TAILIEUCHUNG - Biodegradation of the synthetic pyrethroid insecticide α-cypermethrin by Stenotrophomonas maltophilia OG2

A novel gram-negative bacterium, OG2, was isolated from the body microflora of cockroaches (Blatta orientalis). Based on morphological, biochemical, and 16S ribosomal DNA sequence analysis, the isolated strain OG2 was identified as Stenotrophomonas maltophilia. This bacterial strain was screened for its α-cypermethrin-degrading potential with minimal salt medium (MSM). | Turkish Journal of Biology Turk J Biol (2014) 38: 684-689 © TÜBİTAK doi: Research Article Biodegradation of the synthetic pyrethroid insecticide α-cypermethrin by Stenotrophomonas maltophilia OG2 1, 1,2 1 Özlem GÜR *, Murat ÖZDAL , Ömer Faruk ALGUR Department of Biology, Faculty of Science, Atatürk University, Erzurum, Turkey 2 İspir Hamza Polat Vocational School, Atatürk University, İspir, Erzurum, Turkey 1 Received: Accepted: Published Online: Printed: Abstract: A novel gram-negative bacterium, OG2, was isolated from the body microflora of cockroaches (Blatta orientalis). Based on morphological, biochemical, and 16S ribosomal DNA sequence analysis, the isolated strain OG2 was identified as Stenotrophomonas maltophilia. This bacterial strain was screened for its α-cypermethrin-degrading potential with minimal salt medium (MSM). The α-cypermethrin degradation and utilization ability of the isolated organism was verified. Bacterial growth was measured by optical density in the presence of the pesticide at different concentrations (50–200 mg/L). S. maltophilia OG2 utilized α-cypermethrin as the sole carbon source for growth, and α-cypermethrin degradation increased when MSM was supplemented with glucose. In the absence and presence of glucose, α-cypermethrin (100 mg/L) degradation efficiency of OG2 was and , respectively. Analysis of the degradation products indicated that S. maltophilia OG2 converted α-cypermethrin to 3-phenoxybenzoic acid, 3-phenoxybenzaldehyde, phenol, and muconic acid. Medium composition had considerable influence on the types of metabolic products. According to the results, S. maltophilia OG2 may have potential use in the bioremediation of cypermethrin-contaminated environments. Key words: α-Cypermethrin, biodegradation, Stenotrophomonas maltophilia 1. Introduction Synthetic pyrethroids (SPs) such as .

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