Yao Yuangen, Ma Lili, Jia Qiong, Deng Wankun, Liu Zexian, Zhang Yuanwei, Ren Jian, Xue Yu, Jia Haibo, Yang Qing
Department of Biomedical Engineering, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.
BMC Genomics. 2014 Feb 10;15:117. doi: 10.1186/1471-2164-15-117.
During early vertebrate development, various small non-coding RNAs (sRNAs) such as MicroRNAs (miRNAs) and Piwi-interacting RNAs (piRNAs) are dynamically expressed for orchestrating the maternal-to-zygotic transition (MZT). Systematic analysis of expression profiles of zebrafish small RNAome will be greatly helpful for understanding the sRNA regulation during embryonic development.
We first determined the expression profiles of sRNAs during eight distinct stages of early zebrafish development by sRNA-seq technology. Integrative analyses with a new computational platform of CSZ (characterization of small RNAome for zebrafish) demonstrated an sRNA class transition from piRNAs to miRNAs as development proceeds. We observed that both the abundance and diversity of miRNAs are gradually increased, while the abundance is enhanced more dramatically than the diversity during development. However, although both the abundance and diversity of piRNAs are gradually decreased, the diversity was firstly increased then rapidly decreased. To evaluate the computational accuracy, the expression levels of four known miRNAs were experimentally validated. We also predicted 25 potentially novel miRNAs, whereas two candidates were verified by Northern blots.
Taken together, our analyses revealed the piRNA to miRNA transition as a conserved mechanism in zebrafish, although two different types of sRNAs exhibit distinct expression dynamics in abundance and diversity, respectively. Our study not only generated a better understanding for sRNA regulations in early zebrafish development, but also provided a useful platform for analyzing sRNA-seq data. The CSZ was implemented in Perl and freely downloadable at: http://csz.biocuckoo.org.
在早期脊椎动物发育过程中,各种小非编码RNA(sRNA),如微小RNA(miRNA)和Piwi相互作用RNA(piRNA),动态表达以协调母源-合子转变(MZT)。对斑马鱼小RNA组表达谱进行系统分析将极大有助于理解胚胎发育过程中的sRNA调控。
我们首先通过sRNA测序技术确定了斑马鱼早期发育八个不同阶段的sRNA表达谱。利用一个新的CSZ(斑马鱼小RNA组特征分析)计算平台进行综合分析表明,随着发育进行,sRNA类别从piRNA向miRNA转变。我们观察到miRNA的丰度和多样性都逐渐增加,且在发育过程中丰度的增加比多样性更为显著。然而,尽管piRNA的丰度和多样性都逐渐降低,但其多样性先是增加然后迅速下降。为评估计算准确性,对四个已知miRNA的表达水平进行了实验验证。我们还预测了25个潜在的新miRNA,其中两个候选者通过Northern印迹法得到验证。
综上所述,我们的分析揭示了piRNA向miRNA的转变是斑马鱼中的一种保守机制,尽管两种不同类型的sRNA在丰度和多样性方面分别表现出不同的表达动态。我们的研究不仅增进了对斑马鱼早期发育中sRNA调控的理解,还提供了一个分析sRNA测序数据的有用平台。CSZ是用Perl语言实现的,可从以下网址免费下载:http://csz.biocuckoo.org 。