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转座元件导致果蝇广泛倒位的产生。

Generation of a widespread Drosophila inversion by a transposable element.

作者信息

Cáceres M, Ranz J M, Barbadilla A, Long M, Ruiz A

机构信息

Departament de Genètica i de Microbiologia, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain.

出版信息

Science. 1999 Jul 16;285(5426):415-8. doi: 10.1126/science.285.5426.415.

Abstract

Although polymorphic inversions in Drosophila are very common, the origin of these chromosomal rearrangements is unclear. The breakpoints of the cosmopolitan inversion 2j of D. buzzatii were cloned and sequenced. Both breakpoints contain large insertions corresponding to a transposable element. It appears that the two pairs of target site duplications generated upon insertion were exchanged during the inversion event, and that the inversion arose by ectopic recombination between two copies of the transposon that were in opposite orientations. This is apparently the mechanism by which transposable elements generate natural inversions in Drosophila.

摘要

尽管果蝇中的多态倒位非常普遍,但这些染色体重排的起源尚不清楚。克隆并测序了巴氏果蝇(D. buzzatii)世界性倒位2j的断点。两个断点都包含与转座元件相对应的大插入片段。似乎在倒位事件期间,插入时产生的两对靶位点重复序列发生了交换,并且该倒位是由处于相反方向的两个转座子拷贝之间的异位重组引起的。这显然是转座元件在果蝇中产生自然倒位的机制。

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