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首页> 外文期刊>BMC Plant Biology >The role of small RNAs on phenotypes in reciprocal hybrids between Solanum lycopersicum and S. pimpinellifolium
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The role of small RNAs on phenotypes in reciprocal hybrids between Solanum lycopersicum and S. pimpinellifolium

机译:小RNA对茄霉菌和皮氏菌综合杂交种表型的作用

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Background Reciprocal hybrids showing different phenotypes have been well documented in previous studies, and many factors accounting for different phenotypes have been extensively investigated. However, less is known about whether the profiles of small RNAs differ between reciprocal hybrids and how these small RNAs affect gene expression and phenotypes. To better understand this mechanism, the role of small RNAs on phenotypes in reciprocal hybrids was analysed. Results Reciprocal hybrids between Solanum lycopersicum cv. Micro-Tom and S. pimpinellifolium line WVa700 were generated. Significantly different phenotypes between the reciprocal hybrids were observed, including fruit shape index, single fruit weight and plant height. Then, through the high-throughput sequencing of small RNAs, we found that the expression levels of 76 known miRNAs were highly variable between the reciprocal hybrids. Subsequently, a total of 410 target genes were predicted to correspond with these differentially expressed miRNAs. Furthermore, gene ontology (GO) annotation indicated that those target genes are primarily involved in metabolic processes. Finally, differentially expressed miRNAs, such as miR156f and 171a, and their target genes were analysed by qRT-PCR, and their expression levels were well correlated with the different phenotypes. Conclusions This study showed that the profiles of small RNAs differed between the reciprocal hybrids, and differentially expressed genes were also observed based on the different phenotypes. The qRT-PCR results of target genes showed that differentially expressed miRNAs negatively regulated their target genes. Moreover, the expression of target genes was well correlated with the observations of different phenotypes. These findings may aid in elucidating small RNAs contribute significantly to different phenotypes through epigenetic modification during reciprocal crossing.
机译:背景技术在先前的研究中,显示出不同表型的互惠杂种已经很好地记录了许多因素,这些因素已被广泛研究了不同表型。然而,关于往复式杂种的小RNA的谱不同以及这些小RNA如何影响基因表达和表型,所知的较少。为了更好地理解这种机制,分析了小RNA对互惠杂种中的表型的作用。结果茄子植物霉素CV之间的互惠杂种。生成微米和S.Pimpinellifolium线WVA700。观察到往复式杂种之间的显着不同的表型,包括果实形状指数,单果重和植物高度。然后,通过小RNA的高通量测序,我们发现76个已知的miRNA的表达水平在往复式杂交物之间具有高度可变的变量。随后,预测总共410个靶基因与这些差异表达的miRNA对应。此外,基因本体(GO)注释表明,这些靶基因主要参与代谢过程。最后,通过QRT-PCR分析差异表达的miRNA,例如miR156f和171a及其靶基因,并且它们的表达水平与不同的表型孔面良好。结论本研究表明,基于不同的表型,还观察到往复式杂种和差异表达基因之间的小RNA的谱不同。靶基因的QRT-PCR结果表明,差异表达的miRNA对其靶基因产生负面调节。此外,靶基因的表达与不同表型的观察结果良好。这些发现可能有助于阐明小RNA,在往复式交叉期间通过表观遗传修饰在不同的表型上显着贡献。

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