| Title : Esterase TriH responsible for the hydrolysis of trifloxystrobin in Hyphomicrobium sp. B1 - Jiang_2022_Int.Biodeterior.Biodegradation_174_105465 |
| Author(s) : Jiang W , Zhang M , Zhu Q , Wu C , Jiang M , Ke Z , Zhou Y , Qiu J , Dong W , Hong Q |
| Ref : International Biodeterioration & Biodegradation , 174 :105465 , 2022 |
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Abstract :
Strobilurin fungicides are widely used in rice and corn planting due to their broad-spectrum and fungal mitochondrial inhibitory activities. However, their environmental residues will cause damage to eukaryotes such as chlorella, Daphnia magna and zebrafish, etc. In this study, a bacterial strain B1 was isolated and identified as Hyphomicrobium sp., which could degrade trifloxystrobin, a representative of strobilurin fungicides. A novel esterase gene triH responsible for the trifloxystrobin detoxification and trifloxystrobin acid generation was cloned. TriH shared low identity with the reported alpha/beta-hydrolase superfamily esterases (only 26-28%). The Km and kcat values of TriH for trifloxystrobin were 2.35 +/- 0.24 microM and 48.66 +/- 6.43 s-1. Also, TriH could catalyze the de-esterification reaction of azoxystrobin, picoxystrobin, and kresoxim-methyl to generate the corresponding daughter acid and methanol. Strain B1 can effectively remediate the trifloxystrobin-polluted freshwater and protect chlorella, Daphnia magna and zebrafish from the harm of trifloxystrobin. This work offers a potential strain as well as an enzyme for the remediation of strobilurin fungicides-contaminated environments. |
| PubMedSearch : Jiang_2022_Int.Biodeterior.Biodegradation_174_105465 |
| PubMedID: |
| Gene_locus related to this paper: 9hyph-TriH |
| Substrate | Trifloxystrobin |
| Gene_locus | 9hyph-TriH |
Jiang W, Zhang M, Zhu Q, Wu C, Jiang M, Ke Z, Zhou Y, Qiu J, Dong W, Hong Q (2022)
Esterase TriH responsible for the hydrolysis of trifloxystrobin in Hyphomicrobium sp. B1
International Biodeterioration & Biodegradation
174 :105465
Jiang W, Zhang M, Zhu Q, Wu C, Jiang M, Ke Z, Zhou Y, Qiu J, Dong W, Hong Q (2022)
International Biodeterioration & Biodegradation
174 :105465