Evolution of multiple sex chromosomes in the spider genus Malthonica (Araneae: Agelenidae) indicates unique structure of the spider sex chromosome systems.

Jirí Král
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引用次数: 42

Abstract

Most spiders exhibit a multiple sex chromosome system, X(1)X(2)0, whose origin has not been satisfactorily explained. Examination of the sex chromosome systems in the spider genus Malthonica (Agelenidae) revealed considerable diversity in sex chromosome constitution within this group. Besides modes X(1)X(2)0 (M. silvestris) and X(1)X(2)X(3)0 (M. campestris), a neo-X(1)X(2)X(3)X(4)X(5)Y system in M. ferruginea was found. Ultrastructural analysis of spread pachytene spermatocytes revealed that the X(1)X(2)0 and X(1)X(2)X(3)0 systems include a pair of homomorphic sex chromosomes. Multiple X chromosomes and the pair exhibit an end-to-end pairing, being connected by attachment plaques. The X(1)X(2)X(3)X(4)X(5)Y system of M. ferruginea arose by rearrangement between the homomorphic sex chromosome pair and an autosome. Multiple X chromosomes and the sex chromosome pair do not differ from autosomes in a pattern of constitutive heterochromatin. Ultrastructural data on sex chromosome pairing in other spiders indicate that the homomorphic sex chromosome pair forms an integral part of the spider sex chromosome systems. It is suggested that this pair represents ancestral sex chromosomes of spiders, which generated multiple X chromosomes by non-disjunctions. Structural differentiation of newly formed X chromosomes has been facilitated by heterochromatinization of sex chromosome bivalents observed in prophase I of spider females.

Malthonica蜘蛛属(蜘蛛目:蜘蛛科)多条性染色体的进化表明了蜘蛛性染色体系统的独特结构。
大多数蜘蛛表现出多重性染色体系统,X(1)X(2)0,其起源尚未得到令人满意的解释。对Malthonica蜘蛛属(Agelenidae)的性染色体系统的研究表明,在这一群体中,性染色体构成具有相当大的多样性。除了M. silvestris的X(1)X(2)0模式和M. campestris的X(1)X(2)X(3)0模式外,还发现了M. ferruginea的neo-X(1)X(2)X(3)X(4)X(5)Y模式。对弥散性粗线精母细胞的超微结构分析表明,X(1)X(2)0和X(1)X(2)X(3)0系统包括一对同态性染色体。多个X染色体和这对染色体表现出端到端的配对,通过附着斑块连接在一起。铁豆的X(1)X(2)X(3)X(4)X(5)Y系统是由同态性染色体对和常染色体重排产生的。多个X染色体和性染色体对在组成异染色质的模式上与常染色体没有区别。其他蜘蛛的性染色体配对的超微结构数据表明,同态性染色体对构成了蜘蛛性染色体系统的一个组成部分。这对染色体代表了蜘蛛祖先的性染色体,它们通过不分离产生了多个X染色体。雌性蜘蛛I前期性染色体二价体的异染色化促进了新形成的X染色体的结构分化。
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