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A Burst of miRNA Innovation in the Early Evolution of Butterflies and Moths

机译:蝴蝶和飞蛾早期进化中的miRNA创新突破

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摘要

MicroRNAs (miRNAs) are involved in posttranscriptional regulation of gene expression. Because several miRNAs are known to affect the stability or translation of developmental regulatory genes, the origin of novel miRNAs may have contributed to the evolution of developmental processes and morphology. Lepidoptera (butterflies and moths) is a species-rich clade with a well-established phylogeny and abundant genomic resources, thereby representing an ideal system in which to study miRNA evolution. We sequenced small RNA libraries from developmental stages of two divergent lepidopterans, Cameraria ohridella (Horse chestnut Leafminer) and Pararge aegeria (Speckled Wood butterfly), discovering 90 and 81 conserved miRNAs, respectively, and many species-specific miRNA sequences. Mapping miRNAs onto the lepidopteran phylogeny reveals rapid miRNA turnover and an episode of miRNA fixation early in lepidopteran evolution, implying that miRNA acquisition accompanied the early radiation of the Lepidoptera. One lepidopteran-specific miRNA gene, miR-2768, is located within an intron of the homeobox gene invected, involved in insect segmental and wing patterning. We identified cubitus interruptus (ci) as a likely direct target of miR-2768, and validated this suppression using a luciferase assay system. We propose a model by which miR-2768 modulates expression of ci in the segmentation pathway and in patterning of lepidopteran wing primordia.
机译:MicroRNA(miRNA)参与基因表达的转录后调控。由于已知有几种miRNA会影响发育调控基因的稳定性或翻译,因此新型miRNA的起源可能有助于发育过程和形态的进化。鳞翅目(蝴蝶和飞蛾)是物种丰富的进化枝,具有完善的系统发育和丰富的基因组资源,因此是研究miRNA进化的理想系统。我们对来自两个不同鳞翅类的发育阶段的小RNA测序,分别为Cameraria ohridella(七叶树Leafminer)和Pararage aegeria(斑点木蝴蝶),分别发现了90和81个保守的miRNA,以及许多物种特异性的miRNA序列。将miRNA映射到鳞翅目的系统发育过程中,可以发现miRNA的快速更新和鳞翅目进化早期的miRNA固定现象,这意味着miRNA的获得伴随着鳞翅目的早期辐射。一个鳞翅目特定的miRNA基因miR-2768位于被感染的同源盒基因的内含子内,参与昆虫的节段和翅膀模式。我们确定肘裂(ci)为可能的miR-2768的直接目标,并使用荧光素酶测定系统验证了这种抑制作用。我们提出了一个模型,其中miR-2768通过调节ci在分段途径和鳞翅目翅原基的模式中的表达。

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