Literature DB >> 31332474

Toluene degradation via a unique metabolic route in indigenous bacterial species.

Fatima Muccee1, Samina Ejaz2, Naheed Riaz3.   

Abstract

Tanneries are the primary source of toluene pollution in the environment and toluene due to its hazardous effects has been categorized as persistent organic pollutant. Present study was initiated to trace out metabolic fingerprints of three toluene-degrading bacteria isolated from tannery effluents of Southern Punjab. Using selective enrichment and serial dilution methods followed by biochemical, molecular and antibiotic resistance analysis, isolated bacteria were subjected to metabolomics analysis. GC-MS/LC-MS analysis of bacterial metabolites helped to identify toluene transformation products and underlying pathways. Three toluene-metabolizing bacteria identified as Bacillus paralicheniformis strain KJ-16 (IUBT4 and IUBT24) and Brevibacillus agri strain NBRC 15538 (IUBT19) were found tolerant to toluene and capable of degrading toluene. Toluene-degrading potential of these isolates was detected to be IUBT4 (10.35 ± 0.084 mg/h), IUBT19 (14.07 ± 3.14 mg/h) and IUBT24 (11.1 ± 0.282 mg/h). Results of GC-MS analysis revealed that biotransformation of toluene is accomplished not only through known metabolic routes such as toluene 3-monooxygenase (T3MO), toluene 2-monooxygenase (T2MO), toluene 4-monooxygenase (T4MO), toluene methyl monooxygenase (TOL), toluene dioxygenase (Tod), meta- and ortho-ring fission pathways. But additionally, confirmed existence of a unique metabolic pathway that involved conversion of toluene into intermediates such as cyclohexene, cyclohexane, cyclohexanone and cyclohexanol. LC-MS analysis indicated the presence of fatty acid amides, stigmine, emmotin A and 2, 2-dinitropropanol in supernatants of bacterial cultures. As the isolated bacteria transformed toluene into relatively less toxic molecules and thus can be preferably exploited for the eco-friendly remediation of toluene.

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Keywords:  Bacillus paralicheniformis; Bioremediation; Brevibacillus agri; Burkholderia lata; Consortium; Toluene-degrading bacteria

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Year:  2019        PMID: 31332474     DOI: 10.1007/s00203-019-01705-0

Source DB:  PubMed          Journal:  Arch Microbiol        ISSN: 0302-8933            Impact factor:   2.552


  2 in total

1.  Bacterial Biodiversity of Extra Virgin Olive Oils and Their Potential Biotechnological Exploitation.

Authors:  Francesco Fancello; Chiara Multineddu; Mario Santona; Pierfrancesco Deiana; Giacomo Zara; Ilaria Mannazzu; Marilena Budroni; Sandro Dettori; Severino Zara
Journal:  Microorganisms       Date:  2020-01-10

2.  Transcriptomic Analysis for the Identification of Metabolic Pathway Genes Related to Toluene Response in Ardisia pusilla.

Authors:  Junping Xu; Chang Ho Ahn; Ju Young Shin; Pil Man Park; Hye Ryun An; Yae-Jin Kim; Su Young Lee
Journal:  Plants (Basel)       Date:  2021-05-19
  2 in total

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