Testing the Attractive Appeal of Desmodium Infochemicals to Key Parasitoids of the Vegetable Integrated Push-Pull Cropping System.

IF 2.2 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Frank Chidawanyika, Bretor K Mutua, Isack H Adan, Daniel M Mutyambai
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Abstract

Biological control agents heavily rely on volatile cues for host location and can be an important component of managing pests through habitat management-based strategies that enhance trophic interactions. This study aimed at evaluating the influence of greenleaf desmodium (Desmodium intortum (Mill.) Urb. (Fabaceae) infochemicals on the behaviour of three select parasitoids of kale pests (aphids and Diamondback moth), to determine the potential of enhancing the protection of vegetables in integrated push-pull cropping systems. To achieve this, the volatile-mediated behavioural responses of the parasitoids towards D. intortum volatiles were evaluated using a dual-choice Y-tube olfactometer. Our results showed that Cotesia vestalis (Hymenoptera: Braconidae), a parasitic wasp for Diamondback moth (DBM) (Plutella xylostella (Linneaus)) was not attracted to volatiles from D. intortum compared to DCM and empty oven bag controls. Nevertheless, D. intortum VOCs elicited higher parasitoid activity, whether in dual-choice comparisons with either empty oven bags or DCM controls, or when paired with kale plants. Conversely, volatiles from D. intortum were highly attractive to Aphidius colemani (Viereck) (Hymenoptera: Braconidae), a parasitic wasp of aphids. Interestingly, another aphid parasitic wasp, Aphidius ervi (Haliday) (Hymenoptera: Braconidae) was attracted to volatiles from D. intortum only when paired with kales or by kales alone. Gas-chromatography mass spectrometry of D. intortum headspace volatiles revealed 16 compounds: hexanal, (Z)-3-hexenol, p-xylene, o-xylene, nonane, α-pinene, cumene, octen-3-ol, octanone, (Z)-3-hexenyl acetate, sabinene, (E)-β-ocimene, linalool, β-elemene, (E)-β-caryophyllene and an unknown compound. In electroantennography assays, all parasitoid antennae commonly detected hexanal and, (E)-β-ocimene, whilst only C. vestalis and A. ervi registered common antennal responses to (E)-β-caryophyllene. Additionally, the antennae of A. colemani detected cumene, octen-3-ol, (Z)-3-hexenyl acetate and an unknown compound whilst that of A. ervi and C. vestalis detected (Z)-3-hexenol and nonane, respectively. Dose-response olfactometer bioassays with the synthetic standards of hexanal, (E)-β-ocimene and (E)-β-caryophyllene revealed that the response of the three parasitic wasps varied with the concentrations of the individual standards. Specifically, (E)-β-ocimene and hexanal depicted a broad appeal to the tested parasitoids, by eliciting attraction at varying concentrations (P < 0.05). However, (E)-β-caryophyllene was selectively attractive to A. ervi, with no significant attraction observed in C. vestalis (P > 0.05). Our results show species- and -context -specific parasitoid attractive appeal of D. intortum. Nevertheless, our results show that D. intortum may help protect kales against aphid attack through parasitoid recruitment whilst another mechanism may be employed against DBM moth.

蔬菜推拉综合种植系统中信息化学品对主要寄生蜂的吸引力测试。
生物防治剂严重依赖于宿主位置的挥发性线索,可以通过基于栖息地管理的策略来加强营养相互作用,从而成为管理害虫的重要组成部分。本研究旨在评价绿叶假丝霉(desmodium intortum, Mill.)市区。(蚕豆科)对甘蓝害虫的三种寄生蜂(蚜虫和小菜蛾)的行为进行了信息化学研究,以确定在综合推拉种植系统中加强蔬菜保护的潜力。为了实现这一目标,采用双选择y管嗅觉仪评估了挥发物介导的寄生蜂对褐家蚕挥发物的行为反应。结果表明,与DCM和空烤箱袋对照相比,小菜蛾(Plutella xylostella (Linneaus))的寄生蜂vesttesia vealis(膜翅目:小蜂科)对大菜蛾挥发物不感兴趣。然而,无论是在与空烤箱袋或DCM对照的双重选择比较中,还是与羽衣甘蓝植物配对时,D. intortum的挥发性有机化合物引发了更高的拟寄生虫活性。与此相反,该植物的挥发物对一种寄生蜂蚜虫(膜翅目:小蜂科)极具吸引力。有趣的是,另一种蚜虫寄生蜂,黑蚜(Aphidius ervi (Haliday))(膜翅目:小蜂科)只有在与羽衣甘蓝配对或单独被羽衣甘蓝吸引时才会被黑蚜的挥发物所吸引。气相色谱-质谱分析发现了16种化合物:己醛、(Z)-3-己烯醇、对二甲苯、邻二甲苯、壬烷、α-蒎烯、异丙烯、辛烯-3-醇、辛酮、(Z)-3-己烯乙酸酯、sabinene、(E)-β-辛烯、芳樟醇、β-榄香烯、(E)-β-石竹烯和一种未知化合物。在触角电图分析中,所有拟寄生虫的触角通常检测到己醛和(E)-β-石竹烯,而只有C. vestalis和A. ervi的触角对(E)-β-石竹烯有共同的反应。此外,金盏花的触角检测到异丙烯、辛烯-3-醇、乙酸(Z)-3-己烯酯和一种未知化合物,而金盏花和金盏花的触角分别检测到(Z)-3-己烯醇和壬烷。用己醛、(E)-β-辛烯和(E)-β-石竹烯合成标准品进行剂量-反应嗅觉生物测定,结果表明,不同浓度的标准品对三种寄生蜂的反应不同。具体来说,(E)-β-辛烯和己醛通过在不同浓度下引起吸引力,对被测寄生蜂具有广泛的吸引力(p0.05)。我们的研究结果表明,稻蠹蛾具有物种和环境特异性的寄生性吸引力。尽管如此,我们的研究结果表明,长毛霉可能通过寄生蜂的招募来保护羽衣甘蓝免受蚜虫的攻击,而另一种机制可能被用于对抗DBM蛾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Chemical Ecology
Journal of Chemical Ecology 环境科学-生化与分子生物学
CiteScore
5.10
自引率
4.30%
发文量
58
审稿时长
4 months
期刊介绍: Journal of Chemical Ecology is devoted to promoting an ecological understanding of the origin, function, and significance of natural chemicals that mediate interactions within and between organisms. Such relationships, often adaptively important, comprise the oldest of communication systems in terrestrial and aquatic environments. With recent advances in methodology for elucidating structures of the chemical compounds involved, a strong interdisciplinary association has developed between chemists and biologists which should accelerate understanding of these interactions in nature. Scientific contributions, including review articles, are welcome from either members or nonmembers of the International Society of Chemical Ecology. Manuscripts must be in English and may include original research in biological and/or chemical aspects of chemical ecology. They may include substantive observations of interactions in nature, the elucidation of the chemical compounds involved, the mechanisms of their production and reception, and the translation of such basic information into survey and control protocols. Sufficient biological and chemical detail should be given to substantiate conclusions and to permit results to be evaluated and reproduced.
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