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铁氧化菌株(sp.)影响下土壤-水稻系统中的砷转化及相关土壤代谢组学分析

Arsenic Transformation in Soil-Rice System Affected by Iron-Oxidizing Strain ( sp.) and Related Soil Metabolomics Analysis.

作者信息

Qian Ziyan, Wu Chuan, Pan Weisong, Xiong Xiaoran, Xia Libing, Li Waichin

机构信息

College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, China.

School of Metallurgy and Environment, Central South University, Changsha, China.

出版信息

Front Microbiol. 2022 Feb 21;13:794950. doi: 10.3389/fmicb.2022.794950. eCollection 2022.

Abstract

Iron-oxidizing bacteria (FeOB) could oxidize Fe(II) and mediate biomineralization, which provides the possibility for its potential application in arsenic (As) remediation. In the present study, a strain named isolated previously, was inoculated into paddy soils to investigate the effect of FeOB inoculation on the As migration and transformation in paddy soils. The results showed that inoculation of sp. increased the proportion of As in iron-aluminum oxide binding fraction, which reduced the As bioavailability in paddy soils and effectively reduced the As accumulation in rice tissues. Moreover, the inoculation of iron oxidizing bacteria increased the abundance of KD4-96, and other bacteria in the soils, which could reduce the As toxicity in the soil through biotransformation. The abundance of metabolites such as carnosine, MG (0:0/14:0/0:0) and pantetheine 4'-phosphate increased in rhizosphere soils inoculated with FeOB, which indicated that the defense ability of soil-microorganism-plant system against peroxidation caused by As was enhanced. This study proved that FeOB have the potential application in remediation of As pollution in paddy soil, FeOB promotes the formation of iron oxide in paddy soil, and then adsorbed and coprecipitated with arsenic. On the other hand, the inoculation of sp. change soil microbial community structure and soil metabolism, increase the abundance of FeOB in soil, promote the biotransformation process of As in soil, and enhance the resistance of soil to peroxide pollution (As pollution).

摘要

铁氧化细菌(FeOB)能够氧化Fe(II)并介导生物矿化作用,这为其在砷(As)修复中的潜在应用提供了可能性。在本研究中,将先前分离得到的一株名为 的菌株接种到水稻土中,以研究接种FeOB对水稻土中砷迁移和转化的影响。结果表明,接种 sp. 增加了铁铝氧化物结合态中砷的比例,降低了水稻土中砷的生物有效性,并有效减少了水稻组织中的砷积累。此外,接种铁氧化细菌增加了土壤中KD4-96、 和其他细菌的丰度,这些细菌可以通过生物转化降低土壤中的砷毒性。接种FeOB的根际土壤中肌肽、MG(0:0/14:0/0:0)和泛酰巯基乙胺4'-磷酸等代谢物的丰度增加,这表明土壤-微生物-植物系统对砷引起的过氧化作用的防御能力增强。本研究证明FeOB在水稻土砷污染修复中具有潜在应用价值,FeOB促进水稻土中氧化铁的形成,进而与砷发生吸附和共沉淀作用。另一方面,接种 sp. 改变了土壤微生物群落结构和土壤代谢,增加了土壤中FeOB的丰度,促进了土壤中砷的生物转化过程,并增强了土壤对过氧化物污染(砷污染)的抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1ad/8897285/a935dfe4effc/fmicb-13-794950-g001.jpg

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