Institute of Plant Science and Resources, Okayama University, 2-20-1 Chuo, Kurashiki, Okayama 710-0046 Japan.
Sci Rep. 2016 Nov 22;6:37505. doi: 10.1038/srep37505.
Different plant cultivars of the same genus and species can exhibit vastly different genetic transformation efficiencies. However, the genetic factors underlying these differences in transformation rate remain largely unknown. In barley, 'Golden Promise' is one of a few cultivars reliable for Agrobacterium-mediated transformation. By contrast, cultivar 'Haruna Nijo' is recalcitrant to genetic transformation. We identified genomic regions of barley important for successful transformation with Agrobacterium, utilizing the 'Haruna Nijo' × 'Golden Promise' F generation and genotyping by 124 genome-wide SNP markers. We observed significant segregation distortions of these markers from the expected 1:2:1 ratio toward the 'Golden Promise'-type in regions of chromosomes 2H and 3H, indicating that the alleles of 'Golden Promise' in these regions might contribute to transformation efficiency. The same regions, which we termed Transformation Amenability (TFA) regions, were also conserved in transgenic F plants generated from a 'Morex' × 'Golden Promise' cross. The genomic regions identified herein likely include necessary factors for Agrobacterium-mediated transformation in barley. The potential to introduce these loci into any haplotype of barley opens the door to increasing the efficiency of transformation for target alleles into any haplotype of barley by the TFA-based methods proposed in this report.
不同品种的同一属和种的植物可能表现出截然不同的遗传转化效率。然而,导致这些转化效率差异的遗传因素在很大程度上仍然未知。在大麦中,“金承诺”是少数几种可用于农杆菌介导转化的品种之一。相比之下,品种“Haruna Nijo”对遗传转化有抗性。我们利用“Haruna Nijo”ד金承诺”F1 代和 124 个全基因组 SNP 标记的基因型分析,确定了大麦中与农杆菌成功转化有关的基因组区域。我们观察到这些标记的分离比从预期的 1:2:1 向 2H 和 3H 染色体上的“金承诺”型显著偏离,表明这些区域“金承诺”的等位基因可能有助于转化效率。我们将这些区域称为转化适宜性(TFA)区域,它们在“Morex”ד金承诺”杂交产生的转基因 F 植物中也是保守的。本文鉴定的基因组区域可能包含大麦中农杆菌介导转化所必需的因素。通过本报告中提出的基于 TFA 的方法,将这些基因座引入大麦的任何单倍型中,有可能提高目标等位基因在大麦任何单倍型中的转化效率。