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新开发的大鼠简单序列长度多态性(SSLP)标记的特征分析

Characterization of newly developed SSLP markers for the rat.

作者信息

Watanabe T K, Ono T, Okuno S, Mizoguchi-Miyakita A, Yamasaki Y, Kanemoto N, Hishigaki H, Oga K, Takahashi E, Irie Y, Bihoreau M T, James M R, Lathrop G M, Takagi T, Nakamura Y, Tanigami A

机构信息

Otsuka GEN Research Institute, Otsuka Pharmaceutical Co., Ltd., Tokushima, Japan.

出版信息

Mamm Genome. 2000 Apr;11(4):300-5. doi: 10.1007/s003350010056.

Abstract

We have isolated more than 12,000 clones containing microsatellite sequences, mainly consisting of (CA)n dinucleotide repeats, using genomic DNA from the BN strain of laboratory rat. Data trimming yielded 9636 non-redundant microsatellite sequences, and we designed oligonucleotide primer pairs to amplify 8189 of these. PCR amplification of genomic DNA from five different rat strains yielded clean amplification products for 7040 of these simple-sequence-length-polymorphism (SSLP) markers; 3019 markers had been mapped previously by radiation hybrid (RH) mapping methods (Nat Genet 22, 27-36, 1998). Here we report the characterization of these newly developed microsatellite markers as well as the release of previously unpublished microsatellite marker information. In addition, we have constructed a genome-wide linkage map of 515 markers, 204 of which are derived from our new collection, by genotyping 48 F2 progeny of (OLETFxBN)F2 crosses. This map spans 1830.9 cM, with an average spacing of 3.56 cM. Together with our ongoing project of preparing a whole-genome radiation hybrid map for the rat, this dense linkage map should provide a valuable resource for genetic studies in this model species.

摘要

我们使用实验室大鼠BN品系的基因组DNA,分离出了12000多个含有微卫星序列的克隆,这些序列主要由(CA)n二核苷酸重复序列组成。数据修剪后得到9636个非冗余微卫星序列,我们设计了寡核苷酸引物对来扩增其中的8189个。对五种不同大鼠品系的基因组DNA进行PCR扩增,结果显示这些简单序列长度多态性(SSLP)标记中有7040个获得了清晰的扩增产物;3019个标记此前已通过辐射杂种(RH)作图方法进行了定位(《自然遗传学》22卷,27 - 36页,1998年)。在此,我们报告这些新开发的微卫星标记的特征以及此前未发表的微卫星标记信息的发布。此外,我们通过对(OLETFxBN)F2杂交的48个F2后代进行基因分型,构建了一个包含515个标记的全基因组连锁图谱,其中204个标记来自我们的新收集。该图谱跨度为1830.9厘摩,平均间距为3.56厘摩。连同我们正在进行的为大鼠绘制全基因组辐射杂种图谱的项目,这个密集的连锁图谱应为该模式物种的遗传学研究提供宝贵资源。

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