Department of Agronomy, Jilin Agricultural University, Changchun 130118, China.
Center for Applied Genetic Technologies, University of Georgia, Athens, GA 30602, USA.
Genes (Basel). 2020 Nov 25;11(12):1401. doi: 10.3390/genes11121401.
Polyploidization has played a prominent role in the evolutionary history of plants. Two recent and sequential allopolyploidization events have resulted in the formation of wheat species with different ploidies, and which provide a model to study the effects of polyploidization on the evolution of gene expression. In this study, we identified differentially expressed genes (DEGs) between four BBAA tetraploid wheats of three different ploidy backgrounds. DEGs were found to be unevenly distributed among functional categories and duplication modes. We observed more DEGs in the extracted tetraploid wheat (ETW) than in natural tetraploid wheats (TD and TTR13) as compared to a synthetic tetraploid (AT2). Furthermore, DEGs showed higher ratios than those that did not show expression changes (non-DEGs) between genotypes, indicating DEGs and non-DEGs experienced different selection pressures. For A-B homeolog pairs with DEGs, most of them had only one differentially expressed copy, however, when both copies of a homeolog pair were DEGs, the A and B copies were more likely to be regulated to the same direction. Our results suggest that both - and inter-subgenome -regulatory changes are important drivers in the evolution of homeologous gene expression in polyploid wheat, with ploidy playing a significant role in the process.
多倍化在植物的进化历史中发挥了重要作用。最近发生的两次连续的异源多倍化事件导致了不同倍性的小麦物种的形成,为研究多倍化对基因表达进化的影响提供了模型。在这项研究中,我们鉴定了四个 BBAA 四倍体小麦中不同倍性背景下的差异表达基因 (DEGs)。DEGs 在功能类别和复制模式中分布不均。与人工合成四倍体 (AT2) 相比,我们在提取的四倍体小麦 (ETW) 中发现了更多的 DEGs,而在天然四倍体小麦 (TD 和 TTR13) 中发现的 DEGs 较少。此外,与未发生表达变化的基因(非 DEGs)相比,基因型之间的 DEGs 显示出更高的差异表达倍数( ),表明 DEGs 和非 DEGs 经历了不同的选择压力。对于具有 DEGs 的 A-B 同源基因对,它们中的大多数只有一个差异表达的拷贝,但当同源基因对的两个拷贝都是 DEGs 时,A 和 B 拷贝更有可能被调节到相同的方向。我们的结果表明,- 和 - 亚基因组内的调控变化是多倍体小麦同源基因表达进化的重要驱动因素,倍性在该过程中起着重要作用。