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雌性生殖行为的复杂化学感应控制

Complex chemosensory control of female reproductive behaviors.

作者信息

Fraser Eleanor J, Shah Nirao M

机构信息

Program in Genetics, Department of Anatomy, University of California San Francisco, San Francisco, California, United States of America.

出版信息

PLoS One. 2014 Feb 28;9(2):e90368. doi: 10.1371/journal.pone.0090368. eCollection 2014.

Abstract

Olfaction exerts a profound influence on reproductive physiology and behavior in many animals, including rodents. Odors are recognized by sensory neurons residing in the main olfactory epithelium (MOE) and the vomeronasal organ (VNO) in mice and many other vertebrates. The relative contributions of the MOE and VNO in the display of female behaviors are not well understood. Mice null for Cnga2 or Trpc2 essentially lack odor-evoked activity in the MOE and VNO, respectively. Using females mutant for one or both of Cnga2 and Trpc2, we find that maternal care is differentially regulated by the MOE and VNO: retrieval of wandering pups requires the MOE and is regulated redundantly by the VNO whereas maternal aggression requires both sensory epithelia to be functional. Female sexual receptivity appears to be regulated by both the MOE and VNO. Trpc2 null females have previously been shown to display male-type mounting towards other males. Remarkably, we find that females double mutant for Cnga2 and Trpc2 continue to mount other males, indicating that the disinhibition of male-type sexual displays observed in Trpc2 null females does not require chemosensory input from a functional MOE. Taken together, our findings reveal a previously unappreciated complexity in the chemosensory control of reproductive behaviors in the female mouse.

摘要

嗅觉对包括啮齿动物在内的许多动物的生殖生理和行为有着深远影响。气味由小鼠和许多其他脊椎动物的主要嗅觉上皮(MOE)和犁鼻器(VNO)中的感觉神经元识别。MOE和VNO在雌性行为表现中的相对作用尚未得到充分了解。Cnga2或Trpc2基因敲除的小鼠分别在MOE和VNO中基本缺乏气味诱发的活性。利用Cnga2和Trpc2其中之一或两者突变的雌性小鼠,我们发现母性行为受到MOE和VNO的差异调节:找回走失幼崽需要MOE,且VNO起到冗余调节作用,而母性攻击行为则需要两个感觉上皮都发挥功能。雌性的性接受能力似乎受MOE和VNO两者调节。此前已表明,Trpc2基因敲除的雌性会对其他雄性表现出雄性类型的骑跨行为。值得注意的是,我们发现Cnga2和Trpc2双突变的雌性仍会骑跨其他雄性,这表明在Trpc2基因敲除的雌性中观察到的雄性类型性行为的去抑制并不需要来自功能性MOE的化学感觉输入。综上所述,我们的研究结果揭示了雌性小鼠生殖行为化学感觉控制中一种此前未被认识到的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff5d/3938725/07b99019a8d5/pone.0090368.g001.jpg

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