Literature DB >> 32590206

Endophytic bacteria stimulate mercury phytoremediation by modulating its bioaccumulation and volatilization.

Ivani Souza Mello1, Sabrina Targanski1, William Pietro-Souza2, Fernando Ferrari Frutuoso Stachack3, Ailton Jose Terezo3, Marcos Antônio Soares4.   

Abstract

The quantification, efficiency, and possible mechanisms of mercury phytoremediation by endophytic bacteria are poorly understood. Here we selected 8 out of 34 previously isolated endophytic bacterial strains with a broad resistance profile to metals and 11 antibiotics: Acinetobacter baumannii BacI43, Bacillus sp. BacI34, Enterobacter sp. BacI14, Klebsiella pneumoniae BacI20, Pantoea sp. BacI23, Pseudomonas sp. BacI7, Pseudomonas sp. BacI38, and Serratia marcescens BacI56. Except for Klebsiella pneumoniae BacI20, the other seven bacterial strains promoted maize growth on a mercury-contaminated substrate. Acinetobacter baumannii BacI43 and Bacillus sp. BacI34 increased total dry biomass by approximately 47%. The bacteria assisted mercury remediation by decreasing the metal amount in the substrate, possibly by promoting its volatilization. The plants inoculated with Serratia marcescens BacI56 and Pseudomonas sp. BacI38 increased mercury volatilization to 47.16% and 62.42%, respectively. Except for Bacillus sp. BacI34 and Pantoea sp. BacI23, the other six bacterial strains favored mercury bioaccumulation in plant tissues. Endophytic bacteria-assisted phytoremediation contributed to reduce the substrate toxicity assessed in different model organisms. The endophytic bacterial strains selected herein are potential candidates for assisted phytoremediation that shall help reduce environmental toxicity of mercury-contaminated soils.
Copyright © 2020 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Antibiotics; Bioaccumulation; Bioremediation; Metal; Volatilization

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Year:  2020        PMID: 32590206     DOI: 10.1016/j.ecoenv.2020.110818

Source DB:  PubMed          Journal:  Ecotoxicol Environ Saf        ISSN: 0147-6513            Impact factor:   6.291


  3 in total

Review 1.  Practical limitations of bioaugmentation in treating heavy metal contaminated soil and role of plant growth promoting bacteria in phytoremediation as a promising alternative approach.

Authors:  Setyo Budi Kurniawan; Nur Nadhirah Ramli; Nor Sakinah Mohd Said; Jahira Alias; Muhammad Fauzul Imron; Siti Rozaimah Sheikh Abdullah; Ahmad Razi Othman; Ipung Fitri Purwanti; Hassimi Abu Hasan
Journal:  Heliyon       Date:  2022-04-01

Review 2.  Plant growth-promoting bacteria in metal-contaminated soil: Current perspectives on remediation mechanisms.

Authors:  Yue Wang; Mathiyazhagan Narayanan; Xiaojun Shi; Xinping Chen; Zhenlun Li; Devarajan Natarajan; Ying Ma
Journal:  Front Microbiol       Date:  2022-08-11       Impact factor: 6.064

Review 3.  Phytoremediation and Microorganisms-Assisted Phytoremediation of Mercury-Contaminated Soils: Challenges and Perspectives.

Authors:  Emanuela D Tiodar; Cristina L Văcar; Dorina Podar
Journal:  Int J Environ Res Public Health       Date:  2021-03-02       Impact factor: 3.390

  3 in total

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