National Laboratory of Medical Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences, School of Basic Medicine, Peking Union Medical College, Beijing, China.
BMC Genomics. 2011 Apr 13;12:186. doi: 10.1186/1471-2164-12-186.
Functional studies have demonstrated that microRNAs (miRNAs or miRs) play critical roles in a wide spectrum of biological processes including development and disease pathogenesis. To investigate the functional roles that miRNAs play during chicken skeletal muscle development, the miRNA transcriptomes of skeletal muscles from broiler and layer chickens were profiled using Solexa deep sequencing.
Some miRNAs have multiple isoforms and several miRNAs* are present at higher levels than their corresponding miRNAs. Thirty three novel and 189 known chicken miRNAs were identified using computational approaches. Subsequent miRNA transcriptome comparisons and real-time PCR validation experiments revealed 17 miRNAs that were differentially expressed between broilers and layers, and a number of targets of these miRNAs have been implicated in myogenesis regulation. Using integrative miRNA target-prediction and network-analysis approaches an interaction network of differentially expressed and muscle-related miRNAs and their putative targets was constructed, and miRNAs that could contribute to the divergent muscle growth of broiler and layer chickens by targeting the ACVR2B gene were identified, which can causes dramatic increases in muscle mass.
The present study provides the first transcriptome profiling-based evaluation of miRNA function during skeletal muscle development in chicken. Systematic predictions aided the identification of potential miRNAs and their targets, which could contribute to divergent muscle growth in broiler and layer chickens. Furthermore, these predictions generated information that can be utilized in further research investigating the involvement of interaction networks, containing miRNAs and their targets, in the regulation of muscle development.
功能研究表明,微小 RNA(miRNAs 或 miRs)在广泛的生物学过程中发挥着关键作用,包括发育和疾病发病机制。为了研究 miRNAs 在鸡骨骼肌发育过程中所发挥的功能作用,利用 Solexa 深度测序技术对肉鸡和蛋鸡骨骼肌中的 miRNA 转录组进行了分析。
一些 miRNA 具有多个同工型,并且一些 miRNA*的水平高于其相应的 miRNA。通过计算方法鉴定出 33 个新的和 189 个已知的鸡 miRNA。随后的 miRNA 转录组比较和实时 PCR 验证实验显示,17 个 miRNA 在肉鸡和蛋鸡之间存在差异表达,这些 miRNA 的一些靶基因参与了肌生成调控。利用整合的 miRNA 靶基因预测和网络分析方法,构建了差异表达和与肌肉相关的 miRNA 及其假定靶基因的相互作用网络,并鉴定出了一些可能通过靶向 ACVR2B 基因导致肉鸡和蛋鸡肌肉生长差异的 miRNA,ACVR2B 基因可引起肌肉质量的显著增加。
本研究首次对鸡骨骼肌发育过程中的 miRNA 功能进行了基于转录组谱的评估。系统的预测有助于鉴定潜在的 miRNA 及其靶基因,这些基因可能有助于肉鸡和蛋鸡肌肉生长的差异。此外,这些预测产生的信息可用于进一步研究,以探讨包含 miRNA 和其靶基因的相互作用网络在肌肉发育调控中的作用。