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首页> 外文期刊>Nucleic acids research >microRNAs and the evolution of complex multicellularity: identification of a large, diverse complement of microRNAs in the brown alga Ectocarpus
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microRNAs and the evolution of complex multicellularity: identification of a large, diverse complement of microRNAs in the brown alga Ectocarpus

机译:microRNA和复杂多细胞性的进化:鉴定棕色藻赤藓皮中大量不同的microRNA。

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There is currently convincing evidence that microRNAs have evolved independently in at least six different eukaryotic lineages: animals, land plants, chlorophyte green algae, demosponges, slime molds and brown algae. MicroRNAs from different lineages are not homologous but some structural features are strongly conserved across the eukaryotic tree allowing the application of stringent criteria to identify novel microRNA loci. A large set of 63 microRNA families was identified in the brown alga Ectocarpus based on mapping of RNA-seq data and nine microRNAs were confirmed by northern blotting. The Ectocarpus microRNAs are highly diverse at the sequence level with few multi-gene families, and do not tend to occur in clusters but exhibit some highly conserved structural features such as the presence of a uracil at the first residue. No homologues of Ectocarpus microRNAs were found in other stramenopile genomes indicating that they emerged late in stramenopile evolution and are perhaps specific to the brown algae. The large number of microRNA loci in Ectocarpus is consistent with the developmental complexity of many brown algal species and supports a proposed link between the emergence and expansion of microRNA regulatory systems and the evolution of complex multicellularity.
机译:目前,有令人信服的证据表明,microRNA在至少六个不同的真核生物谱系中独立进化:动物,陆地植物,绿藻绿藻,脱脂海绵,粘液霉菌和褐藻。来自不同谱系的MicroRNA不是同源的,但是在整个真核树中某些结构特征是非常保守的,从而允许应用严格的标准来鉴定新的microRNA基因座。根据RNA-seq数据图谱分析,在褐藻赤道果树中鉴定出63个microRNA家族,通过Northern杂交确认了9个microRNA。腕果微RNA在序列水平上高度多样,几乎没有多基因家族,并且不倾向于簇生,而是表现出一些高度保守的结构特征,例如在第一个残基存在尿嘧啶。在其他Stramenopile基因组中未发现Ectocarpus microRNA的同源物,表明它们出现在Stramenopile进化的后期,可能对褐藻具有特异性。赤尾果中大量的microRNA位点与许多褐藻物种的发育复杂性相符,并支持microRNA调控系统的出现和扩展与复杂多细胞性的进化之间的拟议联系。

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