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首页> 外文期刊>Environmental Entomology >A compound produced by fruigivorous Tephritidae (diptera) larvae promotes oviposition behavior by the biological control agent Diachasmimorpha longicaudata (Hymenoptera: Braconidae).
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A compound produced by fruigivorous Tephritidae (diptera) larvae promotes oviposition behavior by the biological control agent Diachasmimorpha longicaudata (Hymenoptera: Braconidae).

机译:由果食性拟蝇科(双翅目)幼虫产生的化合物可通过生物防治剂 Diachasmimorpha longicaudata (膜翅目:Braconidae)促进产卵行为。

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摘要

Tephritid fruit fly parasitoids use fruit-derived chemical cues and the vibrations that result from larval movements to locate hosts sequestered inside fruit. However, compounds produced by the larvae themselves have not been previously described nor their significance to parasitoid foraging determined. We collected the volatiles from four species of tropical and subtropical Tephritidae: Anastrepha suspensa (Loew), Bactrocera dorsalis Hendel, Bactrocera cucurbitae Coquillett, and Ceratitis capitata (Wiedemann), representing two subfamilies (Dacinae and Trypetinae). Para-ethylacetophenone, an analog of a known tephritid parasitoid attractant, was a major constituent of all four, and was not associated with larvae of another acalypterate fly, Drosophila melanogaster Meigen, or with the calypterate Musca domestica L. It also was present in volatiles from whole, A. suspensa infested fruits of Eugenia uniflora (L.). Para-ethylacetophenone was not necessarily produced as a direct consequence of fruit consumption because it also was detected from larvae that developed in two artificial diets and in spent diets subsequent to larval development. Sensillae on both the antennae and ovipositor of the opiine braconid fruit fly parasitoid, Diachasmimorpha longicaudata (Ashmead) responded to the para-ethylacetophenone in larval volatiles and as a synthetic. Although a potential cue to foraging parasitoids, para-ethylacetophenone showed no long range (>1 m) attractiveness to the adult female parasitoid, but did stimulate ovipositor-insertion and oviposition into both a natural (fruit) and an artificial (parafilm) substrate. Thus it may prove useful in colonizing and mass-rearing opine fruit fly parasitoids.Digital Object Identifier http://dx.doi.org/10.1603/EN10198
机译:拟南芥果蝇寄生虫利用源自水果的化学线索和幼虫运动产生的振动来定位被隔离在水果内部的宿主。然而,以前没有描述过由幼虫本身产生的化合物,也没有确定它们对寄生虫觅食的重要性。我们从四种热带和亚热带的泰科科动物中收集了挥发物: Anastrepha suspensa (Loew), Bactrocera dorsalis Hendel, Bactrocera cucurbitae Coquillett和< i> Capereta capitata (Wiedemann),代表两个亚科(Dacinae和Trypetinae)。对乙基苯乙酮是一种已知的拟南芥类拟寄生物引诱剂的类似物,是全部四个的主要组成部分,与另一种无鳞蝇蝇,果蝇,美根蝇的幼虫或与无鳞蝇的昆虫无关。家蝇。它也存在于整个 A的挥发物中。悬钩子感染了 Eugenia uniflora (L.)。对乙基苯乙酮不一定是食用水果的直接结果,因为它也是从两种人工饮食和幼虫发育后的废饮食中发育的幼虫中检测到的。阿片类花椰菜果蝇类寄生物触角和产卵者的感器均对幼虫挥发物中的对乙基苯乙酮有反应,并且是合成的。虽然对乙基类苯乙酮有潜在的觅食潜力,但对乙基苯乙酮对成年雌性类寄生虫没有长距离的吸引力(> 1 m),但确实刺激了输卵管的插入和产卵到天然(水果)和人造(parafilm)基质中。因此,它可能在定殖和大量繁殖阿片类果蝇寄生虫中被证明是有用的。数字对象标识符http://dx.doi.org/10.1603/EN10198

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