Sang Zhiqin, Wang Hui, Yang Yuxin, Zhang Zhanqin, Liu Xiaogang, Li Zhiwei, Xu Yunbi
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.
Xinjiang Academy of Agricultural and Reclamation Science, Shihezi, China.
Front Plant Sci. 2022 Jul 11;13:921608. doi: 10.3389/fpls.2022.921608. eCollection 2022.
Epistasis strongly affects the performance of superior maize hybrids. In this study, a multiple-hybrid population, consisting of three hybrid maize sets with varied interparental divergence, was generated by crossing 28 temperate and 23 tropical inbred lines with diverse genetic backgrounds. We obtained 1,154 tested hybrids. Among these tested hybrids, heterosis increased steadily as the heterotic genetic distance increased. Mid-parent heterosis was significantly higher in the temperate by tropical hybrids than in the temperate by temperate hybrids. Genome-wide prediction and association mapping was performed for grain weight per plant (GWPP) and days to silking (DTS) using 20K high-quality SNPs, showing that epistatic effects played a more prominent role than dominance effects in temperate by tropical maize hybrids. A total of 33 and 420 epistatic QTL were identified for GWPP and DTS, respectively, in the temperate by tropical hybrids. Protein-protein interaction network and gene-set enrichment analyses showed that epistatic genes were involved in protein interactions, which play an important role in photosynthesis, biological transcription pathways, and protein synthesis. We showed that the interaction of many minor-effect genes in the hybrids could activate the transcription activators of epistatic genes, resulting in a cascade of amplified yield heterosis. The multiple-hybrid population design enhanced our understanding of heterosis in maize, providing an insight into the acceleration of hybrid maize breeding by activating epistatic effects.
上位性对优良玉米杂交种的表现有强烈影响。在本研究中,通过将28个温带自交系和23个热带自交系进行杂交,创建了一个多杂交群体,这些自交系具有不同的遗传背景,由三个具有不同亲本间差异的杂交玉米组合组成。我们获得了1154个供试杂交种。在这些供试杂交种中,杂种优势随着杂种遗传距离的增加而稳步提高。温带×热带杂交种的中亲优势显著高于温带×温带杂交种。利用20K高质量单核苷酸多态性(SNP)对单株粒重(GWPP)和吐丝天数(DTS)进行全基因组预测和关联作图,结果表明,在上位性效应在温带×热带玉米杂交种中比显性效应发挥更突出的作用。在温带×热带杂交种中,分别鉴定出33个和420个与GWPP和DTS相关的上位性QTL。蛋白质-蛋白质相互作用网络和基因集富集分析表明,上位性基因参与蛋白质相互作用,在光合作用、生物转录途径和蛋白质合成中发挥重要作用。我们发现,杂交种中许多微效基因的相互作用可以激活上位性基因的转录激活因子,从而导致产量杂种优势的级联放大。多杂交群体设计加深了我们对玉米杂种优势的理解,为通过激活上位性效应加速杂交玉米育种提供了见解。