首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Ontogenic Expression Profiles of Gonadotropins (fshb and Ihb) and Growth Hormone (gh) During Sexual Differentiation and Puberty Onset in Female Zebrafish
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Ontogenic Expression Profiles of Gonadotropins (fshb and Ihb) and Growth Hormone (gh) During Sexual Differentiation and Puberty Onset in Female Zebrafish

机译:在女性斑马鱼的性分化和青春期发作期间,促性腺激素(FSHB和IHB)和生长激素(GH)的组来表达谱

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In the zebrafish model, the ontogenic expression profiles of all pituitary hormones have been reported except gonadotropins, partly because they are not supposed to be expressed in the embryonic stage. The spatiotemporal expression patterns of gonadotropins, namely follicle-stimulating hormone (Fsh) and luteinizing hormone (Lh), in this species therefore remain largely unknown. As the master hormones controlling reproduction, the information on this issue would be valuable for understanding the roles of gonadotropins in early sexual development. Using double-colored fluorescent in situ hybridization (FISH) and realtime quantitative PCR (qPCR), this study was undertaken to analyze the ontogenic expression patterns of FSHbeta (fshb) and LHbeta (Ihb) subunits in the zebrafish pituitary, with particular emphasis on the stage of sexual differentiation (-25-30 dpf [days postfertilization]) and puberty onset (-45 dpf). As a control, growth hormone (gh) was also examined throughout the study. The zebrafish were collected at different time points of early development, including 4, 5, 6, 8, 10, 13, 16, 19, 22, 25, 28, 38, 48, and 53 dpf. The head of each fish, including the brain and pituitary, was sampled for double-colored FISH analysis, whereas the body was fixed for histological examination of sex and gonadal developmental stage. Our results showed that the expression of fshb started much earlier than that of Ihb, with its mRNA signal detectable (-2-3 cells per pituitary) shortly after hatching (4 dpf). In contrast, Ihb expression became detectable much later, at the time of sex differentiation (-25 dpf). In female zebrafish, the first morphological sign for puberty is the first wave of follicle transition from the primary growth to previtellogenic stage, which occurs around 45 dpf and is marked by the appearance of cortical alveoli in the oocytes. Interestingly, the number of Ihb-expressing cells was very low (-5-6 cells per pituitary) before this transition but increased dramatically during and after the transition. In contrast, the expression of fshb was abundant before puberty, with only a slight increase in cell number during puberty onset. The increased expression of fshb and Ihb at puberty was also supported by real-time qPCR analysis at the single pituitary level. Interestingly, the fshb-expressing cells changed their spatial distribution significantly during puberty, from a predominantly peripheral to a central location. As the control, the expression of gh was abundant throughout prepubertal and pubertal periods.
机译:在斑马鱼模型中,除了促性腺激素外,已经报告了所有垂体激素的血细胞表达谱,部分原因是它们不应该在胚胎阶段表达。因此,在该物质中,卵泡刺激激素(FSH)和培氏素激素(LH)的时空表达模式,因此在该物质中仍然很大程度上是未知的。作为控制繁殖的主激素,关于该问题的信息对于了解促性腺激素在早期性发展中的作用是有价值的。使用双色荧光原位杂交(鱼类)和实时定量PCR(QPCR),本研究分析了斑马鱼垂体中的FSHBETA(FSHB)和LHBETA(IHB)亚基的植入表达模式,特别强调了性分化阶段(-25-30dpf [天后期])和青春期发作(-45 dpf)。作为一种对照,在整个研究中也检查了生长激素(GH)。在早期发育的不同时间点收集斑马鱼,其中包括4,5,6,8,10,13,16,19,22,25,28,38,48和53 dpf。针对双色鱼类分析采样,包括大脑和垂体,包括大脑和垂体的每条鱼的头部,而身体是针对性和性腺发育阶段的组织学检查而定制的。我们的结果表明,FSHB的表达比IHB的表达更早,其mRNA信号在孵化后不久可检测到(每脑垂体 - 2-3个细胞)(4 dpf)。相比之下,在性别分化时(-25dpf)时,IHB表达将在后来变得可检测到。在女性斑马鱼中,青春期的第一个形态标志是从初级生长到预期生长阶段的第一波卵泡过渡,其发生在45dpf约45dpf中,并且由卵母细胞中皮质肺泡的外观标记。有趣的是,在这种过渡之前,表达IHB表达细胞的数量非常低(每脑皮中的-5-6个细胞),但在过渡期间和之后急剧增加。相比之下,青春期前的FSHB的表达丰富,仅在青春期发作期间细胞数略有增加。通过单脑垂体水平的实时QPCR分析,还支持FSHB和IHB在青春期的增加。有趣的是,FSHB的表达细胞在青春期期间显着改变它们的空间分布,从主要的外围到一个中心位置。作为对照,GH的表达在整个Prepubertal和Pubertal时期都是丰富的。

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