Scordato Elizabeth S, Dubay George, Drea Christine M
Department of Biological Anthropology and Anatomy, Duke University, Durham, NC 27708-0383, USA.
Chem Senses. 2007 Jun;32(5):493-504. doi: 10.1093/chemse/bjm018. Epub 2007 May 7.
The apocrine and sebaceous scent glands of ringtailed lemurs (Lemur catta) appear to serve different social functions. In behavioral experiments, lemurs modulate their responses to scent marks based on the type of odorant, their own physiological state, the signaler's physiological state, and prior social experience. To examine variation in odorant chemistry relative to olfactory behavior, we used gas chromatography and mass spectrometry to analyze over 86 samples of glandular secretion collected over 2 years from 15 adult lemurs. Labial and scrotal secretions contained organic acids and esters, whereas male brachial secretions were composed almost entirely of squalene and cholesterol derivatives. Principal component and linear discriminant analyses revealed glandular, individual-specific, and seasonal variation in chemical profiles but no relationship to the signaler's social status. The chemical composition of the various secretions provides further clues about the function of the different glands: the higher molecular weight compounds in genital and brachial secretions may increase signal longevity and provide lasting information to conspecifics, consistent with a role in advertising resource ownership or reproductive state. Conversely, the lower molecular weight compounds of antebrachial secretions produce ephemeral signals used primarily in social dominance displays and require integration of multiple sensory modalities for effective signal transmission.
环尾狐猴(Lemur catta)的顶泌腺和皮脂腺似乎具有不同的社会功能。在行为实验中,狐猴会根据气味剂的类型、自身的生理状态、信号发出者的生理状态以及先前的社会经验来调节它们对气味标记的反应。为了研究与嗅觉行为相关的气味剂化学变化,我们使用气相色谱法和质谱分析法,对从15只成年狐猴身上在两年时间里收集的86多个腺体分泌物样本进行了分析。唇部和阴囊分泌物含有有机酸和酯类,而雄性臂部分泌物几乎完全由角鲨烯和胆固醇衍生物组成。主成分分析和线性判别分析揭示了腺体、个体特异性和化学特征的季节性变化,但与信号发出者的社会地位无关。各种分泌物的化学成分进一步揭示了不同腺体的功能:生殖器和臂部分泌物中分子量较高的化合物可能会延长信号持续时间,并向同种个体提供持久信息,这与在宣传资源所有权或生殖状态方面的作用一致。相反,前臂分泌物中分子量较低的化合物产生的短暂信号主要用于社会优势展示,并且需要整合多种感官模式才能进行有效的信号传递。