National Institute for Genomics and Advanced Biotechnology (NIGAB), National Agricultural Research Centre (NARC), Park Road, Islamabad, 45500, Pakistan.
PARC Institute of Advanced Studies in Agriculture (PIASA), Islamabad, Pakistan.
Funct Integr Genomics. 2023 Feb 25;23(1):66. doi: 10.1007/s10142-023-00989-2.
Mutations in Photoperiod-1 (Ppd-1) gene are known to modify flowering time and yield in wheat. We cloned TaPpd-1 from wheat and found high similarity among the three homoeologs of TaPpd-1. To clarify the characteristics of TaPpd-1 homoeologs in different photoperiod conditions for inflorescence architecture and yield, we used CRISPR/Cas9 system to generate Tappd-1 mutant plants by simultaneous modification of the three homoeologs of wheat Ppd-1. Tappd-1 mutant plants showed no off-target mutations. Four T-edited lines under short-day length and three lines under long-day length conditions with the mutation frequency of 25% and 21%, respectively. These putative transgenic plants of all the lines were self-fertilized and generated T and T progenies and were evaluated by phenotypic and expression analysis. Results demonstrated that simultaneously edited TaPpd-1- A1, B1, and D1 homoeologs gene copies in T2_SDL-8-4, T2_SDL-4-5, T2_SDL-3-9, and T2LDL-10-9 showed similar spike inflorescence, flowering time, and significantly increase in 1000-grain weight, grain area, grain width, grain length, plant height, and spikelets per spike due to mutation in both alleles of Ppd-B1 and Ppd-D1 homoeologs but only spike length was decreased in T2_SDL-8-4, T2_SDL-4-5, and T2LDL-13-3 mutant lines due to mutation in both alleles of Ppd-A1 homoeolog under both conditions. Our results indicate that all TaPpd1 gene homoeologs influence wheat spike development by affecting both late flowering and earlier flowering but single mutant TaPpd-A1 homoeolog affect lowest as compared to the combination with double mutants of TaPpd-B1 and TaPpd-D1, TaPpd-A1 and TaPpd-B1, and TaPpd-A1 and TaPpd-D1 homoeologs for yield enhancement. Our findings further raised the idea that the relative expression of the various genomic copies of TaPpd-1 homoeologs may have an impact on the spike inflorescence architecture and grain morphometric features in wheat cultivars.
已知 Photoperiod-1(Ppd-1)基因的突变可以改变小麦的开花时间和产量。我们从小麦中克隆了 TaPpd-1,并发现 TaPpd-1 的三个同源物之间存在高度相似性。为了阐明 TaPpd-1 同源物在不同光周期条件下对花序结构和产量的特征,我们使用 CRISPR/Cas9 系统同时修饰小麦 Ppd-1 的三个同源物,产生 Tappd-1 突变体植物。Tappd-1 突变体植物没有出现脱靶突变。在短日长度下,有四个 T 编辑线,在长日长度条件下有三个线,突变频率分别为 25%和 21%。所有这些 T 编辑线的假定转基因植物都是自交的,并产生了 T 和 T 后代,并通过表型和表达分析进行了评估。结果表明,在 T2_SDL-8-4、T2_SDL-4-5、T2_SDL-3-9 和 T2LDL-10-9 中同时编辑 TaPpd-1-A1、B1 和 D1 同源物基因拷贝,由于 Ppd-B1 和 Ppd-D1 同源物的两个等位基因发生突变,穗状花序、开花时间和千粒重、籽粒面积、籽粒宽度、籽粒长度、株高和小穗数显著增加,但由于 Ppd-A1 同源物的两个等位基因发生突变,T2_SDL-8-4、T2_SDL-4-5 和 T2LDL-13-3 突变系的穗长降低。我们的结果表明,所有 TaPpd1 基因同源物都通过影响晚花和早花来影响小麦穗状花序的发育,但与 TaPpd-B1 和 TaPpd-D1、TaPpd-A1 和 TaPpd-B1 以及 TaPpd-A1 和 TaPpd-D1 同源物的双突变体相比,TaPpd-A1 同源物的单突变体对产量的影响最低。我们的发现进一步提出了这样一种观点,即 TaPpd-1 同源物各种基因组拷贝的相对表达可能会影响小麦品种的穗状花序结构和籽粒形态特征。