数字农科院2.0

Comparisons of calling behaviour of different geographical populations of Helicoverpa armigera

文献类型: 外文期刊

作者: Wu, K. -M.;Guo, Y. -Y.

作者机构:

关键词: calling behaviour;climatic zone;cotton bollworm;geographical population

期刊名称: JOURNAL OF APPLIED ENTOMOLOGY

ISSN: 0931-2048

年卷期: 2007 年 131 卷 9-10 期

页码:

收录情况: SCI

摘要: The cotton bollworm, Helicoverpa armigera, with worldwide distribution, evolves into different geotypes for adapting to the changes of geographical climates. Comparisons of calling behaviour of the insect collected from the temperate region in northern China (Beijing), the temperate region in north-western China (Kashi) and the tropical region in southern China (Haikou) were investigated in the laboratory as a first step to understanding the influence of reproductive behaviour on its population differentiation. There were more than 80% of virgin females of each population that showed calling behaviour. The age at which the moths of all three populations initiated calling varied significantly. The durations of calling in scotophase and the percentages of females calling also differed between populations. Only a few females of the Beijing and Haikou populations called in the first 2 h after the onset of scotophase, whereas many Kashi females called at this time. However, the main calling peak occurred during the second half of scotophase for all three populations. Females of the Beijing and Haikou populations exhibited similar calling onset times at the same age, whereas the Kashi females initiated calling significantly earlier than those of Beijing and Haikou from nights 3 to 7. The durations of each calling bout and the time spent by both Beijing and Haikou populations were similar to each other at the same age, but were significantly shorter than that of the Kashi population from nights 3 to 7. These results suggest that there are genetic variations not only in pre-period calling but also in the calling behaviour of H. armigera.

分类号:

  • 相关文献

[1]Variation of Helicoverpa armigera symbionts across developmental stages and geographic locations. Chenchen Zhao,Li Wang,Kaixin Zhang,Xiangzhen Zhu,Dongyang Li,Jichao Ji,Junyu Luo,Jinjie Cui. 2023

[2]Modified female calling behaviour in Cry1Ac-resistant Helicoverpa armigera (Lepidoptera: Noctuidae). Wu, Kong M.,Hang, Ge M.,Guo, Yu Y.. 2009

[3]Discrepancies In Vegetation Phenology Trends A.nd Shift Patterns In D ifferent Climatic Zones In Middle And Eastern Eurasia Between 1982 And 2015. Li, YB, Zhang, YD, Gu, FX, Liu, SR. 2019

[4]Seasonal and geographical variation in diapause and cold hardiness of the Asian corn borer, Ostrinia furnacalis. Zhang, Hong-Gang,Wang, Zhen-Ying,He, Kang-Lai,Xie, Hai-Cui,Cai, Wan-Zhi,Li, Dun-Song,Mason, Charles E.,Lu, Xin. 2015

[5]Sensitivities of Fall Armyworm (Spodoptera frugiperda) Populations in Different Regions of China to Four Bt Proteins. Yanfang Zhou,Chunmeng Huang,Yi Chen,Lanzhi Han,Jiajian Xie,Xiuping Chen. 2023

[6]Oil-soluble dyes in larval diet used for marking Helicoverpa armigera. Wu, Kong M.,Guo, Yu Y.. 2008

[7]Variable Selection Based Cotton Bollworm Odor Spectroscopic Detection. Lu, Chengxu,Gai, Shasha,Luo, Min,Zhao, Bo. 2016

[8]Expression of two insect-resistant genes cryIA (b&c)/GNA in transgenic tobacco plants results in added protection against both cotton bollworm and aphids. Wang, ZB,Guo, SD. 1999

[9]Effects of Cd2+ exposure on key life history traits and activities of four metabolic enzymes in Helicoverpa armigera (Lepidopteran: Noctuidae). Chen, Zhu,Huang, Yongjie,Yang, Shiyong,Zhang, Jinping,Ruuhola, Teija,Yang, Shiyong.

[10]Biological activity and field efficacy of a genetically modified Helicoverpa armigera single-nucleocapsid nucleopolyhedrovirus expressing an insect-selective toxin from a chimeric promoter. Sun, XL,Wang, HL,Sun, XC,Chen, XW,Peng, CM,Pan, DM,Jehle, JA,van der Werf, W,Vlak, JM,Hua, Z. 2004

[11]Comparative analyses of transcriptome and proteome in response to cotton bollworm between a resistant wild soybean and a susceptible soybean cultivar. Wang, Xiaoyi,Lu, Jianhua,Chen, Haifeng,Shan, Zhihui,Shen, Xinjie,Duan, Bingbing,Zhang, Chanjuan,Yang, Zhonglu,Zhang, Xiaojuan,Qiu, Dezhen,Chen, Shuilian,Zhou, Xinan,Jiao, Yongqing,Wang, Xiaoyi,Lu, Jianhua.

[12]Overexpression of a novel Cry1Ie gene confers resistance to Cry1Ac-resistant cotton bollworm in transgenic lines of maize. Zhang, Yuwen,Ren, Yuan,Wang, Jianhua,Zhang, Yuwen,Liu, Yunjun,Liu, Yan,Wang, Guoying,Liang, Gemei,Song, Fuping,Bai, Shuxiong. 2013

[13]Effects Of Antibiotics On Biological A.ctivity Of Cry1Ac In B t-Susceptible And Bt-Resistant Helicoverpa Armigera Strains. Yang, Xianming,Zhao, Man,Zhang, Wanna,Wei, Jizhen,Liang, Gemei,Wang, Bingjie,Khaing, Myint Myint,Khaing, Myint Myint. 2018

[14]Discovery and characterization of a novel picorna-like RNA virus in the cotton bollworm Helicoverpa armigera. Yang X., Xu P., Yuan H., Graham R.I., Wilson K., Wu K.. 2019

[15]Bacillus thuringiensis Cry1Ac Protoxin and Activated Toxin Exert Differential Toxicity Due to a Synergistic Interplay of Cadherin with ABCC Transporters in the Cotton Bollworm. Chongyu Liao,Minghui Jin,Ying Cheng,Yongbo Yang,Mario Soberón,Alejandra Bravo,Kaiyu Liu,Yutao Xiao. 2022

[16]Large-area field application confirms the effectiveness of toxicant-infused bait for managing Helicoverpa armigera (Hubner) in maize fields. Wang, Liying,He, Limei,Zhu, Xiaoming,Zhang, Jinwen,Li, Na,Fan, Jingfang,Li, Huafeng,Sun, Xiaoji,Zhang, Lijiao,Lin, Yongling,Wu, Kongming. 2023

[17]Bacillus Thuringiensis Cry1Ab Domain Iii Beta-16 Is Involved In Binding To Prohibitin, Which Correlates With Toxicity Against Helicoverpa Armigera (Lepidoptera: Noctuidae). da Silva, IHS, Gomez, I, Pacheco, S, Sanchez, J, Zhang, J, Castellane, TCL, Desiderio, JA, Soberon, M, Bravo, A, Polanczyk, RA. 2021

[18]Long-term expansion of cereal crops promotes regional population increase of polyphagous Helicoverpa armigera. Yang, Long,Li, Minlong,Liu, Jie,Zeng, Juan,Lu, Yanhui. 2024

作者其他论文 更多>>