Hall T J, McQuillan C, Finlay E K, O'Farrelly C, Fair S, Meade K G
Animal & Bioscience Research Department, Animal & Grassland Research and Innovation Centre, Teagasc, Grange, Dunsany, Co Meath, Ireland.
Comparative Immunology Group, School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin 2, Ireland.
BMC Genomics. 2017 Apr 4;18(1):278. doi: 10.1186/s12864-017-3666-x.
β-defensins are small, cationic, antimicrobial peptides found in species across the plant and animal kingdoms. In addition to microbiocidal activity, roles in immunity as well as reproduction have more recently been documented. β-defensin genes in Ovis aries (domestic sheep) have been poorly annotated, having been identified only by automatic gene prediction algorithms. The objective of this study was to use a comparative genomics approach to identify and characterise the β-defensin gene repertoire in sheep using the bovine genome as the primary reference.
All 57 currently predicted bovine β-defensin genes were used to find orthologous sequences in the most recent version of the sheep genome (OAR v4.0). Forty three genes were found to have close genomic matches (>70% similarity) between sheep and cattle. The orthologous genes were located in four clusters across the genome, with 4 genes on chromosome 2, 19 genes on chromosome 13, 5 genes on chromosome 20 and 15 genes on chromosome 26. Conserved gene order for the β-defensin genes was apparent in the two smaller clusters, although gene order was reversed on chromosome 2, suggesting an inversion between sheep and cattle. Complete conservation of gene order was also observed for chromosome 13 β-defensin orthologs. More structural differences were apparent between chromosome 26 genes and the orthologous region in the bovine reference genome, which is known to be copy-number variable. In this cluster, the Defensin-beta 1 (DEFB1) gene matched to eleven Bovine Neutrophil beta-Defensin (BNBD) genes on chromosome 27 with almost uniform similarity, as well as to tracheal, enteric and lingual anti-microbial peptides (TAP, EAP and LAP), suggesting that annotation of the bovine reference sequence is still incomplete. qPCR was used to profile the expression of 34 β-defensin genes, representing each of the four clusters, in the ram reproductive tract. Distinct site-specific and differential expression profiles were detected across the reproductive tract of mature rams with preferential β-defensin gene expression in the epididymis, recapitulating observations for orthologous genes in other species.
This is the first comprehensive analysis of β-defensin genes encoded by the ovine reference sequence, and the first report of an expanded repertoire of β-defensin genes in this species. The preferential expression of these genes in the epididymis suggests a role in fertility, possibly providing immunoprotection for sperm within the female reproductive tract.
β-防御素是在植物和动物界各物种中发现的小的阳离子抗菌肽。除了杀菌活性外,最近还记录了其在免疫和生殖中的作用。绵羊(Ovis aries)中的β-防御素基因注释较少,仅通过自动基因预测算法进行了鉴定。本研究的目的是使用比较基因组学方法,以牛基因组作为主要参考,鉴定和表征绵羊中的β-防御素基因库。
使用所有目前预测的57个牛β-防御素基因在最新版本的绵羊基因组(OAR v4.0)中寻找直系同源序列。发现43个基因在绵羊和牛之间具有紧密的基因组匹配(相似度>70%)。直系同源基因位于基因组的四个簇中,2号染色体上有4个基因,13号染色体上有19个基因,20号染色体上有5个基因,26号染色体上有15个基因。在两个较小的簇中,β-防御素基因的保守基因顺序很明显,尽管2号染色体上的基因顺序相反,这表明绵羊和牛之间存在倒位。13号染色体上的β-防御素直系同源基因也观察到基因顺序的完全保守。26号染色体上的基因与牛参考基因组中的直系同源区域之间存在更明显的结构差异,已知该区域的拷贝数可变。在这个簇中,防御素β1(DEFB1)基因与27号染色体上的11个牛中性粒细胞β-防御素(BNBD)基因几乎具有一致的相似性,以及与气管、肠道和舌抗菌肽(TAP、EAP和LAP)匹配,这表明牛参考序列的注释仍然不完整。使用qPCR分析了代表四个簇中每一个的34个β-防御素基因在公羊生殖道中的表达情况。在成熟公羊的生殖道中检测到明显的位点特异性和差异表达谱,附睾中β-防御素基因优先表达,这与其他物种中直系同源基因的观察结果一致。
这是对绵羊参考序列编码的β-防御素基因的首次全面分析,也是该物种中β-防御素基因库扩大的首次报道。这些基因在附睾中的优先表达表明其在生育中的作用,可能为雌性生殖道内的精子提供免疫保护。