腹泻结果的全基因组关联研究发现了影响乳兔对严重肠病抵抗力的基因组区域。

IF 1.9 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Samuele Bovo, Anisa Ribani, Giuseppina Schiavo, Valeria Taurisano, Francesca Bertolini, Daniela Fornasini, Andrea Frabetti, Luca Fontanesi
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引用次数: 0

摘要

提高对肠道疾病抵抗力的选育策略对于实现家兔生产系统的可持续发展至关重要。然而,疾病的异质性(仅以腹泻为主要可见症状)和疾病的低遗传性是实施这些策略的两大障碍。腹泻可影响兔子从哺乳期开始的不同生命阶段,对经济产生巨大的负面影响。在这项研究中,我们首先从爆发肠病的商业乳兔群体(来自 133 胎)中挑选了几只因腹泻症状严重而死亡的兔子,并利用 16S rRNA 基因测序数据对其微生物群进行了鉴定。梭状芽孢杆菌属始终存在于所有受影响的标本中。此外,为了确定兔子基因组中可用作选择工具的遗传标记,我们对同一商业兔子群体的腹泻症状进行了全基因组关联研究。这些研究还辅以同组兔子之间的 FST 分析。使用 Affymetrix Axiom OrcunSNP 阵列对来自 45 个不同仔兔(133 个仔兔的子集)的 332 只乳兔(151 只腹泻症状严重,42 只症状轻微,129 只断奶前无任何症状)进行了基因分型。在这两种基因组学方法中,将窝内的兔子配对组成两组(易感性组和抵抗性组,包括其中一组或另一组中的轻度感染者),并进行病例和对照全基因组关联分析。在设计的实验结构中,结合商业育种计划估计的基因组遗传率为 0.19-0.21(等值 0.09-0.10)。在兔 2 号染色体(OCU2)、OCU3、OCU7、OCU12、OCU13、OCU16 和一个未组装的支架上,共有八个基因组区域存在显著的单核苷酸多态性(SNPs)和/或超出 FST 百分位数分布的标记。在这些区域中,在 OCU12、OCU13 和 OCU16 上发现了三个主要的 SNP 峰。OCU13 上的 QTL 区域包含多个编码免疫球蛋白 Fc 受体家族成员(FCER1G、FCRLA、FCRLB 和 FCGR2A)的基因,这些基因参与免疫先天系统,可能是该病症的重要候选基因。这项研究的结果表明,乳兔对肠病的抵抗力部分是由基因决定的,而且可以在基因组水平上进行剖析,从而提供可用于育种计划的 DNA 标记,以提高肉兔对肠病的抵抗力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Genome-wide association studies for diarrhoea outcomes identified genomic regions affecting resistance to a severe enteropathy in suckling rabbits

Genome-wide association studies for diarrhoea outcomes identified genomic regions affecting resistance to a severe enteropathy in suckling rabbits

Selection and breeding strategies to improve resistance to enteropathies are essential to reaching the sustainability of the rabbit production systems. However, disease heterogeneity (having only as major visible symptom diarrhoea) and low disease heritability are two barriers for the implementation of these strategies. Diarrhoea condition can affect rabbits at different life stages, starting from the suckling period, with large negative economic impacts. In this study, from a commercial population of suckling rabbits (derived from 133 litters) that experienced an outbreak of enteropathy, we first selected a few animals that died with severe symptoms of diarrhoea and characterized their microbiota, using 16S rRNA gene sequencing data. Clostridium genus was consistently present in all affected specimens. In addition, with the aim to identify genetic markers in the rabbit genome that could be used as selection tools, we performed genome-wide association studies for symptoms of diarrhoea in the same commercial rabbit population. These studies were also complemented with FST analyses between the same groups of rabbits. A total of 332 suckling rabbits (151 with severe symptoms of diarrhoea, 42 with mild symptoms and 129 without any symptoms till the weaning period), derived from 45 different litters (a subset of the 133 litters) were genotyped with the Affymetrix Axiom OrcunSNP Array. In both genomic approaches, rabbits within litters were paired to constitute two groups (susceptible and resistant, including the mildly affected in one or the other group) and run case and control genome-wide association analyses. Genomic heritability estimated in the designed experimental structure integrated in a commercial breeding scheme was 0.19–0.21 (s.e. 0.09–0.10). A total of eight genomic regions on rabbit chromosome 2 (OCU2), OCU3, OCU7, OCU12, OCU13, OCU16 and in an unassembled scaffold had significant single nucleotide polymorphisms (SNPs) and/or markers that trespassed the FST percentile distribution. Among these regions, three main peaks of SNPs were identified on OCU12, OCU13 and OCU16. The QTL region on OCU13 encompasses several genes that encode members of a family of immunoglobulin Fc receptors (FCER1G, FCRLA, FCRLB and FCGR2A) involved in the immune innate system, which might be important candidate genes for this pathogenic condition. The results obtained in this study demonstrated that resistance to an enteropathy occurring in suckling rabbits is in part genetically determined and can be dissected at the genomic level, providing DNA markers that could be used in breeding programmes to increase resistance to enteropathies in meat rabbits.

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来源期刊
Journal of Animal Breeding and Genetics
Journal of Animal Breeding and Genetics 农林科学-奶制品与动物科学
CiteScore
5.20
自引率
3.80%
发文量
58
审稿时长
12-24 weeks
期刊介绍: The Journal of Animal Breeding and Genetics publishes original articles by international scientists on genomic selection, and any other topic related to breeding programmes, selection, quantitative genetic, genomics, diversity and evolution of domestic animals. Researchers, teachers, and the animal breeding industry will find the reports of interest. Book reviews appear in many issues.
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