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首页> 外文期刊>BMC Genomics >Genome-wide identification, characterization, and evolutionary analysis of flowering genes in radish ( Raphanus sativus L.)
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Genome-wide identification, characterization, and evolutionary analysis of flowering genes in radish ( Raphanus sativus L.)

机译:萝卜开花基因全基因组的鉴定,表征和进化分析(Raphanus sativus L.)

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Radish (Raphanus sativus L.) belongs to the family Brassicaceae, and is an economically important root crop grown worldwide. Flowering is necessary for plant propagation, but it is also an important agronomic trait influencing R. sativus fleshy taproot yield and quality in the case of an imbalance between vegetative and reproductive growth. There is currently a lack of detailed information regarding the pathways regulating the flowering genes or their evolution in R. sativus. The release of the R. sativus genome sequence provides an opportunity to identify and characterize the flowering genes using a comparative genomics approach. We identified 254 R. sativus flowering genes based on sequence similarities and analyses of syntenic regions. The genes were unevenly distributed on the various chromosomes. Furthermore, we discovered the existence of R. sativus core function genes in the flowering regulatory network, which revealed that basic flowering pathways are relatively conserved between Arabidopsis thaliana and R. sativus. Additional comparisons with Brassica oleracea and Brassica rapa indicated that the retained flowering genes differed among species after genome triplication events. The R. sativus flowering genes were preferentially retained, especially those associated with gibberellin signaling and metabolism. Moreover, analyses of selection pressures suggested that the genes in vernalization and autonomous pathways were more variable than the genes in other R. sativus flowering pathways. Our results revealed that the core flowering genes are conserved between R. sativus and A. thaliana to a certain extent. Moreover, the copy number variation and functional differentiation of the homologous genes in R. sativus increased the complexity of the flowering regulatory networks after genome polyploidization. Our study provides an integrated framework for the R. sativus flowering pathways and insights into the evolutionary relationships between R. sativus flowering genes and the genes from A. thaliana and close relatives.
机译:萝卜(Raphanus sativus L.)属于十字花科,是一种在世界范围内具有重要经济意义的根系作物。开花是植物繁殖所必需的,但是在营养生长与生殖生长之间失衡的情况下,开花也是影响番茄红松肉质主根产量和品质的重要农艺性状。当前缺少关于调节开花基因或其在番茄中的进化的途径的详细信息。莴苣基因组序列的释放提供了使用比较基因组学方法鉴定和表征开花基因的机会。我们基于序列的相似性和同音区域的分析,确定了254个红景天开花基因。这些基因在各个染色体上分布不均。此外,我们在开花调控网络中发现了R. sativus核心功能基因的存在,这表明拟南芥和R. sativus之间的基本开花途径相对保守。与甘蓝型油菜和甘蓝型油菜的进一步比较表明,在基因组三倍化事件之后,保留的开花基因在物种之间有所不同。优先保留了R. sativus开花基因,特别是与赤霉素信号传导和代谢相关的基因。此外,选择压力的分析表明,春化和自主途径中的基因比其他番茄栽培种开花途径中的基因更具可变性。我们的结果表明,核心开花基因在R. sativus和A. thaliana之间有一定程度的保守性。而且,在基因组多倍化后,番茄中同源基因的拷贝数变异和功能分化增加了开花调控网络的复杂性。我们的研究为红景天开花途径提供了一个完整的框架,并为红景天开花基因与拟南芥及其近亲的基因之间的进化关系提供了见识。

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