Key Laboratory of Poyang Lake Environment and Resource, Ministry of Education, and School of Life Sciences, Nanchang University, Nanchang, 330022, China.
Key Laboratory of Aquatic Animal Resources and Utilization of Jiangxi, Nanchang University, Nanchang, 330022, China.
Sci Rep. 2018 Jan 15;8(1):760. doi: 10.1038/s41598-018-19153-z.
The water regime is often the primary force driving the evolution of freshwater lakes, but how soil microbes responded to this process is far from understood. This study sampled wetland soils from a shallow lake that experienced water regime changes, Poyang Lake of China, to explore the features of bacterial and fungal community in response to water level changes. The soil physicochemical properties, T-RFLP based community structures and soil activities (including basal respiration, microbial biomass and enzymes) were all determined. Soil microbial eco-function was captured by testing the carbon metabolism with Biolog-Ecoplate. The results showed remarkable influence of the water level gradients on the soil physicochemical properties, microbial community structures and soil activities. However, the carbon utilization profile exhibited weak connections with the environmental variables and microbial community structures (p > 0.05). The microbial activities were significantly correlated with both bacterial and fungal community structures. Our results also emphasized the ascendant role of the deterministic process in the assemblages of microbial community structures and functions in wetland. In conclusion, this study revealed the discrepancy between community structures and eco-functions in response to water level gradients, and a relatively stable eco-function helped to maintain the ecosystem function of wetland from a long-term perspective.
水情通常是驱动淡水湖泊演化的主要力量,但土壤微生物如何对此过程做出响应仍远未被理解。本研究从经历水位变化的浅水湖泊——中国鄱阳湖采集了湿地土壤样本,以探索细菌和真菌群落对水位变化的响应特征。测定了土壤理化性质、基于 T-RFLP 的群落结构和土壤活性(包括基础呼吸、微生物生物量和酶)。通过 Biolog-Ecoplate 测试碳代谢来捕捉土壤微生物生态功能。结果表明,水位梯度对土壤理化性质、微生物群落结构和土壤活性有显著影响。然而,碳利用谱与环境变量和微生物群落结构之间的联系较弱(p > 0.05)。微生物活性与细菌和真菌群落结构显著相关。我们的结果还强调了确定性过程在湿地微生物群落结构和功能组合中的上升作用。总之,本研究揭示了群落结构和对水位梯度的生态功能之间的差异,从长期来看,相对稳定的生态功能有助于维持湿地的生态系统功能。