昆虫学报 ›› 2025, Vol. 68 ›› Issue (7): 1007-1022.doi: 10.16380/j.kcxb.2025.07.013

• 综 述 • 上一篇    下一篇

昆虫ROS免疫防御机制及在寿命调控中的作用

马振刚#,*, 陈胜#, 张俊, 黄廷悦, 周泽扬   

  1. (重庆师范大学, 农业农村部长江上游传粉昆虫资源保护与利用重点实验室, 重庆市媒介昆虫重点实验室, 重庆 401331)
  • 出版日期:2025-07-20 发布日期:2025-08-25

ROS-mediated immune defense mechanisms and the role of ROS in regulating lifespan in insects

MA Zhen-Gang#,*, CHEN Sheng#, ZHANG Jun, HUANG Ting-Yue, ZHOU Ze-Yang   

  1.  (Key Laboratory of Conservation and Utilization of Pollinator Insect of the Upper Reaches of the Yangtze River, Ministry of Agriculture and Rural Affairs, Chongqing Key Laboratory of Vector Insect, Chongqing Normal University, Chongqing 401331, China)
  • Online:2025-07-20 Published:2025-08-25

摘要: 活性氧(reactive oxygen species, ROS)是一类由于氧分子不完全氧化而形成的含氧自由基或容易形成氧自由基的过氧化物的总称。当昆虫受到病原入侵时,由双氧化酶(dual oxidase, DUOX)介导的ROS防御系统会迅速反应,产生大量的ROS以抵御病原菌的入侵,进而在调控昆虫免疫防御过程中发挥作用;但高水平的ROS会破坏细胞内的蛋白质、DNA、脂质等生物大分子,从而导致昆虫细胞损伤,影响昆虫正常发育。为了避免受到过度氧化应激的损害,昆虫已经形成了一整套以抗氧化酶和小分子抗氧化剂为主体的抗氧化防御系统来避免过度损伤的发生。有趣的是,细胞中ROS水平的改变还能够在昆虫寿命调控中发挥截然不同的作用:对某些昆虫中大量ROS的积累可导致寿命缩短,而对于另外一些昆虫高生理水平的ROS存在又可诱导滞育的发生进而延长其寿命。近年来,ROS在昆虫寿命调控机制方面的研究取得了较多的进展。因此,本文全面地综述了昆虫ROS的来源与产生的影响因素、ROS介导的防御机制,并首次对ROS在昆虫寿命调控中的具体作用进行了总结与展望,以期为后续开展ROS相关主题的研究提供参考。

关键词: 昆虫, 活性氧, 免疫防御, 寿命, 滞育

Abstract:  Reactive oxygen species (ROS) is a general term for a class of oxygen-containing free radicals formed due to incomplete oxidation of oxygen molecules, or peroxides that are easy to form oxygen free radicals. When insects are invaded by pathogens, the ROS defense system mediated by dual oxidase (DUOX) will respond quickly to produce a large amount of ROS to resist the invasion of pathogenic bacteria, and then play a role in regulating the immune defense process of insects. However, high level of ROS can damage the biological macromolecules such as proteins, DNA and lipids in cells, causing damage to insect cells and affecting the normal development of insects. In order to avoid damage from excessive oxidative stress, insects have formed a complete antioxidant defense system mainly composed of antioxidant enzymes and small molecule antioxidants to prevent excessive damage from occurring. It is interesting that changes in ROS levels in cells can play completely different roles in regulating insect lifespan: for certain insects the accumulation of a large amount of ROS could lead to a shortened lifespan, while for some other insects the presence of high physiological levels of ROS could also induce diapause and prolong their lifespan. Studies on the regulatory mechanisms of ROS in insect lifespan have achieved a lot of progress in recent years. Therefore, in this article, we comprehensively reviewed the sources and influencing factors of insect ROS, the defense mechanisms mediated by ROS, and for the first time made a summary and outlook on the specific roles of ROS in regulating insect lifespan, so as to provide a reference for subsequent research on ROS-related topics.

Key words: Insects, reactive oxygen species, immune defense, lifespan, diapause