4.6 Article

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

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FRONTIERS IN MICROBIOLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fmicb.2022.794950

关键词

arsenic; iron-oxidizing bacteria; paddy soil; metabolomics; microbial community

资金

  1. Research Foundation of Education Bureau of Hunan Province, China [20A246]
  2. Natural Science Foundation of Hunan Province of China [2021JJ30340]
  3. National Natural Science Foundation of China [42177392]
  4. Education University of Hong Kong [04626]

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This study demonstrates the potential application of iron-oxidizing bacteria (FeOB) in the remediation of arsenic (As) pollution in paddy soils. Inoculation of FeOB reduces the bioavailability of As in paddy soils, decreases As accumulation in rice tissues, and enhances the resistance of the soil to peroxide pollution caused by As. Additionally, FeOB inoculation alters the microbial community structure and soil metabolism, promoting the biotransformation process of As in the soil.
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 Ochrobactrum EEELCW01 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 Ochrobactrum 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, Pedosphaeraceae 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 Ochrobactrum 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).

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