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首页> 外文期刊>BMC Genomics >Transcriptome profile analysis of young floral buds of fertile and sterile plants from the self-pollinated offspring of the hybrid between novel restorer line NR1 and Nsa CMS line in Brassica napus
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Transcriptome profile analysis of young floral buds of fertile and sterile plants from the self-pollinated offspring of the hybrid between novel restorer line NR1 and Nsa CMS line in Brassica napus

机译:甘蓝型油菜新型恢复系NR1和Nsa CMS之间杂交后代自花授粉后代的能育和不育植物幼花芽的转录组谱分析

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Background The fertile and sterile plants were derived from the self-pollinated offspring of the F1 hybrid between the novel restorer line NR1 and the Nsa CMS line in Brassica napus. To elucidate gene expression and regulation caused by the A and C subgenomes of B. napus, as well as the alien chromosome and cytoplasm from Sinapis arvensis during the development of young floral buds, we performed a genome-wide high-throughput transcriptomic sequencing for young floral buds of sterile and fertile plants. Results In this study, equal amounts of total RNAs taken from young floral buds of sterile and fertile plants were sequenced using the Illumina/Solexa platform. After filtered out low quality data, a total of 2,760,574 and 2,714,441 clean tags were remained in the two libraries, from which 242,163 (Ste) and 253,507 (Fer) distinct tags were obtained. All distinct sequencing tags were annotated using all possible CATG+17-nt sequences of the genome and transcriptome of Brassica rapa and those of Brassica oleracea as the reference sequences, respectively. In total, 3231 genes of B. rapa and 3371 genes of B. oleracea were detected with significant differential expression levels. GO and pathway-based analyses were performed to determine and further to understand the biological functions of those differentially expressed genes (DEGs). In addition, there were 1089 specially expressed unknown tags in Fer, which were neither mapped to B. oleracea nor to B. rapa, and these unique tags were presumed to arise basically from the added alien chromosome of S. arvensis. Fifteen genes were randomly selected and their expression levels were confirmed by quantitative RT-PCR, and fourteen of them showed consistent expression patterns with the digital gene expression (DGE) data. Conclusions A number of genes were differentially expressed between the young floral buds of sterile and fertile plants. Some of these genes may be candidates for future research on CMS in Nsa line, fertility restoration and improved agronomic traits in NR1 line. Further study of the unknown tags which were specifically expressed in Fer will help to explore desirable agronomic traits from wild species.
机译:背景可育和不育植物来自甘蓝型油菜新恢复系NR1和Nsa CMS系之间F 1 杂种的自花授粉后代。为了阐明由甘蓝型油菜的A和C亚基因组以及幼小花芽发育过程中Sinapis arvensis的外来染色体和细胞质引起的基因表达和调控,我们对幼虫进行了全基因组高通量转录组测序不育和可育植物的花蕾。结果在这项研究中,使用Illumina / Solexa平台对取自无菌和可育植物的年轻花芽的等量总RNA进行了测序。滤除低质量数据后,两个库中总共保留了2,760,574和2,714,441个干净标签,从中获得了242,163(Ste)和253,507(Fer)不同的标签。所有不同的测序标签都分别以甘蓝型油菜和甘蓝型油菜的基因组和转录组的所有可能的CATG + 17-nt序列作为参考序列进行注释。总共检测到了R. rapa的3231个基因和B. oleracea的3371个基因,它们的表达水平差异显着。进行了GO和基于路径的分析,以确定并进一步了解了这些差异表达基因(DEG)的生物学功能。此外,在Fer中有1089个特殊表达的未知标签,既未定位到油菜芽孢杆菌,也未定位到油菜芽胞杆菌,并且这些独特的标签被认为基本上来自添加的阿尔弗雷德酵母。随机选择了15个基因,并通过定量RT-PCR确认了它们的表达水平,其中14个基因与数字基因表达(DGE)数据显示了一致的表达模式。结论不育和可育植物的年轻花芽之间有许多基因差异表达。这些基因中的一些可能是将来在Nsa系中进行CMS研究,恢复生育力和改善NR1系农艺性状的候选基因。进一步研究在Fer中特异性表达的未知标签将有助于探索野生物种的理想农艺性状。

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