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首页> 外文期刊>Journal of Economic Entomology >Benzaldehyde Synergizes the Response of Female Xyleborinus saxesenii (Coleoptera: Curculionidae, Scolytinae) to Ethanol
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Benzaldehyde Synergizes the Response of Female Xyleborinus saxesenii (Coleoptera: Curculionidae, Scolytinae) to Ethanol

机译:苯甲醛协同作用雌性Xyleborinus saxesenii(鞘翅目:Curculionidae,Scolytinae)对乙醇的反应

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The ambrosia beetle,Xyleborinus saxeseii Ratzeburg (Coleoptera: Curculionidae,Scolytinae), infests physiologically stressed apple and peach trees in Korea. Dispersing females utilize the degradation product ethanol and host-related volatiles to locate and colonize new host trees. We examined the extent to which 12 chemicals emitted from fruit trees act synergistically with ethanol to attract X. saxesenii. The addition of benzaldehyde to ethanol significantly increased beetle attraction, although benzaldehyde was not attractive by itself. The addition of (-)-alpha-pinene, ethyl butyrate, ethyl isovalerate, (R)-(+)-limonene, 3-methyl-1-butanol, ethyl tiglate, (+)-aromadendrene, vanillin, 2-butanol, styrene, or ethyl 3,3-dimethylacrylate to ethanol had no effect on beetle attraction. In a dose-response test, the addition of 5-50% benzaldehyde doses synergistically increased the number of beetle captures; however, trap catches did not increase as the benzaldehyde dosage increased. The synergistic influence of benzaldehyde on beetle response to ethanol was lower in early spring than in late summer to early fall, probably because synthetic benzaldehyde emissions from field lures were overwhelmed by background levels of natural benzaldehyde emitted from peach twigs in the flowering stage.
机译:甲虫甲虫,Xyleborinus Saxeseii Ratzeburg(鞘翅目:Curculionidae,Scolytinae),韩国的生理上强调苹果和桃树。分散女性利用降解产物乙醇和宿主相关的挥发物来定位和殖民化新的宿主树。我们检查了果树排放的12种化学物质的程度,用乙醇协同作用,以吸引X. Saxesenii。虽然苯甲醛本身并不吸引,但加入苯甲醛至乙醇的吸引力显着增加。 ( - ) - α-脊烯,乙基丁酸乙酯,乙基异戊酸乙酯,(R) - (+) - 柠檬烯,3-甲基-1-丁醇,乙酸乙酯,(+) - 香草醛,2-丁醇,苯乙烯或3,3-二甲基丙烯酸乙酸乙酯对乙醇对甲酸甲醇没有影响。在剂量响应试验中,添加5-50%苯甲醛剂量协同增加甲虫捕获的数量;然而,随着苯甲醛剂量的增加,陷阱捕获并没有增加。早春春季春季到秋季秋季秋季秋季秋季秋季较低,苯甲醛对甲虫对乙醇的协同影响,可能是因为野外诱惑的合成苯甲醛排放量被从开花阶段的桃子枝排出的天然苯甲醛的背景水平所淹没。

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