首页> 外文期刊>Frontiers in Genetics >Transcriptional Aneuploidy Responses of Brassica rapa- oleracea Monosomic Alien Addition Lines (MAALs) Derived From Natural Allopolyploid B. napus
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Transcriptional Aneuploidy Responses of Brassica rapa- oleracea Monosomic Alien Addition Lines (MAALs) Derived From Natural Allopolyploid B. napus

机译:天然芸苔多倍体 B衍生的芸苔- oleracea 单体外来添加系(MAAL)的转录非整倍性响应甘蔗

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Establishing the whole set of aneuploids, for one naturally evolved allopolyploid species, provides a unique opportunity to elucidate the transcriptomic response of the constituent subgenomes to serial aneuploidy. Previously, the whole set of monosomic alien addition lines (MAALs, C1-C9) with each of the nine C subgenome chromosomes, added to the extracted A subgenome, was developed in the context of the allotetraploid Brassica napus donor “Oro,” after the restitution of the ancestral B. rapa (RBR Oro) was realized. Herein, transcriptomic analysis using high-throughput technology was conducted to detect gene expression alterations in these MAALs and RBR. Compared to diploid RBR, the genes of all of the MAALs showed various degrees of dysregulated expressions that resulted from cis effects and more prevailing trans effects. In addition, the trans -effect on gene expression in MAALs increased with higher levels of homology between the recipient A subgenome and additional C subgenome chromosomes, instead of gene numbers of extra chromosomes. A total of 10 trans -effect dysregulated genes, among all pairwise comparisons, were mainly involved in the function of transporter activity. Furthermore, highly expressed genes were more prone to downregulation and vice-versa, suggesting a common trend for transcriptional pattern responses to aneuploidy. These results provided a comprehensive insight of the impact of gene expression of individual chromosomes, in one subgenome, on another intact subgenome for one allopolyploid with a long evolutionary history.
机译:为一个自然进化的同质多倍体物种建立整套非整倍体,为阐明组成亚基因组对连续非整倍体的转录组反应提供了独特的机会。以前,在异源四倍体甘蓝型油菜供体“ Oro”的背景下,开发了将全部九个C亚基因组染色体中的每一个添加到提取的A亚基因组中的整套单体外星人附加系(MAAL,C1-C9)。恢复了祖传的B. rapa(RBR Oro)。本文中,使用高通量技术进行了转录组学分析,以检测这些MAAL和RBR中的基因表达变化。与二倍体RBR相比,所有MAAL的基因均表现出不同程度的表达失调,这是由顺式作用和更普遍的反式作用引起的。另外,随着受体A亚基因组染色体和额外的C亚基因组染色体之间的更高水平的同源性,而不是额外染色体的基因数量,对MAAL中基因表达的反作用增加。在所有成对比较中,总共有10个反作用失调基因主要参与转运蛋白活性的功能。此外,高表达的基因更倾向于下调,反之亦然,这表明转录模式对非整倍性的普遍趋势。这些结果提供了对一个亚基因组中单个染色体基因表达对一个具有长进化历史的同种多倍体的另一个完整亚基因组的影响的全面见解。

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