions were determined using both metagenomic analyses and enzymatic assays. A shift from Proteobacteria- to Actinobacteria-dominant communities was observed when species diversity was reduced. Metagenomic analysis showed that a large proportion of functional gene categories were significantly altered by the reduction in biodiversity. The abundance of genes related to the nitrogen cycle was significantly reduced in the low-diversity community, impairing denitrification. In contrast, the efficiency of diesel biodegradation was increased in the low-diversity community and was further enhanced by addition of red clay as a stimulating agent. Our results suggest that the relationship between microbial diversity and ecological function involves trade-offs among ecological processes, and should not be generalized as a positive, neutral, or negative relationship.
微生物多样性与土壤功能之间的关系是生态学中的一个重要问题,但大多数研究是在原始生态系统中进行的。在此,我们评估了微生物多样性在柴油污染土壤的生态功能和修复策略中的作用。采用稀释去除法对土壤微生物多样性进行调控,并通过宏基因组分析和酶活性测定来确定微生物功能。当物种多样性降低时,观察到从以变形菌为主的群落向以放线菌为主的群落转变。宏基因组分析表明,很大一部分功能基因类别因生物多样性降低而发生显著改变。低多样性群落中与氮循环相关的基因丰度显著降低,损害了反硝化作用。相反,低多样性群落中柴油生物降解效率提高,添加红黏土作为刺激剂可进一步增强该效率。我们的结果表明,微生物多样性与生态功能之间的关系涉及生态过程之间的权衡,不应一概而论为正相关、中性或负相关关系。