Sex determination in the germ line.

Ronald Ellis, Tim Schedl
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引用次数: 119

Abstract

Sexual identity is one of a few basic parameters that specify how development should proceed. Although sex determination has profound effects on many tissues, its most ancient and fundamental role is ensuring that some germ cells become sperm, and others become oocytes or eggs. Spermatocytes and oocytes are usually produced in male and female animals, respectively, but C. elegans is uniquely suitable for studying the control of these cell fates because both types of cells are made from a common pool of progenitors in XX hermaphrodites. Extensive genetic and molecular studies have shown that the sexual fate of germ cells in C. elegans is controlled by the same genes that regulate sexual identity in other parts of the animal. However, this regulatory pathway has additional features that are unique to the germ line. First, several genes, like the three fogs, act only in germ cells. Second, the three fem genes act in concert with targets of tra-1 to control germ cell fates, but do not act this way in the soma. Third, translational repression of tra-2 is essential for hermaphrodite spermatogenesis. Fourth, translational repression of fem-3 is needed for oogenesis. In this review, we present genetic and molecular models for how these processes work, and summarize the evidence upon which they are built.

生殖系中的性别决定。
性别认同是确定发展应该如何进行的几个基本参数之一。尽管性别决定对许多组织有着深远的影响,但其最古老和最基本的作用是确保一些生殖细胞成为精子,而另一些则成为卵母细胞或卵子。精母细胞和卵母细胞通常分别在雄性和雌性动物中产生,但秀丽隐杆线虫特别适合研究这些细胞命运的控制,因为这两种类型的细胞都是由XX雌雄同体的共同祖细胞池产生的。广泛的遗传和分子研究表明,秀丽隐杆线虫生殖细胞的性别命运是由调节动物其他部位性别身份的相同基因控制的。然而,这种调节途径具有生殖系特有的额外特征。首先,有几个基因,比如三种雾,只在生殖细胞中起作用。其次,这三种fem基因与tra-1的靶标协同作用,控制生殖细胞的命运,但在体细胞中不这样起作用。第三,tra-2的翻译抑制对雌雄同体精子发生至关重要。第四,在卵子发生过程中,翻译抑制是必需的。在这篇综述中,我们提出了这些过程如何工作的遗传和分子模型,并总结了它们建立的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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