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用于构建富含微卫星的基因组DNA文库的通用接头和连接程序。

Universal linker and ligation procedures for construction of genomic DNA libraries enriched for microsatellites.

作者信息

Hamilton M B, Pincus E L, Di Fiore A, Fleischer R C

机构信息

Georgetown University, Department of Biology, Washington, DC 20057-1229, USA.

出版信息

Biotechniques. 1999 Sep;27(3):500-2, 504-7. doi: 10.2144/99273st03.

Abstract

Microsatellite loci are highly informative genetic markers useful for population genetic studies, linkage mapping and parentage determination. Methods to identify novel microsatellite loci commonly use subtractive hybridization to enrich small-insert genomic libraries for repeat sequences. A critical step in enrichment is attachment of an oligonucleotide linker to genomic DNA fragments so that repeat-containing sequences can be recovered by PCR for cloning. Current linkers and ligation methods rely on single restriction enzymes to size-fraction genomic DNA and generate complementary ends. These restriction enzyme/linker combinations are often species-specific, give poor recovery of repeat-enriched DNA and yield library inserts that are not a broad sample of the genome. We have developed a blunt-end linker, named SNX for its restriction sites, that allows the use of combinations of restriction enzymes to digest the majority of genomic DNA into the 200-1000-bp range. SNX is attached to genomic DNA with a simultaneous ligation/restriction reaction that is highly efficient and improves recovery of sequences after subtractive hybridization. SNX can be used for microsatellite enrichment in any species, since ligation is independent of the restriction enzymes used to size-fraction genomic DNA. These methods improve current repeat-enrichment strategies, resulting in representative small-insert libraries with a very high proportion of positive clones.

摘要

微卫星位点是高度信息丰富的遗传标记,可用于群体遗传学研究、连锁图谱构建和亲子鉴定。鉴定新型微卫星位点的方法通常使用消减杂交来富集小插入基因组文库中的重复序列。富集过程中的一个关键步骤是将寡核苷酸接头连接到基因组DNA片段上,以便通过PCR回收含重复序列的片段用于克隆。目前的接头和连接方法依赖于单一限制酶对基因组DNA进行大小分级并产生互补末端。这些限制酶/接头组合通常具有物种特异性,重复序列富集DNA的回收率低,并且产生的文库插入片段不能广泛代表基因组。我们开发了一种平端接头,因其限制位点而命名为SNX,它允许使用多种限制酶组合将大部分基因组DNA消化到200 - 1000 bp范围内。SNX通过高效的同时连接/限制反应连接到基因组DNA上,提高了消减杂交后序列的回收率。由于连接与用于基因组DNA大小分级的限制酶无关,SNX可用于任何物种的微卫星富集。这些方法改进了当前的重复序列富集策略,从而产生具有非常高比例阳性克隆的代表性小插入文库。

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