昆虫学报 ›› 2020, Vol. 63 ›› Issue (7): 902-912.doi: 10.16380/j.kcxb.2020.07.013

• 综 述 • 上一篇    下一篇

双翅目害虫性别分离技术的研究进展及展望

彭威, 李云欣, 翁诗函, 周若涵, 潘熙, 李佳洋, 韩宝瑜   

  1. (中国计量大学生命科学学院, 浙江省生物计量及检验检疫技术重点实验室, 杭州 310018)
  • 出版日期:2020-07-20 发布日期:2020-07-29

Progress and prospects of sex-separation techniques for dipteran insects

PENG Wei, LI Yun-Xin, WENG Shi-Han, ZHOU Ruo-Han, PAN Xi, LI Jia-Yang, HAN Bao-Yu   

  1.  (Zhejiang Provincial Key Laboratory of Biometrology and Inspection and Quarantine, College of Life Sciences, China Jiliang University, Hangzhou 310018, China)
  • Online:2020-07-20 Published:2020-07-29

摘要:  在过去的几十年中,昆虫不育技术(sterile insect technique, SIT)已被用于防治农业害虫和人类健康相关的病媒害虫。相较于传统的农药控制策略,昆虫不育技术具有物种特异性和环境友好型等特点。通过释放不育雄虫的昆虫不育技术的主要障碍是在大规模饲养阶段将雄性与雌性分离,从而提高这些防治方法的成本效率,并防止释放携带和传播疾病的雌性群体。目前大多数针对双翅目害虫的遗传防治策略没有进行性别分离,少数害虫性别分离方法是基于蛹的大小或者雌雄蛹羽化时间差异进行人工识别和机械识别分离。双翅目昆虫性别决定及分化分子机制多种多样,其性别决定主要信号差异巨大,其多种性别决定基因已用于性别分离系统的开发。性比失衡性别分离策略通过破坏性别决定途径关键基因的表达获得雄性偏向后代,雌性条件性致死分离策略利用性别决定关键基因的雌雄选择性剪接差异实现性别分离,这两种性别分离策略目前正在害虫不育防治中接受大规模饲养应用评估,而基于双翅目昆虫雌雄性二态和基因标记发展的可视化性别分离策略也已成功实现多种害虫的性别分离。我们对性比失衡分离策略、雌性条件性致死分离策略和可视化性别分离策略在双翅目害虫中的研究进展进行了综述,重点评估了这些方法在雄虫大规模饲养和释放的应用潜力,以期在更完善的性别分离技术支持下为害虫防治研究取得更多突破性进展。

关键词: 双翅目, 性别决定, 性别分离, 性二态, 昆虫不育技术, 转基因技术

Abstract:  The sterile insect technique (SIT) has been used for decades to control agricultural and human health-related insect pests. Compared with insecticide control strategies, SIT has several attractive features including species-specificity and environmental friendliness. A major obstacle for SIT approach that involves the release of sterile males is the separation of males from females during the mass rearing stage in order to improve the cost-efficiency of these methods and to prevent the release of biting and disease-vectoring females. In most current genetic control programs targeting dipteran insects, sex separation is not used. Currently sex separation for a small number of dipteran insects is manually and mechanically achieved based on the pupal size or the difference in the eclosion time between female and male pupae. The molecular mechanism of sex determination and differentiation in dipteran insects varies, and exploration of the primary signal has revealed major differences. Several sex determination genes have been explored in the sex separation system. The sex ratio distortion strategy produces male-biased populations by disrupting the expression of the key genes in sex-determination pathway, and the conditional female death strategy achieves sex separation by using the sex-specific alternative splicing of the key genes in sex-determination pathway. Both of these two sex separation strategies are currently under evaluation for mass-rearing program in SIT. Differences in sexual dimorphism and genetic markers between females and males have been successfully employed in the visual separation strategy for dipteran insects. We reviewed the recent advances in sex ratio distortion, conditional female death strategy and visual separation strategy in dipteran insects. We assessed with emphasis the suitability of these methods in large-scale rearing of males for mass release in order to achieve more breakthroughs in the research of pest control based on the better sex-separation techniques.

Key words: Diptera, sex determination, sex separation, sexual dimorphism, sterile insect technique, transgenic technology