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首页> 外文期刊>Nature Communications >miR828 and miR858 regulate homoeologous MYB2 gene functions in Arabidopsis trichome and cotton fibre development
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miR828 and miR858 regulate homoeologous MYB2 gene functions in Arabidopsis trichome and cotton fibre development

机译:miR828和miR858调节拟南芥毛状体和棉纤维发育中同源的 MYB2 基因功能

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摘要

Although polyploidy is common in plants and some animals, mechanisms for functional divergence between homoeologous genes are poorly understood. MYB2 gene promotes cotton fibre development and is functionally homologous to Arabidopsis GLABROUS1 ( GL1 ) in trichome formation. The most widely cultivated cotton is an allotetraploid ( Gossypium hirsutum , AADD) that contains GhMYB2A and GhMYB2D homoeologs. Here we show that GhMYB2D mRNA accumulates more than GhMYB2A during fibre initiation and is targeted by miR828 and miR858, generating trans -acting siRNAs (ta-siRNAs) in the TAS4 family. Overexpressing GhMYB2A but not GhMYB2D complements the gl1 phenotype. Mutating the miR828-binding site or replacing its downstream sequence in GhMYB2D abolishes ta-siRNA production and restores trichome development in gl1 mutants. Moreover, disrupting Dicer-like protein 4 or RDR6 , the biogenesis genes for ta-siRNAs, in the gl1 GhMYB2D overexpressors restores trichome development. These data support a unique role for microRNAs in functional divergence between target homoeologous genes that are important for evolution and selection of morphological traits.
机译:尽管多倍体在植物和某些动物中很常见,但是同源基因之间功能差异的机制却知之甚少。 MYB2基因促进棉纤维发育,并在毛状体形成中与拟南芥GLABROUS1(GL1)在功能上同源。种植最广泛的棉花是含有GhMYB2A和GhMYB2D同系物的异源四倍体(陆地棉)。在这里,我们显示GhMYB2D mRNA在纤维起始过程中比GhMYB2A积累更多,并且被miR828和miR858靶向,从而在TAS4家族中产生反式作用的siRNA(ta-siRNA)。过表达GhMYB2A但不过度表达GhMYB2D补充了gl1表型。突变miR828结合位点或替换其在GhMYB2D中的下游序列可消除ta-siRNA的产生并恢复gl1突变体中毛状体的发育。此外,在gl1 GhMYB2D过表达物中破坏Dicer样蛋白4或RDR6(ta-siRNA的生物发生基因)可恢复毛状体发育。这些数据支持microRNA在靶同源基因之间功能差异中的独特作用,这对于进化和选择形态特征很重要。

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