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QTL Mapping and Diurnal Transcriptome Analysis Identify Candidate Genes Regulating Brassica napus Flowering Time

机译:QTL映射和昼夜转录组分析识别调节芸薹属植物开花时间的候选基因

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摘要

Timely flowering is important for seed formation and maximization of rapeseed (Brassica napus) yield. Here, we performed flowering-time quantitative trait loci (QTL) mapping using a double haploid (DH) population grown in three environments to study the genetic architecture. Brassica 60 K Illumina Infinium™ single nucleotide polymorphism (SNP) array and simple sequence repeat (SSR) markers were used for genotyping of the DH population, and a high-density genetic linkage map was constructed. QTL analysis of flowering time from the three environments revealed five consensus QTLs, including two major QTLs. A major QTL located on chromosome A03 was detected specifically in the semi-winter rapeseed growing region, and the one on chromosome C08 was detected in all environments. Ribonucleic acid sequencing (RNA-seq) was performed on the parents’ leaves at seven time-points in a day to determine differentially expressed genes (DEGs). The biological processes and pathways with significant enrichment of DEGs were obtained. The DEGs in the QTL intervals were analyzed, and four flowering time-related candidate genes were found. These results lay a foundation for the genetic regulation of rapeseed flowering time and create a rapeseed gene expression library for seven time-points in a day.
机译:及时开花对于种子形成和油菜籽(Brassica Napus)产量的最大化是重要的。在这里,我们使用三种环境中生长的双倍单倍体(DH)群体进行开花时间定量性状基因座(QTL)映射,以研究遗传建筑。 Brassica 60k Illumina Infinium™单核苷酸多态性(SNP)阵列和简单的序列重复(SSR)标记用于DH群体的基因分型,构建高密度遗传联系地图。 QTL分析来自三种环境的开花时间揭示了五个共识QTL,包括两个主要的QTL。特异性地在半冬季油菜籽生长区域检测到染色体A03上的主要QTL,在所有环境中检测到染色体C08上的QTL。在父母的叶片上在七次时间点对父母的叶片进行核糖核核酸测序(RNA-SEQ)以确定差异表达的基因(DEGS)。获得了具有显着富集Degs的生物过程和途径。分析了QTL间隔中的次数,并发现了四个开花时间相关的候选基因。这些结果为菜籽开花时间的遗传调节奠定了基础,并在一天内创建七次时间点的菜籽基因表达文库。

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