Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, 510640, China.
College of Natural Resources and Environment, South China Agricultural University, Guangzhou, 510642, China.
Environ Sci Pollut Res Int. 2018 Apr;25(10):9904-9914. doi: 10.1007/s11356-018-1323-9. Epub 2018 Jan 26.
We performed the study of rhizospheric effects on soil microbial community structure, including bacteria, fungi, actinomycete, and archaea, at an electronic waste (e-waste) recycling site by analyzing the phospholipid fatty acid (PLFA) and isoprenoid glycerol dialkyl glycerol tetraether (GDGT) contents. By comparing PLFA and isoprenoid GDGT profiles of rhizospheric and surrounding bulk soils of 11 crop species, we observed distinct microbial community structures. The total PLFA concentration was significantly higher in rhizospheric soils than in non-rhizospheric soils, whereas no obvious difference was found in the total isoprenoid GDGT concentrations. The microbial community structure was also different, with higher ratios of fungal-to-bacterial PLFAs (F/B) and lower relative abundance of Gram-positive bacteria in rhizospheric soils. The extent of rhizospheric effects varied among plant species, and Colocasia esculenta L. had the greatest positive effects on the total microbial biomass. Dissolved organic carbon and pH were the main environmental factors affecting the microbial community represented by PLFAs, while the archaeal community was influenced by copper and zinc in all soils. These results offer a comprehensive view of rhizospheric effects on microbes in heavy metal and persistent organic pollutant co-contaminated soil, and provide fundamental knowledge regarding microbial ecology in e-waste-contaminated soils.
我们通过分析磷脂脂肪酸(PLFA)和异戊二烯甘油二烷基甘油四醚(GDGT)含量,研究了电子废物(e-waste)回收场地根际对土壤微生物群落结构的影响,包括细菌、真菌、放线菌和古菌。通过比较 11 种作物根际和周围土壤的 PLFA 和异戊二烯 GDGT 图谱,我们观察到了明显不同的微生物群落结构。根际土壤的总 PLFA 浓度明显高于非根际土壤,而总异戊二烯 GDGT 浓度则没有明显差异。微生物群落结构也不同,根际土壤中真菌与细菌 PLFA 的比值(F/B)较高,革兰氏阳性菌的相对丰度较低。根际效应的程度因植物物种而异,芋头(Colocasia esculenta L.)对总微生物生物量的正向影响最大。PLFA 代表的微生物群落主要受溶解性有机碳和 pH 值的影响,而所有土壤中的古菌群落则受铜和锌的影响。这些结果全面展示了根际对重金属和持久性有机污染物复合污染土壤中微生物的影响,为电子废物污染土壤中的微生物生态学提供了基础知识。