首页> 外文学位 >Expression and Regulation of Gonadotropins (fshb, lhb) and Growth Hormone (gh) during Ovarian Differentiation and Pubertal Onset of Female Zebrafish.
【24h】

Expression and Regulation of Gonadotropins (fshb, lhb) and Growth Hormone (gh) during Ovarian Differentiation and Pubertal Onset of Female Zebrafish.

机译:雌性斑马鱼卵巢分化和青春期发作期间促性腺激素(fshb,lhb)和生长激素(gh)的表达和调控。

获取原文
获取原文并翻译 | 示例

摘要

Being an estrogenic chemical and its ubiquitous presence in our daily lives, the effects of bisphenal A (BPA) on human health have received tremendous attention in recent years. Studies on the effects of BPA on female reproductive system have shown that early exposure to BPA during the prenatal or postnatal period impairs reproductive functions, including disruption of ovarian development, advanced pubertal onset, and the induction of an early, and persistent estrus. In teleost fish, few studies have been reported on the effects of BPA on reproductive function, except in medaka, Kryptolebias marmoratus, turbot, goldfish, common carp, brown trout and zebrafish. Despite these studies, the effects of BPA on reproductive axis remain largely unknown in teleost fish. On the other hand, in the zebrafish model, the major developmental events of reproduction, including the timing of puberty onset, the spatiotemporal expression patterns of key pituitary hormones such as GTHs (FSH and LH) during gonadal differentiation and puberty development remain largely unknown. Therefore, the information on these issues in zebrafish not only is valuable for understanding the roles of GTHs in early sexual development; also facilitate our study on the effects of BPA on the reproductive axis in the zebrafish.;Using histology analysis, double-colored fluorescent in situ hybridization (FISH), real-time qPCR, proteomic analysis and in vivo treatment, this study was undertaken to explore the timing of sex differentiation and puberty onset, the ontogenic expression patterns of FSH (fshb) and LH ( lhb) subunits in the zebrafish pituitary with particular emphasis on the stage of sexual differentiation and puberty onset, and the effects of BPA on the reproductive axis in zebrafish during prepubertal period. To define the timeline of sex differentiation and puberty onset, and the ontogenic expression profiles of GTHs, the zebrafish were collected at different time points from early development stage to sexual maturation. The gonadal developmental stage was analyzed by histological examination. For the expression profiles of GTHs, the head of each fish including the brain and pituitary was sampled for FISH analysis. To investigate the influence of BPA on the reproductive function, Juvenile zebrafish of 20 day post-fertilization (dpf) were exposed to BPA (10 microM) for 20 days followed by sampling the brain, pituitary, liver and ovary for histological, in situ hybridization, expression analyses and proteomic analyses at 40 dpf. 17beta-estradiol (E2, 10 nM) and testosterone (T, 10 nM) were also used as a positive control.;In female zebrafish, the first morphological sign for puberty is the first wave of follicle transition from the primary growth (PG) to previtellogenic stage (PV), our results showed that it occurs around 45 day post fertilization (dpf). Meanwhile, the puberty onset was highly depending on the somatic growth. The expression of fshb was much earlier than that of lhb with its mRNA signal detectable (∼2-3 cells/pituitary) shortly after hatching (4 dpf). In contrast, lhb expression became detectable at the time of sex differentiation (∼25 dpf). Interestingly, the number of lhb-expressing cells was very low (∼5-6 cells/pituitary) before puberty but increased dramatically during and after puberty onset. In contrast, the expression of fshb was abundant before puberty with only a slight increase in cell number during puberty onset. Our result strongly suggests an important role for LH at the puberty onset of female zebrafish. On the other hand, although BPA and E2 both promoted ovarian differentiation, they significantly suppressed the ovarian growth afterwards in the zebrafish. Meanwhile, both BPA and E2, but not T, dramatically decreased the expression of fshb in the pituitary, which was well correlated with the suppression of ovarian size. However, the expression of the upstream regulators of GTHs, including kiss1, kiss2, gnrh2 and gnrh3, was not affected by BPA and E2. Interestingly, at the liver level, BPA and E2 displayed different effects. E2 induced abdominal swelling due to a significant hepatic hyperplasia. However, BPA exposure had no such effect on the liver. These results indicate that BPA has estrogenic effects on female reproduction, but it does not mimic E2 in all aspects, at least for the dose tested in the present study.
机译:双酚A(BPA)作为一种雌激素性化学品及其在我们日常生活中的普遍存在,近年来对人类健康的影响受到了极大关注。 BPA对女性生殖系统影响的研究表明,在产前或产后早期接触BPA会损害生殖功能,包括破坏卵巢发育,晚期青春期发作以及诱发早期持续性发情。在硬骨鱼类中,很少有关于双酚A对生殖功能影响的研究报道,除了在aka高加索,K鱼、,、金鱼,鲤鱼,鳟鱼和斑马鱼中。尽管进行了这些研究,但是在硬骨鱼中,BPA对生殖轴的影响仍然未知。另一方面,在斑马鱼模型中,生殖的主要发育事件,包括青春期发作的时间,性腺分化和青春期发育过程中关键垂体激素如GTH(FSH和LH)的时空表达模式仍然未知。因此,关于斑马鱼中这些问题的信息不仅对于了解GTH在早期性发育中的作用非常有价值;同时,也方便了我们对BPA对斑马鱼生殖轴影响的研究。利用组织学分析,双色荧光原位杂交(FISH),实时定量PCR,蛋白质组学分析和体内治疗,本研究旨在探索性别分化和青春期发作的时机,斑马鱼垂体中FSH(fshb)和LH(lhb)亚基的本体表达模式,特别着重于性别分化和青春期的发作以及BPA对生殖的影响青春期前斑马鱼的轴。为了确定性别分化和青春期发作的时间表,以及GTH的本体表达谱,从发育早期到性成熟的不同时间点收集斑马鱼。通过组织学检查分析了性腺的发育阶段。对于GTHs的表达谱,对每条鱼的头部(包括大脑和垂体)进行采样以进行FISH分析。为了研究BPA对生殖功能的影响,将受精后20天(dpf)的幼年斑马鱼暴露于BPA(10 microM)中20天,然后对脑,垂体,肝和卵巢进行取样以进行组织学,原位杂交,40 dpf的表达分析和蛋白质组学分析。 17beta-雌二醇(E2,10 nM)和睾丸激素(T,10 nM)也被用作阳性对照。;在雌性斑马鱼中,青春期的第一个形态学标志是卵泡从初级生长(PG)的第一波转变。到玻璃体形成前阶段(PV),我们的结果表明它发生在受精后45天左右(dpf)。同时,青春期的发作高度依赖于体细胞的生长。孵化后不久(4 dpf),fshb的表达比lhb的表达要早得多,其mRNA信号可检测到(〜2-3个细胞/垂体)。相反,在性别分化时(约25 dpf),可检测到lhb表达。有趣的是,在青春期之前,表达lhb的细胞数量非常少(约5-6个细胞/垂体),但在青春期和发作后急剧增加。相反,fshb的表达在青春期之前丰富,而在青春期发作期间细胞数量仅略有增加。我们的结果强烈暗示了LH在雌性斑马鱼青春期发作中的重要作用。另一方面,尽管BPA和E2都促进了卵巢的分化,但是它们随后显着抑制了斑马鱼的卵巢生长。同时,BPA和E2而非T均显着降低了垂体中fshb的表达,这与抑制卵巢大小密切相关。但是,GTH的上游调节子,包括kiss1,kiss2,gnrh2和gnrh3的表达不受BPA和E2的影响。有趣的是,在肝脏水平上,BPA和E2表现出不同的作用。 E2引起的腹部肿胀归因于明显的肝脏增生。但是,BPA暴露对肝脏没有这种作用。这些结果表明,BPA对女性生殖有雌激素作用,但至少在本研究中测试的剂量下,它并非在所有方面都模仿E2。

著录项

  • 作者

    Chen, Weiting.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Biology Animal Physiology.;Biology Molecular.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号