Metals and microorganisms in a Maar lake sediment core indicating the anthropogenic impact over last 800 years

Jia Yan, Xingpan Guo, Maoyong He, Zuoshun Niu, Miao Xu, Bo Peng, Yi Yang, Zhangdong Jin

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

A closed Maar lake, receiving mostly atmospheric deposition, offers a unique setting for investigating the impact of human activities on the environment. In this study, we aimed to investigate the historical record of metals in core sediments of Maar Lake in Huguangyan (HGY), Southeast China, and elucidate the possible microbial responses to anthropogenic metal stress. Five stages were divided according to the historical record of metals and corresponding distribution of microbial community, among which Pb and Sn showed a peak value around 1760 CE, indicating the ancient mining and smelting activities. Since the 1980s, a substantial enrichment of metals such as Zn, As, Mo, Cd, Sn, Sb, and Pb was observed, due to the rapid industrial growth in China. In terms of microorganisms, Chloroflexi phylum, particularly dominated by Anaerolineales, showed significant correlations with Pb and Sn, and could potentially serve as indicator species for mining and smelting-related contamination. Desulfarculales and Desulfobacterales were found to be more prevalent in recent period and exhibited positive correlations with anthropogenic metals. Moreover, according to the multivariate regression modeling and variance decomposition analysis, Pb and Sn could regulate Anaerolineales and further pose impact on the carbon cycle; while sulfate-reducing bacteria (SRB) could response to anthropogenic metals and influence sulfur cycle. These findings provide new insights into the interaction between metals and microbial communities over human history.

Original languageEnglish
Article number168392
JournalScience of the Total Environment
Volume911
DOIs
StatePublished - 10 Feb 2024

Keywords

  • Human activity
  • Indicator
  • Lake sediment
  • Microbial community
  • Microbial function
  • Trace metal

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