昆虫学报 ›› 2022, Vol. 65 ›› Issue (11): 1547-1564.doi: 10.16380/j.kcxb.2022.11.015

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害虫Bt抗性机制研究新方向:昆虫体液免疫系统

廖文宇1, 吕卓鸿1, 张友军2, 杨中侠1,*   

  1. (1. 湖南农业大学植物保护学院, 植物病虫害生物学与防控湖南省重点实验室, 长沙 410128; 2. 中国农业科学院蔬菜花卉研究所, 北京 100081)
  • 出版日期:2022-11-20 发布日期:2022-12-02

Insect humoral immune system, a new direction in the research of Bt resistance mechanisms in insect pests

LIAO Wen-Yu1, LÜ Zhuo-Hong1, ZHANG You-Jun2, YANG Zhong-Xia1,*    

  1. (1. Hunan Provincial Key Laboratory for Biology and Control of Plant Diseases and Insect Pests, College of Plant Protection, Hunan Agricultural University, Changsha 410128, China; 2. Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China)
  • Online:2022-11-20 Published:2022-12-02

摘要:  作为最成功的生物农药,苏云金芽孢杆菌Bacillus thuringiensis (Bt)杀虫剂已在农业生产中应用了约80年。Bt由于其特异性强、安全高效的特点而得到广泛、成功的应用,极大减少了化学农药的用量,为环境保护作出了巨大贡献。然而,由于长期使用,一些靶标害虫逐渐对Bt产生抗性。本文对昆虫体液免疫及昆虫Bt抗性机制的研究成果进行了总结,已有研究认为害虫对Bt产生抗性的主要原因是毒素激活受阻及(或)毒素受体突变或减少。然而近年越来越多的研究表明,昆虫的Bt抗性还与其免疫系统,特别是与Toll, IMD和proPO-AS等体液免疫通路有关。由此,本文对昆虫体液免疫系统参与昆虫Bt抗性形成的主要通路进行了归纳和推论。IMD免疫通路可能通过MAPK信号通路参与调节昆虫Bt抗性,或可能通过多种免疫反应对抗因中肠组织被Bt破坏而引起的败血症,并通过JNK信号通路促使中肠组织愈合,进而提高其对Bt的抗性。从体液免疫系统切入研究,可能成为深入探索昆虫Bt抗性机制的新方向。

关键词: 害虫, 苏云金芽孢杆菌, 体液免疫系统, Bt抗性, 抗性机制

Abstract:  As the most successful biological pesticide, Bacillus thuringiensis (Bt) insecticide has been used to control pests in agricultural production for about 80 years. The wide and successful use of Bt insecticide due to its specificity, safety and efficiency has greatly reduced the application rate of chemical pesticides, making a huge contribution to environmental protection. However, due to long-term application, some target insect pests have gradually developed resistance to Bt. In this article, the research advances in insect humoral immunity and the mechanisms of Bt resistance in insects were summarized. Previous studies suggested that the blockage of toxin activation and/or the mutation or reduction of toxin receptor are the main causes of the development of Bt resistance in insect pests. However, in recent years, more and more studies have shown that Bt resistance in insects is also associated to their immune system, especially to humoral immune pathways such as Toll, IMD and proPO-AS. Therefore, we reviewed and inferred the main pathways in which the humoral immune system is involved in the development of Bt resistance in insects. The IMD immune pathway may be involved in regulating Bt resistance in insects through the MAPK signaling pathway, or insects may counteract sepsis caused by the destruction of midgut tissue by Bt through multiple immune responses and promote midgut tissue healing through the JNK signaling pathway, thereby increasing their resistance to Bt. Research with the humoral immune system as the breakthrough point could be a new direction for further exploring the mechanisms of Bt resistance in insects.

Key words: Pests; Bacillus thuringiensis; humoral immune system, Bt resistance, resistance mechanisms