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在 Manech Tête Rousse 奶绵羊中,SLC33A1 基因中的单个碱基对重复与胎儿丢失和新生儿致死有关。

A single base pair duplication in the SLC33A1 gene is associated with fetal losses and neonatal lethality in Manech Tête Rousse dairy sheep.

机构信息

GenPhySE, Université de Toulouse, INRAE, ENVT, Castanet-Tolosan, France.

CDEO, Ordiarp, France.

出版信息

Anim Genet. 2024 Aug;55(4):644-657. doi: 10.1111/age.13459. Epub 2024 Jun 23.

DOI:10.1111/age.13459
PMID:38922751
Abstract

We recently discovered that the Manech Tête Rousse (MTR) deficient homozygous haplotype 2 (MTRDHH2) probably carries a recessive lethal mutation in sheep. In this study, we fine-mapped this region through whole-genome sequencing of five MTRDHH2 heterozygous carriers and 95 non-carriers from various ovine breeds. We identified a single base pair duplication within the SLC33A1 gene, leading to a frameshift mutation and a premature stop codon (p.Arg246Alafs*3). SLC33A1 encodes a transmembrane transporter of acetyl-coenzyme A that is crucial for cellular metabolism. To investigate the lethality of this mutation in homozygous MTR sheep, we performed at-risk matings using artificial insemination (AI) between heterozygous SLC33A1 variant carriers (SLC33A1_dupG). Pregnancy was confirmed 15 days post-AI using a blood test measuring interferon Tau-stimulated MX1 gene expression. Ultrasonography between 45 and 60 days post-AI revealed a 12% reduction in AI success compared with safe matings, indicating embryonic/fetal loss. This was supported by the MX1 differential expression test suggesting fetal losses between 15 and 60 days of gestation. We also observed a 34.7% pre-weaning mortality rate in 49 lambs born from at-risk matings. Homozygous SLC33A1_dupG lambs accounted for 47% of this mortality, with deaths occurring mostly within the first 5 days without visible clinical signs. Therefore, appropriate management of SLC33A1_dupG with an allele frequency of 0.04 in the MTR selection scheme would help increase overall fertility and lamb survival.

摘要

我们最近发现,曼尼彻特头红(MTR)缺陷纯合子 2 型(MTRDHH2)可能在绵羊中携带隐性致死突变。在这项研究中,我们通过对来自不同绵羊品种的 5 个 MTRDHH2 杂合子携带者和 95 个非携带者的全基因组测序,对该区域进行了精细定位。我们在 SLC33A1 基因内发现了一个单碱基对重复,导致移码突变和提前终止密码子(p.Arg246Alafs*3)。SLC33A1 编码乙酰辅酶 A 的跨膜转运体,对细胞代谢至关重要。为了研究该突变在纯合 MTR 绵羊中的致死性,我们使用人工授精(AI)在杂合 SLC33A1 变体携带者(SLC33A1_dupG)之间进行了风险交配。AI 后 15 天通过测量干扰素 Tau 刺激的 MX1 基因表达的血液测试确认妊娠。AI 后 45 至 60 天的超声检查显示,与安全交配相比,AI 成功率降低了 12%,表明胚胎/胎儿丢失。这一结果得到了 MX1 差异表达测试的支持,表明妊娠 15 至 60 天之间存在胎儿丢失。我们还观察到,在 49 只来自风险交配的羔羊中,有 34.7%在断奶前死亡。在这些死亡羔羊中,纯合 SLC33A1_dupG 羔羊占 47%,死亡大多发生在没有明显临床症状的前 5 天内。因此,在 MTR 选择计划中,等位基因频率为 0.04 的 SLC33A1_dupG 进行适当管理,将有助于提高整体繁殖力和羔羊存活率。

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