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生殖细胞缺失的鲑鱼不存在与青春期相关的性激素产生。

Sex steroid production associated with puberty is absent in germ cell-free salmon.

机构信息

Institute of Marine Research, P.O. Box 1870, Nordnes, NO-5817, Bergen, Norway.

Institute of Marine Research, Matre Aquaculture Research Station, 5984, Matredal, Norway.

出版信息

Sci Rep. 2017 Oct 3;7(1):12584. doi: 10.1038/s41598-017-12936-w.

Abstract

In all vertebrates studied so far, germ cells are not required for pubertal maturation of the gonadal steroidogenic system, subsequent development of secondary sex characteristics and reproductive behavior. To explore if the absence of germ cells affects puberty or growth in Atlantic salmon, germ cell-free (GCF), dnd knockout and wild type (WT) postsmolts were stimulated to enter puberty. No GCF fish entered puberty, whereas 66.7% (males) and 30% (females) WT fish completed or entered puberty, respectively. Expression of genes related to steroidogenesis (star, cyp17a1, cyp11β, cyp19a1a), gonadal somatic cells (insl3, amh, igf3), oocytes (bmp15), gonadotropin receptors (fshr, lhcgr), and pituitary gonadotropic cells (fshb, lhb, gnrhr4) showed an immature status and failure to up-regulate gonadal sex steroid production in male and female GCF fish was also reflected in low or undetectable plasma sex steroids (11-ketotestosterone, estradiol-17β and testosterone). A gender difference (high in females, low in males) was found in the expression of star and cyp17a1 in GCF fish. No clear difference in growth was detected between GCF and immature WT fish, while growth was compromised in maturing WT males. We demonstrate for the first time in a vertebrate that germ cells are required for pubertal activation of the somatic steroidogenic cells.

摘要

在迄今为止研究的所有脊椎动物中,生殖细胞对于性腺类固醇生成系统的青春期成熟、随后的第二性征和生殖行为的发育并不是必需的。为了探究生殖细胞缺失是否会影响大西洋鲑鱼的青春期或生长,我们对无生殖细胞(GCF)、dnd 敲除和野生型(WT)幼鲑进行了刺激以进入青春期。没有 GCF 鱼进入青春期,而 66.7%(雄性)和 30%(雌性)WT 鱼分别完成或进入青春期。与类固醇生成(star、cyp17a1、cyp11β、cyp19a1a)、性腺体细胞(insl3、amh、igf3)、卵母细胞(bmp15)、促性腺激素受体(fshr、lhcgr)和垂体促性腺细胞(fshb、lhb、gnrhr4)相关的基因表达显示出不成熟的状态,并且 GCF 鱼的雄性和雌性生殖细胞缺失导致性腺性激素产生无法上调,这也反映在低或无法检测到的血浆性激素(11-酮睾酮、雌二醇-17β和睾酮)中。在 GCF 鱼中,star 和 cyp17a1 的表达存在性别差异(雌性高,雄性低)。在 GCF 和未成熟 WT 鱼之间未检测到明显的生长差异,而成熟 WT 雄性的生长受到了损害。我们首次在脊椎动物中证明,生殖细胞对于体细胞类固醇生成细胞的青春期激活是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19c4/5626747/d70eefd70c05/41598_2017_12936_Fig1_HTML.jpg

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