Vasotocin/Isotocin-immunoreactive Neurons in the Medaka Fish Brain Are Sexually Dimorphic and Their Numbers Decrease After Spawning in the Female(Endocrinology)
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概要
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In teleosts, the distribution of neurons in the preoptic-hypothalamic region and their associated neurohypophysial hormones, such as vasotocin (VT), appears to be different among species. This differential distribution is thought to reflect the social and/or sexual status of individuals within a species. In the present study, we analyzed the number, size and the distribution of vasotocin/isotocin (VT/IT) neurons in the brains of both male and female medaka (Oryzias latipes) using immunohistochemistry. VT/IT neurons were similarly located in an inverted L-shape in the nucleus preopticus in both gender, as has been already reported in salmonids. However, computer-assisted image analysis revealed sexual dimorphism in the number of VT/IT-immunoreactive (ir) neurons, with greater numbers found in males as compared to females. Further, in the female brain, the number of VT/IT-ir neurons decreased significantly after spawning. In pre-spawning compared to post-spawning females, the small-sized VT/IT-ir neurons dominated. Sexual differentiation of the medaka is fully dependent upon the steroid status during the early developmental stages and steroids are also known to trigger gender-specific behavior in the adult medaka. Our findings strongly suggest that VT and/or IT neurons may be functionally related to ovulation and/or the reproductive axes through connections to their steroidal status.
- 社団法人日本動物学会の論文
- 2006-01-25
著者
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Hayashi Shinji
Laboratory Of Endocrinology Graduate School Of Integrated Science Yokohama City University
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Ohya Tamaki
Laboratory Of Endocrinology Graduate School Of Integrated Science Yokohama City University
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- ウシの内側視索前野および視床下部内側底部におけるエストロジェンレセプターαの解析
- Vasotocin/Isotocin-immunoreactive Neurons in the Medaka Fish Brain Are Sexually Dimorphic and Their Numbers Decrease After Spawning in the Female(Endocrinology)
- RETROGRADE AND GOLGI STAINING STUDY OF MEDAKA FISH BRAIN : VASOTOCIN AND/OR ISOTOCIN MAY ACT AS NEUROMODULATOR