Literature DB >> 29752264

Enhanced and Complete Removal of Phenylurea Herbicides by Combinational Transgenic Plant-Microbe Remediation.

Xin Yan1,2, Junwei Huang1, Xihui Xu1, Dian Chen1, Xiangting Xie3, Qing Tao3, Jian He1, Jiandong Jiang4,2.   

Abstract

The synergistic relationships between plants and their rhizospheric microbes can be used to develop a combinational bioremediation method, overcoming the constraints of individual phytoremediation or a bioaugmentation method. Here, we provide a combinational transgenic plant-microbe remediation system for a more efficient removal of phenylurea herbicides (PHs) from contaminated sites. The transgenic Arabidopsis thaliana plant synthesizing the bacterial N-demethylase PdmAB in the chloroplast was developed. The constructed transgenic Arabidopsis plant exhibited significant tolerance to isoproturon (IPU), a typical PH, and it took up the IPU through the roots and transported it to leaves, where the majority of the IPU was demethylated to 3-(4-isopropylphenyl)-1-methylurea (MDIPU). The produced intermediate was released outside the roots and further metabolized by the combinationally inoculated MDIPU-mineralizing bacterium Sphingobium sp. strain 1017-1 in the rhizosphere, resulting in an enhanced and complete removal of IPU from soil. Mutual benefits were built for both the transgenic Arabidopsis plant and strain 1017-1. The transgenic Arabidopsis plant offered strain 1017-1 a suitable accommodation, and in return, strain 1017-1 protected the plant from the phytotoxicity of MDIPU. The biomass of the transgenic Arabidopsis plant and the residence of the inoculated degrading microbes in the combinational treatment increased significantly compared to those in their respective individual transgenic plant treatment or bioaugmentation treatment. The influence of the structure of bacterial community by combinational treatment was between that of the two individual treatments. Overall, the combination of two approaches, phytoremediation by transgenic plants and bioaugmentation with intermediate-mineralizing microbes in the rhizosphere, represents an innovative strategy for the enhanced and complete remediation of pollutant-contaminated sites.IMPORTANCE Phytoremediation of organic pollutant-contaminated sites using transgenic plants expressing bacterial enzyme has been well described. The major constraint of transgenic plants transferred with a single catabolic gene is that they can also accumulate/release intermediates, still causing phytotoxicity or additional environmental problems. On the other hand, bioaugmentation with degrading strains also has its drawbacks, including the instability of the inoculated strains and low bioavailability of pollutants. In this study, the synergistic relationship between a transgenic Arabidopsis plant expressing the bacterial N-demethylase PdmAB in the chloroplast and the inoculated intermediate-mineralizing bacterium Sphingobium sp. strain 1017-1 in the rhizosphere is used to develop an intriguing bioremediation method. The combinational transgenic plant-microbe remediation system shows a more efficient and complete removal of phenylurea herbicides from contaminated sites and can overcome the constraints of individual phytoremediation or bioaugmentation methods.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  phenylurea herbicides; plant-microbe remediation; rhizospheric microbes; transgenic plant

Mesh:

Substances:

Year:  2018        PMID: 29752264      PMCID: PMC6029084          DOI: 10.1128/AEM.00273-18

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  40 in total

Review 1.  Transgenic plants for enhanced biodegradation and phytoremediation of organic xenobiotics.

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Review 2.  Plant-microbe interactions: novel applications for exploitation in multipurpose remediation technologies.

Authors:  P C Abhilash; Jeff R Powell; Harikesh B Singh; Brajesh K Singh
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3.  UPARSE: highly accurate OTU sequences from microbial amplicon reads.

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4.  Characteristics of a strong promoter from figwort mosaic virus: comparison with the analogous 35S promoter from cauliflower mosaic virus and the regulated mannopine synthase promoter.

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Journal:  Plant Mol Biol       Date:  1990-03       Impact factor: 4.076

5.  Continuous recording of photochemical and non-photochemical chlorophyll fluorescence quenching with a new type of modulation fluorometer.

Authors:  U Schreiber; U Schliwa; W Bilger
Journal:  Photosynth Res       Date:  1986-01       Impact factor: 3.573

6.  Enhanced metabolism of halogenated hydrocarbons in transgenic plants containing mammalian cytochrome P450 2E1.

Authors:  S L Doty; T Q Shang; A M Wilson; J Tangen; A D Westergreen; L A Newman; S E Strand; M P Gordon
Journal:  Proc Natl Acad Sci U S A       Date:  2000-06-06       Impact factor: 11.205

7.  Formation and release of residues of the 14C-labelled herbicide isoproturon and its metabolites bound in model polymers and in soil.

Authors:  I Scheunert; S Reuter
Journal:  Environ Pollut       Date:  2000-04       Impact factor: 8.071

8.  Dicamba resistance: enlarging and preserving biotechnology-based weed management strategies.

Authors:  Mark R Behrens; Nedim Mutlu; Sarbani Chakraborty; Razvan Dumitru; Wen Zhi Jiang; Bradley J Lavallee; Patricia L Herman; Thomas E Clemente; Donald P Weeks
Journal:  Science       Date:  2007-05-25       Impact factor: 47.728

9.  Metabolic engineering of Arabidopsis for remediation of different polycyclic aromatic hydrocarbons using a hybrid bacterial dioxygenase complex.

Authors:  Rihe Peng; Xiaoyan Fu; Yongsheng Tian; Wei Zhao; Bo Zhu; Jing Xu; Bo Wang; Lijuan Wang; Quanhong Yao
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10.  pSiM24 is a novel versatile gene expression vector for transient assays as well as stable expression of foreign genes in plants.

Authors:  Dipak Kumar Sahoo; Nrisingha Dey; Indu Bhushan Maiti
Journal:  PLoS One       Date:  2014-06-04       Impact factor: 3.240

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Journal:  Appl Microbiol Biotechnol       Date:  2021-06-02       Impact factor: 4.813

Review 2.  Gene Editing and Systems Biology Tools for Pesticide Bioremediation: A Review.

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Journal:  Front Microbiol       Date:  2019-02-13       Impact factor: 5.640

Review 3.  Enhanced remediation of pollutants by microorganisms-plant combination.

Authors:  M Supreeth
Journal:  Int J Environ Sci Technol (Tehran)       Date:  2021-06-07       Impact factor: 3.519

  3 in total

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