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首页> 外文期刊>Genesis: the journal of genetics and development >SOX9 has both conserved and novel roles in marsupial sexual differentiation
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SOX9 has both conserved and novel roles in marsupial sexual differentiation

机译:SOX9在有袋动物性别分化中既有保守作用又有新颖作用

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In addition to an essential role in chondrogenesis, SOX9 is a highly conserved and integral part of the testis determining pathway in human and mouse. To determine whether SOX9 is involved in sex determination in noneutherian mammals we cloned a marsupial orthologue and studied its expression. The tammar wallaby SOX9 gene proved to be highly conserved, and maps to a region of the tammar genome syntenic to human chromosome 17. Marsupial SOX9 transcripts were detected by RT-PCR in the developing limb buds and both the developing ovary and testis from the first sign of gonadal development through to adulthood. Northern blot, in situ hybridisation, and immunohistochemical analyses showed that SOX9 reaches high levels of expression in the developing testis, where it is confined to the Sertoli cell nuclei, and the brain. This is similar to the expression pattern seen in human and mouse embryos and is consistent with a conserved role for SOX9 in vertebrate brain, skeletal, and gonadal development. In addition, SOX9 was expressed in the developing scrotum and mammary gland primordium regions of the tammar up to the time of birth. SOX9 protein was also detected in the developing Wolffian duct epithelium in the male mesonephros. These previously undescribed locations of SOX9 expression suggest that SOX9 may play additional roles in the differentiation of the marsupial reproductive system.
机译:除了在软骨形成中起重要作用外,SOX9是人类和小鼠睾丸决定途径中高度保守且不可或缺的部分。为了确定SOX9是否参与非真性哺乳动物的性别确定,我们克隆了有袋直系同源物并研究了其表达。事实证明,tammar小袋鼠SOX9基因是高度保守的,并映射到与人类17号染色​​体同义的tammar基因组区域。通过RT-PCR从第一代的发育中的肢芽以及发育的卵巢和睾丸中检测到有袋的SOX9转录本性腺发育到成年的迹象。 Northern杂交,原位杂交和免疫组化分析表明,SOX9在发育中的睾丸中达到高水平的表达,而睾丸仅局限于Sertoli细胞核和大脑。这类似于在人类和小鼠胚胎中看到的表达模式,并且与SOX9在脊椎动物脑,骨骼和性腺发育中的保守作用相一致。另外,直到出生时,SOX9仍在淡色的发育期阴囊和乳腺原基区中表达。在雄性中肾的发育中的沃尔夫氏管上皮中也检测到了SOX9蛋白。这些先前未描述的SOX9表达位置表明,SOX9可能在有袋生殖系统的分化中发挥其他作用。

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