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利用低覆盖度全基因组测序策略加速破译猪的农业经济性状的遗传结构。

Accelerated deciphering of the genetic architecture of agricultural economic traits in pigs using a low-coverage whole-genome sequencing strategy.

机构信息

State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, No. 2 Yuanmingyuan west road, Haidian district, Beijing 100193, China.

National Engineering Research Center for Breeding Swine Industry, South China Agricultural University, No. 483 Wushan road, Tianhe district, Guangdong 510640, China.

出版信息

Gigascience. 2021 Jul 20;10(7). doi: 10.1093/gigascience/giab048.

Abstract

BACKGROUND

Uncovering the genetic architecture of economic traits in pigs is important for agricultural breeding. However, high-density haplotype reference panels are unavailable in most agricultural species, limiting accurate genotype imputation in large populations. Moreover, the infinitesimal model of quantitative traits implies that weak association signals tend to be spread across most of the genome, further complicating the genetic analysis. Hence, there is a need to develop new methods for sequencing large cohorts without large reference panels.

RESULTS

We describe a Tn5-based highly accurate, cost- and time-efficient, low-coverage sequencing method to obtain 11.3 million whole-genome single-nucleotide polymorphisms in 2,869 Duroc boars at a mean depth of 0.73×. On the basis of these single-nucleotide polymorphisms, a genome-wide association study was performed, resulting in 14 quantitative trait loci (QTLs) for 7 of 21 important agricultural traits in pigs. These QTLs harbour genes, such as ABCD4 for total teat number and HMGA1 for back fat thickness, and provided a starting point for further investigation. The inheritance models of the different traits varied greatly. Most follow the minor-polygene model, but this can be attributed to different reasons, such as the shaping of genetic architecture by artificial selection for this population and sufficiently interconnected minor gene regulatory networks.

CONCLUSIONS

Genome-wide association study results for 21 important agricultural traits identified 14 QTLs/genes and showed their genetic architectures, providing guidance for genetic improvement harnessing genomic features. The Tn5-based low-coverage sequencing method can be applied to large-scale genome studies for any species without a good reference panel and can be used for agricultural breeding.

摘要

背景

揭示猪经济性状的遗传结构对于农业育种至关重要。然而,大多数农业物种缺乏高密度单倍型参考面板,限制了在大群体中进行准确的基因型推断。此外,数量性状的无穷小模型意味着微弱的关联信号往往分布在基因组的大部分区域,进一步增加了遗传分析的复杂性。因此,需要开发新的方法,以便在没有大参考面板的情况下对大群体进行测序。

结果

我们描述了一种基于 Tn5 的高度准确、经济高效、耗时短、低覆盖测序方法,用于在 2869 头杜洛克公猪中获得 1130 万个全基因组单核苷酸多态性,平均深度为 0.73×。基于这些单核苷酸多态性,进行了全基因组关联研究,确定了 21 个重要农业性状中的 7 个的 14 个数量性状位点(QTL)。这些 QTL 包含基因,如 ABCD4 用于总乳头数和 HMGA1 用于背脂厚度,并为进一步研究提供了起点。不同性状的遗传模型差异很大。大多数遵循微基因多效模型,但这可以归因于不同的原因,例如该群体人工选择对遗传结构的塑造以及足够相互关联的微基因调控网络。

结论

对 21 个重要农业性状的全基因组关联研究确定了 14 个 QTL/基因,并显示了它们的遗传结构,为利用基因组特征进行遗传改良提供了指导。基于 Tn5 的低覆盖测序方法可应用于任何缺乏良好参考面板的物种的大规模基因组研究,并可用于农业育种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91c0/8290195/2daf1238ed5d/giab048fig1.jpg

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