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从海洋到陆地的过渡:地寄居蟹 Coenobita clypeatus 的嗅觉功能和限制。

Transition from sea to land: olfactory function and constraints in the terrestrial hermit crab Coenobita clypeatus.

机构信息

Department of Evolutionary Neuroethology, Max Planck Institute for Chemical Ecology, Hans-Knöll-Strasse 8, 07745 Jena, Germany.

出版信息

Proc Biol Sci. 2012 Sep 7;279(1742):3510-9. doi: 10.1098/rspb.2012.0596. Epub 2012 Jun 6.

Abstract

The ability to identify chemical cues in the environment is essential to most animals. Apart from marine larval stages, anomuran land hermit crabs (Coenobita) have evolved different degrees of terrestriality, and thus represent an excellent opportunity to investigate adaptations of the olfactory system needed for a successful transition from aquatic to terrestrial life. Although superb processing capacities of the central olfactory system have been indicated in Coenobita and their olfactory system evidently is functional on land, virtually nothing was known about what type of odourants are detected. Here, we used electroantennogram (EAG) recordings in Coenobita clypeatus and established the olfactory response spectrum. Interestingly, different chemical groups elicited EAG responses of opposite polarity, which also appeared for Coenobita compressus and the closely related marine hermit crab Pagurus bernhardus. Furthermore, in a two-choice bioassay with C. clypeatus, we found that water vapour was critical for natural and synthetic odourants to induce attraction or repulsion. Strikingly, also the physiological response was found much greater at higher humidity in C. clypeatus, whereas no such effect appeared in the terrestrial vinegar fly Drosophila melanogaster. In conclusion, our results reveal that the Coenobita olfactory system is restricted to a limited number of water-soluble odourants, and that high humidity is most critical for its function.

摘要

动物在环境中识别化学线索的能力对大多数动物来说都是至关重要的。除了海洋幼虫阶段外,异尾类陆生寄居蟹(Coenobita)已经进化出不同程度的陆地生活能力,因此它们是研究成功从水生到陆生生活所需的嗅觉系统适应的绝佳机会。尽管 Coenobita 的中枢嗅觉系统具有出色的处理能力,并且它们的嗅觉系统在陆地上显然是有效的,但实际上我们对哪些类型的气味物质被检测到几乎一无所知。在这里,我们使用 Coenobita clypeatus 的触角电图(EAG)记录建立了嗅觉反应光谱。有趣的是,不同的化学基团引发了极性相反的 EAG 反应,这在 Coenobita compressus 和密切相关的海洋寄居蟹 Pagurus bernhardus 中也出现了。此外,在对 C. clypeatus 的双选择生物测定中,我们发现水蒸气对于天然和合成气味物质诱导吸引或排斥至关重要。引人注目的是,在 C. clypeatus 中,较高的湿度也会导致生理反应明显增强,而在陆生醋蝇 Drosophila melanogaster 中则没有这种现象。总之,我们的结果表明,Coenobita 的嗅觉系统仅限于少数水溶性气味物质,并且高湿度对其功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc3c/3396895/4695a68267c0/rspb20120596-g1.jpg

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