Xu Lingyang, He Yanghua, Ding Yi, Liu George E, Zhang Huanmin, Cheng Hans H, Taylor Robert L, Song Jiuzhou
1Department of Animal & Avian Sciences, University of Maryland, College Park, MD 20742 USA.
2Animal Genomics and Improvement Laboratory, U.S. Department of Agriculture-Agricultural Research Services, Beltsville, MD 20705 USA.
J Anim Sci Biotechnol. 2018 Sep 13;9:65. doi: 10.1186/s40104-018-0281-x. eCollection 2018.
Marek's disease (MD) is a highly contagious pathogenic and oncogenic disease primarily affecting chickens. However, the mechanisms of genetic resistance for MD are complex and not fully understood. MD-resistant line 6 and MD-susceptible line 7 are two highly inbred progenitor lines of White Leghorn. Recombinant Congenic Strains (RCS) were developed from these two lines, which show varied susceptibility to MD.
We investigated genetic structure and genomic signatures across the genome, including the line 6 and line 7, six RCSs, and two reciprocally crossed flocks between the lines 6 and 7 (F1 6 × 7 and F1 7 × 6) using Affymetrix® Axiom® HD 600 K genotyping array. We observed 18 chickens from RCS lines were specifically clustered into resistance sub-groups distributed around line 6. Additionally, homozygosity analysis was employed to explore potential genetic components related to MD resistance, while runs of homozygosity (ROH) are regions of the genome where the identical haplotypes are inherited from each parent. We found several genes including and were contained in ROH region identified in resistant group (line 6 and RCS), and these genes have been reported that are contribute to immunology and survival. Based on based population differential analysis, we also identified important genes related to cell death and anti-apoptosis, including , , , and , which could be involved in divergent selection during inbreeding process.
Our findings offer valuable insights for understanding the genetic mechanism of resistance to MD and the identified genes could be considered as candidate biomarkers in further evaluation.
马立克氏病(MD)是一种主要影响鸡的高度传染性致病性和致瘤性疾病。然而,MD的遗传抗性机制复杂,尚未完全了解。MD抗性品系6和MD易感品系7是白来航鸡的两个高度近交的祖系。从这两个品系培育出了重组近交系(RCS),它们对MD表现出不同的易感性。
我们使用Affymetrix® Axiom® HD 600K基因分型阵列研究了品系6和品系7、六个RCS以及品系6和品系7之间的两个相互杂交鸡群(F1 6×7和F1 7×6)全基因组的遗传结构和基因组特征。我们观察到来自RCS品系的18只鸡被特别聚类到分布在品系6周围的抗性亚组中。此外,采用纯合性分析来探索与MD抗性相关的潜在遗传成分,而纯合性片段(ROH)是基因组中从每个亲本继承相同单倍型的区域。我们发现抗性组(品系6和RCS)中鉴定出的ROH区域包含几个基因,包括 和 ,并且这些基因已被报道与免疫和存活有关。基于 基于群体差异分析,我们还鉴定了与细胞死亡和抗凋亡相关的重要基因,包括 、 、 、 和 ,它们可能参与了近交过程中的分化选择。
我们的研究结果为理解MD抗性的遗传机制提供了有价值的见解,所鉴定的基因可作为进一步评估的候选生物标志物。