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首页> 外文期刊>The Plant Cell >Genome-Wide Medicago truncatula Small RNA Analysis Revealed Novel MicroRNAs and Isoforms Differentially Regulated in Roots and Nodules.
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Genome-Wide Medicago truncatula Small RNA Analysis Revealed Novel MicroRNAs and Isoforms Differentially Regulated in Roots and Nodules.

机译:全基因组Medi藜小RNA分析揭示了在根和结节中差异调节的新型MicroRNA和同工型。

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摘要

Posttranscriptional regulation of a variety of mRNAs by small 21- to 24-nucleotide RNAs, notably the microRNAs (miRNAs), is emerging as a novel developmental mechanism. In legumes like the model Medicago truncatula, roots are able to develop a de novo meristem through the symbiotic interaction with nitrogen-fixing rhizobia. We used deep sequencing of small RNAs from root apexes and nodules of M. truncatula to identify 100 novel candidate miRNAs encoded by 265 hairpin precursors. New atypical precursor classes producing only specific 21- and 24-nucleotide small RNAs were found. Statistical analysis on sequencing reads abundance revealed specific miRNA isoforms in a same family showing contrasting expression patterns between nodules and root apexes. The differentially expressed conserved and nonconserved miRNAs may target a large variety of mRNAs. In root nodules, which show diverse cell types ranging from a persistent meristem to a fully differentiated central region, we discovered miRNAs spatially enriched in nodule meristematic tissues, vascular bundles, and bacterial infection zones using in situ hybridization. Spatial regulation of miRNAs may determine specialization of regulatory RNA networks in plant differentiation processes, such as root nodule formation.
机译:21至24个核苷酸的小分子RNA,特别是microRNA(miRNA),对多种mRNA的转录后调控正成为一种新型的发育机制。在像苜蓿模型苜蓿这样的豆科植物中,根系能够通过与固氮根瘤菌的共生相互作用而产生新的分生组织。我们对根尖梗和小枝结节的小RNA进行了深度测序,以鉴定由265个发夹前体编码的100个新候选miRNA。发现了仅产生特定的21和24核苷酸小RNA的新的非典型前体类别。测序读物丰度的统计分析显示,同一家族中的特定miRNA亚型显示结节和根尖之间的表达模式存在差异。差异表达的保守和非保守miRNA可能靶向多种mRNA。在根结节中,它显示了从持久性分生组织到完全分化的中心区域的多种细胞类型,我们发现了使用原位杂交在空间上富集于结节分生组织,血管束和细菌感染区中的miRNA。 miRNA的空间调控可能会决定植物分化过程(例如根瘤的形成)中调控RNA网络的特殊性。

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