首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Influence of Mutualistic Lifestyle, Mutualistic Partner, and Climate on Cuticular Hydrocarbon Profiles in Parabiotic Ants
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Influence of Mutualistic Lifestyle, Mutualistic Partner, and Climate on Cuticular Hydrocarbon Profiles in Parabiotic Ants

机译:互联网生活方式,互动性伴侣和气候对肺泡蚂蚁切口烃谱的影响

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A vital trait in insects is their cuticular hydrocarbon (CHC) profile, which protects the insect against desiccation and serves in chemical communication. Due to these functions, CHC profiles are shaped by both climatic conditions and biotic interactions. Here, we investigated CHC differentiation in the neotropical parabiotic ant species Crematogaster levior and Camponotus femoratus, which mutualistically share a nest. Both consist of two cryptic species each (Cr. levior A and B and Ca. femoratus PAT and PS) that differ genetically and possess strongly different CHC profiles. We characterized and compared CHC profiles of the four cryptic species in detail. Our results suggest that Cr. levior A, Ca. femoratus PAT and Ca. femoratus PS adapted their CHC profiles to the parabiotic lifestyle by producing longer-chain CHCs. At the same time, they changed their major CHC classes, and produce more alkadienes and methyl-branched alkenes compared to Cr. levior B or non-parabiotic species. The CHC profiles of Cr. levior B were more similar to related, non-parabiotic species of the Orthocrema clade than Cr. levior A, and the chain lengths of B were similar to the reconstructed ancestral state. Signals of both the parabiotic partner (biotic conditions) and climate (abiotic conditions) were found in the CHC profiles of all four cryptic species. Our data suggest that mutualisms shaped the CHC profiles of the studied species, in particular chain length and CHC class composition. Beside this, signals of the parabiotic partners indicate potential impacts of biotic interactions, via chemical mimicry or chemical camouflage.
机译:昆虫的一个重要性状是它们的切屑烃(CHC)轮廓,可防止昆虫免受干燥并在化学通信中服务。由于这些功能,CHC型材由气候条件和生物相互作用塑造。在这里,我们研究了NeoTopical Parabiotic Ant物种Crematogaster Levior和Camponotus Femoratus中的CHC差异,这是相互居住的巢穴。两者都是两个神秘的物种(Cr. Levior A和B和Ca.Phioratus Pat和PS)组成,遗传地不同,具有强烈不同的CHC型材。我们详细阐述了四种隐秘物种的CHC型谱。我们的结果表明CR。 Levior A,CA。 Femoratus Pat和Ca. PEMORATUS PS通过产生长链CHC来使其CHC型材对帕尔皮毒生活方式进行调整。同时,与Cr相比,它们改变了主要的CHC类,并产生了更多的链烷烃和甲基支链烯烃。 Levior B或非静脉分析物种。 CR的CHC剖面。 Levior B更类似于与Cr的邻接岩石的相关,非静脉分析物种。 Levior A和B的链长与重建的祖先状态类似。在所有四种隐秘物种的CHC型材中发现了肺泡伴侣(生物条件)和气候(非生物条件)的信号。我们的数据表明,相互主义地形是研究了研究的CHC型材,特别是链长和CHC级组成。除此之外,Parabiotic Partners的信号指示生物相互作用的潜在影响,通过化学模仿或化学伪装。

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