Department of Chemistry and Pharmacy, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Henkestraße 9, 91054, Erlangen, Germany.
Department of Behavioural Ecology, Bielefeld University, Konsequenz 45, 33615, Bielefeld, Germany.
Anal Bioanal Chem. 2024 Oct;416(24):5335-5349. doi: 10.1007/s00216-024-05466-8. Epub 2024 Aug 9.
In recent decades, the compositions of preen oil and feathers have been studied to achieve insights into the chemistry of avian odours, which play a significant role in birds' social behaviour. Fewer studies are available regarding volatiles originating from other sources, such as faeces, eggs or a bird's whole body. The aims of this study were (i) to identify odour-active and further volatile compounds in zebra finch whole body odour and (ii) to semi-quantify selected volatiles and use the information to evaluate two different adsorbents for their suitability for whole body odour sampling. Volatiles from the headspace above zebra finches were sampled using an open loop system equipped with either activated charcoal or Tenax® TA. Samples were analysed by olfactory-guided approaches as well as gas chromatography-mass spectrometry. Using activated charcoal as sorbent, 26 odour-active and 73 further volatile compounds were detected, whereas with Tenax® TA 27 odour-active and 81 further volatile compounds were detected. In total, 104 compounds were (tentatively) identified, of which 22 had not been identified previously in zebra finch odour and 12 had not been described in any birds. Hints towards a chemical sex signature became evident for qualitative but not for quantitative differences. With the exception of some compounds, notably carboxylic acids and alkanes, relative peak areas obtained with the two adsorbent types were comparable. The approach described herein is proposed for future studies aiming to determine volatiles emitted by birds when, for example, parent birds are approaching the nest.
近几十年来,人们研究了梳理油和羽毛的成分,以深入了解鸟类气味的化学性质,这些气味在鸟类的社交行为中起着重要作用。关于来自其他来源的挥发性物质,如粪便、卵或鸟类全身,研究较少。本研究的目的是:(i)鉴定斑马雀全身气味中的气味活性和其他挥发性化合物;(ii)对半定量选择的挥发性化合物,并利用这些信息评估两种不同的吸附剂,以评估它们对全身气味采样的适用性。使用带有活性炭或 Tenax® TA 的开环系统从斑马雀上方的顶空采样挥发性物质。使用嗅觉引导方法和气相色谱-质谱法对样品进行分析。使用活性炭作为吸附剂,检测到 26 种气味活性和 73 种其他挥发性化合物,而使用 Tenax® TA 则检测到 27 种气味活性和 81 种其他挥发性化合物。总共(暂定)鉴定了 104 种化合物,其中 22 种以前未在斑马雀气味中鉴定出,12 种在任何鸟类中都未描述过。定性上有化学性别特征的迹象,但在定量上没有。除了一些化合物,特别是羧酸和烷烃外,两种吸附剂类型获得的相对峰面积具有可比性。本文描述的方法拟用于未来的研究,旨在确定例如当亲鸟接近巢时鸟类排放的挥发性物质。