数字农科院2.0

Vibrational signals are species-specific and sex-specific for sexual communication in the tea leafhopper, Empoasca onukii

文献类型: 外文期刊

作者: Zhang, Huining;Bian, Lei;Cai, Xiaoming;Yao, Qi;Fu, Nanxia;Shan, Yao;Chen, Zongmao

作者机构:

关键词: biotremology;calling signal;Cicadellidae;courtship signal;Hemiptera;laser vibrometry;mating behavior;mating strategy;taxonomy;tea garden pests;Typhlocybinae;vibrational communication

期刊名称: ENTOMOLOGIA EXPERIMENTALIS ET APPLICATA

ISSN: 0013-8703

年卷期: 2023 年

页码:

收录情况: SCIE(2023版)

摘要: Empoasca onukii Matsuda (Hemiptera: Cicadellidae) is the primary pest of tea gardens, but the species' sexual communication and mating behavior is currently unclear. A similar species, Empoasca vitis Gothe, had been reported to use vibrational signals for mating communication, so we studied these two aspects from the perspective of biotremology. First, laser vibrometry detected both males and females could emit vibrational signals that are sex specific. Females emitted one signal type (the female signal), and males emitted two signal types: the male calling signal and the male courtship signal. Compared with the male signals, the female signal has a simpler structure, lower dominant frequency, and shorter length. Second, the vibrational signals of E. onukii play a decisive role in sexual communication. The male emits calling signals and then recognizes the female based on her reply signal; after establishing a duet with the female, the male emits a series of courtship signals, and then continually locates and approaches the female according to her reply signals, and finally attempts to copulate. Third, vibrational signals of E. onukii are species-specific. Comparing E. onukii and E. vitis, there are differences in three aspects: the emitting behavior of female signals, the types of male signals, and the structure of male and female signals. We conclude that E. onukii uses sex- and species-specific vibrational signals for sexual communication.

分类号:

  • 相关文献

[1]Design and selection of trap color for capture of the tea leafhopper, Empoasca vitis, by orthogonal optimization. Bian, Lei,Sun, Xiao-Ling,Luo, Zong-Xiu,Zhang, Zheng-Qun,Chen, Zong-Mao.

[2]Attractiveness of host volatiles combined with background visual cues to the tea leafhopper, Empoasca vitis. Cai, Xiao-Ming,Xu, Xiu-Xiu,Bian, Lei,Luo, Zong-Xiu,Xin, Zhao-Jun,Chen, Zong-Mao,Cai, Xiao-Ming.

[3]Non-host plant essential oil volatiles with potential for a "push-pull' strategy to control the tea green leafhopper, Empoasca vitis. Zhang, Zhengqun,Chen, Zongmao,Zhang, Zhengqun.

[4]Volatiles from non-host aromatic plants repel tea green leafhopper Empoasca vitis. Zhang, Zhengqun,Luo, Zongxiu,Gao, Yu,Bian, Lei,Sun, Xiaoling,Chen, Zongmao,Zhang, Zhengqun.

[5]AscarislumbricoidesandAscarissuum:comparativeproteomicstudiesusing2-DEcoupledwithmassspectrometry. 宋慧群,MinjunXu,JinghuaFu,DonghuiZhou,HanyM.Elsheikha,XingquanZhu. 2013

[6]Mating and post-copulation behavior in the tea leafhopper, Empoasca onukii (Hemiptera: Cicadellidae). Yao Shan,Xiao Sen Zhou,Xiao Ming Cai,Zong Xiu Luo,Zhao Qun Li,Chun Li Xiu,Zong Mao Chen,Lei Bian. 2023

[7]Substrate-borne vibrational signals and stridulatory organs for sexual communication in leafminer, Liriomyza sativae (Diptera: Agromyzidae). Zhang, Qikai,Wu, Shengyong,Xing, Zhenlong,Wang, Haihong,Lei, Zhongren. 2022

[8]The Effect of Leaf Traits on the Excitation, Transmission, and Perception of Vibrational Mating Signals in the Tea Leafhopper Empoasca onukii Matsuda (Hemiptera: Cicadellidae). Yao Shan,Qiuyi Yao,Qisheng Jia,Jiping Lu,Xiaoming Cai,Zongmao Chen,Lei Bian. 2025

[9]Progress in Significant Soil Science Fields of China over the Last Three Decades: A Review. Zhao Qi-Guo,Yan Xiao-Yuan,Zhang Gan-Lin,Cai Zu-Cong,He Ji-Zheng,Zhang Bin.

[10]The Relative Preference of Empoasca onukii (Hemiptera: Cicadellidae) for Oviposition on Twenty-Four Tea Cultivars. Yao, Qi,Wang, Manqun,Chen, Zongmao. 2022

[11]Inhibiting the sexual behavior of female cotton bollworm Helicoverpa armigera. Dong, WX,Han, BY,Du, JW. 2005

[12]Evidence for Visually Mediated Copulation Frequency in the Scarab Beetle Anomala corpulenta. Wu, Yu-Qing,Jiang, Yue-Li,Gong, Zhong-jun,Duan, Yun,Li, Tong,Li, Ke-Bin.

[13]Relations between air temperatures and mating behaviour of Spodoptera litura adults in nighttime in the tobacco field. Zhou, Zhongshi,Xu, Zaifu,Zhou, Zhongshi,Chen, Zepeng. 2010

[14]Precopulatory oral sex contact plays an important role in copulatory success in a cryptic desert beetle. Xinghu Qin,Jinshu Yang,Jingchuan Ma,Thomas Ryan Lock,Guangjun Wang,Zehua Zhang. 2021

[15]Molecular data confirm Monolepta hieroglyphica (Motschulsky, 1858) and M. quadriguttata (Motschulsky, 1860) being synonyms of M. signata (Oliver, 1808). Ge, Yacong,Shi, Chengmin,Bai, Ming,Cao, Zhiyan,Cao, Liping,Wang, Zhenying,Dong, Jingao,Wang, Yuyu. 2023

[16]Knockout of the delta11-desaturase SfruDES1 disrupts sex pheromone biosynthesis, mating and oviposition in the fall armyworm, Spodoptera frugiperda. Shi L.,Liu X.,Liu H.,Shan S.,Shen S.,Bai M.,Lan H.,Khashaveh A.,Gu S.,Zhang Y.. 2024

[17]Characterization of core maize volatiles induced by Spodoptera frugiperda that alter the mating-mediated approach-avoidance behaviors of Mythimna separata. Yang, Denghai,Fan, Hengzhe,Hu, Ruyi,Huang, Yong,Sheng, Chengwang,Cao, Haiqun,Yang, Bin,Jiang, Xingchuan. 2025

[18]Insect Mating Behaviors: A Review of the Regulatory Role of Neuropeptides. Ombuya, Alfayo,Guo, Jianyang,Liu, Wanxue. 2025

[19]Identification of Δ9 and Δ11 Desaturases Involved in Sex Pheromone Biosynthesis in Mythimna loreyi (Lepidoptera: Noctuidae). Wang, Liuyang,Guo, Pei,Zhang, Xiaofang,Duan, Yun,Ning, Jun,Zhang, Tao,Yang, Xinling. 2025

[20]Male-biased odorant receptors mediate dual perception of sex pheromones and floral volatiles in mirid bugs. An, Xingkui,Khashaveh, Adel,Shuang, Shan,Liu, Danfeng,Wang, Qi,Pang, Xiaoqian,Li, Yan,Geng, Ting,Zhang, Yongjun. 2025

作者其他论文 更多>>