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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Gonadotropins and Growth Hormone Family Characterization in an Endangered Siluriform Species, Steindachneridion parahybae (Pimelodidae): Relationship With Annual Reproductive Cycle and Induced Spawning in Captivity
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Gonadotropins and Growth Hormone Family Characterization in an Endangered Siluriform Species, Steindachneridion parahybae (Pimelodidae): Relationship With Annual Reproductive Cycle and Induced Spawning in Captivity

机译:濒临绝种的拟变态物种,扑热息肉(Selindachneridion parahybae(Pimelodidae))中的促性腺激素和生长激素家族特征:与年繁殖周期和人工饲养的产卵的关系

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摘要

The aim of this study was to identify and characterize pituitary cells of Steindachneridion parahybae females in captivity, highlighting the possible relationship with reproductive disorders at this level, since this species shows oocyte final maturation, ovulation and spawning dysfunction in captivity. The localization and distribution of growth hormone (GH), prolactin (PRL), somatolactin (SL), beta-luteinizing hormone (beta-LH), and beta-follicle stimulating hormone (beta-FSH) immunoreactive (-ir) cells in the adenohypophysis was studied by immunohistochemical and Western blot methods. In addition, cellular morphometric analyses and semi-quantification of ir-cells optical density (OD) during the annual reproductive cycle and after artificial induced spawning (AIS) were performed. Results showed that the distribution and general localization of pituitary cell types were similar to that of other teleost species. However, the morphometrical study of adenohypophysial cells showed differences along the reproductive cycle and following AIS. In general, females at the vitellogenic stage presented greater OD values for GH, PRL and SL than at other maturation stages (previtellogenic and regression stages), probably indicating an increased cellular activity during this stage. Conversely, beta-LH OD did not vary during the annual reproductive cycle. After AIS, beta-LH, SL and GH ir-cells showed an increase in OD values suggesting a possible involvement on oocyte final maturation, ovulation and spawning or a feedback control on the brain-pituitary-gonads axis. Reproductive dysfunction in S. parahybae females in captivity may be due to alteration of the synthesis pathways of beta-LH. In addition, GH family of hormones could modulate associated mechanisms that influence the reproductive status in this species. (C) 2015 Wiley Periodicals, Inc.
机译:这项研究的目的是鉴定和鉴定人工饲养的副鞭毛虫的垂体细胞,并强调在这一水平上可能与生殖障碍有关,因为该物种显示出人工饲养的卵母细胞最终成熟,排卵和产卵功能障碍。生长激素(GH),催乳素(PRL),生长抑素(SL),β黄体生成素(beta-LH)和β卵泡刺激素(beta-FSH)免疫反应(-ir)细胞的定位和分布通过免疫组织化学和蛋白质印迹方法研究腺垂体。此外,在年度生殖周期中以及人工诱导的产卵后(AIS),进行了细胞形态分析和ir细胞光密度(OD)的半定量。结果表明,垂体细胞类型的分布和总体定位与其他硬骨鱼类相似。然而,腺垂体细胞的形态计量学研究显示了沿着生殖周期和随后的AIS的差异。一般而言,处于卵黄形成阶段的女性的GH,PRL和SL的OD值要高于其他成熟阶段(成卵前和退化阶段)的OD值,这可能表明该阶段的细胞活性增加。相反,β-LHOD在年度繁殖周期中没有变化。 AIS后,β-LH,SL和GH ir细胞显示OD值升高,表明可能参与了卵母细胞的最终成熟,排卵和产卵,或可能在脑-垂体-性腺轴上进行了反馈控制。人工饲养的副猪链球菌雌性的生殖功能障碍可能是由于β-LH合成途径的改变。此外,GH激素家族可以调节影响该物种生殖状态的相关机制。 (C)2015威利期刊公司

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