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青鳉胚胎中两种体细胞性腺前体群体的鉴定与谱系追踪。

Identification and lineage tracing of two populations of somatic gonadal precursors in medaka embryos.

作者信息

Nakamura Shuhei, Kobayashi Daisuke, Aoki Yumiko, Yokoi Hayato, Ebe Youko, Wittbrodt Joachim, Tanaka Minoru

机构信息

Laboratory of Molecular Genetics for Reproduction, National Institute for Basic Biology, Higashiyama, Myodaiji, Okazaki 444-8787, Japan.

出版信息

Dev Biol. 2006 Jul 15;295(2):678-88. doi: 10.1016/j.ydbio.2006.03.052. Epub 2006 Apr 7.

Abstract

The gonad contains two major cell lineages, germline and somatic cells. Little is known, however, about the somatic gonadal cell lineage in vertebrates. Using fate mapping studies and ablation experiments in medaka fish (Oryzias latipes), we determined that somatic gonadal precursors arise from the most posterior part of the sdf-1a expression domain in the lateral plate mesoderm at the early segmentation stage; this region has the properties of a gonadal field. Somatic gonadal precursors in this field, which continuously express sdf-1a, move anteriorly and medially to the prospective gonadal area by convergent movement. By the stage at which these somatic gonadal precursors have become located adjacent to the embryonic body, the precursors no longer replace the surrounding lateral plate mesoderm, becoming spatially organized into two distinct populations. We further show that, prior to reaching the prospective gonadal area, these populations can be distinguished by expression of either ftz-f1 or sox9b. These results clearly indicate that different populations of gonadal precursors are present before the formation of a single gonadal primordium, shedding new light on the developmental processes of somatic gonadal cell and subsequent sex differentiation.

摘要

性腺包含两种主要的细胞谱系,即生殖细胞和体细胞。然而,关于脊椎动物的体细胞性腺细胞谱系,人们了解甚少。通过在青鳉鱼(Oryzias latipes)中进行命运图谱研究和消融实验,我们确定体细胞性腺前体起源于早期分割阶段侧板中胚层中sdf-1a表达域的最后端部分;该区域具有性腺场的特性。该场中的体细胞性腺前体持续表达sdf-1a,通过汇聚运动向前和向内移动到预期的性腺区域。当这些体细胞性腺前体定位到与胚胎体相邻的阶段时,前体不再替代周围的侧板中胚层,而是在空间上组织成两个不同的群体。我们进一步表明,在到达预期的性腺区域之前,这些群体可以通过ftz-f1或sox9b的表达来区分。这些结果清楚地表明,在单个性腺原基形成之前就存在不同群体的性腺前体,这为体细胞性腺细胞的发育过程及随后的性别分化提供了新的线索。

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