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果蝇核糖体基因家族的上层结构。

Superstructure of the Drosophila ribosomal gene family.

作者信息

Williams S M, Robbins L G, Cluster P D, Allard R W, Strobeck C

机构信息

Department of Zoology, University of Alberta, Edmonton, Canada.

出版信息

Proc Natl Acad Sci U S A. 1990 Apr;87(8):3156-60. doi: 10.1073/pnas.87.8.3156.

Abstract

Determining the spatial organization of middle repetitive DNA has proven difficult for several reasons. Repeated arrays are often so large that molecular methods alone cannot resolve their organization, and the lack of phenotypic markers within arrays limits the value of classical genetic analysis. We have characterized the superstructure of one repeated gene family, the ribosomal gene family of Drosophila melanogaster, by a combination of recombinational and molecular analyses of spacer-length variants. The resulting genetic maps demonstrate that some spacer variants are widely dispersed, while others are limited in their distribution. Moreover, exchange among ribosomal DNA (DNA encoding rRNA) arrays was often unequal, leading to a prediction of little or no relationship between physical location in an array and relatedness of gene family members. Extensions of our procedure may be generally useful for mapping the superstructure of repetitive DNA.

摘要

确定中度重复DNA的空间组织已被证明很困难,原因有几个。重复阵列通常非常大,以至于仅靠分子方法无法解析其组织方式,而且阵列中缺乏表型标记限制了经典遗传分析的价值。我们通过对间隔区长度变异体进行重组和分子分析相结合的方法,对一个重复基因家族——黑腹果蝇的核糖体基因家族的超结构进行了表征。由此产生的遗传图谱表明,一些间隔区变异体广泛分散,而另一些则分布有限。此外,核糖体DNA(编码rRNA的DNA)阵列之间的交换往往是不平等的,这导致预测阵列中的物理位置与基因家族成员的亲缘关系之间几乎没有或没有关系。我们方法的扩展可能普遍适用于绘制重复DNA的超结构图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b85/53853/d090c03ed001/pnas01033-0300-a.jpg

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