Yi Shaokui, Gao Ze-Xia, Zhao Honghao, Zeng Cong, Luo Wei, Chen Boxiang, Wang Wei-Min
College of Fisheries, Key Lab of Agricultural Animal Genetics, Breeding and Reproduction of Ministry of Education/Key Lab of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, Wuhan, Hubei, 430070, China.
BMC Genomics. 2013 Nov 5;14:754. doi: 10.1186/1471-2164-14-754.
Blunt snout bream (Megalobrama amblycephala) is an economically important fish species in the Chinese freshwater polyculture system for its delicacy and high economic value. MicroRNAs (miRNAs) play important roles in regulation of almost all biological processes in eukaryotes. Although previous studies have identified thousands of miRNAs from many species, little information is known for miRNAs of M. amblycephala. To investigate functions of miRNAs associated with growth of M. amblycephala, we adopted the Solexa sequencing technology to sequence two small RNA libraries prepared from four growth related tissues (brain, pituitary, liver and muscle) of M. amblycephala using individuals with relatively high and low growth rates.
In this study, we have identified 347 conserved miRNAs (belonging to 123 families) and 22 novel miRNAs in M. amblycephala. Moreover, we observed sequence variants and seed edits of the miRNAs. Of the 5,166 single nucleotide substitutions observed in two libraries, the most abundant were G-to-U (15.9%), followed by U-to-C (12.1%), G-to-A (11.2%), and A to G (11.2%). Subsequently, we compared the expression patterns of miRNAs in the two libraries (big-size group with high growth rate versus small-size group with low growth rate). Results indicated that 27 miRNAs displayed significant differential expressions between the two libraries (p < 0.05). Of these, 16 were significantly up-regulated and 11 were significantly down-regulated in the big-size group compared to the small-size group. Furthermore, stem-loop RT-PCR was applied to validate and profile the expression of the differentially expressed miRNAs in ten tissues, and the result revealed that the conserved miRNAs expressed at higher levels than the novel miRNAs, especially in brain, liver and muscle. Also, targets prediction of differentially expressed miRNAs and KEGG pathway analysis suggested that differentially expressed miRNAs are involved in growth and metabolism, signal transduction, cell cycle, neural development and functions.
The present study provides the first large-scale characterization of miRNAs in M. amblycephala and miRNA profile related to different growth performances. The discovery of miRNA resource from this study is expected to contribute to a better understanding of the miRNAs roles playing in regulating the growth biological processes and the study of miRNA function and phenotype-associated miRNA identification in fish.
团头鲂(Megalobrama amblycephala)是中国淡水混养系统中一种重要的经济鱼类,因其肉质鲜美且经济价值高。微小RNA(miRNA)在真核生物几乎所有生物过程的调控中发挥着重要作用。尽管先前的研究已从许多物种中鉴定出数千种miRNA,但关于团头鲂miRNA的信息却知之甚少。为了研究与团头鲂生长相关的miRNA的功能,我们采用Solexa测序技术,对从生长速率相对较高和较低的团头鲂个体的四个与生长相关的组织(脑、垂体、肝脏和肌肉)中制备的两个小RNA文库进行测序。
在本研究中,我们在团头鲂中鉴定出347个保守miRNA(属于123个家族)和22个新的miRNA。此外,我们观察到了miRNA的序列变异和种子编辑。在两个文库中观察到的5166个单核苷酸替换中,最丰富的是G到U(15.9%),其次是U到C(12.1%)、G到A(11.2%)和A到G(11.2%)。随后,我们比较了两个文库中miRNA的表达模式(高生长速率的大尺寸组与低生长速率的小尺寸组)。结果表明,两个文库之间有27个miRNA表现出显著差异表达(p < 0.05)。其中,与小尺寸组相比,大尺寸组中有16个显著上调,11个显著下调。此外,应用茎环RT-PCR验证并分析了差异表达miRNA在十个组织中的表达,结果显示保守miRNA的表达水平高于新miRNA,尤其是在脑、肝脏和肌肉中。此外,差异表达miRNA的靶标预测和KEGG通路分析表明,差异表达的miRNA参与生长和代谢、信号转导、细胞周期、神经发育和功能。
本研究首次对团头鲂中的miRNA进行了大规模表征,并提供了与不同生长性能相关的miRNA图谱。本研究中miRNA资源的发现有望有助于更好地理解miRNA在调节生长生物学过程中的作用,以及鱼类中miRNA功能和与表型相关的miRNA鉴定的研究。