Thiobacillus spp. and Anaeromyxobacter spp. mediate arsenite oxidation-dependent biological nitrogen fixation in two contrasting types of arsenic-contaminated soils

环境化学 硫杆菌 土壤水分 亚砷酸盐 固氮 生物地球化学循环 砷酸盐 微生物 尾矿 细菌 生物 化学 生态学 有机化学 物理化学 遗传学
作者
Yongbin Li,Lifang Guo,Rui Yang,Zhaohui Yang,Haihan Zhang,Qiqian Li,Zhiguo Cao,Xin Zhang,Pin Gao,Wenlong Gao,Geng Yan,Duanyi Huang,Weimin Sun
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:443: 130220-130220 被引量:38
标识
DOI:10.1016/j.jhazmat.2022.130220
摘要

As(III) oxidation-dependent biological nitrogen fixing (As-dependent BNF) bacteria use a novel biogeochemical process observed in tailings recently. However, our understanding of microorganisms responsible for As-dependent BNF is limited and whether such a process occurs in As-contaminated soils is still unknown. In this study, two contrasting types of soils (surface soils versus river sediments) heavily contaminated by As were selected to study the occurrence of As-dependent BNF. BNF was observed in sediments and soils amended with As(III), whereas no apparent BNF was found in the cultures without As(III). The increased abundances of the nitrogenase gene (nifH) and As(III) oxidation gene (aioA) suggest that an As-dependent BNF process was catalyzed by microorganisms harboring nifH and aioA. In addition, DNA-SIP demonstrated that Thiobacillus spp. and Anaeromyxobacter spp. were putative As-dependent BNF bacteria in As-contaminated soils and sediments, respectively. Metagenomic analysis further suggested that these taxa contained genes responsible for BNF, As(III) oxidation, and CO2 fixation, demonstrating their capability for serving as As-dependent BNF. These results indicated the occurrence of As-dependent BNF in various As-contaminated habitats. The contrasting geochemical conditions in different types of soil suggested that these conditions may enrich different As-dependent BNF bacteria (Thiobacillus spp. for soils and Anaeromyxobacter spp. for sediments).
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