Zhang Anyong, Zhao Ting, Hu Xue, Zhou Yu, An Yue, Pei Haiyi, Sun Dongfa, Sun Genlou, Li Chengdao, Ren Xifeng
College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Hubei Hongshan Laboratory, Wuhan, China.
Front Plant Sci. 2022 Dec 1;13:1063988. doi: 10.3389/fpls.2022.1063988. eCollection 2022.
Lodging reduces grain yield in cereal crops. The height, diameter and strength of stem are crucial for lodging resistance, grain yield, and photosynthate transport in barley. Understanding the genetic basis of stem benefits barley breeding. Here, we evaluated 13 stem related traits after 28 days of heading in a barley DH population in two consecutive years. Significant phenotypic correlations between lodging index (LI) and other stem traits were observed. Three mapping methods using the experimental data and the BLUP data, detected 27 stable and major QTLs, and 22 QTL clustered regions. Many QTLs were consistent with previously reported traits for grain filling rate, internodes, panicle and lodging resistance. Further, candidate genes were predicted for stable and major QTLs and were associated with plant development and adverse stress in the transition from vegetative stage to reproductive stage. This study provided potential genetic basis and new information for exploring barley stem morphology, and laid a foundation for map-based cloning and further fine mapping of these QTLs.
倒伏会降低谷类作物的产量。茎的高度、直径和强度对于大麦的抗倒伏性、籽粒产量和光合产物运输至关重要。了解茎的遗传基础有助于大麦育种。在此,我们连续两年对一个大麦双单倍体群体抽穗28天后的13个与茎相关的性状进行了评估。观察到倒伏指数(LI)与其他茎性状之间存在显著的表型相关性。使用实验数据和最佳线性无偏预测(BLUP)数据的三种定位方法,检测到27个稳定的主效数量性状基因座(QTL)和22个QTL聚类区域。许多QTL与先前报道的灌浆速率、节间、穗和抗倒伏性的性状一致。此外,还预测了稳定主效QTL的候选基因,这些基因与从营养生长阶段到生殖生长阶段过渡期间的植物发育和逆境胁迫相关。本研究为探究大麦茎形态提供了潜在的遗传基础和新信息,并为这些QTL的图位克隆和进一步精细定位奠定了基础。