Literature DB >> 26711914

Electroantennogram and behavioral responses of Cotesia plutellae to plant volatiles.

Guang Yang1,2,3,4, You-Nan Zhang1,5, Geoff M Gurr1,2,6, Liette Vasseur1,7, Min-Sheng You1,2,3,4.   

Abstract

Plant volatiles have been demonstrated to play an important role in regulating the behavior of Cotesia plutellae, a major larval parasitoid of the diamondback moth (DBM), Plutella xylostella, but little is currently known about the function of each volatile and their mixtures. We selected 13 volatiles of the DBM host plant, a cruciferous vegetable, to study the electroantennogram (EAG) and behavioral responses of C. plutellae. EAG responses to each of the compounds generally increased with concentration. Strong EAG responses were to 100 μL/mL of trans-2-hexenal, benzaldehyde, nonanal and cis-3-hexenol, and 10 μL/mL of trans-2-hexenal and benzaldehyde with the strongest response provoked by trans-2-hexenal at 100 μL/mL. In the Y-tube olfactometer, C. plutellae, was significantly attracted by 1 μL/mL of trans-2-hexenal and benzaldehyde. β-caryophyllene, cis-3-hexenol or trans-2-hexenal significantly attracted C. plutellae at 10 μL/mL, while nonanal, benzyl alcohol, cis-3-hexenol or benzyl cyanide at 100 μL/mL significantly attracted C. plutellae. Trans-2-hexenal significantly repelled C. plutellae at 100 μL/mL. EAG of C. plutellae showed strong responses to all mixtures made of five various compounds with mixtures 3 (trans-2-hexenal, benzaldehyde, nonanal, cis-3-hexenol, benzyl cyanide, farnesene, eucalyptol) and 4 (trans-2-hexenal, benzaldehyde, benzyl alcohol, (R)-(+)-limonene, β-ionone, farnesene, eucalyptol) significantly attracting C. plutellae. These findings demonstrate that the behavior of C. plutellae can be affected either by individual compounds or mixtures of plant volatiles, suggesting a potential of using plant volatiles to improve the efficiency of this parasitoid for biocontrol of P. xylostella.
© 2015 Institute of Zoology, Chinese Academy of Sciences.

Entities:  

Keywords:  Cotesia plutellae; behavioral response; electroantennogram response; herbivore-induced plant volatile

Mesh:

Substances:

Year:  2016        PMID: 26711914     DOI: 10.1111/1744-7917.12308

Source DB:  PubMed          Journal:  Insect Sci        ISSN: 1672-9609            Impact factor:   3.262


  6 in total

1.  Identification of a Hexenal Reductase That Modulates the Composition of Green Leaf Volatiles.

Authors:  Toshiyuki Tanaka; Ayana Ikeda; Kaori Shiojiri; Rika Ozawa; Kazumi Shiki; Naoko Nagai-Kunihiro; Kenya Fujita; Koichi Sugimoto; Katsuyuki T Yamato; Hideo Dohra; Toshiyuki Ohnishi; Takao Koeduka; Kenji Matsui
Journal:  Plant Physiol       Date:  2018-08-20       Impact factor: 8.340

2.  Identification and functional analysis of two P450 enzymes of Gossypium hirsutum involved in DMNT and TMTT biosynthesis.

Authors:  Danfeng Liu; Xinzheng Huang; Weixia Jing; Xingkui An; Qiang Zhang; Hong Zhang; Jingjiang Zhou; Yongjun Zhang; Yuyuan Guo
Journal:  Plant Biotechnol J       Date:  2017-08-16       Impact factor: 9.803

3.  Electroantennogram reveals a strong correlation between the passion of honeybee and the properties of the volatile.

Authors:  Jieliang Zhao; Zhiqiang Li; Zhen Zhao; Yunqiang Yang; Shaoze Yan
Journal:  Brain Behav       Date:  2020-04-09       Impact factor: 2.708

Review 4.  β-Ionone: Its Occurrence and Biological Function and Metabolic Engineering.

Authors:  Antonello Paparella; Liora Shaltiel-Harpaza; Mwafaq Ibdah
Journal:  Plants (Basel)       Date:  2021-04-12

5.  Behavioral Responses of Bemisia tabaci Mediterranean Cryptic Species to Three Host Plants and Their Volatiles.

Authors:  Zhe Liu; Wenbin Chen; Shuai Zhang; Han Chen; Honghua Su; Tianxing Jing; Yizhong Yang
Journal:  Insects       Date:  2022-08-05       Impact factor: 3.139

6.  Odorant Receptor PxylOR11 Mediates Repellency of Plutella xylostella to Aromatic Volatiles.

Authors:  Yipeng Liu; Sai Zhang; Yang Liu; Guirong Wang
Journal:  Front Physiol       Date:  2022-07-13       Impact factor: 4.755

  6 in total

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