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Identification of a Mutation Associated with Fatal Foal Immunodeficiency Syndrome in the Fell and Dales Pony

机译:跌倒和山谷小马致命致命免疫缺陷综合症相关突变的鉴定。

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摘要

The Fell and Dales are rare native UK pony breeds at risk due to falling numbers, in-breeding, and inherited disease. Specifically, the lethal Mendelian recessive disease Foal Immunodeficiency Syndrome (FIS), which manifests as B-lymphocyte immunodeficiency and progressive anemia, is a substantial threat. A significant percentage (∼10%) of the Fell ponies born each year dies from FIS, compromising the long-term survival of this breed. Moreover, the likely spread of FIS into other breeds is of major concern. Indeed, FIS was identified in the Dales pony, a related breed, during the course of this work. Using a stepwise approach comprising linkage and homozygosity mapping followed by haplotype analysis, we mapped the mutation using 14 FIS–affected, 17 obligate carriers, and 10 adults of unknown carrier status to a ∼1 Mb region (29.8 – 30.8 Mb) on chromosome (ECA) 26. A subsequent genome-wide association study identified two SNPs on ECA26 that showed genome-wide significance after Bonferroni correction for multiple testing: BIEC2-692674 at 29.804 Mb and BIEC2-693138 at 32.19 Mb. The associated region spanned 2.6 Mb from ∼29.6 Mb to 32.2 Mb on ECA26. Re-sequencing of this region identified a mutation in the sodium/myo-inositol cotransporter gene (SLC5A3); this causes a P446L substitution in the protein. This gene plays a crucial role in the regulatory response to osmotic stress that is essential in many tissues including lymphoid tissues and during early embryonic development. We propose that the amino acid substitution we identify here alters the function of SLC5A3, leading to erythropoiesis failure and compromise of the immune system. FIS is of significant biological interest as it is unique and is caused by a gene not previously associated with a mammalian disease. Having identified the associated gene, we are now able to eradicate FIS from equine populations by informed selective breeding.
机译:Fell和Dales是稀有的英国本土小马品种,由于数量下降,近亲繁殖和遗传病而处于危险之中。具体而言,致命的孟德尔隐性疾病马驹免疫缺陷综合症(FIS)表现为B淋巴细胞免疫缺陷和进行性贫血,是一个重大威胁。每年出生的Fell小马中有很大一部分(〜10%)死于FIS,这损害了该品种的长期生存。此外,FIS可能传播到其他品种中也引起了人们的极大关注。确实,在这项工作过程中,FIS已在相关品种Dales小马中被确认。我们采用包含连锁和纯合作图,然后进行单倍型分析的逐步方法,使用14个受FIS影响,17个专性携带者和10个携带者身份不明的成年成年人,将突变映射到染色体上大约1 Mb区域(29.8 – 30.8 Mb)( 26.随后的全基因组关联研究确定了ECA26上的两个SNP,它们在Bonferroni校正后显示了对全基因组的多重测试意义:29.804 Mb的BIEC2-692674和32.19 Mb的BIEC2-693138。相关区域在ECA26上从约29.6 Mb到2.6 Mb跨越了32.2 Mb。对该区域的重新测序确定了钠/肌醇共转运蛋白基因(SLC5A3)中的一个突变。这会导致蛋白质中的P446L取代。该基因在对渗透压力的调节反应中起着至关重要的作用,渗透压力在包括淋巴组织在内的许多组织中以及早期胚胎发育过程中都是必不可少的。我们建议,我们在此处确定的氨基酸取代会改变SLC5A3的功能,从而导致红细胞生成失败和免疫系统受损。 FIS是独特的,并且是由以前与哺乳动物疾病无关的基因引起的,因此具有重要的生物学意义。鉴定了相关基因后,我们现在能够通过明智的选育从马种群中消除FIS。

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