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Pheromonal communication in vertebrates

机译:脊椎动物的肺信息交流

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Recent insights have revolutionized our understanding of the importance of chemical signals in influencing vertebrate behaviour. Previously unknown families of pheromonal signals have been identified that are expanding the traditional definition of a pheromone. Although previously regarded as functioning independently, the main olfactory and vomeronasal systems have been found to have considerable overlap in terms of the chemosignals they detect and the effects that they mediate. Studies using gene- targeted mice have revealed an unexpected diversity of chemosensory systems and their underlying cellular and molecular mechanisms. Future developments could show how the functions of the different chemosensory systems are integrated to regulate innate and learned behavioural and physiological responses to pheromones.
机译:最近的见解彻底改变了我们对化学信号在影响脊椎动物行为中重要性的理解。以前已经发现了未知的信息素信号家族,它们正在扩展信息素的传统定义。尽管以前认为它们独立发挥功能,但已发现主要的嗅觉和犁鼻系统在它们检测到的化学信号及其介导的作用方面有相当大的重叠。使用基因靶向小鼠的研究表明,化学感应系统及其潜在的细胞和分子机制具有出乎意料的多样性。未来的发展可能表明不同化学感应系统的功能如何集成在一起,以调节对信息素的先天性和学习性行为和生理反应。

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