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Molecular Evolution of piRNA and Transposon Control Pathways in Drosophila

机译:果蝇中piRNA的分子进化和转座子控制途径

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摘要

The mere prevalence and potential mobilization of transposable elements in eukaryotic genomes present challenges at both the organismal and population levels. Not only is transposition able to alter gene function and chromosomal structure, but loss of control over even a single active element in the germline can create an evolutionary dead end. Despite the dangers of coexistence, transposons and their activity have been shown to drive the evolution of gene function, chromosomal organization, and even population dynamics (Kazazian 2004). This implies that organisms have adopted elaborate means to balance both the positive and detrimental consequences of transposon activity. In this chapter, we focus on the fruit fly to explore some of the molecular clues into the long- and short-term adaptation to transposon colonization and persistence within eukaryotic genomes.
机译:真核生物基因组中转座因子的普遍流行和潜在动员在生物和种群水平上都提出了挑战。转座不仅能够改变基因功能和染色体结构,而且即使失去对种系中单个活性成分的控制,也会造成进化的死角。尽管存在共存的危险,但转座子及其活性已被证明可以驱动基因功能,染色体组织乃至种群动态的进化(Kazazian 2004)。这意味着生物体已经采取了精心设计的手段来平衡转座子活性的积极和有害后果。在本章中,我们将重点放在果蝇上,探索一些分子线索,以了解对真核生物基因组中转座子定殖和持久性的长期和短期适应。

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