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用于构建血吸虫染色体物理图谱的荧光原位杂交技术。

FISH techniques for constructing physical maps on schistosome chromosomes.

作者信息

Hirai H, LoVerde P T

机构信息

Primate Research Institute, Kyoto University, Inuyama, Aichi, Japan.

出版信息

Parasitol Today. 1995 Aug;11(8):310-4. doi: 10.1016/0169-4758(95)80048-4.

Abstract

In an effort to provide useful information about parasites important in tropical diseases, the WHO has initiated genome mapping projects for a number of parasites. One goal of this effort is to establish physical maps of the genomes of the targeted parasites. Multicellular parasites (helminths) contain various numbers of chromosomes, some large, that condense during the cell cycle. Here Hirohisa Hirai and Phil LoVerde present details of fluorescence in situ hybridization as a means to localize genes and DNA fragments to schistosome chromosomes. Although the techniques presented are for schistosome chromosomes, they are applicable to any system where the chromosomes condense at metaphase.

摘要

为了提供有关在热带疾病中起重要作用的寄生虫的有用信息,世界卫生组织已启动了多个寄生虫的基因组图谱绘制项目。这项工作的一个目标是建立目标寄生虫基因组的物理图谱。多细胞寄生虫(蠕虫)含有数量不等的染色体,其中一些很大,在细胞周期中会浓缩。在这里,平井博久和菲尔·洛弗德介绍了荧光原位杂交的细节,这是一种将基因和DNA片段定位到血吸虫染色体上的方法。虽然所介绍的技术是针对血吸虫染色体的,但它们适用于任何染色体在中期浓缩的系统。

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