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Gene expression analysis at the intersection of ploidy and hybridity in maize

机译:玉米多倍体杂交的基因表达分析

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摘要

Heterosis and polyploidy are two important aspects of plant evolution. To examine these issues, we conducted a global gene expression study of a maize ploidy series as well as a set of tetraploid inbred and hybrid lines. This gene expression analysis complements an earlier phenotypic study of these same materials. We find that ploidy change affects a large fraction of the genome, albeit at low levels; gene expression changes rarely exceed 2-fold and are typically not statistically significant. The most common gene expression profile we detected is greater than linear increase from monoploid to diploid, and reductions from diploid to triploid and from triploid to tetraploid, a trend that mirrors plant stature. When examining heterosis in tetraploid maize lines, we found a large fraction of the genome impacted but the majority of changes were not statistically significant at 2-fold or less. Non-additive expression was common in the hybrids, and the extent of non-additivity increased both in number and magnitude from duplex to quadruplex hybrids. Overall, we find that gene expression trends mirror observations from the phenotypic studies; however, obvious mechanistic connections remain unknown. Communicated by M. Kearsey.
机译:杂种和多倍性是植物进化的两个重要方面。为了研究这些问题,我们对玉米倍性系列以及一组四倍体近交和杂交系进行了全球基因表达研究。这种基因表达分析是对这些相同材料的早期表型研究的补充。我们发现倍性变化影响基因组的很大一部分,尽管水平较低。基因表达变化很少超过2倍,通常没有统计学意义。我们检测到的最常见的基因表达谱大于从单倍体到二倍体的线性增加,以及从二倍体到三倍体以及从三倍体到四倍体的减少,这种趋势反映了植物的身材。当检查四倍体玉米品系的杂种优势时,我们发现很大一部分基因组受到了影响,但是大多数变化在2倍以下时没有统计学意义。非加性表达在杂种中很常见,并且从双链体到四链体杂种,非可加性的程度在数量和数量上都增加了。总的来说,我们发现基因表达趋势反映了来自表型研究的观察结果。但是,明显的机械连接仍然未知。由M. Kearsey传达。

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