Department of Ecology and Genetics, Evolutionary Biology Centre and Science for Life Laboratory, Uppsala University, 75236, Uppsala, Sweden.
Department of Plant Biology, Swedish University of Agricultural Sciences, 750 07, Uppsala, Sweden.
New Phytol. 2023 Jan;237(1):339-353. doi: 10.1111/nph.18542. Epub 2022 Nov 7.
Polyploidization, the process leading to the increase in chromosome sets, is a major evolutionary transition in plants. Whole-genome duplication (WGD) within the same species gives rise to autopolyploids, whereas allopolyploids result from a compound process with two distinct components: WGD and interspecific hybridization. To dissect the instant effects of WGD and hybridization on gene expression and phenotype, we created a series of synthetic hybrid and polyploid Capsella plants, including diploid hybrids, autotetraploids of both parental species, and two kinds of resynthesized allotetraploids with different orders of WGD and hybridization. Hybridization played a major role in shaping the relative expression pattern of the neo-allopolyploids, whereas WGD had almost no immediate effect on relative gene expression pattern but, nonetheless, still affected phenotypes. No transposable element-mediated genomic shock scenario was observed in either neo-hybrids or neo-polyploids. Finally, WGD and hybridization interacted and the distorting effects of WGD were less strong in hybrids. Whole-genome duplication may even improve hybrid fertility. In summary, while the initial relative gene expression pattern in neo-allotetraploids was almost entirely determined by hybridization, WGD only had trivial effects on relative expression patterns, both processes interacted and had a strong impact on physical attributes and meiotic behaviors.
多倍化,即导致染色体组数增加的过程,是植物进化过程中的一个主要转折点。同一物种内的全基因组加倍(Whole-genome duplication,WGD)会产生同源多倍体,而异源多倍体则是由两个不同成分的复合过程产生的:WGD 和种间杂交。为了剖析 WGD 和杂交对基因表达和表型的即时影响,我们创建了一系列合成的拟南芥属(Capsella)杂交和多倍体植物,包括二倍体杂种、双亲种的同源四倍体,以及两种具有不同 WGD 和杂交顺序的重新合成的异源四倍体。杂交在塑造新异源多倍体的相对表达模式方面发挥了主要作用,而 WGD 对相对基因表达模式几乎没有即时影响,但仍然影响表型。在新杂种或新多倍体中均未观察到转座子介导的基因组震荡现象。最后,WGD 和杂交相互作用,WGD 的扭曲效应在杂种中较弱。全基因组加倍甚至可能提高杂种的育性。总的来说,虽然新异源四倍体中的初始相对基因表达模式几乎完全由杂交决定,但 WGD 对相对表达模式的影响微乎其微,这两个过程相互作用,对物理属性和减数分裂行为有强烈影响。