von Hofsten Jonas, Olsson Per-Erik
Department of Molecular Biology, Umeå University, Umeå, Sweden.
Reprod Biol Endocrinol. 2005 Nov 10;3:63. doi: 10.1186/1477-7827-3-63.
Sex determination is the process deciding the sex of a developing embryo. This is usually determined genetically; however it is a delicate process, which in many cases can be influenced by environmental factors. The mechanisms controlling zebrafish sex determination and differentiation are not known. To date no sex linked genes have been identified in zebrafish and no sex chromosomes have been identified. However, a number of genes, as presented here, have been linked to the process of sex determination or differentiation in zebrafish. The zebrafish FTZ-F1 genes are of central interest as they are involved in regulating interrenal development and thereby steroid biosynthesis, as well as that they show expression patterns congruent with reproductive tissue differentiation and function. Zebrafish can be sex reversed by exposure to estrogens, suggesting that the estrogen levels are crucial during sex differentiation. The Cyp19 gene product aromatase converts testosterone into 17 beta-estradiol, and when inhibited leads to male to female sex reversal. FTZ-F1 genes are strongly linked to steroid biosynthesis and the regulatory region of Cyp19 contains binding sites for FTZ-F1 genes, further linking FTZ-F1 to this process. The role of FTZ-F1 and other candidates for zebrafish sex determination and differentiation is in focus of this review.
性别决定是确定发育中胚胎性别的过程。这通常由基因决定;然而,这是一个微妙的过程,在许多情况下会受到环境因素的影响。控制斑马鱼性别决定和分化的机制尚不清楚。迄今为止,斑马鱼中尚未鉴定出与性别相关的基因,也未发现性染色体。然而,如下文所述,一些基因已与斑马鱼的性别决定或分化过程相关联。斑马鱼的FTZ-F1基因备受关注,因为它们参与调节肾上腺皮质发育,从而参与类固醇生物合成,而且它们的表达模式与生殖组织的分化和功能一致。暴露于雌激素会使斑马鱼发生性逆转,这表明雌激素水平在性别分化过程中至关重要。Cyp19基因产物芳香化酶将睾酮转化为17β-雌二醇,抑制该酶会导致雄性向雌性性逆转。FTZ-F1基因与类固醇生物合成密切相关,Cyp19的调控区域含有FTZ-F1基因的结合位点,这进一步将FTZ-F1与该过程联系起来。FTZ-F1以及其他斑马鱼性别决定和分化候选基因的作用是本综述的重点。