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SOX9 在尾蟾 Pleurodeles waltl 性腺发育过程中的时空表达模式。

Temporal and spatial SOX9 expression patterns in the course of gonad development of the caudate amphibian Pleurodeles waltl.

机构信息

EA 4421: Signalisation Genomique et Recherche Translationnelle en Oncologie, Nancy-Université, Nancy, France.

出版信息

J Exp Zool B Mol Dev Evol. 2011 May 15;316B(3):199-211. doi: 10.1002/jez.b.21390. Epub 2010 Dec 8.

Abstract

The SOX family of transcription factors is thought to regulate gene expression in a wide variety of developmental processes. Namely, SOX9 expression is conserved in vertebrate sex determination or differentiation. Nevertheless, information about caudate amphibians is lacking. In this study, we provide data on Pleurodeles waltl, a species that displays a ZZ/ZW genetic mode of sex determination and a temperature-dependent mechanism of female-to-male sex reversal. Phylogenetic analysis of SOX9 P. waltl ortholog reveals that the deduced protein segregates from the group of anuran and could be more closely related to amniote than to anamniote. However, SOX9 lacks the PQA-rich domain present in amniotes. In larvae, SOX9 is expressed in both sexes in gonad-mesonephros complexes as soon as stage 42, before gonad differentiation. At stage 54(60d) at which testis differentiation is already in progress, analyses of isolated gonads reveal a male-enriched expression of SOX9, which was quantified by real-time PCR. At the end of metamorphosis (stage 56), SOX9 shows a nuclear localization only in the testis. In adults, SOX9 is still expressed in testes and ovaries. In the ovary, SOX9 is found in oocytes from stage I to stage VI but it is never detected in the nucleus. Our results suggest that in P. waltl, like in non mammalian vertebrates, SOX9 could play a role during the late phase of gonad differentiation rather than in sex determination. Its role in germ cells of the adult ovary has still to be elucidated.

摘要

SOX 转录因子家族被认为在广泛的发育过程中调节基因表达。具体来说,SOX9 的表达在脊椎动物性别决定或分化中是保守的。然而,有关尾两栖动物的信息却缺乏。在这项研究中,我们提供了 Pleurodeles waltl 的数据,该物种显示出 ZZ/ZW 的遗传性别决定模式和温度依赖的雌性到雄性性别反转机制。SOX9 P. waltl 同源物的系统发育分析表明,推导的蛋白质与无尾两栖动物的群体分离,并且与羊膜动物的关系可能比与无羊膜动物的关系更密切。然而,SOX9 缺乏羊膜动物中存在的 PQA 丰富结构域。在幼虫中,SOX9 在性腺-中肾复合体中在性别分化之前的阶段 42 就存在于两性中表达。在睾丸分化已经进行的阶段 54(60d)时,对分离的性腺进行分析表明 SOX9 在睾丸中表达丰富,通过实时 PCR 进行定量。在变态结束时(阶段 56),SOX9 仅在睾丸中显示核定位。在成年期,SOX9 仍在睾丸和卵巢中表达。在卵巢中,SOX9 从 I 期到 VI 期的卵母细胞中都有发现,但从未在核中检测到。我们的结果表明,在 P. waltl 中,与非哺乳动物脊椎动物一样,SOX9 可能在性腺分化的后期阶段发挥作用,而不是在性别决定中发挥作用。其在成年卵巢生殖细胞中的作用仍有待阐明。

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