Chen Xiaomeng, Zhao Yue, Zhao Xinyu, Wu Junqiu, Zhu Longji, Zhang Xu, Wei Zimin, Liu Yan, He Pingping
College of Life Science, Northeast Agricultural University, Harbin 150030, China.
State Key Laboratory of Environment Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, China.
J Hazard Mater. 2020 Nov 5;398:122858. doi: 10.1016/j.jhazmat.2020.122858. Epub 2020 May 19.
Heavy metals (HM) pollution exerts an effect on microbial community composition and structure during composting, the way how microbial community responses to HM pressure is remain poorly understood though. The aim of this study was to explore functional roles of microorganisms based on selective pressures of HM (Cu, Zn and Cd). The results of microbial resistance showed that the toxicity of metals to microorganisms were Cu > Zn > Cd during composting. Cu and Zn were more toxic for microorganisms during composting when compared with Cd. However, microorganisms had a longer lag period to grow under Zn stress through microbial tolerance determination. In addition, the microbial catalase activity generally decreased and protease activity generally increased, thus microorganisms became more adaptable to HM stress during composting. The experimental results confirmed the existence of sensitive, resistant and actor microorganisms during beef cattle and chicken manures composting. Ultimately, the resistant, sensitive and actor microorganisms at genus level were distinguished under HM pressure based on the network analysis and structural equation models, including 85 resistant microorganisms, 5 sensitive microorganisms and 6 actor microorganisms. This would be helpful to understand the microbial succession process under HM stress and identify functional strains of HM remediation.
重金属(HM)污染在堆肥过程中会对微生物群落组成和结构产生影响,不过目前对于微生物群落如何应对HM压力仍知之甚少。本研究的目的是基于HM(铜、锌和镉)的选择压力来探究微生物的功能作用。微生物抗性结果表明,堆肥过程中金属对微生物的毒性为铜>锌>镉。与镉相比,堆肥过程中铜和锌对微生物的毒性更大。然而,通过微生物耐受性测定发现,微生物在锌胁迫下生长的滞后期更长。此外,微生物过氧化氢酶活性普遍降低,蛋白酶活性普遍增加,因此堆肥过程中微生物对HM胁迫的适应性更强。实验结果证实了肉牛和鸡粪堆肥过程中存在敏感型、抗性型和关键型微生物。最终,基于网络分析和结构方程模型,在HM压力下区分出了属水平的抗性、敏感和关键微生物,包括85种抗性微生物、5种敏感微生物和6种关键微生物。这将有助于理解HM胁迫下的微生物演替过程,并鉴定HM修复的功能菌株。