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广东省科学院生态环境与土壤研究所研究员孙蔚旻团队在碱性土中砷代谢微生物的研究方面取得新进展。相关研究发表于Environmental PollutionIF=9.988)。


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doi:10.1016/j.envpol.2022.120040


Highlights

Anaerobic As(III) oxidation mainly catalyzed by microbes with aioA genes.


Microbes with arrA gene were the key drivers of respiratory As(V) reduction.


Acidovorax, Hydrogenophaga and Ramlibacter mediated anaerobic As(III) oxidation.


Deinococcus and Serratia were the putative As(V) reducers.


Abstract

Arsenite (As(III)) is more toxic, mobilizable and bioavailable than arsenate (As(V)). Hence, the transformations between As(III) and As(V) are crucial for the toxicity and mobility of arsenic (As). However, As transformation and microbial communities involved in alkaline soils are largely unknown. Here we investigate two major pathways of As transformation, i.e., As(III) oxidation and As(V) reduction, and identify the bacteria involved in the alkaline soil by combining stable isotope probing with shotgun metagenomic sequencing. As(III) oxidation and significant increase of the aioA genes copies were observed in the treatments amended with As(III) and NO3, suggesting that As(III) oxidation can couple with nitrate reduction and was mainly catalyzed by the microorganisms containing aioA genes. As(V) reduction was detected in the treatments amended with As(V) and acetate where the abundance of arrA gene significantly increased, indicating that microorganisms with arrA genes were the key As(V) reducers. Acidovorax, Hydrogenophaga, and Ramlibacter were the putative nitrate-dependent As(III) oxidizers, and Deinococcus and Serratia were the putative respiratory As(V) reducers. These findings will improve our understanding of As metabolism and are meaningful for mapping out bioremediation strategies of As contamination in alkaline environment.

该研究主要聚焦于土壤中的厌氧砷氧化过程和砷还原过程。研究发现,碱性土中的厌氧砷氧化过程主要与硝酸盐还原过程相耦合,aioA基因是其中的关键功能基因,而碱性土中的砷还原过程则以异化砷还原过程为主,主要由arrA基因驱动。该研究利用稳定同位素示踪(stable isotope probing,SIP)-宏基因组测序-分箱(binning)技术平台,揭示了碱性土中驱动厌氧砷氧化和异化砷还原过程的关键微生物。其中,前者主要包括嗜酸菌属(Acidovorax),噬氢菌属(Hydrogenophaga)和沙壤土杆菌属(Ramlibacter),后者主要包括异常球菌属(Deinococcus)和沙雷氏菌属(Serratia)。这些砷代谢微生物也在其他环境如酸性和中性环境中参与砷元素的氧化还原循环。这说明,砷代谢微生物可能没有明显的生态位偏好。该研究探明了碱性土中的厌氧砷氧化过程和砷还原过程,并解析了其中的关键功能微生物,拓展了关于碱性环境中砷元素的生物地球化学行为的认识。

责任编辑:宋潇

校对和审核:张阳 王农

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