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Evolution and Functional Diversification of MIRNA Genes

机译:MIRNA基因的进化和功能多样化。

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摘要

MicroRNAs (miRNAs) are small regulatory RNAs found in diverse eukaryotic lineages. In plants, a minority of annotated MIRNA gene families are conserved between plant families, while the majority are family-or species-specific, suggesting that most known MIRNA genes arose relatively recently in evolutionary time. Given the high proportion of young MIRNA genes in plant species, new MIRNA families are likely spawned and then lost frequently. Unlike highly conserved, ancient miRNAs, young miRNAs are often weakly expressed, processed imprecisely, lack targets, and display patterns of neutral variation, suggesting that young MIRNA loci tend to evolve neutrally. Genome-wide analyses from several plant species have revealed that variation in miRNA foldback expression, structure, processing efficiency, and miRNA size have resulted in the unique functionality of MIRNA loci and resulting miRNAs. Additionally, some miRNAs have evolved specific properties and functions that regulate other transcriptional or posttranscriptional silencing pathways. The evolution of miRNA processing and functional diversity underscores the dynamic nature of miRNA-based regulation in complex regulatory networks.
机译:MicroRNA(miRNA)是在各种真核细胞谱系中发现的小型调节RNA。在植物中,少数带注释的MIRNA基因家族在植物家族之间是保守的,而大多数是家族或物种特异性的,这表明大多数已知的MIRNA基因是在进化时期出现的相对较近的。鉴于植物中年轻的MIRNA基因比例很高,可能会产生新的MIRNA家族,然后经常丢失。与高度保守的古代miRNA不同,年轻的miRNA通常弱表达,加工不精确,缺乏靶标并显示中性变异模式,这表明年轻的MIRNA基因座倾向于中性进化。来自几种植物物种的全基因组分析表明,miRNA折叠表达,结构,加工效率和miRNA大小的变化已导致MIRNA基因座和所得miRNA的独特功能。此外,一些miRNA已进化出调节其他转录或转录后沉默途径的特定特性和功能。 miRNA加工和功能多样性的演变突显了复杂调控网络中基于miRNA的调控的动态性质。

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