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F-Box Genes in the Wheat Genome and Expression Profiling in Wheat at Different Developmental Stages

机译:小麦基因组中的F箱基因和不同发育阶段小麦的表达谱

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摘要

Genes of the F-box family play specific roles in protein degradation by post-translational modification in several biological processes, including flowering, the regulation of circadian rhythms, photomorphogenesis, seed development, leaf senescence, and hormone signaling. F-box genes have not been previously investigated on a genome-wide scale; however, the establishment of the wheat (Triticum aestivum L.) reference genome sequence enabled a genome-based examination of the F-box genes to be conducted in the present study. In total, 1796 F-box genes were detected in the wheat genome and classified into various subgroups based on their functional C-terminal domain. The F-box genes were distributed among 21 chromosomes and most showed high sequence homology with F-box genes located on the homoeologous chromosomes because of allohexaploidy in the wheat genome. Additionally, a synteny analysis of wheat F-box genes was conducted in rice and Brachypodium distachyon. Transcriptome analysis during various wheat developmental stages and expression analysis by quantitative real-time PCR revealed that some F-box genes were specifically expressed in the vegetative and/or seed developmental stages. A genome-based examination and classification of F-box genes provide an opportunity to elucidate the biological functions of F-box genes in wheat.
机译:F型箱家族的基因在若干生物过程中翻译后修饰在蛋白质降解中发挥了特异性作用,包括开花,昼夜节律,光致血管发生,种子发育,叶片衰老和激素信号传导。之前未对基因组范围进行研究的F盒基因;然而,确定小麦(Triticum aestivum L)参考基因组序列的基因组序列使基于基于基于基于基于F盒基因的基因检查在本研究中进行。总共在小麦基因组中检测到1796个F箱基因,并基于其功能性C末端结构域分为各种亚组。 F型盒基因分布在21条染色体中,并且由于小麦基因组中的allohexaproidy,最多显示了位于同源染色体上的F型箱基因的高序列同源性。另外,小麦F箱基因的同时性分析在水稻和沸腾的Disthachyon中进行。通过定量实时PCR在各种小麦发育阶段和表达分析期间的转录体分析显示,一些F型箱基因在营养和/或种子发育阶段中特异性地表达。基于基因组的基因组检查和分类F型箱基因提供了阐明小麦中F箱基因的生物学功能的机会。

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