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鲑鱼虱(Lepeophtheirus salmonis)对有机磷药物唑磷的抗性机制。

Mechanism behind Resistance against the Organophosphate Azamethiphos in Salmon Lice (Lepeophtheirus salmonis).

作者信息

Kaur Kiranpreet, Helgesen Kari Olli, Bakke Marit Jørgensen, Horsberg Tor Einar

机构信息

NMBU School of Veterinary Science, Sea Lice Research Centre, PO Box 8146 Dep., NO-0033 Oslo, Norway.

出版信息

PLoS One. 2015 Apr 20;10(4):e0124220. doi: 10.1371/journal.pone.0124220. eCollection 2015.

Abstract

Acetylcholinesterase (AChE) is the primary target for organophosphates (OP). Several mutations have been reported in AChE to be associated with the reduced sensitivity against OP in various arthropods. However, to the best of our knowledge, no such reports are available for Lepeophtheirus salmonis. Hence, in the present study, we aimed to determine the association of AChE(s) gene(s) with resistance against OP. We screened the AChE genes (L. salmonis ace1a and ace1b) in two salmon lice populations: one sensitive (n=5) and the other resistant (n=5) for azamethiphos, a commonly used OP in salmon farming. The screening led to the identification of a missense mutation Phe362Tyr in L. salmonis ace1a, (corresponding to Phe331 in Torpedo californica AChE) in all the samples of the resistant population. We confirmed the potential role of the mutation, with reduced sensitivity against azamethiphos in L. salmonis, by screening for Phe362Tyr in 2 sensitive and 5 resistant strains. The significantly higher frequency of the mutant allele (362Tyr) in the resistant strains clearly indicated the possible association of Phe362Tyr mutation in L. salmonis ace1a with resistance towards azamethiphos. The 3D modelling, short term survival experiments and enzymatic assays further supported the imperative role of Phe362Tyr in reduced sensitivity of L. salmonis for azamethiphos. Based on all these observations, the present study, for the first time, presents the mechanism of resistance in L. salmonis against azamethiphos. In addition, we developed a rapid diagnostic tool for the high throughput screening of Phe362Tyr mutation using High Resolution Melt analysis.

摘要

乙酰胆碱酯酶(AChE)是有机磷酸酯(OP)的主要作用靶点。在多种节肢动物中,已报道AChE的多个突变与对OP的敏感性降低有关。然而,据我们所知,对于鲑虱(Lepeophtheirus salmonis)尚无此类报道。因此,在本研究中,我们旨在确定AChE基因与对OP抗性之间的关联。我们在两个鲑虱种群中筛选了AChE基因(鲑虱ace1a和ace1b):一个对鲑鱼养殖中常用的OP——唑磷敏感(n = 5),另一个对唑磷具有抗性(n = 5)。筛选结果在所有抗性种群样本中鉴定出鲑虱ace1a中的一个错义突变Phe362Tyr(对应于电鳐AChE中的Phe331)。通过在2个敏感菌株和5个抗性菌株中筛选Phe362Tyr,我们证实了该突变在鲑虱对唑磷敏感性降低方面的潜在作用。抗性菌株中突变等位基因(362Tyr)的频率显著更高,这清楚地表明鲑虱ace1a中的Phe362Tyr突变与对唑磷的抗性可能存在关联。三维建模、短期存活实验和酶活性测定进一步支持了Phe362Tyr在鲑虱对唑磷敏感性降低中的关键作用。基于所有这些观察结果,本研究首次揭示了鲑虱对唑磷的抗性机制。此外,我们开发了一种利用高分辨率熔解分析对Phe362Tyr突变进行高通量筛选的快速诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e0d/4403986/aa3b515ae8bd/pone.0124220.g001.jpg

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