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一种用于分离多个氯化铯纯化DNA样本的小规模五小时程序:应用于从哺乳动物、昆虫、高等植物、藻类、酵母和细菌来源进行分离。

A small-scale five-hour procedure for isolating multiple samples of CsCl-purified DNA: application to isolations from mammalian, insect, higher plant, algal, yeast, and bacterial sources.

作者信息

Weeks D P, Beerman N, Griffith O M

出版信息

Anal Biochem. 1986 Feb 1;152(2):376-85. doi: 10.1016/0003-2697(86)90423-9.

Abstract

A rapid and simple procedure is described for obtaining CsCl-purified DNA from multiple small samples of cells or tissue. The DNA is recovered in a high-molecular-weight form (greater than or equal to 50 kb) that is readily cleaved with restriction enzymes. Sufficient quantities of DNA (10-50 micrograms) are recovered to allow multiple analyses by Southern blotting and most cloning procedures. The isolation procedure involves addition of intact cells or powders of frozen tissues directly to a simple lysis buffer containing detergent (sodium dodecyl sulfate or sodium sarcosinate) and high concentrations of EDTA. Ultra-high-speed centrifugation of CsCl gradients allows the isolation of DNA from 10 different samples in as little as 5 h. Applications are described for mammalian cells (HeLa cells), insect tissues (Drosophila melanogaster adults and pupa, Manduca sexta pupa, and Musca domestica pupa), higher plant tissues (Vicia faba leaves and meristems), algal cells (walled and wall-less Chlamydomonas reinhardi), yeast cells (Saccharomyces cerevisiae), and bacterial cells (Escherichia coli spheroplasts for preparation of both chromosomal and plasmid DNA). The procedure can be scaled up with larger sample sizes and longer centrifugation times to provide bulk quantities of DNA.

摘要

本文描述了一种从多个细胞或组织小样本中获取经氯化铯纯化的DNA的快速简便方法。回收的DNA呈高分子量形式(大于或等于50 kb),易于用限制性内切酶切割。回收的DNA量足够(10 - 50微克),可用于通过Southern印迹法进行多次分析以及大多数克隆操作。该分离方法包括将完整细胞或冷冻组织粉末直接加入含有去污剂(十二烷基硫酸钠或肌氨酸钠)和高浓度EDTA的简单裂解缓冲液中。通过氯化铯梯度超速离心,可在短短5小时内从10个不同样本中分离出DNA。文中介绍了该方法在哺乳动物细胞(HeLa细胞)、昆虫组织(果蝇成虫和蛹、烟草天蛾蛹和家蝇蛹)、高等植物组织(蚕豆叶和分生组织)、藻类细胞(有壁和无壁莱茵衣藻)、酵母细胞(酿酒酵母)以及细菌细胞(用于制备染色体和质粒DNA的大肠杆菌原生质体)中的应用。该方法可通过增大样本量和延长离心时间进行扩展,以提供大量的DNA。

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