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首页> 外文期刊>Scientific reports. >Genome-wide transcriptomic analysis uncovers the molecular basis underlying early flowering and apetalous characteristic in Brassica napus L
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Genome-wide transcriptomic analysis uncovers the molecular basis underlying early flowering and apetalous characteristic in Brassica napus L

机译:基因组转录组分析揭示了芸苔湖中的早期开花和前一种特征的分子基础

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Floral transition and petal onset, as two main aspects of flower development, are crucial to rapeseed evolutionary success and yield formation. Currently, very little is known regarding the genetic architecture that regulates flowering time and petal morphogenesis in Brassica napus. In the present study, a genome-wide transcriptomic analysis was performed with an absolutely apetalous and early flowering line, APL01, and a normally petalled line, PL01, using high-throughput RNA sequencing. In total, 13,205 differential expressed genes were detected, of which 6111 genes were significantly down-regulated, while 7094 genes were significantly up-regulated in the young inflorescences of APL01 compared with PL01. The expression levels of a vast number of genes involved in protein biosynthesis were altered in response to the early flowering and apetalous character. Based on the putative rapeseed flowering genes, an early flowering network, mainly comprised of vernalization and photoperiod pathways, was built. Additionally, 36 putative upstream genes possibly governing the apetalous character of line APL01 were identified, and six genes potentially regulating petal origination were obtained by combining with three petal-related quantitative trait loci. These findings will facilitate understanding of the molecular mechanisms underlying floral transition and petal initiation in B. napus.
机译:作为花卉发育的两个主要方面,花卉过渡和花瓣发病对油菜化的进化成功和产量形成至关重要。目前,关于调节开花时间和花瓣形态发生的遗传建筑,非常少的人已经知道了芸薹属植物。在本研究中,使用高通量RNA测序,用绝对前一种和早期的开花线,APL01和通常具有普通的线路PLO1进行基因组的转录组分析。总共检测到13,205种差异表达基因,其中6111个基因显着下调,而APL01的青少年花序显着上调7094个基因。响应于早期开花和前一种特征,改变了蛋白质生物合成中涉及蛋白质生物合成的大量基因的表达水平。基于推定的油菜籽开花基因,建立了一个主要由春化和光周期途径组成的早期开花网络。另外,鉴定了36个载推式上游基因,可能针对线APL01的前导特征,通过组合三种与三种有关的定量性状基因座来获得潜在调节瓣缺陷的六个基因。这些发现将促进对B. Napus中的花卉过渡和花瓣引发的潜在分子机制的理解。

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