Insights into the microbial degradation pathways of the Ioxynil (cas 1689-83-4) octanoate herbicide
-
Add time:09/24/2019 Source:sciencedirect.com
This paper describes the biodegradation of the Ioxynil (cas 1689-83-4) octanoate herbicide by indigenous microorganisms isolated from herbicide impacted soil-enrichment cultures. Eleven positive hits out of twenty-nine microorganisms screened for nitrile hydratase, nitrilase and amidase activity were further evaluated based on their growth in microtiter plates containing liquid medium with increasing concentrations of herbicide (0.97–250 mM). Two strains were selected from this assay for biodegradation studies and were identified as Lysinibacillus boronitolerans MLH-31 and Bacillus cereus MLH-61. The bacterial degradation of ioxynil octanoate and its biodegradation products were monitored, identified and characterized by liquid chromatography tandem mass spectrometry (HPLC-MS/MS). In addition to 3,5-diiodo-4-hydroxybenzamide and 3,5-diiodo-4-hydroxybenzoic acid, which are commonly detected metabolites, two new metabolites were observed: mono-deiodinated compound 3-iodo-4-hydroxybenzoic acid and the product of Caromatic-CN cleaved 1,3-diiodophenol. The experimentally observed metabolites were correlated with the enzymatic systems involved, revealing the presence of esterases, nitrile hydratases, amidases, nitrilases, dehalogenases and carbon-carbon lyases during biodegradation. Lysinibacillus boronitolerans MLH-31 was found to degrade ioxynil octanoate at a rate of 97% over 7 days through a batch-resting cells experiment, while Bacillus cereus MLH-61 was found to do so at a rate of 75% under the same conditions.
We also recommend Trading Suppliers and Manufacturers of Ioxynil (cas 1689-83-4). Pls Click Website Link as below: cas 1689-83-4 suppliers
Prev:Microwave-assisted direct coupling of graphene nanoplatelets with poly ethylene glycol and 4-PHENYLAZOPHENOL (cas 1689-82-3) molecules for preparing stable-colloidal system
Next:Ioxynil (cas 1689-83-4) and diethylstilbestrol disrupt vascular and heart development in zebrafish) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Waterborne exposure of zebrafish embryos to micromole concentrations of Ioxynil (cas 1689-83-4) and diethylstilbestrol disrupts thyrocyte development09/30/2019
- Interaction of diethylstilbestrol and Ioxynil (cas 1689-83-4) with transthyretin in chicken serum09/29/2019
- - Ioxynil (cas 1689-83-4)09/28/2019
- Species-dependent effects of the phenolic herbicide Ioxynil (cas 1689-83-4) with potential thyroid hormone disrupting activity: modulation of its cellular uptake and activity by interaction with serum thyroid hormone-binding proteins10/01/2019
- The autoprotonation in reduction mechanism of pesticide Ioxynil (cas 1689-83-4)09/27/2019
- Inhibition of connexin43 gap junction channels by the endocrine disruptor Ioxynil (cas 1689-83-4)09/26/2019
- Ioxynil (cas 1689-83-4) and diethylstilbestrol disrupt vascular and heart development in zebrafish09/25/2019


