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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Integrating transcriptome and metabolome reveals molecular networks involved in genetic and environmental variation in tobacco
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Integrating transcriptome and metabolome reveals molecular networks involved in genetic and environmental variation in tobacco

机译:整合转录组和代谢物揭示了烟草遗传和环境变异的分子网络

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摘要

Tobacco (Nicotiana tabacum) is one of the most widely cultivated commercial non-food crops with significant social and economic impacts. Here we profiled transcriptome and metabolome from 54 tobacco samples (2–3 replicates; n?=?151 in total) collected from three varieties (i.e. genetic factor), three locations (i.e. environmental factor), and six developmental stages (i.e. developmental process). We identified 3,405 differentially expressed (DE) genes (DEGs) and 371 DE metabolites, respectively. We used quantitative real-time PCR to validate 20 DEGs, and confirmed 18/20 (90%) DEGs between three locations and 16/20 (80%) with the same trend across developmental stages. We then constructed nine co-expression gene modules and four co-expression metabolite modules , and defined seven de novo regulatory networks, including nicotine- and carotenoid-related regulatory networks. A novel two-way Pearson correlation approach was further proposed to integrate co-expression gene and metabolite modules to identify joint gene–metabolite relations. Finally, we further integrated DE and network results to prioritize genes by its functional importance and identified a top-ranked novel gene, LOC107773232, as a potential regulator involved in the carotenoid metabolism pathway. Thus, the results and systems-biology approaches provide a new avenue to understand the molecular mechanisms underlying complex genetic and environmental perturbations in tobacco.
机译:烟草(Nicotiana Tabacum)是具有重大社会和经济影响的商业非粮食作物之一。在这里,我们从54个烟草样品中分析转录组和代谢物(2-3重复; N?=?151总共)收集的三种品种(即遗传因子),三个地点(即环境因素)和六个发育阶段(即发育过程)。我们分别鉴定了3,405个差异表达(DE)基因(DE)和371de代谢物。我们使用定量实时PCR来验证20次,并确认在三个地点之间的18/20(90%)下降,16/20(80%),具有跨发育阶段的相同趋势。然后,我们构建了九种共同表达基因模块和四种共同表达代谢物模块,并确定了七个De Novo监管网络,包括尼古丁和类胡萝卜素相关的监管网络。进一步提出了一种新的双向Pearson相关方法,以整合共表达基因和代谢物模块以鉴定联合基因 - 代谢物关系。最后,我们通过其功能重要性进一步集成了DE和网络结果,并确定了一种排名的新型基因,LOM107773232,作为参与类胡萝卜素代谢途径的潜在调节因子。因此,结果和系统 - 生物学方法提供了一种新的途径,了解烟草中复杂遗传和环境扰动的分子机制。
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