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鸟类的性别决定机制

Sex-Determining Mechanism in Avians.

作者信息

Kuroiwa Asato

机构信息

Hokkaido University, Sapporo, Hokkaido, Japan.

出版信息

Adv Exp Med Biol. 2017;1001:19-31. doi: 10.1007/978-981-10-3975-1_2.

Abstract

The sex of birds is determined by inheritance of sex chromosomes at fertilization. The embryo with two Z chromosomes (ZZ) develops into a male; by contrast, the embryo with Z and W chromosomes (ZW) becomes female. Two theories are hypothesized for the mechanisms of avian sex determination that explain how genes carried on sex chromosomes control gonadal differentiation and development during embryogenesis. One proposes that the dosage of genes on the Z chromosome determines the sexual differentiation of undifferentiated gonads, and the other proposes that W-linked genes dominantly determine ovary differentiation or inhibit testis differentiation. Z-linked DMRT1, which is a strong candidate avian sex-determining gene, supports the former hypothesis. Although no candidate W-linked gene has been identified, extensive evidence for spontaneous sex reversal in birds and aneuploid chimeric chickens with an abnormal sex chromosome constitution strongly supports the latter hypothesis. After the sex of gonad is determined by a gene(s) located on the sex chromosomes, gonadal differentiation is subsequently progressed by several genes. Developed gonads secrete sex hormones to masculinize or feminize the whole body of the embryo. In this section, the sex-determining mechanism as well as the genes and sex hormones mainly involved in gonadal differentiation and development of chicken are introduced.

摘要

鸟类的性别在受精时由性染色体的遗传决定。具有两条Z染色体(ZZ)的胚胎发育为雄性;相比之下,具有Z和W染色体(ZW)的胚胎则发育为雌性。关于鸟类性别决定机制有两种假说,解释了性染色体上携带的基因如何在胚胎发生过程中控制性腺的分化和发育。一种假说认为Z染色体上基因的剂量决定了未分化性腺的性别分化,另一种假说认为W连锁基因主导卵巢分化或抑制睾丸分化。Z连锁的DMRT1是鸟类性别决定基因的有力候选者,支持前一种假说。虽然尚未鉴定出候选的W连锁基因,但鸟类自发性别反转以及具有异常性染色体组成的非整倍体嵌合鸡的大量证据有力地支持了后一种假说。性腺的性别由位于性染色体上的一个或多个基因决定后,性腺随后通过几个基因进行分化。发育成熟的性腺分泌性激素,使胚胎的整个身体男性化或女性化。在本节中,将介绍鸡的性别决定机制以及主要参与性腺分化和发育的基因和性激素。

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