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Changes to gene expression associated with hybrid speciation in plants: further insights from transcriptomic studies in Senecio

机译:与植物杂交形成相关的基因表达变化:塞内西奥转录组学研究的进一步见解

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摘要

Interspecific hybridization is an important mechanism of speciation in higher plants. In flowering plants, hybrid speciation is usually associated with polyploidy (allopolyploidy), but hybrid speciation without genome duplication (homoploid hybrid speciation) is also possible, although it is more difficult to detect. The combination of divergent genomes within a hybrid can result in profound changes to both genome and transcriptome. Recent transcriptomic studies of wild and resynthesized homoploid and allopolyploid hybrids have revealed widespread changes to gene expression in hybrids relative to expression levels in their parents. Many of these changes to gene expression are ‘non-additive’, i.e. not simply the sum of the combined expression levels of parental genes. Some gene expression changes are far outside the range of gene expression in either parent, and can therefore be viewed as ‘transgressive’. Such profound changes to gene expression may enable new hybrids to survive in novel habitats not accessible to their parent species. Here, we give a brief overview of hybrid speciation in plants, with an emphasis on genomic change, before focusing discussion on findings from recent transcriptomic studies. We then discuss our current work on gene expression change associated with hybrid speciation in the genus Senecio (ragworts and groundsels) focusing on the findings from a reanalysis of gene expression data obtained from recent microarray studies of wild and resynthesized allopolyploid Senecio cambrensis. These data, showing extensive non-additive and transgressive gene expression changes in Senecio hybrids, are discussed in the light of findings from other model systems, and in the context of the potential importance of gene expression change to hybrid speciation in plants.
机译:种间杂交是高等植物物种形成的重要机制。在开花植物中,杂种形态通常与多倍体相关(alalpolyploidy),但是也可以进行无基因组重复的杂种形态(单倍体杂种形态),尽管更难检测。杂种内不同基因组的组合可导致基因组和转录组的深刻变化。野生和重新合成的同倍体和异源多倍体杂种的近期转录组学研究表明,相对于其亲本的表达水平,杂种中基因表达的广泛变化。基因表达的许多变化都是“非加性的”,即不仅仅是父母基因的总表达水平之和。一些基因表达的变化远远超出了任何一个亲本的基因表达范围,因此可以视为“侵略性”。基因表达的如此深刻的变化可能使新的杂种能够在其亲本种无法接近的新栖息地中生存。在此,我们在重点讨论最近的转录组学研究结果之前,简要概述了植物中的杂交物种形成,重点是基因组变化。然后,我们将讨论与Senecio属(杂种草和地上hybrid)杂种形成有关的基因表达变化的当前工作,重点是从对野生和重新合成的异源多倍体Senecio cambrensis的最新微阵列研究中获得的基因表达数据的再分析发现。根据其他模型系统的发现,并结合基因表达变化对植物杂交物种形成的潜在重要性,讨论了这些数据,这些数据显示了千里光杂种中广泛的非加性和海侵基因表达变化。

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