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Identification and prevalence of a genetic defect that causes leukocyte adhesion deficiency in Holstein cattle.

机译:鉴定和普遍存在导致霍尔斯坦牛白细胞黏附缺乏的遗传缺陷。

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摘要

Two point mutations were identified within the gene encoding bovine CD18 in a Holstein calf afflicted with leukocyte adhesion deficiency (LAD). One mutation causes an aspartic acid to glycine substitution at amino acid 128 (D128G) in the highly conserved extracellular region of this adhesion glycoprotein, a region where several mutations have been found to cause human LAD. The other mutation is silent. Twenty calves with clinical symptoms of LAD were tested, and all were homozygous for the D128G allele. In addition, two calves homozygous for the D128G allele were identified during widespread DNA testing, and both were subsequently found to exhibit symptoms of LAD. The carrier frequency for the D128G allele among Holstein cattle in the United States is approximately 15% among bulls and 6% among cows. This mutation is also prevalent among Holstein cattle throughout the world, placing this disorder among the most common genetic diseases known in animal agriculture. All cattle with the mutant allele are related to one bull, who through the use of artificial insemination sired many calves in the 1950s and 1960s. The organization of the dairy industry and the diagnostic test described herein will enable nearly complete eradication of bovine LAD within 1 year. These results also demonstrate that bovine LAD is genetically homologous and phenotypically similar to human LAD, thus providing a useful animal model for studies of LAD and beta 2 integrin function.
机译:在患有白细胞粘附缺乏症(LAD)的荷斯坦犊牛中,在编码牛CD18的基因内发现了两个点突变。一个突变导致该粘附糖蛋白高度保守的细胞外区域中的氨基酸128(D128G)处的天冬氨酸被甘氨酸取代,该区域已发现多个突变导致人LAD。另一个突变是沉默的。测试了20头具有LAD临床症状的小牛,所有D128G等位基因均为纯合的。此外,在广泛的DNA测试过程中,发现了D128G等位基因纯合的两只小牛,随后均发现它们均表现出LAD症状。在美国,荷斯坦牛中D128G等位基因的载波频率在公牛中约为15%,在牛中约为6%。这种突变在全世界的荷斯坦牛中也很普遍,使这种疾病成为动物农业中最常见的遗传疾病之一。所有具有等位基因突变的牛都与一头公牛有关,在1950年代和1960年代,这些公牛通过人工授精而生了许多犊牛。乳制品行业的组织和本文所述的诊断测试将能够在1年内几乎完全根除牛LAD。这些结果还表明,牛LAD与人LAD在基因上同源且在表型上相似,因此为研究LAD和β2整联蛋白功能提供了有用的动物模型。

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