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Correlation analysis of the mRNA and miRNA expression profiles in the nascent synthetic allotetraploid Raphanobrassica

机译:新生合成异源四倍体Raphanobrassica mRNA和miRNA表达谱的相关性分析

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摘要

Raphanobrassica is an allopolyploid species derived from inter-generic hybridization that combines the R genome from R. sativus and the C genome from B. oleracea var. alboglabra. In the present study, we used a high-throughput sequencing method to identify the mRNA and miRNA profiles in Raphanobrassica and its parents. A total of 33,561 mRNAs and 283 miRNAs were detected, 9,209 mRNAs and 134 miRNAs were differentially expressed respectively, 7,633 mRNAs and 39 miRNAs showed ELD expression, 5,219 mRNAs and 57 miRNAs were non-additively expressed in Raphanobrassica. Remarkably, differentially expressed genes (DEGs) were up-regulated and maternal bias was detected in Raphanobrassica. In addition, a miRNA-mRNA interaction network was constructed based on reverse regulated miRNA-mRNAs, which included 75 miRNAs and 178 mRNAs, 31 miRNAs were non-additively expressed target by 13 miRNAs. The related target genes were significantly enriched in the GO term ‘metabolic processes’. Non-additive related target genes regulation is involved in a range of biological pathways, like providing a driving force for variation and adaption in this allopolyploid. The integrative analysis of mRNA and miRNA profiling provides more information to elucidate gene expression mechanism and may supply a comprehensive and corresponding method to study genetic and transcription variation of allopolyploid.
机译:Raphanobrassica是一种异源多倍体物种,来源于种间杂交,结合了来自R. sativus的R基因组和来自B. oleracea var的C基因组。 alboglabra。在本研究中,我们使用了高通量测序方法来鉴定Raphanobrassica及其亲本中的mRNA和miRNA图谱。共检测到33.561个mRNA和283个miRNA,差异表达了9,209个mRNA和134个miRNA,在Raphanobrassica中非表达地表达了7,633个mRNA和39个miRNA,其中ELD表达,5,219个mRNA和57个miRNA未累加表达。显着地,差异表达基因(DEGs)被上调并且在Raphanobrassica中检测到母体偏倚。此外,基于反向调控的miRNA-mRNA构建了miRNA-mRNA相互作用网络,其中包括75个miRNA和178个mRNA,其中31个miRNA被13个miRNA非累加表达靶标。在GO术语“代谢过程”中,相关的靶基因显着丰富。非添加剂相关的靶基因调控涉及一系列生物途径,例如为该同种多倍体的变异和适应提供驱动力。对mRNA和miRNA谱的综合分析为阐明基因表达机制提供了更多信息,并可能为研究同种多倍体的遗传和转录变异提供一种全面而相应的方法。

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