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黑腹果蝇转基因品系中hobo转座元件的传播模式。

Transmission pattern of hobo transposable element in transgenic lines of Drosophila melanogaster.

作者信息

Ladeveze V, Galindo I, Chaminade N, Pascual L, Periquet G, Lemeunier F

机构信息

IBMIG, Université de Poitiers, France.

出版信息

Genet Res. 1998 Apr;71(2):97-107. doi: 10.1017/s0016672398003127.

Abstract

This study is an attempt to trace the fate of hobo elements in the genomes of E strains of Drosophila melanogaster that have been transfected with pHFL1, a plasmid containing an autonomous hobo. Such long-term population studies (over 105 generations) could be very useful for better understanding the population and genomic dynamics of transposable elements and their pattern of insertions. Molecular analyses of hobo elements in the transfected lines were performed using Southern blots of XhoI-digested genomic DNAs. The complete element was observed in all six injected lines. In two lines we observed, at generation 100, two deleted elements, which did not correspond to Th1 and Th2. The results obtained by the in situ method show that the number of hybridization sites increases in each line and prove that the hobo element may be amplified in an RM genome. The hobo activity does not seem to be systematically correlated with the number of hobo elements. After generation 85, the evolution of the hobo element's insertion site number depends on the injected line. In all lines, the total number of insertions remains quite small, between 0 and 11. Hobo elements are located on each of the chromosomal arms. We describe 'hotspots'-insertion sites present in all lines and in all generations. On the 3R arm, a short inversion appeared once at generation 85.

摘要

本研究旨在追踪已用pHFL1(一种含有自主hobo的质粒)转染的黑腹果蝇E品系基因组中hobo元件的命运。这种长期群体研究(超过105代)对于更好地理解转座元件的群体和基因组动态及其插入模式可能非常有用。使用经XhoI消化的基因组DNA进行Southern印迹分析,对转染品系中的hobo元件进行分子分析。在所有六个注射品系中均观察到完整元件。在两个品系中,我们在第100代观察到两个缺失元件,它们与Th1和Th2不对应。原位方法获得的结果表明,每个品系中杂交位点的数量增加,证明hobo元件可能在RM基因组中扩增。hobo活性似乎与hobo元件的数量没有系统相关性。在第85代之后,hobo元件插入位点数量的演变取决于注射品系。在所有品系中,插入总数仍然相当少,在0到11之间。hobo元件位于每条染色体臂上。我们描述了“热点”——所有品系和所有世代中都存在的插入位点。在3R臂上,在第85代出现了一次短倒位。

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