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MicroRNA Transcriptomic Analysis of Heterosis during Maize Seed Germination

机译:玉米种子萌发过程中杂种优势的MicroRNA转录组学分析

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摘要

Heterosis has been utilized widely in the breeding of maize and other crops, and plays an important role in increasing yield, improving quality and enhancing stresses resistance, but the molecular mechanism responsible for heterosis is far from clear. To illustrate whether miRNA-dependent gene regulation is responsible for heterosis during maize germination, a deep-sequencing technique was applied to germinating embryos of a maize hybrid, Yuyu22, which is cultivated widely in China and its parental inbred lines, Yu87-1 and Zong3. The target genes of several miRNAs showing significant expression in the hybrid and parental lines were predicted and tested using real-time PCR. A total of 107 conserved maize miRNAs were co-detected in the hybrid and parental lines. Most of these miRNAs were expressed non-additively in the hybrid compared to its parental lines. These results indicated that miRNAs might participate in heterosis during maize germination and exert an influence via the decay of their target genes. Novel miRNAs were predicted follow a rigorous criterion and only the miRNAs detected in all three samples were treated as a novel maize miRNA. In total, 34 miRNAs belonged to 20 miRNA families were predicted in germinating maize seeds. Global repression of miRNAs in the hybrid, which might result in enhanced gene expression, might be one reason why the hybrid showed higher embryo germination vigor compared to its parental lines.
机译:杂种优势已在玉米和其他农作物的育种中得到广泛利用,并且在提高产量,提高品质和增强抗逆性方面起着重要作用,但是导致杂种优势的分子机制尚不清楚。为了说明miRNA依赖的基因调控是否导致玉米萌发期间的杂种优势,采用深度测序技术对玉米杂交种Yuyu22的胚发芽进行了研究,该杂交种在中国及其亲本近交系Yu87-1和Zong3上广泛种植。使用实时PCR预测并测试了几个在杂种和亲本系中显示出重要表达的miRNA的靶基因。在杂种和亲本系中共检测到总共107个保守的玉米miRNA。与它们的亲本系相比,这些miRNA中的大多数在杂合体中非累加表达。这些结果表明,miRNA可能参与玉米萌发期间的杂种优势,并通过其靶基因的衰变产生影响。预测新的miRNA遵循严格的标准,只有在所有三个样品中检测到的miRNA均被视为新的玉米miRNA。总的来说,在发芽的玉米种子中预测到属于20个miRNA家族的34个miRNA。杂种中miRNA的整体抑制可能导致基因表达增强,这可能是杂种与其亲本相比显示出更高的种子萌发活力的原因之一。

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