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11β-羟化酶缺失破坏斑马鱼的类固醇生成和生殖功能。

11β-Hydroxylase loss disrupts steroidogenesis and reproductive function in zebrafish.

机构信息

Department of Oncology & Metabolism, School of Medicine, University of Sheffield, Sheffield, UK.

The Bateson Centre, Department of Biomedical Science, Firth Court, University of Sheffield, Western Bank, Sheffield, UK.

出版信息

J Endocrinol. 2020 Nov;247(2):197-212. doi: 10.1530/JOE-20-0160.

Abstract

The roles of androgens in male reproductive development and function in zebrafish are poorly understood. To investigate this topic, we employed CRISPR/Cas9 to generate cyp11c1 (11β-hydroxylase) mutant zebrafish lines. Our study confirms recently published findings from a different cyp11c1-/- mutant zebrafish line, and also reports novel aspects of the phenotype caused by loss of Cyp11c1 function. We report that Cyp11c1-deficient zebrafish display predominantly female secondary sex characteristics, but may possess either ovaries or testes. Moreover, we observed that cyp11c1-/- mutant male zebrafish are profoundly androgen- and cortisol-deficient. These results provide further evidence that androgens are dispensable for testis formation in zebrafish, as has been demonstrated previously in androgen-deficient and androgen-resistant zebrafish. Herein, we show that the testes of cyp11c1-/- mutant zebrafish exhibit a disorganised tubular structure; and for the first time demonstrate that the spermatic ducts, which connect the testes to the urogenital orifice, are severely hypoplastic in androgen-deficient zebrafish. Furthermore, we show that spermatogenesis and characteristic breeding behaviours are impaired in cyp11c1-/- mutant zebrafish. Expression of nanos2, a type A spermatogonia marker, was significantly increased in the testes of Cyp11c1-deficient zebrafish, whereas expression of markers for later stages of spermatogenesis was significantly decreased. These observations indicate that in zebrafish, production of type A spermatogonia is androgen-independent, but differentiation of type A spermatogonia is an androgen-dependent process. Overall, our results demonstrate that whilst androgens are not required for testis formation, they play important roles in determining secondary sexual characteristics, proper organisation of seminiferous tubules, and differentiation of male germ cells.

摘要

雄激素在斑马鱼雄性生殖发育和功能中的作用知之甚少。为了研究这个课题,我们利用 CRISPR/Cas9 技术生成了 cyp11c1(11β-羟化酶)突变斑马鱼品系。我们的研究证实了最近发表的来自另一种 cyp11c1-/-突变斑马鱼品系的研究结果,并且还报告了 Cyp11c1 功能丧失引起的表型的新方面。我们报告说,Cyp11c1 缺陷的斑马鱼主要表现出雌性第二性特征,但可能具有卵巢或睾丸。此外,我们观察到 cyp11c1-/-突变雄性斑马鱼严重缺乏雄激素和皮质醇。这些结果进一步证明,雄激素对于斑马鱼睾丸的形成是可有可无的,这在以前的雄激素缺乏和雄激素抵抗的斑马鱼中已经得到证实。在这里,我们显示 cyp11c1-/-突变斑马鱼的睾丸表现出组织紊乱的管状结构;并且首次表明,连接睾丸和泌尿生殖孔的精管在雄激素缺乏的斑马鱼中严重发育不良。此外,我们表明,cyp11c1-/-突变斑马鱼的精子发生和特征繁殖行为受损。Cyp11c1 缺陷斑马鱼睾丸中 A 型精原细胞标志物 nanos2 的表达显著增加,而精子发生的后期阶段的标志物表达显著降低。这些观察结果表明,在斑马鱼中,A 型精原细胞的产生是雄激素非依赖性的,但是 A 型精原细胞的分化是一个雄激素依赖性的过程。总的来说,我们的结果表明,尽管雄激素对于睾丸的形成不是必需的,但它们在决定第二性特征、生精小管的适当组织以及雄性生殖细胞的分化方面发挥着重要作用。

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