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BAC 克隆重叠群的物理图谱,覆盖绵羊 MHC Ⅱ类基因座 a 和 b 之间整个染色体的插入片段。

A physical map of a BAC clone contig covering the entire autosome insertion between ovine MHC Class IIa and IIb.

机构信息

School of Life Sciences, Shihezi University, Xinjiang 832003, China.

出版信息

BMC Genomics. 2012 Aug 16;13:398. doi: 10.1186/1471-2164-13-398.

Abstract

BACKGROUND

The ovine Major Histocompatibility Complex (MHC) harbors genes involved in overall resistance/susceptibility of the host to infectious diseases. Compared to human and mouse, the ovine MHC is interrupted by a large piece of autosome insertion via a hypothetical chromosome inversion that constitutes ~25% of ovine chromosome 20. The evolutionary consequence of such an inversion and an insertion (inversion/insertion) in relation to MHC function remains unknown. We previously constructed a BAC clone physical map for the ovine MHC exclusive of the insertion region. Here we report the construction of a high-density physical map covering the autosome insertion in order to address the question of what the inversion/insertion had to do with ruminants during the MHC evolution.

RESULTS

A total of 119 pairs of comparative bovine oligo primers were utilized to screen an ovine BAC library for positive clones and the orders and overlapping relationships of the identified clones were determined by DNA fingerprinting, BAC-end sequencing, and sequence-specific PCR. A total of 368 positive BAC clones were identified and 108 of the effective clones were ordered into an overlapping BAC contig to cover the consensus region between ovine MHC class IIa and IIb. Therefore, a continuous physical map covering the entire ovine autosome inversion/insertion region was successfully constructed. The map confirmed the bovine sequence assembly for the same homologous region. The DNA sequences of 185 BAC-ends have been deposited into NCBI database with the access numbers HR309252 through HR309068, corresponding to dbGSS ID 30164010 through 30163826.

CONCLUSIONS

We have constructed a high-density BAC clone physical map for the ovine autosome inversion/insertion between the MHC class IIa and IIb. The entire ovine MHC region is now fully covered by a continuous BAC clone contig. The physical map we generated will facilitate MHC functional studies in the ovine, as well as the comparative MHC evolution in ruminants.

摘要

背景

绵羊主要组织相容性复合体(MHC)包含宿主对传染病总体抗性/易感性相关的基因。与人类和小鼠相比,绵羊 MHC 被一条通过假设的染色体倒位插入的大片染色体所打断,该倒位构成了绵羊染色体 20 的约 25%。这种倒位和插入(倒位/插入)与 MHC 功能的进化后果仍然未知。我们之前构建了一个不包括插入区域的绵羊 MHC 的 BAC 克隆物理图谱。在这里,我们报告了一个高分辨率物理图谱的构建,该图谱覆盖了染色体的插入区域,以解决在 MHC 进化过程中,倒位/插入与反刍动物之间的关系问题。

结果

总共使用了 119 对比较牛寡核苷酸引物来筛选绵羊 BAC 文库中的阳性克隆,并通过 DNA 指纹分析、BAC 末端测序和序列特异性 PCR 确定鉴定出的克隆的顺序和重叠关系。共鉴定出 368 个阳性 BAC 克隆,其中 108 个有效克隆被排列成一个重叠的 BAC 连续体,以覆盖绵羊 MHC Ⅱa 和Ⅱb 之间的共识区域。因此,成功构建了一个覆盖整个绵羊染色体倒位/插入区域的连续物理图谱。该图谱证实了牛同源区域的序列组装。185 个 BAC 末端的 DNA 序列已被提交到 NCBI 数据库,其登录号为 HR309252 至 HR309068,对应于 dbGSS ID 30164010 至 30163826。

结论

我们构建了绵羊 MHC Ⅱa 和Ⅱb 之间的染色体倒位/插入的高密度 BAC 克隆物理图谱。现在,整个绵羊 MHC 区域都被一个连续的 BAC 克隆连续体所覆盖。我们生成的物理图谱将促进绵羊 MHC 功能研究,以及反刍动物 MHC 的比较进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7071/3475007/220dc7c1ea69/1471-2164-13-398-1.jpg

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