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Transcriptome Analysis of Diurnal Gene Expression in Chinese Cabbage

机译:大白菜昼夜基因表达的转录组分析

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摘要

Plants have developed timing mechanisms that enable them to maintain synchrony with daily environmental events. These timing mechanisms, i.e., circadian clocks, include transcriptional/translational feedback loops that drive 24 h transcriptional rhythms, which underlie oscillations in protein abundance, thus mediating circadian rhythms of behavior, physiology, and metabolism. Circadian clock genes have been investigated in the diploid model plant Arabidopsis thaliana. Crop plants with polyploid genomes—such as Brassica species—have multiple copies of some clock-related genes. Over the last decade, numerous studies have been aimed at identifying and understanding the function of paralogous genes with conserved sequences, or those that diverged during evolution. Brassica rapa’s triplicate genomes retain sequence-level collinearity with Arabidopsis. In this study, we used RNA sequencing (RNAseq) to profile the diurnal transcriptome of Brassica rapa seedlings. We identified candidate paralogs of circadian clock-related genes and assessed their expression levels. These genes and their related traits that modulate the diurnal rhythm of gene expression contribute to the adaptation of crop cultivars. Our findings will contribute to the mechanistic study of circadian clock regulation inherent in polyploidy genome crops, which differ from those of model plants, and thus will be useful for future breeding studies using clock genes.
机译:植物已经开发出定时机制,使它们能够与日常环境事件保持同步。这些定时机制,即昼夜节律时钟,包括驱动24小时转录节律的转录/翻译反馈环,其是蛋白质丰度振荡的基础,从而介导了行为,生理学和新陈代谢的昼夜节律。在二倍体模型植物拟南芥中已经研究了昼夜节律基因。具有多倍体基因组的农作物(例如芸苔属)具有一些与时钟相关的基因的多个副本。在过去的十年中,许多研究旨在鉴定和理解具有保守序列或在进化过程中发散的同源基因的功能。甘蓝型油菜的一式三份基因组与拟南芥保持序列水平的共线性。在这项研究中,我们使用RNA测序(RNAseq)来分析甘蓝型油菜幼苗的昼夜转录组。我们鉴定了生物钟相关基因的候选旁系同源物,并评估了它们的表达水平。这些基因及其相关性状可调节基因表达的昼夜节律,有助于作物品种的适应。我们的发现将有助于多倍体基因组作物固有的昼夜节律调节机理的研究,这与模型植物不同,因此对于将来使用时钟基因的育种研究将是有用的。

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