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Comparative Analysis of the MIR319a MicroRNA Locus in Arabidopsis and Related Brassicaceae

机译:拟南芥和相关十字花科MIR319a MicroRNA基因座的比较分析

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MicroRNAs (miRNAs) are important regulators of gene expression in multicellular organisms. Yet, little is known about their molecular evolution. The 20- to 22-nt long miRNAs are processed in plants from foldbacks that are a few hundred base pairs in size. Often, these foldbacks are embedded in much larger precursor transcripts. To investigate functional constraints on sequence evolution of miRNA precursor genes, we have studied sequence variation in the precursor of miR319a, MIR319a, between species from the Brassicaceae. We compared the genomic context in Arabidopsis thaliana, Arabidopsis halleri, and Capsella rubella, using bacterial artificial chromosome clones, and analyzed precursor sequences obtained by polymerase chain reaction from 13 additional species. Phylogenetic shadowing identifies a conserved motif around the transcription start site, which we demonstrate to be functionally important. We further assessed the functionality of MIR319a orthologs from several Brassicaceae species in A. thaliana. The ortholog from kale (Brassica oleracea var. acephala) was found to be largely inactive, at least partially due to mutations in the miRNA itself, but experimental evidence suggests that loss of miR319a function is compensated by other members of the miR319 family. More broadly, we find that the foldback diverges less rapidly than the remainder of the primary transcript. To understand the molecular evolution of miRNA genes, investigations at different levels of phylogenetic divergence are required.
机译:微小RNA(miRNA)是多细胞生物中基因表达的重要调节剂。然而,对其分子进化知之甚少。 20至22 nt长的miRNA在植物中由几百个碱基对大小的折返物加工而成。通常,这些折返会嵌入更大的前体转录本中。为了研究miRNA前体基因序列进化的功能限制,我们研究了十字花科植物之间miR319a,MIR319a前体的序列变异。我们使用细菌人工染色体克隆比较了拟南芥,拟南芥halleri和Cap菜风疹的基因组背景,并分析了通过聚合酶链反应从另外13个物种获得的前体序列。系统发育阴影可识别转录起始位点附近的保守基序,我们证明这在功能上很重要。我们进一步评估了拟南芥中几个十字花科的MIR319a直系同源物的功能。发现来自羽衣甘蓝的直向同源物(甘蓝(Brassica oleracea var。acephala))基本上没有活性,至少部分是由于miRNA本身的突变,但是实验证据表明,miR319a功能的丧失可以由miR319家族的其他成员补偿。更广泛地说,我们发现折返的发散速度不及主要转录本的其余部分快。要了解miRNA基因的分子进化,需要在不同系统发育差异水平上进行研究。

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