昆虫学报 ›› 2021, Vol. 64 ›› Issue (7): 862-874.doi: 10.16380/j.kcxb.2021.07.010

• 综 述 • 上一篇    下一篇

昆虫钠离子通道的研究进展

吴少英*, 段文波, 李芬, 杨磊, 王颢, 王力奎   

  1. (海南大学三亚南繁研究院, 海南三亚 572025)
  • 出版日期:2021-07-20 发布日期:2021-08-02

Research progress of insect sodium channels#br#

WU Shao-Ying*, DUAN Wen-Bo, LI Fen, YANG Lei, WANG Hao, WANG Li-Kui   

  1. (Sanya Nanfan Academy, Hainan University, Sanya, Hainan 572025, China)
  • Online:2021-07-20 Published:2021-08-02

摘要:

昆虫只有一个或两个电压门控钠离子通道α亚基基因,但两种转录后修饰(选择性剪切和RNA编辑)实现了昆虫钠离子通道的功能多样性。昆虫β辅助亚基TipE和TEH1-4在钠离子通道表达和调控中也起着重要作用。电压门控钠离子通道在动作电位的产生和传递中至关重要,是多种天然和人工合成神经毒素及杀虫剂的作用靶标,包括广泛使用的拟除虫菊酯类、茚虫威和氰氟虫腙等杀虫剂。其中,拟除虫菊酯类杀虫剂通过调控昆虫钠离子通道的失活和去激活,延长跨膜钠离子流的时间,引起神经兴奋性传导障碍;茚虫威和氰氟虫腙阻断昆虫中枢和外周神经系统神经元的动作电位传导,这些神经毒剂都能干扰昆虫钠离子通道的正常功能。昆虫钠离子通道一般存在两个拟除虫菊酯类杀虫剂结合位点,但不同物种钠离子通道与拟除虫菊酯的结合位点存在一定差异。据此,本文就昆虫钠离子通道及其与杀虫剂的相互作用加以综述,有望推动昆虫神经受体研究,且对鉴定昆虫抗药性相关突变位点和研发高效的杀虫剂均具有重要参考价值。

关键词: 昆虫钠离子通道, 神经毒剂, 选择性可变剪切, RNA编辑, 杀虫剂结合位点

Abstract: There are only one or two voltage-gated sodium channel α subunit genes in insects, but the two post-transcriptional modifications, alternative splicing and RNA editing, confer the functional diversity of insect sodium channels. The insect β accessory subunits, TipE and TEH1-4, also play important roles in the expression and regulation of sodium ion channels. Voltagegated sodium channel plays an important role in the generation and transmission of action potential and is the target site of many natural and synthetic neurotoxins and insecticides, including the pyrethroids, indoxacarb and metaflumizone. Pyrethroids can prolong the transmembrane sodium ion flow by controlling the inactivation and deactivation of sodium channels in insects, causing neuroexcitatory conduction disorders. Indoxacarb and metaflumizone block the neuronal action potential in the central and peripheral nervous system of insects. These neural agents can disturb the normal function of sodium channels in insects. Two pyrethroid binding sites have been commonly identified in sodium channels of insects, but sodium channels of different species have differences in binding sites for pyrethroids. Therefore, in this article we reviewed insect sodium channels and their interaction with insecticides, hoping to promote the research of insect nerve receptors and to provide important references for identification of mutations associated with resistance and development of effective insecticides.

Key words: Insect sodium channels, neural agents, alternative splicing, RNA editing, insecticide binding site