Alatassi Gülperi, Baysal Ömür, Silme Ragıp Soner, Örnek Gülçin Pınar, Örnek Hakan, Can Ahmet
Molecular Microbiology Unit, Department of Molecular Biology and Genetics, Faculty of Science, Muğla Sıtkı Koçman University, Kötekli, Muğla, Turkey.
Molecular Plant and Microbial Biosciences Research Unit (MPMB-RU), University of Worcester, Henwick Grove, Worcester, WR2 6AJ, UK.
Biodegradation. 2025 Jun 1;36(3):49. doi: 10.1007/s10532-025-10144-2.
The extensive use of pesticides in agricultural practices, coupled with the potential for microbial biodegradation of these chemicals, plays a critical role in environmental sustainability. This study aimed to identify microorganisms capable of degrading the most commonly used pesticides in agricultural fields within our region. In vitro screening revealed a microorganism with a broad pesticide degradation spectrum, and whole-genome sequencing further indicated the presence of genomic regions associated with pesticide degradation, a finding that was validated by LC-MS/MS analysis. Detailed genomic analysis, including ribosomal multi-locus sequence typing (rMLST), identified the microorganism as Serratia sarumanii. Our results also demonstrated that the introduction of this strain into the environment not only promoted the degradation of specific pesticides but also enhanced the efficacy of certain other pesticides at low concentrations through a synergistic interaction. To further substantiate the biodegradation capabilities of the strain, LC-MS/MS chromatographic analysis of 25 pesticide-active chemicals confirmed that Serratia sarumanii effectively biodegrades several pesticide active ingredients, including fludioxonil, fenhexamid, pyrimethanil, and spirodiclofen. These findings underscore the biodegradative potential of Serratia sarumanii and its promising application in the bioremediation of pesticide-contaminated soils.
农业实践中农药的广泛使用,再加上这些化学物质的微生物生物降解潜力,对环境可持续性起着关键作用。本研究旨在鉴定能够降解我们区域农田中最常用农药的微生物。体外筛选揭示了一种具有广泛农药降解谱的微生物,全基因组测序进一步表明存在与农药降解相关的基因组区域,这一发现通过液相色谱 - 串联质谱(LC - MS/MS)分析得到验证。详细的基因组分析,包括核糖体多位点序列分型(rMLST),将该微生物鉴定为沙鲁曼氏沙雷氏菌。我们的结果还表明,将这种菌株引入环境不仅促进了特定农药的降解,并通过协同相互作用提高了某些低浓度其他农药的功效。为了进一步证实该菌株的生物降解能力,对25种农药活性化学品进行的LC - MS/MS色谱分析证实,沙鲁曼氏沙雷氏菌能有效生物降解几种农药活性成分,包括咯菌腈、苯酰菌胺、嘧霉胺和螺螨酯。这些发现强调了沙鲁曼氏沙雷氏菌的生物降解潜力及其在农药污染土壤生物修复中的应用前景。