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System analysis of microRNAs in the development and aluminium stress responses of the maize root system

机译:玉米根系发育和铝胁迫响应中的microRNA系统分析

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MicroRNAs (miRNAs) are a class of regulatory small RNAs (sRNAs) that down?¢????regulate target genes through mRNA cleavage or translational inhibition. miRNA is known to play an important role in the root development and environmental responses in both the Arabidopsis and rice. However, little information is available to form a complete view of miRNAs in the development of the maize root system and Al stress responses in maize. Four sRNA libraries were generated and sequenced from the early developmental stage of primary roots (PRY), the later developmental stage of maize primary roots (PRO), seminal roots (SR) and crown roots (CR). Through integrative analysis, we identified 278 miRNAs (246 conserved and 32 novel ones) and found that the expression patterns of miRNAs differed dramatically in different maize roots. The potential targets of the identified conserved and novel miRNAs were also predicted. In addition, our data showed that CR is more resistant to Al stress compared with PR and SR, and the differentially expressed miRNAs are likely to play significant roles in different roots in response to environmental stress such as Al stress. Here, we demonstrate that the expression patterns of miRNAs are highly diversified in different maize roots. The differentially expressed miRNAs are correlated with both the development and environmental responses in the maize root. This study not only improves our knowledge about the roles of miRNAs in maize root development but also reveals the potential role of miRNAs in the environmental responses of different maize roots.
机译:微小RNA(miRNA)是一类调节性小RNA(sRNA),可通过mRNA切割或翻译抑制来下调靶基因。已知miRNA在拟南芥和水稻的根发育和环境响应中起着重要作用。但是,很少有信息可以形成关于玉米根系发育和玉米中铝胁迫响应的miRNA的完整视图。从初级根的早期发育阶段(PRY),玉米初级根的晚期发育阶段(PRO),精根(SR)和冠状根(CR)生成并测序了四个sRNA文库。通过综合分析,我们鉴定了278个miRNA(246个保守的和32个新颖的),发现在不同的玉米根中,miRNA的表达模式差异很大。还预测了所鉴定的保守和新颖miRNA的潜在靶标。此外,我们的数据表明,与PR和SR相比,CR对Al胁迫更具抵抗力,并且差异表达的miRNA可能在不同根中对Al胁迫等环境胁迫起重要作用。在这里,我们证明了miRNA的表达模式在不同的玉米根中高度多样化。差异表达的miRNA与玉米根的发育和环境响应均相关。这项研究不仅提高了我们对miRNA在玉米根发育中作用的认识,而且揭示了miRNA在不同玉米根对环境的响应中的潜在作用。

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