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BMP15 功能缺失导致季节性产卵的大西洋鲑鱼排卵失败。

Loss of bmp15 function in the seasonal spawner Atlantic salmon results in ovulatory failure.

机构信息

Research Group Reproduction and Developmental Biology, Institute of Marine Research, Bergen, Norway.

Research Group Reproduction and Developmental Biology, Institute of Marine Research, Matre Research Station, Matredal, Norway.

出版信息

FASEB J. 2024 Jul 31;38(14):e23837. doi: 10.1096/fj.202400370R.

Abstract

Bone morphogenetic protein 15 (BMP15) is an oocyte-specific growth factor important for successful female reproduction in mammals. While mutations in BMP15/Bmp15 cause ovulatory deficiency and/or infertility in certain mammalian species, loss of bmp15 in zebrafish, a continuous spawner and the only bmp15 knockout model in fish to date, results in complete arrest of follicle development and later female-to-male sex reversal, preventing to examine effects on ovulation/fertilization. Here, we used Atlantic salmon, a seasonal spawner, and generated bmp15 mutants to investigate ovarian development and fertility. Histological and morphometric analyses revealed that in biallelic frameshift (bmp15 fs/fs) mutant ovaries, folliculogenesis started earlier, resulting in an advanced development compared to wild-type (WT) controls, accompanied by a weaker expression of the (early) oocyte-specific factor figla. This precocious ovarian development was followed in bmp15 fs/fs females by enhanced follicle atresia during vitellogenic stages. Although genes involved in steroid synthesis and signaling (star, cyp11b, cyp17a1 and esr1) were dramatically higher in late vitellogenic bmp15 fs/fs mutant ovaries, estradiol-17β plasma levels were lower than in WT counterparts, potentially reflecting compensatory changes at the level of ovarian gene expression. At spawning, bmp15 fs/fs females displayed lower gonado-somatic index values and reduced oocyte diameter, and the majority (71.4%), showed mature non-ovulating ovaries with a high degree of atresia. The remaining (28.6%) females spawned eggs but they either could not be fertilized or, upon fertilization, showed severe malformations and embryonic mortality. Our results show that Bmp15 is required for proper follicle recruitment and growth and later ovulatory success in Atlantic salmon, providing an alternative candidate target to induce sterility in farmed salmon. Moreover, since loss of bmp15 in salmon, in contrast to zebrafish, does not result in female-to-male sex change, this is the first mutant model in fish allowing further investigations on Bmp15-mediated functions in the ovulatory period.

摘要

骨形态发生蛋白 15(BMP15)是一种卵母细胞特异性生长因子,对哺乳动物的成功繁殖至关重要。虽然 BMP15/Bmp15 突变会导致某些哺乳动物物种的排卵缺陷和/或不育,但在斑马鱼中缺失 bmp15,斑马鱼是一种连续产卵者,也是迄今为止鱼类中唯一的 bmp15 敲除模型,会导致卵泡发育完全停滞,并随后发生雌性到雄性的性反转,从而无法检查其对排卵/受精的影响。在这里,我们使用了大西洋鲑鱼,一种季节性产卵者,并生成了 bmp15 突变体,以研究卵巢发育和生育能力。组织学和形态计量学分析表明,在双等位基因移码突变(bmp15 fs/fs)突变体的卵巢中,卵泡发生更早开始,导致与野生型(WT)对照相比,卵泡发育更为提前,同时伴随着(早期)卵母细胞特异性因子 figla 的表达减弱。在 bmp15 fs/fs 雌性中,这种早熟的卵巢发育随后伴随着卵黄生成阶段的增强卵泡闭锁。尽管类固醇合成和信号转导(star、cyp11b、cyp17a1 和 esr1)相关基因在晚期 bmp15 fs/fs 突变体卵巢中的表达显著升高,但雌二醇-17β 的血浆水平低于 WT 对应物,这可能反映了卵巢基因表达水平的代偿性变化。在产卵时,bmp15 fs/fs 雌性的性腺-体指数值较低,卵母细胞直径减小,并且大多数(71.4%)表现出成熟的非排卵卵巢,其闭锁程度较高。其余(28.6%)的雌性产卵,但它们要么不能受精,要么受精后表现出严重的畸形和胚胎死亡。我们的研究结果表明,Bmp15 对于大西洋鲑鱼的卵泡募集和生长以及后期排卵成功是必需的,为在养殖鲑鱼中诱导不育提供了另一个候选靶标。此外,由于与斑马鱼不同,鲑鱼中缺失 bmp15 不会导致雌性到雄性的性转变,这是鱼类中第一个允许进一步研究 Bmp15 在排卵期间介导功能的突变模型。

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