Reyes Vincent Pamugas, Kitony Justine Kipruto, Nishiuchi Shunsaku, Makihara Daigo, Doi Kazuyuki
Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya 464-8601, Japan.
International Center for Research and Education in Agriculture, Nagoya University, Nagoya 464-8601, Japan.
Life (Basel). 2022 Nov 1;12(11):1752. doi: 10.3390/life12111752.
Molecular markers play a crucial role in the improvement of rice. To benefit from these markers, genotyping is carried out to identify the differences at a specific position in the genome of individuals. The advances in sequencing technologies have led to the development of different genotyping techniques such as genotyping-by-sequencing. Unlike PCR-fragment-based genotyping, genotyping-by-sequencing has enabled the parallel sequencing and genotyping of hundreds of samples in a single run, making it more cost-effective. Currently, GBS is being used in several pre-breeding programs of rice to identify beneficial genes and QTL from different rice genetic resources. In this review, we present the current advances in the utilization of genotyping-by-sequencing for the development of rice pre-breeding materials and the improvement of existing rice cultivars. The challenges and perspectives of using this approach are also highlighted.
分子标记在水稻改良中起着至关重要的作用。为了从这些标记中受益,人们进行基因分型以识别个体基因组中特定位置的差异。测序技术的进步推动了不同基因分型技术的发展,如简化基因组测序。与基于PCR片段的基因分型不同,简化基因组测序能够在一次运行中对数百个样本进行平行测序和基因分型,从而更具成本效益。目前,简化基因组测序正被应用于多个水稻预育种项目中,以从不同的水稻遗传资源中鉴定有益基因和数量性状位点。在这篇综述中,我们介绍了简化基因组测序在水稻预育种材料开发和现有水稻品种改良方面的当前进展。同时也强调了使用这种方法所面临的挑战和前景。