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手性三唑类杀菌剂在虹鳟(Oncorhynchus mykiss)中的生物累积与生物转化

Bioaccumulation and biotransformation of chiral triazole fungicides in rainbow trout (Oncorhynchus mykiss).

作者信息

Konwick Brad J, Garrison Arthur W, Avants Jimmy K, Fisk Aaron T

机构信息

Warnell School of Forestry and Natural Resources, University of Georgia, Athens, GA 30602, United States.

出版信息

Aquat Toxicol. 2006 Dec 30;80(4):372-81. doi: 10.1016/j.aquatox.2006.10.003. Epub 2006 Oct 21.

Abstract

There are very little data on the bioaccumulation and biotransformation of current-use pesticides (CUPs) despite the fact that such data are critical in assessing their fate and potential toxic effects in aquatic organisms. To help address this issue, juvenile rainbow trout (Oncorhynchus mykiss) were exposed to dietary concentrations of a mixture of chiral triazole fungicides (bromuconazole, cyproconazole, metconazole, myclobutanil, penconazole, propiconazole, tebuconazole, tetraconazole, and triadimefon) and a chiral legacy pesticide [alpha-hexachlorocyclohexane (alpha-HCH)] to study the bioaccumulation and biotransformation of these CUPs. Fish accumulated all triazoles rapidly during the 8 day uptake phase, and was followed by rapid elimination, which was estimated by taking accelerated sampling times during the 16 day depuration period. Half-lives (t1/2s) and times to 95% elimination (t95s) ranged from 1.0 to 2.5 and 4.5 to 11.0 days, respectively. Chiral analysis suggested no significant selectivity in biotransformation for most of the compounds based on statistically unaltered enantiomer fractions (EFs) in the fish compared to food values; exceptions were a change in EF of myclobutanil and changes in diastereomer fractions (DFs) of propiconazole and cyproconazole. No biotransformation was observed for alpha-HCH based on consistent EFs in the fish throughout the experiment and a t1/2 (15.8 days) that fell within the 95% confidence interval of a log K(ow)-log t1/2 relationship developed for assessing biotransformation of organic contaminants. This relationship did show that biotransformation accounted for the majority (ranging from 59.9 to 90.4%) of the elimination for all triazoles, and that triazole compounds with oxygen and hydroxyl functional groups were more easily biotransformed. This research indicated that chiral analysis may potentially miss biotransformation of CUPs and other potential non-persistent organic contaminants and shows the utility of the log K(ow)-log t1/2 relationship as a mechanistic tool for quantifying biotransformation. Based on the rapid biotransformation of the triazoles, future research should focus on formation of metabolites and their fate and possible effects in the environment.

摘要

尽管当前使用的农药(CUPs)的生物累积和生物转化数据对于评估其在水生生物中的归宿和潜在毒性作用至关重要,但相关数据却非常少。为了帮助解决这一问题,将虹鳟幼鱼(Oncorhynchus mykiss)暴露于膳食浓度的手性三唑类杀菌剂(溴菌唑、环丙唑醇、戊唑醇、腈菌唑、戊康唑、丙环唑、戊唑醇、四氟醚唑和三唑酮)混合物以及一种手性传统农药[α-六氯环己烷(α-HCH)]中,以研究这些CUPs的生物累积和生物转化。在8天的摄取阶段,鱼类迅速累积了所有三唑类,随后是快速消除,这是通过在16天的净化期内采用加速采样时间来估算的。半衰期(t1/2)和95%消除时间(t95)分别为1.0至2.5天和4.5至11.0天。手性分析表明,基于与食物值相比鱼类中对映体分数(EFs)无统计学显著变化,大多数化合物在生物转化中没有明显的选择性;例外情况是腈菌唑的EF变化以及丙环唑和环丙唑醇的非对映体分数(DFs)变化。基于整个实验过程中鱼类中α-HCH的EFs一致以及其半衰期(15.8天)落在为评估有机污染物生物转化而建立的log K(ow)-log t1/2关系的95%置信区间内,未观察到α-HCH的生物转化。该关系确实表明,生物转化占所有三唑类消除的大部分(范围为59.9%至90.4%),并且具有氧和羟基官能团的三唑类化合物更容易被生物转化。这项研究表明,手性分析可能会遗漏CUPs和其他潜在非持久性有机污染物的生物转化,并显示了log K(ow)-log t1/2关系作为量化生物转化的机理工具的实用性。基于三唑类的快速生物转化,未来的研究应集中在代谢产物的形成及其在环境中的归宿和可能的影响上。

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