中国农业科学 ›› 2026, Vol. 59 ›› Issue (15): 3340-3351.doi: 10.3864/j.issn.0578-1752.2026.15.008

• 植物保护 • 上一篇    下一篇

茶丽纹象甲趋光行为的性二型性及其视蛋白转录动态调控

付楠霞(), 苑金康, 罗宗秀, 李兆群, 边磊, 修春丽, 周利, 陈宗懋, 蔡晓明()   

  1. 中国农业科学院茶叶研究所/农业农村部特种经济动植物生物学与遗传育种重点实验室, 杭州 310008
  • 收稿日期:2026-03-20 接受日期:2026-04-25 出版日期:2026-08-01 发布日期:2026-08-03
  • 通信作者:
    蔡晓明,E-mail:
  • 联系方式: 付楠霞,E-mail:funanxia@tricaas.com。
  • 基金资助:
    国家重点研发计划(2021YFD1601100); 国家茶产业技术体系专项(CARS-19)

Sexual Dimorphism in Phototactic Behavior and Dynamic Transcriptional Regulation of Opsins in Myllocerinus aurolineatus

FU NanXia(), YUAN JinKang, LUO ZongXiu, LI ZhaoQun, BIAN Lei, XIU ChunLi, ZHOU Li, CHEN ZongMao, CAI XiaoMing()   

  1. Tea Research Institute, Chinese Academy of Agricultural Sciences/Key Laboratory of Biology, Genetics and Breeding of Special Economic Animals and Plants, Ministry of Agriculture and Rural Affairs, Hangzhou 310008
  • Received:2026-03-20 Accepted:2026-04-25 Published:2026-08-01 Online:2026-08-03

摘要:

【背景】利用昆虫趋光性进行监测与防控是绿色农业的重要策略。茶丽纹象甲(Myllocerinus aurolineatus)是我国茶园区域性暴发害虫,目前主要依靠化学农药防治。前期研究发现,茶丽纹象甲成虫在夜晚具有强趋光性。【目的】明确不同波长光谱对茶丽纹象甲雌、雄成虫趋光行为的影响,揭示不同光刺激对其视蛋白(opsin)基因转录表达的调控作用,为开发基于光诱杀的绿色精准防控技术提供依据。【方法】首先,通过趋光行为选择试验,测定茶丽纹象甲雌、雄成虫对8种单色光的行为响应特征,并筛选出雌、雄虫的敏感光谱;其次,利用生物信息学分析鉴定茶丽纹象甲视蛋白基因,并采用邻接法构建系统进化树以明确其演化关系;最后,运用实时荧光定量PCR(RT-qPCR)技术,检测视蛋白基因在不同发育阶段、光暗周期及光刺激下的时空表达。【结果】行为选择试验表明,紫光对茶丽纹象甲雄虫具有最强的吸引力,且其对雌虫的吸引力仅次于红光,蓝光对两性成虫的引诱力均最弱;此外,雄虫对黄光、绿光和蓝光的趋光率均显著高于雌虫。生物信息学分析发现茶丽纹象甲仅含有长波敏感视蛋白(Ma-LW)和紫外敏感视蛋白(Ma-UV)两种视蛋白基因,未发现典型的蓝光敏感视蛋白基因,与其对蓝光趋光率最低这一行为响应模式相吻合。表达谱分析显示,Ma-LWMa-UV两种视蛋白基因均在成虫期显著高表达,且其表达量无显著的昼夜节律差异,但暗适应处理可上调茶丽纹象甲成虫体内Ma-LWMa-UV的转录表达水平,而随后的短时光刺激(红光、蓝光和紫光)可显著逆转该上调效应,其中红光对Ma-LW表达量的抑制作用显著高于蓝光和紫光,而3种光源对Ma-UV表达量的抑制作用间无显著差异。【结论】茶丽纹象甲成虫的趋光行为具有性二型性,不同光刺激可下调暗适应成虫体内视蛋白基因的表达量,这可为开发茶丽纹象甲光诱杀绿色精准防控技术提供理论依据。

关键词: 茶丽纹象甲, 趋光性, 光谱敏感性, 长波敏感视蛋白, 紫外敏感视蛋白

Abstract:

【Background】Phototaxis is widely utilized to monitor and control pest populations in agricultural practices. Tea weevil (Myllocerinus aurolineatus) is a server regional outbreak tea pest in Chinese tea plantations, and its control currently relies heavily on chemical pesticides. Previous studies have shown that adults of M. aurolineatus exhibit strong phototaxis at night.【Objective】To lay basis for developing light-based management strategies, this study clarified the effects of different light spectra on the phototactic behavior of male and female M. aurolineatus, and further revealed the regulatory effects of different light stimuli on the transcriptional expression of their opsin genes.【Method】Firstly, to reveal the phototactic characteristic of this pest, phototaxis of female and male adult M. aurolineatus to eight types of monochromatic light was tested through behavioral choice experiments. Subsequently, bioinformatic analysis was performed to identify opsin genes in M. aurolineatus, and a phylogenetic tree of identified opsins along with those from other insect species was constructed using the neighbor-joining method. Finally, the spatiotemporal expression profiles of opsin genes were examined across different developmental stages, under circadian rhythm, and various light stimuli using quantitative real-time PCR (RT-qPCR).【Result】Behavioral assays revealed that violet light elicited the highest attractiveness to males and was the second preferred wavelength for females, surpassed only by red light. In contrast, the blue light was the least attractive to both sexes. Moreover, the phototaxis rates of males to yellow, green and blue light were significantly higher than those of females. Bioinformatic analysis showed M. aurolineatus contains only two opsin genes, a long-wavelength-sensitive opsin (Ma-LW) and an ultraviolet-sensitive opsin (Ma-UV); no blue-light-sensitive opsin gene was detected, which was in accordance with the lowest phototactic rate to blue light observed in behavioral assays. Spatiotemporal expression profiling showed that both Ma-LW and Ma-UV were highly expressed in adults, with no significant difference throughout the light-dark cycle. Furthermore, dark adaptation up-regulated both Ma-LW and Ma-UV expression in M. aurolineatus adults, while subsequent short-term light stimuli (red, blue and violet) significantly reversed this up-regulation. Among these, red light exerted significantly stronger suppressive effect on Ma-LW expressional abundance than blue or violet light, while no significant difference in suppressive effect on Ma-UV expression was detected among the three lights.【Conclusion】Sexual dimorphism is evident in the phototactic behavior of adult M. aurolineatus, and exposure to different light spectra can down-regulate opsin gene transcription in dark-adapted M. aurolineatus, these findings contribute to the development of light-based M. aurolineatus management strategies.

Key words: tea weevil (Myllocerinus aurolineatus), phototaxis, spectral sensitivity, long-wavelength-sensitive opsin (Ma-LW), ultraviolet-sensitive opsin (Ma-UV)