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Electroantennogram response of the parasitoidMicroplitis croceipes to host-related odors: The discrepancy between relative abundance and level of antennal responses to volatile compound

机译:寄生虫的电造影图番红花微囊菌与宿主相关的气味:相对丰度与触角对挥发性化合物的反应水平之间的差异

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摘要

Herbivores emit volatile organic compounds (VOCs) after feeding on plants. Parasitoids exploit these VOCs as odor cues to locate their hosts. In nature, host-related odors are emitted as blends of various compounds occurring in different proportions, and minor blend components can sometimes have profound effects on parasitoid responses. In a previous related study, we identified and quantified VOCs emitted by cotton plant-fed Heliothis virescens (Lepidoptera: Noctuidae) larvae, an herbivore host of the parasitoid Microplitis croceipes (Hymenoptera: Braconidae). In the present study, the olfactory response of female M. croceipes to synthetic versions of 15 previously identified compounds was tested in electroantennogram (EAG) bioassays. Using M. croceipes as a model species, we further asked the question: does the relative abundance of a volatile compound match the level of antennal response in parasitoids? Female M. croceipes showed varying EAG responses to test compounds, indicating different levels of bioactivity in the insect antenna. Eight compounds, including decanal, 1-octen-3-ol, 3-octanone, 2-ethylhexanol, tridecane, tetradecane, α-farnesene and bisabolene, elicited EAG responses above or equal to the 50 th percentile rank of all responses. Interestingly, decanal, which represented only 1% of the total amount of odors emitted by cotton-fed hosts, elicited the highest (0.82 mV) EAG response in parasitoids. On the other hand, ( E)-β-caryophyllene, the most abundant (29%) blend component, elicited a relatively low (0.17 mV) EAG response. The results suggest that EAG response to host-related volatiles in parasitoids is probably more influenced by the ecological relevance or functional role of the compound in the blend, rather than its relative abundance.
机译:食草动物以植物为食后会释放出挥发性有机化合物(VOC)。寄生虫利用这些VOC作为气味线索来定位其宿主。在自然界中,与宿主相关的气味会以各种化合物以不同比例的混合物形式散发出来,并且少量的混合物成分有时会对类寄生物的反应产生深远的影响。在先前的相关研究中,我们鉴定并定量了棉花植物饲喂的Heliothis virescens(鳞翅目:Noctuidae)幼虫(类寄生虫番pl微pl虫(膜翅目:Braconidae)的草食动物宿主)释放的VOC。在本研究中,在电造影(EAG)生物测定法中测试了雌性藏红花番荔枝对15种先前鉴定的化合物的合成形式的嗅觉响应。我们以番荔枝科植物为模型物种,进一步提出了一个问题:挥发性化合物的相对丰度是否与拟寄生物的触角反应水平相匹配?番红花雌性对测试化合物表现出不同的EAG反应,表明昆虫触角中的生物活性水平不同。八种化合物,包括癸醛,1-辛烯-3-醇,3-辛酮,2-乙基己醇,十三烷,十四烷,α-法呢烯和双sabolene,引起的EAG响应高于或等于第50个百分位数。所有回应的排名。有趣的是,仅占食棉宿主散发的气味总量的1%的de水,在寄生类动物中引起了最高的(0.82 mV)EAG反应。另一方面,最丰富(29%)的混合成分(E)-β-石竹烯引起了相对较低的(0.17 mV)EAG反应。结果表明,EAG对寄生虫中与宿主相关的挥发物的反应可能受混合物中化合物的生态相关性或功能作用的影响更大,而不是其相对丰度的影响。

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