首页> 外文期刊>Russian journal of genetics >Analysis of genomic DNA methylation and gene expression in Chinese cabbage (Brassica rapa L. ssp pekinensis) after continuous seedling breeding
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Analysis of genomic DNA methylation and gene expression in Chinese cabbage (Brassica rapa L. ssp pekinensis) after continuous seedling breeding

机译:大白菜连续育苗后基因组DNA甲基化及基因表达分析

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摘要

Vernalization plays a key role in the bolting and flowering of Chinese cabbage (Brassica rapa L. ssp. pekinensis). Plants can switch from vegetative to reproductive growth and then bolt and flower under low temperature induction. The economic benefits of Chinese cabbage will decline significantly when the bolting happens before the vegetative body fully grows due to a lack of the edible value. It was found that continuous seedling breeding reduced the heading of Chinese cabbage and led to bolt and flower more easily. In the present study, two inbred lines, termed A161 and A105, were used as experiment materials. These two lines were subjected to vernalization and formed four types: seeds-seedling breeding once, seedling breeding twice, seedling breeding thrice and normal type. Differences in plant phenotype were compared. DNA methylation analysis was performed based on MSAP method. The differential fragments were cloned and analyzed by qPCR. Results showed that plants after seedling breeding thrice had a loosen heading leaves, elongated center axis and were easier to bolt and flower. It is suggested that continuous seedling breeding had a weaker winterness. It was observed that genome methylation level decreased with increasing generation. Four differential genes were identified, short for BraAPC1, BraEMP3, BraUBC26 and BraAL5. Fluorescent qPCR analysis showed that expression of four genes varied at different reproduction modes and different vernalization time. It is indicated that these genes might be involve in the development and regulation of bolting and flowering of plants. Herein, the molecular mechanism that continuous seedling breeding caused weaker winterness was analyzed preliminarily. It plays an important guiding significance for Chinese cabbage breeding.
机译:春化在大白菜(Brassica rapa L. ssp。pekinensis)的抽and和开花中起关键作用。植物可以从营养生长转变为生殖生长,然后在低温诱导下开花并开花。如果由于营养价值不足而在植物体完全生长之前发生抽ing,大白菜的经济效益将大大下降。结果表明,连续育苗减少了大白菜的抽穗,更容易导致螺栓和花朵。在本研究中,两个自交系,分别称为A161和A105,用作实验材料。对这两个品系进行了春化处理,并形成了四种类型:种子育种一次,种子育种两次,种子育种三次和正常种。比较了植物表型的差异。基于MSAP方法进行DNA甲基化分析。克隆差异片段并通过qPCR分析。结果表明,育苗三次后,抽穗叶较疏松,中心轴较长,插花较容易。提示连续育苗的冬季性较弱。观察到基因组甲基化水平随世代增加而降低。确定了四个差异基因,它们是BraAPC1,BraEMP3,BraUBC26和BraAL5的缩写。荧光定量PCR分析表明,四种基因的表达在不同的繁殖方式和不同的春化时间上有所不同。表明这些基因可能参与植物的抽ing和开花的发育和调控。在此,初步分析了连续育苗导致冬季变弱的分子机制。它对白菜育种具有重要的指导意义。

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