Institut National de la Recherche Agronomique, UMR 1198 Biologie du Développement et Reproduction, Jouy-en-Josas, France.
PLoS One. 2013 May 22;8(5):e63512. doi: 10.1371/journal.pone.0063512. Print 2013.
Despite massive research efforts, the molecular etiology of bovine polledness and the developmental pathways involved in horn ontogenesis are still poorly understood. In a recent article, we provided evidence for the existence of at least two different alleles at the Polled locus and identified candidate mutations for each of them. None of these mutations was located in known coding or regulatory regions, thus adding to the complexity of understanding the molecular basis of polledness. We confirm previous results here and exhaustively identify the causative mutation for the Celtic allele (PC) and four candidate mutations for the Friesian allele (PF). We describe a previously unreported eyelash-and-eyelid phenotype associated with regular polledness, and present unique histological and gene expression data on bovine horn bud differentiation in fetuses affected by three different horn defect syndromes, as well as in wild-type controls. We propose the ectopic expression of a lincRNA in PC/p horn buds as a probable cause of horn bud agenesis. In addition, we provide evidence for an involvement of OLIG2, FOXL2 and RXFP2 in horn bud differentiation, and draw a first link between bovine, ovine and caprine Polled loci. Our results represent a first and important step in understanding the genetic pathways and key process involved in horn bud differentiation in Bovidae.
尽管进行了大量的研究,但牛无角性状的分子病因和角发生发育途径仍知之甚少。在最近的一篇文章中,我们提供了 Polled 基因座至少存在两个不同等位基因的证据,并确定了它们各自的候选突变。这些突变都不在已知的编码或调控区域,这使得理解无角性状的分子基础更加复杂。我们在这里证实了之前的结果,并详尽地确定了凯尔特等位基因(PC)的致病突变和弗里西亚等位基因(PF)的四个候选突变。我们描述了一个与正常无角性状相关的以前未报道的睫毛和眼睑表型,并提供了关于三种不同角缺陷综合征和野生型对照胎儿牛角芽分化的独特组织学和基因表达数据。我们提出 lincRNA 在 PC/p 角芽中的异位表达可能是角芽发育不全的原因。此外,我们还提供了 OLIG2、FOXL2 和 RXFP2 参与角芽分化的证据,并在牛科动物的 Polled 基因座之间建立了第一个联系。我们的研究结果代表了理解牛科动物角芽分化的遗传途径和关键过程的重要的第一步。