首页> 外文期刊>Molecules >Analysis of Odorants in Marking Fluid of Siberian Tiger ( Panthera tigris altaica ) Using Simultaneous Sensory and Chemical Analysis with Headspace Solid-Phase Microextraction and Multidimensional Gas Chromatography-Mass Spectrometry-Olfactometry
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Analysis of Odorants in Marking Fluid of Siberian Tiger ( Panthera tigris altaica ) Using Simultaneous Sensory and Chemical Analysis with Headspace Solid-Phase Microextraction and Multidimensional Gas Chromatography-Mass Spectrometry-Olfactometry

机译:利用顶空固相微萃取和多维气相色谱-质谱-比色法同时进行感官和化学分析,分析西伯利亚虎(Panthera tigris altaica)标记液中的气味。

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Scent-marking is the most effective method of communication in the presence or absence of a signaler. These complex mixtures result in a multifaceted interaction triggered by the sense of smell. The objective was to identify volatile organic compound (VOC) composition and odors emitted by total marking fluid (MF) associated with Siberian tigers ( Panthera tigris altaica ). Siberian tiger, an endangered species, was chosen because its MF had never been analyzed. Solid phase microextraction (SPME) for headspace volatile collection combined with multidimensional gas chromatography-mass spectrometry-olfactometry for simultaneous chemical and sensory analyses were used. Thirty-two VOCs emitted from MF were identified. 2-acetyl-1-pyrroline, the sole previously identified compound responsible for the “characteristic” odor of P. tigris MF, was identified along with two additional compounds confirmed with standards (urea, furfural) and four tentatively identified compounds (3-methylbutanamine, ( R )-3-methylcyclopentanone, propanedioic acid, and 3-hydroxybutanal) as being responsible for the characteristic aroma of Siberian tiger MF. Simultaneous chemical and sensory analyses improved characterization of scent-markings and identified compounds not previously reported in MF of other tiger species. This research will assist animal ecologists, behaviorists, and zookeepers in understanding how scents from specific MF compounds impact tiger and wildlife communication and improve management practices related to animal behavior. Simultaneous chemical and sensory analyses is applicable to unlocking scent-marking information for other species.
机译:在存在或不存在信号器的情况下,气味标记是最有效的通信方法。这些复杂的混合物导致嗅觉触发了多方面的相互作用。目的是确定挥发性有机化合物(VOC)的组成和与西伯利亚虎(Panthera tigris altaica)有关的总标记液(MF)所散发的气味。选择西伯利亚虎是一种濒临灭绝的物种,因为从未对其MF进行过分析。固相微萃取(SPME)用于顶空挥发物收集,同时使用多维气相色谱-质谱-嗅觉法同时进行化学和感官分析。鉴定出MF排放的32种VOC。鉴定出了2-乙酰基-1-吡咯啉,这是先前唯一识别的虎小龙虾MF的“特征”气味的化合物,另外还有经标准品(尿素,糠醛)确认的两种其他化合物和经初步鉴定的四种化合物(3-甲基丁胺) (R)-3-甲基环戊酮,丙二酸和3-羟基丁醛)是西伯利亚虎MF的特征香气。同时进行化学和感官分析可改善气味标记的特征,并鉴定出其他老虎物种的MF以前未报道的化合物。这项研究将帮助动物生态学家,行为学家和动物园管理员了解来自特定MF化合物的气味如何影响老虎和野生动植物的交流,并改善与动物行为有关的管理实践。同时进行化学和感官分析可用于释放其他物种的气味标记信息。

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