黑腹果蝇基因组转座因子的固定。

Xulio Maside, Stavroula Assimacopoulos, Brian Charlesworth
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引用次数: 28

摘要

我们已经在分子水平上研究了四个案例,在这些案例中,黑腹龙中间重复DNA探针一致地杂交到从黑腹龙自然群体中取样的染色体上的特定带。两个对应于一个rooo和一个Stalker元件的真正固定,其他是原位杂交技术的人工产物,由探针中转座元件(te)两侧的基因组DNA引起。这两个固定元件位于β -异染色质(分别为20A和80B)中,并嵌入到其他元件的大簇中,其中许多元件也可能是固定的。我们还发现证据表明这种积累是一个持续的过程。这些结果支持了te在基因组非重组部分积累的假设。根据最近关于te衍生的小干扰rna作为异染色质形成的顺式决定因素的作用的证据,讨论了它们对te在确定宿主基因组染色质结构方面的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fixation of transposable elements in the Drosophila melanogaster genome.

We have investigated at the molecular level four cases in which D. melanogaster middle repetitive DNA probes consistently hybridized to a particular band on chromosomes sampled from a D. melanogaster natural population. Two corresponded to true fixations of a roo and a Stalker element, and the others were artefacts of the in situ hybridization technique caused by the presence of genomic DNA flanking the transposable elements (TEs) in the probes. The two fixed elements are located in the beta-heterochromatin (20A and 80B, respectively) and are embedded in large clusters of other elements, many of which may also be fixed. We also found evidence that this accumulation is an ongoing process. These results support the hypothesis that TEs accumulate in the non-recombining part of the genome. Their implications for the effects of TEs on determining the chromatin structure of the host genomes are discussed in the light of recent evidence for the role of TE-derived small interfering-RNAs as cis -acting determinants of heterochromatin formation.

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