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在存在杀虫剂的情况下,两栖类壶菌暴露对美洲蟾蜍的影响。

Effects of amphibian chytrid fungus exposure on American toads in the presence of an insecticide.

作者信息

Wise Rayona S, Rumschlag Samantha L, Boone Michelle D

机构信息

Department of Biology, Miami University, Oxford, Ohio, USA.

出版信息

Environ Toxicol Chem. 2014 Nov;33(11):2541-4. doi: 10.1002/etc.2709. Epub 2014 Sep 11.

Abstract

Abiotic factors such as pesticides may alter the impact of a pathogen on hosts, which could have implications for host-pathogen interactions and may explain variation in disease outbreaks in nature. In the present laboratory experiment, American toad (Anaxyrus americanus) metamorphs were exposed to the amphibian chytrid fungal pathogen Batrachochytrium dendrobatidis (Bd) and environmentally relevant concentrations of the insecticide malathion to determine whether malathion altered the effects of Bd exposure on growth and survival of toad metamorphs. Exposure to Bd significantly decreased survival over the 51 d of the experiment, suggesting that Bd could reduce recruitment into the terrestrial life stage when exposure occurs at metamorphosis. Malathion did not impact survival, but a 12-h exposure at metamorphosis significantly reduced terrestrial growth. Toads that were exposed to both Bd and malathion showed a nonsignificant trend toward the smallest growth compared with other treatments. The present study suggests that Bd may pose a threat to American toads even though population declines have not been observed for this species; in addition, the presence of both the insecticide malathion and Bd could reduce terrestrial growth, which could have implications for lifetime fitness and suggests that environmental factors could play a role in pathogen impacts in nature.

摘要

诸如杀虫剂等非生物因素可能会改变病原体对宿主的影响,这可能会对宿主与病原体的相互作用产生影响,并可能解释自然界中疾病爆发的差异。在当前的实验室实验中,将美国蟾蜍(美洲蟾蜍)的变态幼体暴露于两栖类壶菌病原体——蛙壶菌(Batrachochytrium dendrobatidis,简称Bd)以及与环境相关浓度的杀虫剂马拉硫磷中,以确定马拉硫磷是否会改变暴露于Bd对蟾蜍变态幼体生长和存活的影响。在实验的51天里,暴露于Bd显著降低了存活率,这表明当在变态期发生暴露时,Bd会减少进入陆地生活阶段的数量。马拉硫磷并未影响存活率,但在变态期12小时的暴露显著降低了陆地生长。与其他处理组相比,同时暴露于Bd和马拉硫磷的蟾蜍生长最小,但差异不显著。本研究表明,即使尚未观察到该物种的种群数量下降,Bd可能仍对美国蟾蜍构成威胁;此外,杀虫剂马拉硫磷和Bd的同时存在可能会降低陆地生长,这可能会对终生适合度产生影响,并表明环境因素可能在自然界病原体的影响中发挥作用。

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