Ivaničová Zuzana, Valárik Miroslav, Pánková Kateřina, Trávníčková Martina, Doležel Jaroslav, Šafář Jan, Milec Zbyněk
Institute of Experimental Botany, Centre of the Region Haná for Biotechnological and Agricultural Research, Šlechtitelů 31, CZ Olomouc, Czech Republic.
Crop Research Institute, Drnovská 507, Prague, Czech Republic.
PLoS One. 2017 Aug 28;12(8):e0183745. doi: 10.1371/journal.pone.0183745. eCollection 2017.
The ability of plants to identify an optimal flowering time is critical for ensuring the production of viable seeds. The main environmental factors that influence the flowering time include the ambient temperature and day length. In wheat, the ability to assess the day length is controlled by photoperiod (Ppd) genes. Due to its allohexaploid nature, bread wheat carries the following three Ppd-1 genes: Ppd-A1, Ppd-B1 and Ppd-D1. While photoperiod (in)sensitivity controlled by Ppd-A1 and Ppd-D1 is mainly determined by sequence changes in the promoter region, the impact of the Ppd-B1 alleles on the heading time has been linked to changes in the copy numbers (and possibly their methylation status) and sequence changes in the promoter region. Here, we report that plants with the same number of Ppd-B1 copies may have different heading times. Differences were observed among F7 lines derived from crossing two spring hexaploid wheat varieties. Several lines carrying three copies of Ppd-B1 headed 16 days later than other plants in the population with the same number of gene copies. This effect was associated with changes in the gene expression level and methylation of the Ppd-B1 gene.
植物识别最佳开花时间的能力对于确保产生可育种子至关重要。影响开花时间的主要环境因素包括环境温度和日照长度。在小麦中,评估日照长度的能力由光周期(Ppd)基因控制。由于其异源六倍体性质,普通小麦携带以下三个Ppd - 1基因:Ppd - A1、Ppd - B1和Ppd - D1。虽然由Ppd - A1和Ppd - D1控制的光周期(不)敏感性主要由启动子区域的序列变化决定,但Ppd - B1等位基因对抽穗时间的影响与拷贝数的变化(可能还有它们的甲基化状态)以及启动子区域的序列变化有关。在这里,我们报告具有相同数量Ppd - B1拷贝的植物可能有不同的抽穗时间。在两个春性六倍体小麦品种杂交产生的F7株系中观察到了差异。几个携带三个Ppd - B1拷贝的株系比群体中具有相同基因拷贝数的其他植物晚16天抽穗。这种效应与Ppd - B1基因的表达水平和甲基化变化有关。