利用全基因组亚硫酸氢盐测序分析交叉喙雏鸡下颌髁突的DNA甲基化谱。
Analysis of DNA Methylation Profiles in Mandibular Condyle of Chicks With Crossed Beaks Using Whole-Genome Bisulfite Sequencing.
作者信息
Shi Lei, Bai Hao, Li Yunlei, Yuan Jingwei, Wang Panlin, Wang Yuanmei, Ni Aixin, Jiang Linlin, Ge Pingzhuang, Bian Shixiong, Zong Yunhe, Isa Adamu Mani, Tesfay Hailai Hagos, Yang Fujian, Ma Hui, Sun Yanyan, Chen Jilan
机构信息
Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
Joint International Research Laboratory of Agriculture and Agri-Product Safety, The Ministry of Education of China, Institutes of Agricultural Science and Technology Development, Yangzhou University, Yangzhou, China.
出版信息
Front Genet. 2021 Jul 8;12:680115. doi: 10.3389/fgene.2021.680115. eCollection 2021.
Crossed beaks have been observed in at least 12 chicken strains around the world, which severely impairs their growth and welfare. To explore the intrinsic factor causing crossed beaks, this study measured the length of bilateral mandibular ramus of affected birds, and investigated the genome-wide DNA methylation profiles of normal and affected sides of mandibular condyle. Results showed that the trait was caused by impaired development of unilateral mandibular ramus, which is extended through calcification of mandibular condyle. The methylation levels in the CG contexts were higher than that of CHG and CHH, with the highest methylation level of gene body region, followed by transcription termination sites and downstream. Subsequently, we identified 1,568 differentially methylated regions and 1,317 differentially methylated genes in CG contexts. Functional annotation analysis of Gene Ontology and Kyoto Encyclopedia of Genes and Genomes showed that these genes were involved in bone mineralization and bone morphogenesis. Furthermore, by combining the WGBS and previous RNA-Seq data, 11 overlapped genes were regulated by both long non-coding RNA and DNA methylation. Among them, is an important gene in calcification of mandibular condyle. Generally, because the affected genes play key roles in maintaining mandibular calcification, these changes may be pivotal factors of crossed beaks.
世界各地至少12个鸡品种中都观察到了交叉喙,这严重影响了它们的生长和健康。为了探究导致交叉喙的内在因素,本研究测量了患病鸡双侧下颌支的长度,并研究了下颌髁突正常侧和患病侧的全基因组DNA甲基化谱。结果表明,该性状是由单侧下颌支发育受损引起的,下颌支发育受损通过下颌髁突的钙化而加剧。CG背景下的甲基化水平高于CHG和CHH,基因体区域的甲基化水平最高,其次是转录终止位点和下游区域。随后,我们在CG背景下鉴定出1568个差异甲基化区域和1317个差异甲基化基因。基因本体论和京都基因与基因组百科全书的功能注释分析表明,这些基因参与骨矿化和骨形态发生。此外,通过整合全基因组亚硫酸氢盐测序(WGBS)和之前的RNA测序数据,发现11个重叠基因受长链非编码RNA和DNA甲基化共同调控。其中,[具体基因名称未给出]是下颌髁突钙化中的一个重要基因。总体而言,由于这些受影响的基因在维持下颌钙化中起关键作用,这些变化可能是交叉喙的关键因素。