Li Yang, Wu Zhaojun, Dong Xingchen, Wang Dongmei, Qiu Huizhen, Jia Zhongjun, Sun Qingye
a School of Resources and Environmental Engineering, Anhui University, Hefei, Anhui Province, P.R. China.
b State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, Jiangsu Province, P.R. China.
Can J Microbiol. 2019 Mar;65(3):201-213. doi: 10.1139/cjm-2017-0782. Epub 2018 Nov 19.
Ecological restoration technologies applied to tailings can influence the associated bacterial communities. However, it is unknown if the shifts in these bacterial communities are caused by increased organic carbon. Glucose-induced respiration and high-throughput sequencing were used to assess the microbial activity and bacterial communities, respectively. Glucose addition increased the microbial activity, and glucose + ammonium nitrate addition resulted in slightly higher CO emission than did glucose addition alone, suggesting that carbon and nitrogen limited microbial community growth. In neutral pH tailings, the bacterial taxa that increased by glucose addition were assigned to the phyla Proteobacteria, Acidobacteria, Actinobacteria, Bacteroidetes, Firmicutes, and Planctomycetes. However, the bacterial taxa that increased by glucose addition in acidic tailings only belonged to the phylum Actinobacteria (maximum increase of 43.78%). In addition, the abundances of the total nitrogen-fixing genera and of the genus Arthrobacter (representing approximately 97.89% of the total nitrogen-fixing genera) increased by glucose addition in acidic tailings (maximum increase of 46.98%). In contrast, the relative abundances of the total iron- and (or) sulfur-oxidizing bacteria decreased (maximum decrease of 10.41%) in response to the addition of glucose. These findings indicate that the addition of organic carbon is beneficial to the development of bacterial communities in mine tailings.
应用于尾矿的生态修复技术会影响相关细菌群落。然而,这些细菌群落的变化是否由有机碳增加引起尚不清楚。分别使用葡萄糖诱导呼吸和高通量测序来评估微生物活性和细菌群落。添加葡萄糖提高了微生物活性,且添加葡萄糖+硝酸铵导致的二氧化碳排放量略高于单独添加葡萄糖,这表明碳和氮限制了微生物群落的生长。在中性pH值的尾矿中,因添加葡萄糖而增加的细菌类群归属于变形菌门、酸杆菌门、放线菌门、拟杆菌门、厚壁菌门和浮霉菌门。然而,在酸性尾矿中因添加葡萄糖而增加的细菌类群仅属于放线菌门(最大增幅为43.78%)。此外,在酸性尾矿中,因添加葡萄糖,总固氮属以及节杆菌属(约占总固氮属的97.89%)的丰度增加(最大增幅为46.98%)。相反,添加葡萄糖后,总铁和(或)硫氧化细菌的相对丰度下降(最大降幅为10.41%)。这些发现表明,添加有机碳有利于矿山尾矿中细菌群落的发展。