首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Transcriptomic analysis of maize mature embryos from an elite maize hybrid Zhengdan958 and its parental lines
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Transcriptomic analysis of maize mature embryos from an elite maize hybrid Zhengdan958 and its parental lines

机译:优良玉米杂交种郑单958及其亲本的玉米成熟胚的转录组学分析

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Utilization of heterosis is one of the most outstanding advancements in plant breeding. However, its genetic basis is not well understood. We used digital gene expression technology to investigate the transcriptomes of the mature maize embryo of an elite maize hybrid Zhengdan958 and its parental lines to screen differentially-expressed genes and to study their relationship to heterosis. In the study, we found five expression patterns, including co-silence expression of parental lines (754 genes), parental-specific expression (2,200 genes), hybrid-specific expression (704 genes), single-parental consistent expression (2,431 genes), and co-expression of the hybrid and parental lines (15,628 genes). Genes showing hybrid-specific expression pattern were enriched in photosynthesis related pathways. Those over-dominance expressed genes in co-expression pattern were striking enriched in protein metabolic process, and those under-dominance expressed genes in co-expression pattern were signally enriched in biosynthetic process. Those results indicated that mature embryo of Zhengdan958 has higher photosynthetic efficiency and better regulation ability in protein metabolic and biosynthetic process for better preparation for growth recover, and those enriched genes can be related with heterosis of maize mature embryos.
机译:利用杂种优势是植物育种中最杰出的进步之一。但是,其遗传基础尚不十分清楚。我们使用数字基因表达技术研究了优良玉米杂交种郑单958及其亲本的成熟玉米胚的转录组,以筛选差异表达基因并研究其与杂种优势的关系。在这项研究中,我们发现了5种表达模式,包括亲本系的共沉默表达(754个基因),亲本特异性的表达(2,200个基因),杂种特异性的表达(704个基因),单亲一致表达(2,431个基因) ,以及杂种和亲本系的共表达(15,628个基因)。显示杂种特异性表达模式的基因富含光合作用相关的途径。共表达模式中那些过高表达基因显着富集于蛋白质代谢过程,而共表达模式中那些过低表达基因则在生物合成过程中信号丰富。这些结果表明,郑单958成熟胚在蛋白质代谢和生物合成过程中具有较高的光合作用效率和更好的调控能力,为生长恢复做好了准备,这些丰富的基因可能与玉米成熟胚的杂种优势有关。

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