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利用限制性内切核酸酶测定自然种群中线粒体DNA序列的相关性。III. 技术与潜在应用。

The use of restriction endonucleases to measure mitochondrial DNA sequence relatedness in natural populations. III. Techniques and potential applications.

作者信息

Lansman R A, Shade R O, Shapira J F, Avise J C

出版信息

J Mol Evol. 1981;17(4):214-26. doi: 10.1007/BF01732759.

Abstract

Restriction endonucleases and agarose gel electrophoresis have been used to demonstrate extensive nucleotide sequence diversity in mitochondrial DNA (mtDNA) within and between conspecific populations of rodents and other mammals. Cleavage of mtDNA samples with a relatively small number of endonucleases provides information concerning the phylogenetic relatedness of individual organisms which cannot now be readily obtained by any other type of molecular analysis. This information is qualitatively different from that available from the study of nuclear genes or gene products because the mitochondrial genome is inherited intact from the female parent and is not altered by recombination or meiotic segregation. The requirements for large tissue samples and laborious DNA purification procedures have imposed severe limitations on the kinds of population surveys in which this technique could be utilized. Here, we show that these difficulties can be overcome by using DNA-DNA hybridization to detect minute amounts of mtDNA in crude tissue fractions which can be more easily and rapidly prepared from very small amounts of tissue without the use of expensive and immobile laboratory equipment. The techniques are described in detail in an effort to make restriction analysis of mtDNA available to biologists who may be unfamiliar with current DNA technology.

摘要

限制性内切核酸酶和琼脂糖凝胶电泳已被用于证明啮齿动物和其他哺乳动物同种群体内部以及不同群体之间线粒体DNA(mtDNA)存在广泛的核苷酸序列多样性。用相对少量的内切核酸酶切割mtDNA样本,可提供有关个体生物系统发育相关性的信息,而这些信息目前无法通过任何其他类型的分子分析轻易获得。该信息在性质上不同于从核基因或基因产物研究中获得的信息,因为线粒体基因组是从母本完整遗传而来,不会因重组或减数分裂分离而改变。对大量组织样本的需求以及繁琐的DNA纯化程序,严重限制了可使用该技术的群体调查类型。在此,我们表明,通过使用DNA-DNA杂交来检测粗组织组分中的微量mtDNA,可以克服这些困难。粗组织组分可以更轻松、快速地从极少量组织中制备,而无需使用昂贵且固定的实验室设备。本文详细描述了这些技术,以使可能不熟悉当前DNA技术的生物学家能够进行mtDNA的限制性分析。

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