Literature DB >> 29843015

Biotransformation of tetrabromobisphenol A dimethyl ether back to tetrabromobisphenol A in whole pumpkin plants.

Xingwang Hou1, Miao Yu1, Aifeng Liu2, Yanlin Li3, Ting Ruan1, Jiyan Liu4, Jerald L Schnoor5, Guibin Jiang1.   

Abstract

As the metabolites of tetrabromobisphenol A (TBBPA), tetrabromobisphenol A mono- and di-methyl ethers (TBBPA MME and TBBPA DME) have been detected in various environmental media. However, knowledge of the contribution of plants to their environmental fates, especially to the interactions between TBBPA DME and TBBPA, is quite limited. In this study, the metabolism and behaviors of TBBPA DME was studied with pumpkin plants through 15-day hydroponic exposure. The TBBPA were also studied separately using in-lab hydroponic exposure for comparison. The results showed that more TBBPA DME accumulated in pumpkin roots and translocated up to stems and leaves compared with TBBPA. Transformation of TBBPA DME occurred later and more slowly than that of TBBPA. Interconversion between TBBPA DME and TBBPA was verified in intact plants for the first time. Namely, TBBPA DME can be biotransformed to TBBPA MME (transformation ratio in mole mass, TRMM 0.50%) and to TBBPA (TRMM 0.53%) within pumpkin; and TBBPA can be biotransformed to TBBPA MME (TRMM 0.58%) and to TBBPA DME (TRMM 0.62%). In addition, two single benzene-ring metabolites, 2,6-dibromo-4-(2-(2-hydroxyl)-propyl)-anisole (DBHPA, TRMM 3.4%) with an O-methyl group and 2,6-dibromo-4-(2-(2-hydroxyl)-propyl)-phenetole (DBHPP, TRMM 0.57%) with an O-ethyl group, were identified as the transformation products in the TBBPA exposure experiments. The transformation and interconversion from TBBPA DME back to TBBPA is reported as a new pathway and potential source for TBBPA in the environment.
Copyright © 2018 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Interconversion; Single benzene-ring compounds; Tetrabromobisphenol A; Tetrabromobisphenol A dimethyl ether; Tetrabromobisphenol A monomethyl ether

Mesh:

Substances:

Year:  2018        PMID: 29843015      PMCID: PMC6351071          DOI: 10.1016/j.envpol.2018.05.075

Source DB:  PubMed          Journal:  Environ Pollut        ISSN: 0269-7491            Impact factor:   8.071


  4 in total

1.  Biotransformation of 2,4,6-tris(2,4,6-tribromophenoxy)-1,3,5-triazine (TTBP-TAZ) can contribute to high levels of 2,4,6-tribromophenol (2,4,6-TBP) in humans.

Authors:  Guomao Zheng; Luma Melo; Rishika Chakraborty; James E Klaunig; Amina Salamova
Journal:  Environ Int       Date:  2021-10-28       Impact factor: 9.621

2.  Two Typical Glycosylated Metabolites of Tetrabromobisphenol A Formed in Plants: Excretion and Deglycosylation in Plant Root Zones.

Authors:  Xingwang Hou; Linfeng Wei; Yinyin Tang; Wenqian Kong; Jiyan Liu; Jerald L Schnoor; Guibin Jiang
Journal:  Environ Sci Technol Lett       Date:  2021-03-05

3.  Uptake, phytovolatilization, and interconversion of 2,4-dibromophenol and 2,4-dibromoanisole in rice plants.

Authors:  Qing Zhang; Wenqian Kong; Linfeng Wei; Yingjun Wang; Yadan Luo; Pu Wang; Jiyan Liu; Jerald L Schnoor; Guibin Jiang
Journal:  Environ Int       Date:  2020-06-25       Impact factor: 9.621

Review 4.  Microbial transformation of widely used pharmaceutical and personal care product compounds.

Authors:  Abigail W Porter; Sarah J Wolfson; Max Häggblom; Lily Y Young
Journal:  F1000Res       Date:  2020-02-21
  4 in total

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