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Genome-wide analysis of coordinated transcript abundance during seed development in different Brassica rapa morphotypes

机译:全基因组分析不同甘蓝型油菜种子发育过程中转录本的丰度

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Background Brassica seeds are important as basic units of plant growth and sources of vegetable oil. Seed development is regulated by many dynamic metabolic processes controlled by complex networks of spatially and temporally expressed genes. We conducted a global microarray gene co-expression analysis by measuring transcript abundance of developing seeds from two diverse B. rapa morphotypes: a pak choi (leafy-type) and a yellow sarson (oil-type), and two of their doubled haploid (DH) progenies, (1) to study the timing of metabolic processes in developing seeds, (2) to explore the major transcriptional differences in developing seeds of the two morphotypes, and (3) to identify the optimum stage for a genetical genomics study in B. rapa seed. Results Seed developmental stages were similar in developing seeds of pak choi and yellow sarson of B. rapa; however, the colour of embryo and seed coat differed among these two morphotypes. In this study, most transcriptional changes occurred between 25 and 35 DAP, which shows that the timing of seed developmental processes in B. rapa is at later developmental stages than in the related species B. napus. Using a Weighted Gene Co-expression Network Analysis (WGCNA), we identified 47 “gene modules”, of which 27 showed a significant association with temporal and/or genotypic variation. An additional hierarchical cluster analysis identified broad spectra of gene expression patterns during seed development. The predominant variation in gene expression was according to developmental stages rather than morphotype differences. Since lipids are the major storage compounds of Brassica seeds, we investigated in more detail the regulation of lipid metabolism. Four co-regulated gene clusters were identified with 17 putative cis-regulatory elements predicted in their 1000?bp upstream region, either specific or common to different lipid metabolic pathways. Conclusions This is the first study of genome-wide profiling of transcript abundance during seed development in B. rapa. The identification of key physiological events, major expression patterns, and putative cis-regulatory elements provides useful information to construct gene regulatory networks in B. rapa developing seeds and provides a starting point for a genetical genomics study of seed quality traits.
机译:背景技术芸苔属种子作为植物生长的基本单位和植物油的来源很重要。种子的发育受到许多动态代谢过程的调控,这些代谢过程由时空表达基因的复杂网络控制。我们通过测量来自两种不同的B. rapa形态类型的发育中种子的转录本丰度,进行了全球微阵列基因共表达分析:白菜(叶菜型)和黄色sarson(油型),以及它们的两个双倍单倍体( DH)后代,(1)研究发育中种子的代谢过程的时机,(2)探索两种形态型发育中的种子的主要转录差异,以及(3)确定用于遗传基因组研究的最佳阶段B. rapa种子。结果小白菜和黄菜的种子发育阶段相似。然而,这两种形态类型的胚和种皮颜色不同。在这项研究中,大多数转录变化发生在25到35 DAP之间,这表明B. rapa种子发育过程的发生时间比相关物种B. napus的发育阶段晚。使用加权基因共表达网络分析(WGCNA),我们确定了47个“基因模块”,其中27个与时间和/或基因型变异显着相关。另外的层次聚类分析确定了种子发育过程中基因表达模式的广谱范围。基因表达的主要变化是根据发育阶段而不是形态型差异。由于脂质是甘蓝型油菜种子的主要贮藏化合物,因此我们更详细地研究了脂质代谢的调控。鉴定出四个共同调控的基因簇,它们在其1000?bp上游区域中预测有17个推定的顺式调控元件,对不同的脂质代谢途径是特异的或共有的。结论这是首次在芜菁种子发育过程中对转录本丰度进行全基因组分析。关键生理事件,主要表达模式和推定的顺式调控元件的鉴定提供了有用的信息,可用于构建油菜籽发育种子的基因调控网络,并为种子品质性状的遗传基因组学研究提供了起点。

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