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中文摘要
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描述(由申请人提供):剂量补偿是指在异配子物种中,通过改变一个性别中x连锁基因的表达来抵消雄性和雌性之间x染色体数目的差异。非重组Y染色体的退化是性染色体进化的一个普遍方面。y染色体的退化产生了选择压力,使两性中x连锁基因的表达水平平衡,从而推动了剂量补偿的进化。米兰达果蝇(Drosophila miranda)是d.p ruoobscura的近亲(其基因组序列已获得),具有新形成的性染色体系统。其新y染色体正处于从普通常染色体向简并y染色体转变的过程中,因此,新x染色体正在进行部分剂量补偿。我们将利用D. miranda系统,使用比较和功能基因组学方法来研究剂量补偿“在行动”的演变。
英文摘要
DESCRIPTION (provided by applicant): Dosage compensation is the process by which the expression of X-linked genes is altered in one sex to counterbalance the difference in X-chromosome number between males and females in a heterogametic species. Degeneration of the non-recombining Y chromosome is a general facet of sex chromosome evolution. Y-chromosome degeneration creates selective pressure to equalize expression levels of X-linked genes in the two sexes, thus driving the evolution of dosage compensation. Drosophila miranda, a close relative of D. pseudoobscura (whose genome sequence is available) has a newly formed sex chromosome system. Its neo-Y chromosome is in transition from an ordinary autosome to a degenerate Y. In response, the neo-X is evolving partial dosage compensation. We will exploit the D. miranda system to study the evolution of dosage compensation 'in action' using a comparative and functional genomics approach. Comparative sequence analysis combined with expression profiles of neo-sex linked genes will allow us to link molecular changes occurring on the neo-sex chromosomes to changes in gene expression. We will distinguish whether dosage compensation evolves on a gene-by-gene basis - in response to the formation of a degenerate copy on the Y chromosome - or whether dosage compensation evolves in discrete blocks along the X chromosome, involving several genes at a time. We will test whether maladapted or dosage- compensated genes show reduced levels of expression on the neo-Y, what types of changes reduce gene expression on the neo-Y, and whether certain classes of genes are more prone to degeneration than others. Finally, we will attempt to map de novo cis-acting binding sites on the neo-X chromosome that recruit the dosage compensation machinery. We will investigate the molecular nature of these binding sites, and test whether they were fixed by positive selection. This research will constitute significant progress in our understanding of the mechanism of dosage compensation in Drosophila and how it evolves.
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Aging and the evolution of the sex-specific chromatin structure in Drosophila
Heterochromatin and Toxic YChromosomes
The formation of Heterochromatin on evolving Y chromosomes
The formation of Heterochromatin on evolving Y chromosomes
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