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对一个亲子三人组的全基因组序列进行分析,为杂种骡的基因组不相容性提供了深入了解。

Analysis of the Whole-Genome Sequences from an Parent-Offspring Trio Provides Insight into the Genomic Incompatibilities in the Hybrid Mule.

机构信息

Equine Research Center, College of Animal Science, Inner Mongolia Agricultural University, 306 Zhaowuda Road, Hohhot 010018, China.

出版信息

Genes (Basel). 2022 Nov 23;13(12):2188. doi: 10.3390/genes13122188.

Abstract

Interspecific hybridization often shows negative effects on hybrids. However, only a few multicellular species, limited to a handful of plants and animals, have shown partial genetic mechanisms by which hybridization leads to low fitness in hybrids. Here, to explore the outcome of combining the two genomes of a horse and donkey, we analyzed the whole-genome sequences from an parent-offspring trio using Illumina platforms. We generated 41.39× and 46.21× coverage sequences for the horse and mule, respectively. For the donkey, a 40.38× coverage sequence was generated and stored in our laboratory. Approximately 24.86 million alleles were discovered that varied from the reference genome. Single nucleotide polymorphisms were used as polymorphic markers for assigning alleles to their parental genomic inheritance. We identified 25,703 Mendelian inheritance error single nucleotide polymorphisms in the mule genome that were not inherited from the parents through Mendelian inheritance. A total of 555 single nucleotide polymorphisms were also identified. The rate of single nucleotide polymorphisms was 2.21 × 10 in the mule from the parent-offspring trio. This rate is obviously higher than the natural mutation rate for , which is also consistent with the previous hypothesis that interracial crosses may have a high mutation rate. The genes associated with these single nucleotide polymorphisms are mainly involved in immune processes, DNA repair, and cancer processes. The results of the analysis of three genomes from an parent-offspring trio improved our knowledge of the consequences of the integration of parental genomes in mules.

摘要

种间杂交通常对杂种表现出负面影响。然而,只有少数多细胞物种,仅限于少数植物和动物,表现出部分遗传机制,即杂交导致杂种适应性降低。在这里,为了探索马和驴的两个基因组结合的结果,我们使用 Illumina 平台分析了一个马驴亲子三组合的全基因组序列。我们分别为马和骡子生成了 41.39×和 46.21×的覆盖序列。对于驴,我们生成了 40.38×的覆盖序列,并储存在我们的实验室中。大约发现了 2486 万个不同于参考基因组的等位基因。单核苷酸多态性被用作多态性标记,将等位基因分配到其亲本基因组遗传中。我们在骡子基因组中鉴定出 25703 个不符合孟德尔遗传的单核苷酸多态性遗传错误,这些错误不是通过孟德尔遗传从父母那里遗传来的。总共还鉴定出 555 个单核苷酸多态性。骡子亲子三组合中单核苷酸多态性的发生率为 2.21×10,明显高于自然突变率,这也与跨种族杂交可能具有高突变率的假设一致。与这些单核苷酸多态性相关的基因主要涉及免疫过程、DNA 修复和癌症过程。亲子三组合三个基因组的分析结果提高了我们对马驴杂种中亲本基因组整合后果的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf23/9778318/b83a403f7780/genes-13-02188-g001.jpg

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