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Transcriptome analysis of Brassica napus pod using RNA-Seq and identification of lipid-related candidate genes

机译:利用RNA-Seq对甘蓝型油菜荚果进行转录组分析并鉴定与脂质相关的候选基因

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Background Brassica napus is an important oilseed crop. Dissection of the genetic architecture underlying oil-related biological processes will greatly facilitates the genetic improvement of rapeseed. The differential gene expression during pod development offers a snapshot on the genes responsible for oil accumulation in. To identify candidate genes in the linkage peaks reported previously, we used RNA sequencing (RNA-Seq) technology to analyze the pod transcriptomes of German cultivar Sollux and Chinese inbred line Gaoyou. Methods The RNA samples were collected for RNA-Seq at 5-7, 15-17 and 25-27 days after flowering (DAF). Bioinformatics analysis was performed to investigate differentially expressed genes (DEGs). Gene annotation analysis was integrated with QTL mapping and Brassica napus pod transcriptome profiling to detect potential candidate genes in oilseed. Results Four hundred sixty five and two thousand, one hundred fourteen candidate DEGs were identified, respectively, between two varieties at the same stages and across different periods of each variety. Then, 33 DEGs between Sollux and Gaoyou were identified as the candidate genes affecting seed oil content by combining those DEGs with the quantitative trait locus (QTL) mapping results, of which, one was found to be homologous to Arabidopsis thaliana lipid-related genes. Discussion Intervarietal DEGs of lipid pathways in QTL regions represent important candidate genes for oil-related traits. Integrated analysis of transcriptome profiling, QTL mapping and comparative genomics with other relative species leads to efficient identification of most plausible functional genes underlying oil-content related characters, offering valuable resources for bettering breeding program of Brassica napus. Conclusions This study provided a comprehensive overview on the pod transcriptomes of two varieties with different oil-contents at the three developmental stages.
机译:背景甘蓝型油菜是重要的油料作物。解剖涉及石油的生物过程的遗传结构将极大地促进油菜的遗传改良。荚果发育过程中的差异基因表达提供了负责油积累的基因的快照。为了鉴定先前报道的连锁峰中的候选基因,我们使用了RNA测序(RNA-Seq)技术来分析德国品种Sollux的荚果转录组和中国自交系高邮。方法在开花后5-7天,15-17天和25-27天(DAF)收集RNA样品的RNA-Seq。进行生物信息学分析以研究差异表达基因(DEG)。基因注释分析与QTL作图和甘蓝型油菜荚果转录组分析相结合,以检测油料中潜在的候选基因。结果在两个品种的相同阶段和跨不同时期的不同品种中,分别鉴定出了465个和DEF 114个候选DEG。然后,通过将这些DEGs与定量性状基因座(QTL)作图结果相结合,确定了Sollux和高邮之间的33个DEGs是影响种子油含量的候选基因,其中一个与拟南芥脂质相关基因同源。讨论QTL区脂质途径的种间DEG代表了与油有关的性状的重要候选基因。转录组图谱分析,QTL作图和与其他相对物种的比较基因组学的综合分析可有效识别与油含量相关的特征下最合理的功能基因,为改善甘蓝型油菜的育种程序提供宝贵的资源。结论本研究对三个不同发育阶段含油量不同的两个品种的荚果转录组进行了全面概述。

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