酸杆菌
环境化学
微生物种群生物学
碳循环
碳纤维
炭黑
蛋白质细菌
化学
土壤碳
土壤水分
微生物代谢
生态学
生物
生态系统
细菌
生物化学
复合数
基因
复合材料
天然橡胶
有机化学
材料科学
遗传学
16S核糖体RNA
作者
Tao Yue,Lu Shen,Siyue Han,Zixu Li,Yunhe Cui,Yulong Lin,Jianhua Qu,Ying Zhang
标识
DOI:10.1016/j.jhazmat.2022.130666
摘要
Pollution of soil environments with heavy metals (HMs) and rare earth elements (REEs) cannot be ignored. We aimed to determine the effects of lead combined with lanthanum (Pb-La) on microbial community structure, carbon metabolism, and differences in carbon source utilization in black soils using EcoPlates™ and a macrogenomic approach. We found that Pb and La contents and the microbial community structure together influence and shape the response of soil carbon metabolism to Pb-La. Compared with controls, microorganisms under pollution stress preferentially use phenolic and carboxylic acids as growth carbon sources. Under Pb-La stress, the relative abundance of Proteobacteria significantly increased, thereby selectively displacing heavy metal-sensitive phyla, such as Chloroflexi, Acidobacteria, and Thaumarchaeota. Altered functional potential of the microbial carbon cycle manifested as differences in carbon metabolism, methane metabolism, and carbon fixation pathways. Furthermore, an appropriate concentration of La can reduce the environmental toxicity of Pb, whereas a high concentration of La has synergistic toxicity with Pb. These findings have important implications for understanding the impact of HM-REE contamination in microbial communities and the functions associated with carbon metabolism in black soils.
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