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核糖体DNA基因在豌豆蚜X染色体关联中的作用

The role of rDNA genes in X chromosome association in the aphid Acyrthosiphon pisum.

作者信息

Mandrioli M, Bizzaro D, Giusti M, Manicardi G C, Bianchi U

机构信息

Dipartimento di Biologia Animale, Università di Modena, Italy.

出版信息

Genome. 1999 Jun;42(3):381-6. doi: 10.1139/g98-145.

Abstract

Silver staining of mitotic metaphases of the aphid A. pisum reveals the presence of argentophilic bridges connecting the two X chromosomes. The presence of nucleolar material connecting sex chromosomes seems to be quite a common phenomenon in organisms belonging to very different phyla, and suggests a role of nucleolar proteins in chromosome association and disjunction. In somatic cells of A. pisum, bridges connecting X chromosomes are detectable not only after silver staining but also after CMA3 staining. This finding suggests that GC rich DNA is involved in this type of association. Molecular analysis of rDNA intergenic spacers shows several 247 bp repeats containing short sequences having a high level of homology with the chi sequence of Escherichia coli and with the consensus core region of human hypervariable minisatellites. Moreover, each 247 bp repeat presents a perfect copy of a promoter sequence for polymerase I. These aphid repeats show structural homologies with a 240 bp repeat, which is considered to be responsible for sex chromosome pairing in Drosophila, not only in view of their common presence within rDNA spacers but also for their length and structure. The presence of chi sequences in the IGS of A. pisum, by promoting unequal crossing-over between rDNA genes, could thus give rise to the nucleolar organizing region (NOR) heteromorphism described in different aphid species. Although X pairing at NORs is fundamental in aphid male determination, the presence of heteromorphism of rDNA genes does not inhibit male determination in the A. pisum clone utilized for our experiments.

摘要

对豌豆蚜有丝分裂中期进行银染,结果显示存在连接两条X染色体的嗜银桥。在属于不同门的生物体中,连接性染色体的核仁物质的存在似乎是一种相当常见的现象,这表明核仁蛋白在染色体的联会和分离中发挥作用。在豌豆蚜的体细胞中,连接X染色体的桥不仅在银染后可检测到,在CMA3染色后也能检测到。这一发现表明富含GC的DNA参与了这种类型的联会。对rDNA基因间隔区的分子分析显示,有几个247 bp的重复序列,其中包含一些短序列,这些短序列与大肠杆菌的chi序列以及人类高变微卫星的共有核心区域具有高度同源性。此外,每个247 bp的重复序列都有一个聚合酶I启动子序列的完美拷贝。这些蚜虫的重复序列与一个240 bp的重复序列在结构上具有同源性,该240 bp重复序列被认为与果蝇的性染色体配对有关,这不仅是因为它们在rDNA间隔区内普遍存在,还因为它们的长度和结构。豌豆蚜IGS中chi序列的存在,通过促进rDNA基因之间的不等交换,可能会导致在不同蚜虫物种中所描述的核仁组织区(NOR)多态性。尽管NOR处的X染色体配对在蚜虫雄性决定中至关重要,但rDNA基因多态性的存在并不抑制我们实验中所用豌豆蚜克隆的雄性决定。

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