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Urine-Derived Key Volatiles May Signal Genetic Relatedness in Male Rats

机译:尿液衍生的关键挥发物可能预示着雄性大鼠的遗传相关性

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Olfactory cues play a vital role in kin recognition and mate choice of the rat. Here, using 2 inbred strains of rats. Brown Norway (BN) and Lewis, as models to simulate kinship via genetic distance, we examined whether urine-derived volatiles are genetically determined, and, if so, how they code for olfactory information and the degree of genetic relatedness in mate choice. Binary choice tests showed that BN females preferred the urine odor of Lewis males over that of BN males, suggesting that they avoided males genetically similar to themselves and were able to assess this olfactorily. Gas chromatography-mass spectrometry analysis revealed that the composition of urine-derived volatiles was more similar within strains than between strains and suggests that odortypes may reflect genetic relatedness. Our data further show that BN males had lower ratios of 2-heptanone and 4-heptanone and higher ratios of dimethyl sulfone and 4-ethyl phenol than Lewis males. When we supplemented BN and Lewis male urine to make each similar, the preferences of BN females were reversed. We conclude that some urine-derived volatiles covary in relative abundance with degree of genetic relatedness, and this relationship may play a key role in chemical signaling and genetic identity in this species.
机译:嗅觉提示在大鼠的亲属识别和配偶选择中起着至关重要的作用。在这里,使用2个自交系的大鼠。布朗挪威(BN)和刘易斯(Lewis),作为通过遗传距离模拟亲缘关系的模型,我们检查了尿液衍生挥发物是否由遗传确定,如果是,则如何编码嗅觉信息以及伴侣选择中的遗传相关程度。二元选择测试表明,BN雌性比Lewis雄性更喜欢Lewis雄性的尿臭味,这表明他们避免了与自己遗传相似的雄性,并且能够进行嗅觉评估。气相色谱-质谱分析表明,菌株中尿源性挥发物的组成比菌株之间更相似,并表明气味类型可能反映了遗传相关性。我们的数据进一步表明,与路易斯男性相比,BN男性的2-庚酮和4-庚酮比例更低,而二甲基砜和4-乙基苯酚的比例更高。当我们补充BN和Lewis男性尿液使它们相似时,BN女性的偏好被颠倒了。我们得出的结论是,一些尿液衍生的挥发物相对于遗传相关性程度相对丰富,并且这种关系可能在该物种的化学信号和遗传特性中起关键作用。

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