首页> 外文期刊>Chemoecology: An International Journal Emphasizing Evolutionary Approaches to Chemical Ecology >Antennal responses of four species of tree-killing bark beetles (Coleoptera: Scolytidae) to volatiles collected from beetles, and their host and nonhost conifers
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Antennal responses of four species of tree-killing bark beetles (Coleoptera: Scolytidae) to volatiles collected from beetles, and their host and nonhost conifers

机译:四种杀死树木的树皮甲虫(鞘翅目:鞘翅目)对从甲虫中收集的挥发物及其寄主和非寄主针叶树的触媒响应

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摘要

Host selection in tree-killing bark beetles (Coleoptera: Scolytidae) is mediated by a complex of semiochemical cues. Using gas chromatographic-electroantennographic detection (GC-EAD) and GC-mass spectrometric analyses, we conducted a comparative study of the electrophysiological responses of four species of tree-killing bark beetles, the Douglas-fir beetle, Dendroctonus pseudotsugae, Hopkins, the mountain pine beetle, D. ponderosae Hopkins, the spruce beetle, D. rufipennis Kirby, and the western balsam bark beetle, Dryocoetes confusus Swaine, to volatiles captured by aeration of 1) bole and foliage of four sympatric species of conifers, Douglas-fir, Pseudotsuga menziesii (Mirb.) Franco, lodgepole pine, Pinus contorta var. latifolia Engelm., interior spruce, Picea engelmannii x glauca, and interior fir, Abies lasiocarpa x bifolia, and 2) con- and heterospecific beetles at three stages of attack. We identified 13 monoterpenes in the conifers and nine compounds in the volatiles of beetles that elicited antennal responses. There was no qualitative difference in the terpene constitution of the four species of conifers and very little difference across beetle species in their antennal response to compounds from conifers or beetles. The lack of species-specific major or minor components in conifers suggests that beetles would need to detect differences in the ratios of different compounds in conifers to discriminate among them. Attraction to hosts and avoidance of nonhost conifers may be accentuated by perception of compounds emitted by con- and heterospecific beetles, respectively. The 22 compounds identified are candidate semiochemicals with potential behavioural roles in host location and discrimination.
机译:杀死树木的树皮甲虫(鞘翅目:Scolytidae)的寄主选择是由复杂的化学信息线索介导的。我们使用气相色谱-电造影检测(GC-EAD)和GC-质谱分析,对四种杀树皮甲虫,道格拉斯冷杉甲虫,Dendroctonus pseudotsugae,Hopkins,山地这四种树皮的电生理响应进行了比较研究。松树甲虫,美国黄松树霍普金斯,云杉甲虫,鲁菲彭尼斯·柯比和西部香脂树皮甲虫Dryocoetes confusus Swaine,挥发到被1)针叶树和四种同心针叶树种花旗(Douglas-fir)的通气捕获, Pseudotsuga menziesii(Mirb。)佛朗哥,黑松,樟子松。内生云杉,云杉,云杉云杉和内陆云杉,内冷杉,冷杉木x 2叶和2)在三个侵袭阶段都具有杂种和异种甲虫。我们在针叶树中鉴定出13个单萜,在甲虫挥发物中发现了9种化合物,引起触角反应。四种针叶树的萜烯组成没有质的差异,并且所有甲虫物种对针叶树或甲虫化合物的触角反应差异很小。针叶树缺乏特定物种的主要或次要成分,这表明甲虫将需要检测针叶树中不同化合物的比例差异,以对其进行区分。分别通过对有壳和有壳的甲虫发出的化合物的感知,可以增强对宿主的吸引和避免非宿主针叶树的生长。鉴定出的22种化合物是候选化学信息素,在宿主的定位和区分中具有潜在的行为作用。

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