National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi 110067, India.
National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi 110067, India.
Genomics. 2014 Jan;103(1):114-21. doi: 10.1016/j.ygeno.2013.11.004. Epub 2013 Nov 22.
Similar to the majority of the microRNAs, mature miR166s are derived from multiple members of MIR166 genes (precursors) and regulate various aspects of plant development by negatively regulating their target genes (Class III HD-ZIP). The evolutionary conservation or functional diversification of miRNA166 family members remains elusive. Here, we show the phylogenetic relationships among MIR166 precursor and mature sequences from three diverse model plant species. Despite strong conservation, some mature miR166 sequences, such as ppt-miR166m, have undergone sequence variation. Critical sequence variation in ppt-miR166m has led to functional diversification, as it targets non-HD-ZIPIII gene transcript (s). MIR166 precursor sequences have diverged in a lineage specific manner, and both precursors and mature osa-miR166i/j are highly conserved. Interestingly, polycistronic MIR166s were present in Physcomitrella and Oryza but not in Arabidopsis. The nature of cis-regulatory motifs on the upstream promoter sequences of MIR166 genes indicates their possible contribution to the functional variation observed among miR166 species.
类似于大多数 microRNAs,成熟的 miR166s 是由 MIR166 基因(前体)的多个成员衍生而来的,通过负调控其靶基因(III 类 HD-ZIP)来调节植物发育的各个方面。miRNA166 家族成员的进化保守性或功能多样化仍然难以捉摸。在这里,我们展示了来自三个不同模式植物物种的 MIR166 前体和成熟序列之间的系统发育关系。尽管存在强烈的保守性,但一些成熟的 miR166 序列,如 ppt-miR166m,已经发生了序列变异。ppt-miR166m 中的关键序列变异导致了功能多样化,因为它靶向非 HD-ZIPIII 基因转录本(s)。MIR166 前体序列以谱系特异性的方式分化,而 osa-miR166i/j 的前体和成熟序列都高度保守。有趣的是,多顺反子 MIR166s 存在于 Physcomitrella 和 Oryza 中,但不存在于 Arabidopsis 中。MIR166 基因上游启动子序列上 cis 调控元件的性质表明它们可能对 miR166 物种之间观察到的功能变异做出贡献。