State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, the Chinese Academy of Sciences, Beijing, 100101, China.
State Key Laboratory of Crop Gene Resources and Breeding, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
J Integr Plant Biol. 2024 Aug;66(8):1688-1702. doi: 10.1111/jipb.13664. Epub 2024 May 2.
The ancient crop broomcorn millet (Panicum miliaceum L.) is an indispensable orphan crop in semi-arid regions due to its short life cycle and excellent abiotic stress tolerance. These advantages make it an important alternative crop to increase food security and achieve the goal of zero hunger, particularly in light of the uncertainty of global climate change. However, functional genomic and biotechnological research in broomcorn millet has been hampered due to a lack of genetic tools such as transformation and genome-editing techniques. Here, we successfully performed genome editing of broomcorn millet. We identified an elite variety, Hongmi, that produces embryogenic callus and has high shoot regeneration ability in in vitro culture. We established an Agrobacterium tumefaciens-mediated genetic transformation protocol and a clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9-mediated genome-editing system for Hongmi. Using these techniques, we produced herbicide-resistant transgenic plants and edited phytoene desaturase (PmPDS), which is involved in chlorophyll biosynthesis. To facilitate the rapid adoption of Hongmi as a model line for broomcorn millet research, we assembled a near-complete genome sequence of Hongmi and comprehensively annotated its genome. Together, our results open the door to improving broomcorn millet using biotechnology.
古老的作物黍(Panicum miliaceum L.)因其生命周期短和出色的抗非生物胁迫能力,是半干旱地区不可或缺的孤儿作物。这些优势使它成为增加粮食安全和实现零饥饿目标的重要替代作物,特别是考虑到全球气候变化的不确定性。然而,由于缺乏转化和基因组编辑等遗传工具,黍的功能基因组学和生物技术研究受到了阻碍。在这里,我们成功地对黍进行了基因组编辑。我们鉴定出一个精英品种红米,它在体外培养中产生胚性愈伤组织,具有较高的芽再生能力。我们建立了农杆菌介导的遗传转化方案和 CRISPR/Cas9 介导的基因组编辑系统用于红米。使用这些技术,我们生产了抗除草剂的转基因植物,并编辑了参与叶绿素生物合成的类叶红素脱饱和酶(PmPDS)。为了促进红米作为黍研究模型线的快速采用,我们组装了红米的近完整基因组序列并对其进行了全面注释。总之,我们的结果为利用生物技术改良黍开辟了道路。