CRY1 is involved in the take-off behaviour of migratory Cnaphalocrocis medinalis individuals
文献类型: 外文期刊
作者: Sun, Tianyi 1 ; Yang, Fan 3 ; Zhang, Haiyan 4 ; Yang, Yajun 2 ; Lu, Zhongxian 2 ; Zhai, Baoping 1 ; Xu, Hongxing 2 ; Lu, Jiahao 5 ; Lu, Yanhui 2 ; Wang, Yumeng 1 ; Guo, Jiawen 2 ; Hu, Gao 1 ;
作者机构: 1.Nanjing Agr Univ, Coll Plant Protect, Nanjing 210095, Peoples R China
2.Zhejiang Acad Agr Sci, Inst Plant Protect & Microbiol, State Key Lab Managing Biot & Chem Threats Qual &, Hangzhou 310021, Peoples R China
3.Wuhan Acad Agr Sci, Inst Vegetables, Wuhan 430345, Peoples R China
4.Agr Technol Extens Ctr Jiangyan Dist, Stn Plant Protect & Plant Inspect, Taizhou 225529, Peoples R China
5.Songjiang Agr Technol Extens Ctr, Shanghai 201600, Peoples R China
6.Guiyang Univ, Guizhou Prov Key Lab Rare Anim & Econ Insect Mount, Guiyang 550005, Peoples R China
关键词: Cnaphalocrocis medinalis; Migratory insect; Light intensity; Take-off behaviour; Cryptochrome
期刊名称:BMC BIOLOGY ( 影响因子:4.4; 五年影响因子:5.4 )
ISSN:
年卷期: 2024 年 22 卷 1 期
页码:
收录情况: SCI
摘要: Background Numerous insect species undertake long-distance migrations on an enormous scale, with great implications for ecosystems. Given that take-off is the point where it all starts, whether and how the external light and internal circadian rhythm are involved in regulating the take-off behaviour remains largely unknown. Herein, we explore this issue in a migratory pest, Cnaphalocrocis medinalis, via behavioural observations and RNAi experiments. Results The results showed that C. medinalis moths took off under conditions where the light intensity gradually weakened to 0.1 lx during the afternoon or evening, and the take-off proportions under full spectrum or blue light were significantly higher than that under red and green light. The ultraviolet-A/blue light-sensitive type 1 cryptochrome gene (Cmedcry1) was significantly higher in take-off moths than that of non-take-off moths. In contrast, the expression of the light-insensitive CRY2 (Cmedcry2) and circadian genes (Cmedtim and Cmedper) showed no significant differences. After silencing Cmedcry1, the take-off proportion significantly decreased. Thus, Cmedcry1 is involved in the decrease in light intensity induced take-off behaviour in C. medinalis. Conclusions This study can help further explain the molecular mechanisms behind insect migration, especially light perception and signal transmission during take-off phases.
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