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野生型果蝇端粒区域的DNA组织与多态性

DNA organization and polymorphism of a wild-type Drosophila telomere region.

作者信息

Walter M F, Jang C, Kasravi B, Donath J, Mechler B M, Mason J M, Biessmann H

机构信息

Developmental Biology Center, University of California, Irvine, CA 92717, USA.

出版信息

Chromosoma. 1995 Dec;104(4):229-41. doi: 10.1007/BF00352254.

Abstract

Telomeres at the ends of linear chromosomes of eukaryotes protect the chromosome termini from degradation and fusion. While telomeric replication/elongation mechanisms have been studied extensively, the functions of subterminal sequences are less well understood. In general, subterminal regions can be quite polymorphic, varying in size from organism to organism, and differing among chromosomes within an organism. The subterminal regions of Drosophila melanogaster are not well characterized today, and it is not known which and how many different components they contain. Here we present the molecular characterization of DNA components and their organization in the subterminal region of the left arm of chromosome 2 of the Oregon RC wild-type strain of D. melanogaster, including a minisatellite with a 457bp repeat length. Two distinct polymorphic arrangements at 2L were found and analyzed, supporting the Drosophila telomere elongation model by retrotransposition. The high incidence of terminal chromosome deficiencies occurring in natural Drosophila populations is discussed in view of the telomere structure at 2L.

摘要

真核生物线性染色体末端的端粒可保护染色体末端免于降解和融合。虽然端粒复制/延长机制已得到广泛研究,但亚端粒序列的功能却鲜为人知。一般来说,亚端粒区域可能具有高度多态性,其大小因生物体而异,并且在一个生物体内的不同染色体之间也存在差异。目前,黑腹果蝇的亚端粒区域尚未得到充分表征,也不清楚它们包含哪些以及有多少种不同的成分。在此,我们展示了黑腹果蝇俄勒冈RC野生型品系2号染色体左臂亚端粒区域DNA成分的分子特征及其组织方式,其中包括一个重复长度为457bp的小卫星。我们发现并分析了2L处两种不同的多态性排列,这为反转录转座的果蝇端粒延长模型提供了支持。鉴于2L处的端粒结构,我们讨论了自然果蝇种群中末端染色体缺失的高发生率。

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