Kim Mincheol, Jung Ji Young, Laffly Dominique, Kwon Hye Young, Lee Yoo Kyung
Korea Polar Research Institute, Incheon 21990, Korea.
Department of Geography, University of Toulouse 2, Toulouse 31058, France.
FEMS Microbiol Ecol. 2017 Jan;93(1). doi: 10.1093/femsec/fiw213. Epub 2016 Oct 17.
Primary succession after glacier retreat has been widely studied in plant communities, but bacterial succession is still poorly understood. In particular, few studies of microbial succession have been performed in the Arctic. We investigated the shifts in bacterial community structure and soil physicochemical properties along a successional gradient in a 100-year glacier foreland of the High Arctic. Multivariate analyses revealed that time after glacier retreat played a key role in associated bacterial community structure during succession. However, environmental filtering (i.e. pH and soil temperature) also accounted for a different, but substantial, proportion of the bacterial community structure. Using the functional trait-based approach, we found that average rRNA operon (rrn) copy number of bacterial communities is high in earlier successional stages and decreased over time. This suggests that soil bacterial taxa with higher rrn copy number have a selective advantage in early successional stages due to their ability of rapidly responding to nutrient inputs in newly exposed soils after glacier retreat. Taken together, our results demonstrate that both deglaciation time and environmental filters play key roles in structuring bacterial communities and soil bacterial groups with different ecological strategies occur in different stages of succession in this glacier foreland.
冰川消退后的原生演替在植物群落中已得到广泛研究,但细菌演替仍知之甚少。特别是在北极地区,很少有关于微生物演替的研究。我们在北极高纬度地区一个有100年历史的冰川前沿,沿着演替梯度研究了细菌群落结构和土壤理化性质的变化。多变量分析表明,冰川消退后的时间在演替过程中对相关细菌群落结构起着关键作用。然而,环境过滤(即pH值和土壤温度)也在细菌群落结构中占了不同但相当大的比例。使用基于功能性状的方法,我们发现细菌群落的平均rRNA操纵子(rrn)拷贝数在演替早期阶段较高,并随时间下降。这表明,rrn拷贝数较高的土壤细菌类群在演替早期阶段具有选择性优势,因为它们能够在冰川消退后新暴露的土壤中快速响应养分输入。综上所述,我们的结果表明,冰川消退时间和环境过滤在构建细菌群落中都起着关键作用,并且具有不同生态策略的土壤细菌类群出现在该冰川前沿演替的不同阶段。