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食尸幼虫中的信息素:丝光绿蝇和丽蝇。

Synomones in necrophagous larvae of the blow flies Lucilia sericata and Calliphora vomitoria.

机构信息

CHU Lille, EA 7367 - UTML - Unité de Taphonomie Médico-Légale, University of Lille, Lille, France.

UMR 8025, Centre d'Histoire Judiciaire, University of Lille, Lille, France.

出版信息

Med Vet Entomol. 2023 Mar;37(1):170-175. doi: 10.1111/mve.12614. Epub 2022 Oct 5.

Abstract

Chemical signals are widespread in insects, but those resulting in interspecific communication (i.e., synomones) remain understudied. Here, we analysed chemicals left on substrates by two species of blow fly larvae, Lucilia sericata (Meigen) and Calliphora vomitoria (Linneaus) (Diptera: Calliphoridae), which can aggregate together on carrion. Using solid-phase microextraction and dynamic headspace analysis, we identified six compounds common to both species: the decanoic, tetradecanoic, pentadecanoic, hexadecanoic and octadecanoic acids, and the 2-ethylhexyl salicylate. We then tested the behavioural effects of the decanoic and pentadecanoic acids using binary-choice experiments, along with the (Z)-9-tricosene, a pheromone found in many arthropods. The time spent by a larva and its average crawling speed were measured in two sides of an arena, where only one contained a compound at 0.25 or 25 μg/μl. No effect was observed when testing the decanoic acid. The pentadecanoic acid only reduced the speed of C. vomitoria larvae at 25 μg/μl. Finally, L. sericata larvae spent less time in the side containing the (Z)-9-tricosene at 0.25 μg/μl, whereas C. vomitoria spent more time and crawled faster in this side at 25 μg/μl. Although these results did not directly evidence synomones, they suggest that the (Z)-9-tricosene could regulate larval aggregations on carrion.

摘要

化学信号在昆虫中广泛存在,但导致种间交流的化学信号(即同型信息素)仍未得到充分研究。在这里,我们分析了两种蝇科幼虫(丝光绿蝇和麻蝇)留在基质上的化学物质,这两种幼虫可以在腐肉上聚集。使用固相微萃取和动态顶空分析,我们鉴定出了两种蝇科幼虫共有的六种化合物:癸酸、十四酸、十五酸、十六酸和十八酸,以及 2-乙基己基水杨酸酯。然后,我们使用二元选择实验测试了癸酸和十五酸对行为的影响,以及(Z)-9-二十三烯,一种在许多节肢动物中发现的信息素。在一个竞技场的两侧测量幼虫停留的时间和平均爬行速度,其中只有一侧含有 0.25 或 25μg/μl 的化合物。在测试癸酸时没有观察到效果。十五酸仅在 25μg/μl 时降低了麻蝇幼虫的速度。最后,丝光绿蝇幼虫在含有(Z)-9-二十三烯的 0.25μg/μl 侧停留的时间较少,而麻蝇幼虫在含有 25μg/μl 的侧停留的时间更多,爬行速度也更快。尽管这些结果并未直接证明同型信息素的存在,但它们表明(Z)-9-二十三烯可能调节了幼虫在腐肉上的聚集。

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