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The phenotypic predisposition of the parent in F1 hybrid is correlated with transcriptome preference of the positive general combining ability parent

机译:F1杂种的亲本表型倾向与阳性一般结合能力亲本的转录组偏好相关

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Background Sprague and Tatum (1942) introduced the concepts of general combining ability (GCA) and specific combining ability (SCA) to evaluate the breeding parents and F1 hybrid performance, respectively. Since then, the GCA was widely used in cross breeding for elite parent selection. However, the molecular basis of GCA remains to unknown. Results We studied the transcriptomes of three varieties and three?F1 hybrids using RNA-Sequencing. Transcriptome sequence analysis revealed that the transcriptome profiles of the F1s were similar to the positive GCA-effect parent. Moreover, the expression levels of most differentially expressed genes (DEGs) were equal to the parent with a positive GCA effect. Analysis of the gene expression patterns of gibberellic acid (GA) and flowering time pathways that determine plant height and flowering time in rice validated the preferential transcriptome expression of the parents with positive GCA effect. Furthermore, H3K36me3 modification bias in the Pseudo-Response Regulators (PRR) gene family was observed in the positive GCA effect parents and demonstrated that the phenotype and transcriptome bias in the positive GCA effect parents have been epigenetically regulated by either global modification or specific signaling pathways in rice. Conclusions The results revealed that the transcriptome profiles and DEGs in the F1s were highly related to phenotype bias to the positive GCA-effect parent. The transcriptome bias toward high GCA parents in F1 hybrids attributed to H3K36me3 modification both on global modification level and specific signaling pathways. Our results indicated the transcriptome profile and epigenetic modification level bias to high GCA parents could be the molecular basis of GCA.
机译:背景技术Sprague和Tatum(1942)引入了一般结合能力(GCA)和特定结合能力(SCA)的概念来分别评估育种亲本和F1杂种表现。从那时起,GCA被广泛用于杂交育种中,以选择优良的亲本。但是,GCA的分子基础仍然未知。结果我们使用RNA测序研究了三个变种和三个?F1杂种的转录组。转录组序列分析显示,F1的转录组谱与阳性GCA效应亲本相似。而且,大多数差异表达基因(DEG)的表达水平与具有阳性GCA效应的亲本相等。通过分析赤霉素(GA)的基因表达模式和确定水稻株高和开花时间的开花时间途径,验证了具有GCA阳性作用的亲本的优先转录组表达。此外,在阳性GCA效应亲本中观察到了伪反应调节因子(PRR)基因家族中的H3K36me3修饰偏向,证明了GCA阳性亲本的表型和转录组偏见已通过整体修饰或特定的信号传导途径表观遗传调控。在米饭中。结论结果表明,F1的转录组图谱和DEG与GCA阳性亲本的表型偏倚高度相关。 F1杂种中的高GCA亲本的转录组偏倚归因于H3K36me3在整体修饰水平和特定信号通路上的修饰。我们的结果表明,转录组概况和表观遗传修饰水平偏向高GCA亲本可能是GCA的分子基础。

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