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青鳉鱼社会能力的分子基础。

Molecular basis of social competence in medaka fish.

作者信息

Okuyama Teruhiro, Yokoi Saori, Takeuchi Hideaki

机构信息

RIKEN-MIT Center for Neural Circuit Genetics at the Picower Institute for Learning and Memory, Department of Biology and Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology (MIT), Cambridge, MA 02139, USA.

Laboratory of Bioresources, National Institute for Basic Biology, Nishigonaka 38, Myodaiji, Okazaki 444-8585, Aichi, Japan.

出版信息

Dev Growth Differ. 2017 May;59(4):211-218. doi: 10.1111/dgd.12359. Epub 2017 May 26.

DOI:10.1111/dgd.12359
PMID:28548230
Abstract

Oryzias latipes (Medaka) is an established vertebrate model for studying developmental genetics, genomics, and evolutionary biology. The physiology, embryology, and genetics of this species have been extensively investigated for centuries. Medaka fish recently attracted attention in the field of social neuroscience. This review introduces recent advances in medaka behavioral studies, focusing on female mating preferences and male mate-guarding behaviors. The medaka female has the ability to discriminate male individuals and prefers to mate with socially familiar males (female mating preference). In triadic relationships (two males and one female), the dominant male remains closer to the female and repels the other male (mate-guarding). Interestingly, mate-guarding blocks female social familiarization of the rival male, which can increase the mating success of the dominant male. Importantly, behavioral analyses using a series of medaka mutants revealed critical roles of neuropeptide neuromodulatory systems in regulating their social behaviors. The extra-hypothalamic gonadotropin-releasing hormone system has a central role in activating female mating preference. The arginine-vasotocin system is required for the emergence of mate-guarding behavior.

摘要

青鳉是一种用于研究发育遗传学、基因组学和进化生物学的成熟脊椎动物模型。几个世纪以来,人们对该物种的生理学、胚胎学和遗传学进行了广泛研究。青鳉鱼最近在社会神经科学领域引起了关注。这篇综述介绍了青鳉行为研究的最新进展,重点关注雌性交配偏好和雄性护偶行为。青鳉雌性具有区分雄性个体的能力,并且更喜欢与社会上熟悉的雄性交配(雌性交配偏好)。在三元关系(两只雄性和一只雌性)中,占主导地位的雄性会与雌性保持更近的距离,并排斥另一只雄性(护偶行为)。有趣的是,护偶行为会阻止雌性对竞争雄性的社会熟悉化,这可以提高占主导地位雄性的交配成功率。重要的是,使用一系列青鳉突变体进行的行为分析揭示了神经肽神经调节系统在调节其社会行为中的关键作用。下丘脑外促性腺激素释放激素系统在激活雌性交配偏好中起核心作用。精氨酸血管加压素系统是护偶行为出现所必需的。

相似文献

1
Molecular basis of social competence in medaka fish.青鳉鱼社会能力的分子基础。
Dev Growth Differ. 2017 May;59(4):211-218. doi: 10.1111/dgd.12359. Epub 2017 May 26.
2
An essential role of the arginine vasotocin system in mate-guarding behaviors in triadic relationships of medaka fish (Oryzias latipes).精氨酸血管加压素系统在青鳉鱼(Oryzias latipes)三角关系中的配偶保卫行为中起着重要作用。
PLoS Genet. 2015 Feb 26;11(2):e1005009. doi: 10.1371/journal.pgen.1005009. eCollection 2015.
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Mate-guarding behavior enhances male reproductive success via familiarization with mating partners in medaka fish.在青鳉鱼中,配偶守卫行为通过熟悉交配伙伴来提高雄性的繁殖成功率。
Front Zool. 2016 Jun 2;13:21. doi: 10.1186/s12983-016-0152-2. eCollection 2016.
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Social rank-dependent expression of gonadotropin-releasing hormones and kisspeptin in the medaka brain.青鳉鱼大脑中促性腺激素释放激素和亲吻素的社会等级依赖性表达。
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A neural mechanism underlying mating preferences for familiar individuals in medaka fish.鱼类对熟悉个体的交配偏好的神经机制。
Science. 2014 Jan 3;343(6166):91-4. doi: 10.1126/science.1244724.
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Social rank-dependent expression of arginine vasotocin in distinct preoptic regions in male Oryzias latipes.雄性鲈鲤(Oryzias latipes)不同视前区中精氨酸加压素的社会等级依赖性表达。
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Vasotocin/isotocin-immunoreactive neurons in the medaka fish brain are sexually dimorphic and their numbers decrease after spawning in the female.青鳉鱼脑中的促血管紧张素/异催产素免疫反应性神经元具有性别二态性,且在雌性产卵后其数量会减少。
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Comparison of aggressive behaviors between two wild populations of Japanese medaka, Oryzias latipes and O. sakaizumii.日本青鳉(Oryzias latipes)和坂井青鳉(O. sakaizumii)两个野生种群之间攻击行为的比较。
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Vasotocin expression is associated with social preference development of the medaka fish.血管加压素的表达与日本青鳉鱼社会偏好发展有关。
Gen Comp Endocrinol. 2023 Nov 1;343:114355. doi: 10.1016/j.ygcen.2023.114355. Epub 2023 Aug 8.

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Neuroendocrinology of reproduction: Is gonadotropin-releasing hormone (GnRH) dispensable?生殖神经内分泌学:促性腺激素释放激素(GnRH)是否不可或缺?
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