Biodegradation of chemicals tested in mixtures and individually: mixture effects on biodegradation kinetics and microbial composition

IF 3.1 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Heidi Birch, Arnaud Dechesne, Karina Knudsmark Sjøholm, Philipp Mayer
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引用次数: 3

Abstract

Biodegradation in the aquatic environment occurs in the presence of many chemicals, while standard simulation biodegradation tests are conducted with single chemicals. This study aimed to investigate the effect of the presence of additional chemicals on (1) biodegradation kinetics of individual chemicals and (2) the microbial composition in test systems. Parallel mixture and single substance experiments were conducted for 9 chemicals (phenethyl benzoate, oxacycloheptadec-10-en-2-one, α-ionone, methyl 2-naphthyl ether, decan-5-olide, octan-2-one, 2′-acetonaphthanone, methyl N-methylanthranilate, (+)-menthone) using inoculum from a Danish stream. Biotic and abiotic test systems were incubated at 12 °C for 1–30 days. Primary biodegradation kinetics were then determined from biotic/abiotic peak area ratios using SPME GC/MS analysis. The effect of the mixture on biodegradation varied with test chemical and was more pronounced for chemicals with lag-phases above 14 days: two chemicals degraded in the mixture but not when tested alone (i.e., positive mixture effect), and two degraded when tested alone but not in the mixture (i.e., negative mixture effect). Microbial composition (16S rRNA gene amplicon sequencing) was highly affected by 14 days incubation and the presence of the mixture (significant carbon source), but less by single chemicals (low carbon source). Growth on chemical mixtures resulted in consistent proliferation of Pseudomonas and Malikia, while specific chemicals increased the abundance of putative degraders belonging to Novosphingobium and Zoogloea. The chemical and microbiological results support (1) that simulation biodegradation kinetics should be determined in mixtures at low environmentally relevant concentrations and (2) that degradation times beyond some weeks are associated with more uncertainty.

Graphical abstract

Abstract Image

混合和单独试验的化学物质的生物降解:混合对生物降解动力学和微生物组成的影响
水生环境中的生物降解发生在多种化学品存在的情况下,而标准模拟生物降解试验是用单一化学品进行的。本研究旨在研究额外化学物质的存在对(1)单个化学物质的生物降解动力学和(2)测试系统中微生物组成的影响。采用丹麦某流的接种物,对苯甲酸苯乙酯、氧环庚十四-10-烯-2- 1、α-离子酮、2-甲基萘醚、癸烷-5-内酯、辛烷-2- 1、2 ' -乙萘酮、n-甲基氰胺酸甲酯、(+)-薄荷酮等9种化学物质进行了平行混合和单品实验。生物和非生物试验系统在12°C下孵育1-30天。然后利用SPME GC/MS分析从生物/非生物峰面积比确定初级生物降解动力学。混合物对生物降解的影响因测试化学品而异,滞后期超过14天的化学品更为明显:两种化学品在混合物中降解,但单独测试时不降解(即正混合效应),两种化学品单独测试时降解,但在混合物中不降解(即负混合效应)。微生物组成(16S rRNA基因扩增子测序)受培养14天和混合物(显著碳源)的高度影响,但受单一化学品(低碳源)的影响较小。在化学混合物上的生长导致假单胞菌和Malikia的持续增殖,而特定的化学物质增加了Novosphingobium和Zoogloea的推定降解物的丰度。化学和微生物学结果支持(1)模拟生物降解动力学应该在低环境相关浓度的混合物中确定,(2)超过几周的降解时间与更多的不确定性相关。图形抽象
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来源期刊
Biodegradation
Biodegradation 工程技术-生物工程与应用微生物
CiteScore
5.60
自引率
0.00%
发文量
36
审稿时长
6 months
期刊介绍: Biodegradation publishes papers, reviews and mini-reviews on the biotransformation, mineralization, detoxification, recycling, amelioration or treatment of chemicals or waste materials by naturally-occurring microbial strains, microbial associations, or recombinant organisms. Coverage spans a range of topics, including Biochemistry of biodegradative pathways; Genetics of biodegradative organisms and development of recombinant biodegrading organisms; Molecular biology-based studies of biodegradative microbial communities; Enhancement of naturally-occurring biodegradative properties and activities. Also featured are novel applications of biodegradation and biotransformation technology, to soil, water, sewage, heavy metals and radionuclides, organohalogens, high-COD wastes, straight-, branched-chain and aromatic hydrocarbons; Coverage extends to design and scale-up of laboratory processes and bioreactor systems. Also offered are papers on economic and legal aspects of biological treatment of waste.
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