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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Plant Volatiles Influence Electrophysiological and Behavioral Responses of Lygus hesperus
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Plant Volatiles Influence Electrophysiological and Behavioral Responses of Lygus hesperus

机译:植物挥发物影响欧藜的电生理和行为反应

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摘要

Previous laboratory studies have shown that the mirid Lygus hesperus is attracted to volatiles emitted from alfalfa; feeding damage increases the amounts of several of these volatiles, and visual cues can enhance attraction further. The present study tested single plant volatiles in electrophysiological and behavioral trials with L. hesperus. Electroantennogram (EAG) analyses indicated that antennae responded to most plant volatiles included in the test, and that when gender differences were observed, males usually were more responsive than females. Antennal responses to the alcohols ((E)-3-hexenol, (Z)-3-hexenol, 1-hexanol), the acetate (E)-2-hexenyl acetate, and the aldehyde (E)-2-hexenal were among the strongest. Moderate responses were observed for (E)-beta-ocimene, (E,E)-alpha-farnesene, (+/-)-linalool, and methyl salicylate. A dose dependent response was not observed for several terpenes (beta-myrcene, beta-caryophyllene, (+)-limonene, or both (R)-(+)- and (S)-(-)-alpha-pinenes). EAG responses, however, were not always consistent with behavioral assays. In Y-tube bioassays, males did not exhibit a positive behavioral response to any of the compounds tested. Instead, males were repelled by (E)-2-hexenyl acetate, (+/-)-linalool, (E,E)-alpha-farnesene, and methyl salicylate. In contrast, female L. hesperus moved upwind towards (R)-(+)-alpha-pinene, (E)-beta-ocimene, and (E,E)-alpha-farnesene, and showed a negative response towards (Z)-3-hexen-1-ol, (S)-(-)-alpha-pinene, and methyl salicylate. This study emphasizes the use of multiple approaches to better understand host plant finding in the generalist herbivore L. hesperus.
机译:以前的实验室研究表明,灵长类的麻疯草被苜蓿释放出的挥发物所吸引。进食损伤会增加其中一些挥发物的含量,视觉提示会进一步增强吸引力。本研究在橙皮乳杆菌的电生理和行为试验中测试了单一植物的挥发物。脑电图(EAG)分析表明,触角对测试中包括的大多数植物挥发物有反应,并且当观察到性别差异时,雄性通常比雌性更敏感。对醇((E)-3-己烯醇,(Z)-3-己烯醇,1-己醇),乙酸酯(E)-2-己烯基乙酸酯和醛(E)-2-己烯醛的反应最强的。观察到对(E)-β-ocimene,(E,E)-α-法呢烯,(+/-)-芳樟醇和水杨酸甲酯的反应中等。几个萜烯(β-月桂烯,β-石竹烯,(+)-柠檬烯或(R)-(+)-和(S)-(-)-α-pine烯)均未观察到剂量依赖性反应。然而,EAG反应并不总是与行为测定一致。在Y型管生物测定法中,男性对任何测试的化合物均未表现出积极的行为反应。相反,雄性被(E)-2-己烯基乙酸酯,(+/-)-芳樟醇,(E,E)-α-法呢烯和水杨酸甲酯排斥。相比之下,雌性麻疯草向(R)-(+)-α-pine烯,(E)-β-ocimene和(E,E)-α-法呢烯向上风移动,并且对(Z)表现出负面反应-3-己烯-1-醇,(S)-(-)-α-pine烯和水杨酸甲酯这项研究强调使用多种方法来更好地了解通才的草食性欧芹L. hesperus中的寄主植物。

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