首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Anatomical distribution and cellular basis for high levels of aromatase activity in the brain of teleost fish: aromatase enzyme and mRNA expression identify glia as source.
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Anatomical distribution and cellular basis for high levels of aromatase activity in the brain of teleost fish: aromatase enzyme and mRNA expression identify glia as source.

机译:硬骨鱼脑中高水平芳香化酶活性的解剖分布和细胞基础:芳香化酶和mRNA表达确定胶质细胞是来源。

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摘要

Although teleost fish have higher levels of brain aromatase activity than any other vertebrate group, its function remains speculative, and no study has identified its cellular basis. A previous study determined aromatase activity in a vocal fish, the plainfin midshipman (Porichthys notatus), and found highest levels in the telencephalon and lower levels in the sonic hindbrain, which was dimorphic between and within (males) sexes. We have now localized aromatase-containing cells in the midshipman brain both by immunocytochemistry using teleost-specific aromatase antibodies and by in situ hybridization using midshipman-specific aromatase probes. Aromatase-immuno-reactivity and mRNA hybridization signal are consistent with relative levels of aromatase activity in different brain regions: concentrated in the dimorphic sonic motor nucleus, in a band just beneath the periaqueductal gray in the midbrain, in ventricular regions in the hypothalamus, and highest levels in the telencephalon especially in preoptic and ventricular areas. Surprisingly, double-label immunofluorescence does not show aromatase-immunoreactive colocalization in neurons, but instead in radial glia throughout the brain. This is the first study to identify aromatase expression mostly, if not entirely, in glial cells under normal rather than brain injury-dependent conditions. The abundance of aromatase in teleosts may represent an adaptation linked to continual neurogenesis that is known to occur throughout an individual's lifetime among fishes. The localization of aromatase within the intersexually and intrasexually dimorphic vocal-motor circuit further implies a function in the expression of alternative male reproductive phenotypes and, more generally, the development of natural, individual variation of specific brain nuclei.
机译:尽管硬骨鱼类的脑芳香酶活性水平高于其他任何脊椎动物群,但其功能仍是推测性的,尚无研究确定其细胞基础。先前的一项研究确定了有声鱼平原鳍中轮船(Porichthys notatus)的芳香化酶活性,发现其末梢脑中的最高水平和声后脑中的较低水平,这在(雄性)性别之间和内部是二态的。现在,我们已经通过使用硬骨质特异性芳香化酶抗体的免疫细胞化学技术和通过使用中间shipman特异性芳香化酶探针的原位杂交来定位了在shipmanman大脑中含有芳香酶的细胞。芳香酶免疫反应性和mRNA杂交信号与不同大脑区域中芳香酶活性的相对水平一致:集中在双态声运动核中,在中脑导水管周围灰色以下,下丘脑室区中的一条带中,以及在末梢脑中水平最高,特别是在视前和心室区域。出乎意料的是,双标记免疫荧光在神经元中未显示出芳香化酶-免疫反应共定位,而是在整个大脑的radial状神经胶质中。这是第一项在正常而非脑损伤依赖性条件下鉴定神经胶质细胞中芳香酶表达的研究。硬骨鱼中丰富的芳香化酶可能代表了与持续神经发生有关的适应性变化,已知该持续性神经发生在鱼类的整个一生中。芳香酶在两性和两性双态发声运动回路中的定位进一步暗示了在替代性雄性生殖表型的表达中的功能,并且更普遍地,特定脑核的自然,个体变异的发展。

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