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无论是否经过筛选,某一菌株中的除草剂耐受性都与抗氧化酶的代谢可塑性相关。

Herbicides Tolerance in a Strain Is Associated With Metabolic Plasticity of Antioxidative Enzymes Regardless of Selection.

作者信息

Rovida Amanda Flávia da Silva, Costa Gessica, Santos Mariana Inglês, Silva Caroline Rosa, Freitas Paloma Nathane Nunes, Oliveira Elizangela Paz, Pileggi Sônia Alvim Veiga, Olchanheski Ricardo Luiz, Pileggi Marcos

机构信息

Department of Biotechnology, Genetics and Cell Biology, State University of Maringá, Maringá, Brazil.

Laboratory of Environmental Microbiology, Biological and Health Sciences Sector, Department of Structural and Molecular Biology and Genetics, State University of Ponta Grossa, Ponta Grossa, Brazil.

出版信息

Front Microbiol. 2021 Jun 22;12:673211. doi: 10.3389/fmicb.2021.673211. eCollection 2021.

Abstract

Agriculture uses many food production chains, and herbicides participate in this process by eliminating weeds through different biochemical strategies. However, herbicides can affect non-target organisms such as bacteria, which can suffer damage if there is no efficient control of reactive oxygen species. It is not clear, according to the literature, whether the efficiency of this control needs to be selected by the presence of xenobiotics. Thus, the sp. CMA 6.9 strain, collected from biofilms in an herbicide packaging washing tank, was selected for its tolerance to pesticides and analyzed for activities of different antioxidative enzymes against the herbicides Boral, absent at the isolation site, and Heat, present at the site; both herbicides have the same mode of action, the inhibition of the enzyme protoporphyrinogen oxidase. The strain showed tolerance to both herbicides in doses up to 45 times than those applied in agriculture. The toxicity of these herbicides, which is greater for Boral, was assessed by means of oxidative stress indicators, growth kinetics, viability, and amounts of peroxide and malondialdehyde. However, the studied strain showed two characteristic antioxidant response systems for each herbicide: glutathione-s-transferase acting to control malondialdehyde in treatments with Boral; and catalase, ascorbate peroxidase, and guaiacol peroxidase in the control of peroxide induced by Heat. It is possible that this modulation of the activity of different enzymes independent of previous selection characterizes a system of metabolic plasticity that may be more general in the adaptation of microorganisms in soil and water environments subjected to chemical contaminants. This is relevant to the impact of pesticides on the diversity and abundance of microbial species as well as a promising line of metabolic studies in microbial consortia for use in bioremediation.

摘要

农业采用多种粮食生产链,除草剂通过不同的生化策略消除杂草参与这一过程。然而,除草剂会影响非靶标生物,如细菌,如果对活性氧没有有效的控制,细菌就会受到损害。根据文献,尚不清楚这种控制的效率是否需要由异生素的存在来选择。因此,从除草剂包装洗涤槽中的生物膜中分离出的sp. CMA 6.9菌株,因其对农药的耐受性而被选中,并分析了其针对在分离地点不存在的除草剂硼拉尔(Boral)和存在的除草剂热尔(Heat)的不同抗氧化酶活性;这两种除草剂具有相同的作用模式,即抑制原卟啉原氧化酶。该菌株对两种除草剂的耐受性高达农业使用剂量的45倍。通过氧化应激指标、生长动力学、活力以及过氧化物和丙二醛的含量评估了这些除草剂的毒性,其中硼拉尔的毒性更大。然而,研究的菌株针对每种除草剂表现出两种特征性的抗氧化反应系统:在硼拉尔处理中,谷胱甘肽 - S - 转移酶用于控制丙二醛;在热尔诱导的过氧化物控制中,过氧化氢酶、抗坏血酸过氧化物酶和愈创木酚过氧化物酶发挥作用。不同酶活性的这种调节可能独立于先前的选择,这可能表征了一种代谢可塑性系统,在适应受化学污染物影响的土壤和水环境中的微生物时可能更为普遍。这与农药对微生物物种多样性和丰度的影响以及微生物群落用于生物修复的代谢研究的一个有前景的方向相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f2/8258386/dc17da433d17/fmicb-12-673211-g001.jpg

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