Peters Martin, Reber Irene, Jagannathan Vidhya, Raddatz Barbara, Wohlsein Peter, Drögemüller Cord
Chemisches und Veterinäruntersuchungsamt Westfalen, Zur Taubeneiche 10-12, 59821, Arnsberg, Germany.
Institute of Genetics, Vetsuisse Faculty, University of Bern, Bremgartenstrasse 109a, 3001, Bern, Switzerland.
BMC Vet Res. 2015 Mar 4;11:48. doi: 10.1186/s12917-015-0366-0.
Rare diseases in livestock animals are traditionally poorly diagnosed. Other than clinical description and pathological examination, the underlying causes have, for the most part, remained unknown. A single case of congenital skin fragility in cattle was observed, necropsy, histological and ultrastructural examinations were carried out and whole genome sequencing was utilized to identify the causative mutation.
A single purebred female Charolais calf with severe skin lesions was delivered full-term and died spontaneously after birth. The clinical and pathological findings exactly matched the gross description given by previous reports on epitheliogenesis imperfecta and epidermolysis bullosa (EB) in cattle. Histological and ultrastructural changes were consistent with EB junctionalis (EBJ). Genetic analysis revealed a previously unpublished ITGB4 loss-of-function mutation; the affected calf was homozygous for a 4.4 kb deletion involving exons 17 to 22, and the dam carried a single copy of the deletion indicating recessive inheritance. The homozygous mutant genotype did not occur in healthy controls of various breeds but some heterozygous carriers were found among Charolais cattle belonging to the affected herd. The mutant allele was absent in a representative sample of unrelated sires of the German Charolais population.
This is the first time in which a recessively inherited ITGB4 associated EBJ has been reported in cattle. The identification of heterozygous carriers is of importance in avoiding the transmission of this defect in future. Current DNA sequencing methods offer a powerful tool for understanding the genetic background of rare diseases in domestic animals having a reference genome sequence available.
家畜中的罕见疾病传统上诊断不佳。除了临床描述和病理检查外,其根本原因在很大程度上仍然未知。观察到一例牛先天性皮肤脆弱病例,进行了尸检、组织学和超微结构检查,并利用全基因组测序来鉴定致病突变。
一头纯种夏洛来母牛产下一头患有严重皮肤病变的足月小牛,出生后自然死亡。临床和病理结果与先前关于牛上皮生成不全和大疱性表皮松解症(EB)的大体描述完全相符。组织学和超微结构变化与交界性大疱性表皮松解症(EBJ)一致。遗传分析揭示了一个以前未发表的整合素β4(ITGB4)功能丧失突变;患病小牛对于涉及外显子17至22的4.4 kb缺失是纯合的,而其母亲携带该缺失的单拷贝,表明为隐性遗传。在各种品种的健康对照中未出现纯合突变基因型,但在受影响牛群的夏洛来牛中发现了一些杂合携带者。在德国夏洛来牛群体的无关种公牛代表性样本中未发现突变等位基因。
这是首次在牛中报道隐性遗传的ITGB4相关EBJ。鉴定杂合携带者对于避免该缺陷在未来的传播很重要。当前的DNA测序方法为了解具有参考基因组序列的家畜罕见疾病的遗传背景提供了一个强大的工具。