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首页> 外文期刊>Developmental biology >Formation of the genital ridges is preceded by a domain of ectopic Sox9-expressing cells in Lepidochelys olivacea.
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Formation of the genital ridges is preceded by a domain of ectopic Sox9-expressing cells in Lepidochelys olivacea.

机译:生殖脊的形成是在小鳞翅目小球藻中表达异位Sox9的细胞的结构域之前。

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摘要

Bipotential gonads represent the structural framework from which alternative molecular sex determination networks have evolved. Maintenance of Sox9 expression in Sertoli cells is required for the structural and functional integrity of male gonads in mammals and probably in most amniote vertebrates. However, spatial and temporal patterns of Sox9 expression have diversified along evolution. Species with temperature sex determination are an interesting predictive model since one of two alternative developmental outcomes, either ovary or testis occurs under controlled laboratory conditions. In the sea turtle Lepidochelys olivacea, Sox9 is expressed in the medullary cords of bipotential gonads when incubated at both female- or male-promoting temperature (FT or MT). Sox9 is then turned off in presumptive ovaries, while it remains turned on in testes. In the current study, Sox9 was used as a marker of the medullary cell lineage to investigate if the medullary cords originate from mesothelial cells at the genital ridges where Sox9 is upregulated, or, if they derive from a cell population specified at an earlier developmental stage, which maintains Sox9 expression. Using immunofluorescence and in situ hybridization, embryos were analyzed prior to, during and after gonadal sex determination. A T-shaped domain (T-Dom) formed by cytokeratin (CK), N-cadherin (Ncad) and SOX9-expressing cells was found at the upper part of the hindgut dorsal mesentery. The arms of the T-Dom were extended to both sides towards the ventromedial mesonephric ridge before the thickening of the genital ridges, indicating that they contained gonadal epithelial cell precursors. Thereafter, expression of Sox9 was maintained in medullary cords while it was downregulated at the surface epithelium of bipotential gonads in both FT and MT. This result contrasts with observations in mammals and birds, in which Sox9 upregulation starts at a later stage in the inner cells underlying the Sox9-negative surface epithelium, suggesting that the establishment of a self-regulatory Sox9 loop required for Sertoli cell determination has evolved. The T-shaped domain at the upper part of the hindgut dorsal mesentery found in the current study may represent the earliest precursor of the genital ridges, previously unnoticed in amniote vertebrates.
机译:双能性腺代表了替代性分子性别决定网络从其进化的结构框架。哺乳动物和大多数羊膜脊椎动物中雄性腺的结构和功能完整性需要维持Sertoli细胞中Sox9的表达。然而,Sox9表达的时空格局沿进化而多样化。具有温度性别决定性的物种是一个有趣的预测模型,因为在受控的实验室条件下,卵巢或睾丸是两种替代性发育结果之一。在海龟Lepidochelys olivacea中,当在雌性或雄性促进温度(FT或MT)下孵育时,Sox9在双能性腺的髓索中表达。然后在推测性卵巢中关闭Sox9,而在睾丸中保持打开状态。在当前的研究中,Sox9被用作髓样细胞谱系的标记物,以研究髓样线是否起源于Sox9上调的生殖器脊间皮细胞,或者它们是否来自早期发育阶段指定的细胞群,它保持Sox9的表达。使用免疫荧光和原位杂交,在确定性腺性别之前,期间和之后分析胚胎。在后肠背肠系膜的上部发现了由细胞角蛋白(CK),N-钙粘着蛋白(Ncad)和表达SOX9的细胞形​​成的T形结构域(T-Dom)。在生殖增厚之前,T-Dom的臂向腹侧中肾延伸至两侧,表明它们含有性腺上皮细胞前体。此后,在FT和MT中,在双电位性腺的表面上皮中下调Sox9的同时,髓索中仍保持Sox9的表达。该结果与在哺乳动物和鸟类中观察到的结果相反,在哺乳动物和鸟类中,Sox9上调在Sox9阴性表面上皮下的内部细胞中的较晚阶段开始,这表明确定Sertoli细胞所需的自我调节Sox9环已经建立。在本研究中发现的后肠后肠系膜上部的T形区域可能代表了最早的在羊膜脊椎动物中未发现的生殖脊的前体。

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