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首页> 外文期刊>BMC Genomics >Bioinformatic prediction, deep sequencing of microRNAs and expression analysis during phenotypic plasticity in the pea aphid, Acyrthosiphon pisum
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Bioinformatic prediction, deep sequencing of microRNAs and expression analysis during phenotypic plasticity in the pea aphid, Acyrthosiphon pisum

机译:豌豆蚜虫表型可塑性的生物信息学预测,microRNA的深度测序和表达分析

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Background Post-transcriptional regulation in eukaryotes can be operated through microRNA (miRNAs) mediated gene silencing. MiRNAs are small (18-25 nucleotides) non-coding RNAs that play crucial role in regulation of gene expression in eukaryotes. In insects, miRNAs have been shown to be involved in multiple mechanisms such as embryonic development, tissue differentiation, metamorphosis or circadian rhythm. Insect miRNAs have been identified in different species belonging to five orders: Coleoptera, Diptera, Hymenoptera, Lepidoptera and Orthoptera. Results We developed high throughput Solexa sequencing and bioinformatic analyses of the genome of the pea aphid Acyrthosiphon pisum in order to identify the first miRNAs from a hemipteran insect. By combining these methods we identified 149 miRNAs including 55 conserved and 94 new miRNAs. Moreover, we investigated the regulation of these miRNAs in different alternative morphs of the pea aphid by analysing the expression of miRNAs across the switch of reproduction mode. Pea aphid microRNA sequences have been posted to miRBase: http://microrna.sanger.ac.uk/sequences/ webcite Conclusions Our study has identified candidates as putative regulators involved in reproductive polyphenism in aphids and opens new avenues for further functional analyses.
机译:背景真核生物中的转录后调控可通过microRNA(miRNA)介导的基因沉默来进行。 MiRNA是小的(18-25个核苷酸)非编码RNA,在真核生物的基因表达调节中起关键作用。在昆虫中,miRNA已显示出参与多种机制,例如胚胎发育,组织分化,变态或昼夜节律。已在不同物种中鉴定出昆虫miRNA,它们属于五个科:鞘翅目,双翅目,膜翅目,鳞翅目和直翅目。结果我们开发了高通量Solexa测序,并对豌豆蚜虫Acyrthosiphon pisum的基因组进行了生物信息学分析,以鉴定来自半翅目昆虫的第一批miRNA。通过结合这些方法,我们确定了149个miRNA,包括55个保守的miRNA和94个新的miRNA。此外,我们通过分析跨越繁殖模式转换的miRNA的表达,研究了这些miRNA在豌豆蚜虫的不同替代形态中的调控。豌豆蚜虫microRNA序列已发布到miRBase:http://microrna.sanger.ac.uk/sequences/ webcite结论我们的研究确定了候选人为涉及蚜虫生殖多态性的假定调控因子,并为进一步的功能分析开辟了新途径。

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