Zhou Xuerui, Tang Jie, Wang Su, Zhang Yingyue, Ye Hong, Zhang Qing, Xiang Wenliang, Cai Ting, Zeng Chaoyi
Food Microbiology Key Laboratory of Sichuan Province, School of Food Science and Bioengineering, Xihua University, Chengdu, 610039, China.
Food Microbiology Key Laboratory of Sichuan Province, School of Food Science and Bioengineering, Xihua University, Chengdu, 610039, China.
Chemosphere. 2023 Apr;320:138017. doi: 10.1016/j.chemosphere.2023.138017. Epub 2023 Jan 31.
Beta-cypermethrin (β-CY) is an organic compound that is widely used as a synthetic pesticide in agriculture and family. Excessive accumulation of β-CY inevitably causes environmental pollution, which has led to food safety and human health concerns. Identification of microorganisms from food sources that are capable of β-CY biodegradation may help prevent pollution due to β-CY accumulation. Here, Gordonia alkanivorans GH-1, which was isolated from the traditional Sichuan fermented food, Pixian Doubanjiang, could not only degrade 82.76% of 50 mg/L β-CY at 96 h, but also degraded the intermediate degradation products including dibutyl phthalate (DBP), benzoic acid (BA) and phenol (Ph). This bacterial strain, thus, effectively improved the efficiency of removal of β-CY and its related metabolites, without being limited by toxic intermediates. Whole genome sequencing and transcriptomics analyses have demonstrated that the bacteria affected the transcription of genes related to cell response and material transport under the stress induced by β-CY, and thereby promoted degradation and transformation of β-CY. Moreover, a complete pathway of β-CY degradation is proposed based on the key genes involved in degradation. This study provides important theoretical significance and reference value for eliminating pesticide residues in agricultural products and food to ensure food safety.
高效氯氰菊酯(β-CY)是一种有机化合物,在农业和家庭中广泛用作合成农药。β-CY的过量积累不可避免地会造成环境污染,引发食品安全和人类健康问题。从食物来源中鉴定出能够对β-CY进行生物降解的微生物,可能有助于防止因β-CY积累而造成的污染。在此,从传统四川发酵食品郫县豆瓣酱中分离出的食烷戈登氏菌GH-1,不仅在96小时内能够降解50mg/L的β-CY达82.76%,还能降解包括邻苯二甲酸二丁酯(DBP)、苯甲酸(BA)和苯酚(Ph)在内的中间降解产物。因此,该菌株有效提高了β-CY及其相关代谢产物的去除效率,且不受有毒中间产物的限制。全基因组测序和转录组学分析表明,该细菌在β-CY诱导的胁迫下影响了与细胞应答和物质转运相关基因的转录,从而促进了β-CY的降解和转化。此外,基于参与降解的关键基因提出了一条完整的β-CY降解途径。本研究为消除农产品和食品中的农药残留以确保食品安全提供了重要的理论意义和参考价值。