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Giant panda BAC library construction and assembly of a 650-kb contig spanning major histocompatibility complex class II region

机译:大熊猫BAC库的构建和组装,构建了一个650kb重叠群,跨越了主要的组织相容性复杂的II类区域

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Background Giant panda is rare and endangered species endemic to China. The low rates of reproductive success and infectious disease resistance have severely hampered the development of captive and wild populations of the giant panda. The major histocompatibility complex (MHC) plays important roles in immune response and reproductive system such as mate choice and mother-fetus bio-compatibility. It is thus essential to understand genetic details of the giant panda MHC. Construction of a bacterial artificial chromosome (BAC) library will provide a new tool for panda genome physical mapping and thus facilitate understanding of panda MHC genes. Results A giant panda BAC library consisting of 205,800 clones has been constructed. The average insert size was calculated to be 97 kb based on the examination of 174 randomly selected clones, indicating that the giant panda library contained 6.8-fold genome equivalents. Screening of the library with 16 giant panda PCR primer pairs revealed 6.4 positive clones per locus, in good agreement with an expected 6.8-fold genomic coverage of the library. Based on this BAC library, we constructed a contig map of the giant panda MHC class II region from BTNL2 to DAXX spanning about 650 kb by a three-step method: (1) PCR-based screening of the BAC library with primers from homologous MHC class II gene loci, end sequences and BAC clone shotgun sequences, (2) DNA sequencing validation of positive clones, and (3) restriction digest fingerprinting verification of inter-clone overlapping. Conclusion The identifications of genes and genomic regions of interest are greatly favored by the availability of this giant panda BAC library. The giant panda BAC library thus provides a useful platform for physical mapping, genome sequencing or complex analysis of targeted genomic regions. The 650 kb sequence-ready BAC contig map of the giant panda MHC class II region from BTNL2 to DAXX, verified by the three-step method, offers a powerful tool for further studies on the giant panda MHC class II genes.
机译:背景大熊猫是中国特有的稀有濒危物种。繁殖成功率低和对传染病的抵抗力严重阻碍了大熊猫圈养和野生种群的发展。主要的组织相容性复合体(MHC)在免疫应答和生殖系统(例如配偶选择和母胎生物相容性)中起重要作用。因此,必须了解大熊猫MHC的遗传细节。细菌人工染色体(BAC)文库的构建将为熊猫基因组物理图谱提供一个新工具,从而促进对熊猫MHC基因的理解。结果构建了由205,800个克隆组成的大熊猫BAC文库。根据对174个随机选择的克隆的检查,平均插入片段大小为97 kb,这表明大熊猫文库包含6.8倍的基因组当量。用16个大熊猫PCR引物对筛选文库,发现每个基因座有6.4个阳性克隆,与预期的文库的6.8倍基因组覆盖率非常一致。基于此BAC库,我们通过三步法构建了从BTNL2到DAXX的大熊猫MHC II类区域(约650 kb)的重叠群图:(1)使用来自同源MHC的引物进行基于PCR的BAC文库筛选II类基因位点,末端序列和BAC克隆shot弹枪序列,(2)阳性克隆的DNA测序验证,以及(3)克隆间重叠的限制性消化指纹图谱验证。结论该大熊猫BAC文库的可用性极大地促进了基因和目标基因组区域的鉴定。因此,大熊猫BAC库为目标基因组区域的物理作图,基因组测序或复杂分析提供了有用的平台。三步法验证了从BTNL2到DAXX的大熊猫MHC II类区域的650 kb序列就绪BAC重叠群图,已通过三步法验证,为进一步研究大熊猫MHC II类基因提供了强大的工具。

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