Allelic variation and effects of earliness per se (Eps) genes in wheat cultivars of Pakistan

Benish Iltaf, Humaira Qayyum, H. Suleman, Ali Raza, Sana Ur-Rehman, Hamna Khalid, Kainat Abbasi, Kinza Tanvir, Misbah Mukhtar, Sima Zulfiqar, Awais Rasheed
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Abstract

Optimization of the flowering time in wheat is an important breeding target for its adaptability in target environments. Flowering time is controlled by vernalization, photoperiod, and the relatively poorly characterized earliness per se (Eps) genes. When vernalization and photoperiod criteria are met, Eps genes account for the variance in flowering time. The objective of the study was to decipher the allelic variations for Eps genes in the wheat cultivars of Pakistan and draw their association with agronomic traits. The wheat cultivars released prior to 1965 had an average flowering duration of 82 days, whereas the cultivars released between 1965 and 2000 had an average flowering time of 79 days and 81 days, respectively. Kompetitive allele-specific PCR (KASP) markers were used to genotype all these cultivars for TaElf3-B1, TaElf3-D1, and TaMOT1-D1 genes. For the gene TaElf3-B1, allele Cadenza-type had a frequency of 61.71%. For the gene TaElf3-D1, the proportion of its respective major alleles was recorded, i.e., deletion had a frequency of 72.94%, and Savannah-type was 86.04%. For the gene TaMOT1-D1, the allele Wild-type was found in 55.88% accessions. The gene Elf3-B1 had a significant allelic effect for grain yield (GY), TaElf3-D1 for grain length, and TaMOT1-D1 for GY. Among the wheat cultivars, high percentage (56.89%) of the Savanah-type allele was associated with early flowering. However, the Wild-type alleles (43.1%) were observed to have low allelic frequency, and they were associated with late flowering. This study may allow wheat breeders to make genetic selection of wheat cultivars that are most suited to target environment, ensuring better yield and adaptability.
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巴基斯坦小麦栽培品种的等位基因变异和早熟性基因(Eps)的影响
优化小麦的开花时间是提高其目标环境适应性的一个重要育种目标。开花时间受春化、光周期和特性相对较差的早熟基因(Eps)控制。当春化和光周期标准得到满足时,Eps 基因会造成开花时间的差异。这项研究的目的是破译巴基斯坦小麦栽培品种中 Eps 基因的等位基因变异,并得出它们与农艺性状的关联。1965 年前发布的小麦栽培品种的平均花期为 82 天,而 1965 年至 2000 年间发布的栽培品种的平均花期分别为 79 天和 81 天。利用竞争性等位基因特异性 PCR(KASP)标记对所有这些栽培品种的 TaElf3-B1、TaElf3-D1 和 TaMOT1-D1 基因进行了基因分型。在 TaElf3-B1 基因中,等位基因 Cadenza-type 的频率为 61.71%。在 TaElf3-D1 基因中,记录了其主要等位基因的比例,即缺失型的频率为 72.94%,萨凡纳型的频率为 86.04%。基因 TaMOT1-D1 的等位基因野生型出现在 55.88%的样本中。Elf3-B1 基因对谷粒产量(GY)有显著的等位基因效应,TaElf3-D1 基因对谷粒长度有显著的等位基因效应,TaMOT1-D1 基因对 GY 有显著的等位基因效应。在小麦栽培品种中,高比例(56.89%)的 Savanah 型等位基因与早花有关。然而,野生型等位基因(43.1%)的等位基因频率较低,它们与晚花有关。这项研究可帮助小麦育种人员从基因上选择最适合目标环境的小麦栽培品种,确保提高产量和适应性。
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