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亚致死暴露的时间和频率改变了林蛙(Lithobates sylvaticus)对杀虫剂耐受性的诱导和保持。

Timing and frequency of sublethal exposure modifies the induction and retention of increased insecticide tolerance in wood frogs (Lithobates sylvaticus).

机构信息

Darrin Fresh Water Institute, Department of Biological Sciences, Rensselaer Polytechnic Institute, Troy, New York, USA.

出版信息

Environ Toxicol Chem. 2018 Aug;37(8):2188-2197. doi: 10.1002/etc.4177. Epub 2018 Jul 5.

DOI:10.1002/etc.4177
PMID:29786147
Abstract

Although the paradigm for increased tolerance to pesticides has been by selection on constitutive (naïve) traits, recent research has shown it can also occur through phenotypic plasticity. However, the time period in which induction can occur, the duration of induced tolerance, and the influence of multiple induction events remain unknown. We hypothesized that the induction of increased pesticide tolerance is limited to early sensitive periods, the magnitude of induced tolerance depends on the number of exposures, and the retention of induced tolerance depends on the time elapsed after an exposure and the number of exposures. To test these hypotheses, we exposed wood frog tadpoles to either a no-carbaryl control (water) or 0.5 mg/L carbaryl at 4 time periods, and later tested their tolerance to carbaryl using time-to-death assays. We discovered that tadpoles induced increased tolerance early and midway but not late in our experiment and their constitutive tolerance increased with age. We found no difference in the magnitude of induced tolerance after a single or 2 exposures. Finally, induced pesticide tolerance was reversed within 6 d but was retained only when tadpoles experienced all 4 consecutive exposures. Phenotypic plasticity provides an immediate response for sensitive amphibian larvae to early pesticide exposures and reduces phenotypic mismatches in aquatic environments contaminated by agrochemicals. Environ Toxicol Chem 2018;37:2188-2197. © 2018 SETAC.

摘要

虽然通过对组成型(幼稚)特征的选择来增加对杀虫剂的耐受性已经成为一种模式,但最近的研究表明,它也可以通过表型可塑性来实现。然而,诱导发生的时间、诱导耐受的持续时间以及多次诱导事件的影响仍然未知。我们假设,增加杀虫剂耐受性的诱导仅限于早期敏感时期,诱导耐受的程度取决于暴露的次数,并且诱导耐受的保留取决于暴露后的时间间隔和暴露的次数。为了验证这些假设,我们将木蛙蝌蚪暴露于无carbaryl 对照(水)或 0.5mg/L carbaryl 中 4 个时间段,然后使用致死时间测定法测试它们对 carbaryl 的耐受性。我们发现,蝌蚪在实验的早期和中期诱导出了更高的耐受性,但在晚期没有诱导出更高的耐受性,它们的组成型耐受性随着年龄的增长而增加。我们发现,单次或 2 次暴露后诱导的耐受性程度没有差异。最后,诱导的杀虫剂耐受性在 6 天内被逆转,但只有当蝌蚪经历了所有 4 次连续暴露时才会被保留。表型可塑性为敏感的两栖类幼虫对早期杀虫剂暴露提供了一种即时反应,并减少了受农用化学品污染的水生环境中的表型不匹配。环境毒理化学 2018;37:2188-2197。©2018 SETAC。

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