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Genome-wide analysis of microRNA targeting impacted by SNPs in cucumber genome

机译:黄瓜基因组中受SNP影响的microRNA靶向全基因组分析

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Background microRNAs (miRNAs) are endogenous small RNAs that play important regulatory functions in plant development. Genetic variations in miRNAs sequences or their target-binding sites (microRNA-target interaction sites) can alter miRNA targets in animal and human. Whether these single nucleotide polymorphisms (SNPs) in plant are functional have not yet been determined. Results In this study, we constructed leaf, root, and stem-derived small libraries of cucumber ( Cucumis sativus ) line 9930 (cultivated China-group cucumber) and C. sativus var. hardwickii (wild India group cucumber). A total of 22 conserved miRNA families, nine less-conserved miRNA families, and 49 cucumber-specific miRNAs were identified in both line 9930 and hardwickii . We employed cucumber resequencing data to perform a genome-wide scan for SNPs in cucumber miRNA-target interaction sites, including miRNA mature sequences and miRNA-target binding sites. As a result, we identified a total of 19 SNPs in mature miRNA sequences and 113 SNPs in miRNA-target binding sites with the potential to affect miRNA-target interactions. Furthermore, we experimentally confirmed that these SNPs produced 14 9930-unique targets mRNAs and 15 hardwickii -unique targets mRNA for cucumber miRNAs. This is the first experimental validation of SNPs in miRNA-target interaction sites affecting miRNA-target binding in plants. Conclusions Our results indicate that SNPs can alter miRNA function and produce unique miRNA targets in cultivated and wild cucumbers. Therefore, miRNA-related SNPs may have played important in events that led to the agronomic differences between domestic and wild cucumber.
机译:背景微RNA(miRNA)是内源性小RNA,在植物发育中起重要调控作用。 miRNA序列或其靶标结合位点(microRNA-target相互作用位点)的遗传变异可以改变动物和人类中的miRNA靶标。植物中的这些单核苷酸多态性(SNP)是否具有功能尚未确定。结果在本研究中,我们构建了黄瓜(Cucumis sativus)9930系(栽培中国组黄瓜)和C. sativus var的叶,根和茎衍生的小文库。 hardwickii(野生印度群黄瓜)。在9930和Hardwickii系中共鉴定出22个保守的miRNA家族,9个保守性较低的miRNA家族和49个黄瓜特异性miRNA。我们采用黄瓜重测序数据对黄瓜miRNA-靶标相互作用位点(包括miRNA成熟序列和miRNA-靶标结合位点)中的SNPs进行全基因组扫描。结果,我们在成熟的miRNA序列中鉴定出总共19个SNP,在miRNA-靶标结合位点中鉴定出113个SNP,并可能影响miRNA-靶标的相互作用。此外,我们实验证实了这些SNP为黄瓜miRNA产生了14个9930个独特的靶mRNA和15个Hardwickii独特的靶mRNA。这是影响植物中miRNA-靶标结合的miRNA-靶标相互作用位点中SNP的首次实验验证。结论我们的结果表明SNP可以改变miRNA的功能并在栽培和野生黄瓜中产生独特的miRNA靶标。因此,与miRNA相关的SNP在导致家庭黄瓜与野生黄瓜之间在农学差异方面发生的事件中可能发挥了重要作用。

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