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首页> 外文期刊>PLoS One >The G123 rice mutant, carrying a mutation in SE13 , presents alterations in the expression patterns of photosynthetic and major flowering regulatory genes
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The G123 rice mutant, carrying a mutation in SE13 , presents alterations in the expression patterns of photosynthetic and major flowering regulatory genes

机译:在SE13中携带突变的G123米突变体呈现了光合作用和主要开花调控基因的表达模式的变化

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摘要

Day length is a determinant of flowering time in rice. Phytochromes participate in flowering regulation by measuring the number of daylight hours to which the plant is exposed. Here we describe G123 , a rice mutant generated by irradiation, which displays insensitivity to the photoperiod and early flowering under both long day and short day conditions. To detect the mutation responsible for the early flowering phenotype exhibited by G123 , we generated an F 2 population, derived from crossing with the wild-type, and used a pipeline to detect genomic structural variation, initially developed for human genomes. We detected a deletion in the G123 genome that affects the PHOTOPERIOD SENSITIVITY13 ( SE13 ) gene, which encodes a phytochromobilin synthase, an enzyme implicated in phytochrome chromophore biosynthesis. The transcriptomic analysis, performed by RNA-seq, in the G123 plants indicated an alteration in photosynthesis and other processes related to response to light. The expression patterns of the main flowering regulatory genes, such as Ghd7 , Ghd8 and PRR37 , were altered in the plants grown under both long day and short day conditions. These findings indicate that phytochromes are also involved in the regulation of these genes under short day conditions, and extend the role of phytochromes in flowering regulation in rice.
机译:日长是水稻中开花时间的决定因素。 Phytochromes通过测量植物暴露的日光小时数来参与开花调节。在这里,我们描述了一种由辐射产生的水稻突变体,其在漫长的一天和短日条件下显示对光周期和早期开花的不敏感性。为了检测由G123表现出的早期开花表型的突变,我们产生了与野生型交叉的F 2种群,并使用管道检测基因组结构变异,最初为人类基因开发。我们在G123基因组中检测到缺失,其影响对编码植物色团合成酶的Phyopheriod Sensitivity13(Se13)基因,该酶意味着在植物色团生物合成中。通过RNA-SEQ进行的转录组分析在G123植物中表明了与响应光有关的光合作用和其他过程的改变。主要开花调控基因的表达模式,例如GHD7,GHD8和PRR37,在漫长的一天和短日期的植物中被改变。这些发现表明,植物十字体也参与了短的日期条件下这些基因的调节,并延长了植物十字体在水稻开花调节中的作用。

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