Department of Plant Developmental Genetics, Institute of Biophysics, Academy of Sciences of the Czech Republic, 61200 Brno, Czech Republic.
Department of Plant Developmental Genetics, Institute of Biophysics, Academy of Sciences of the Czech Republic, 61200 Brno, Czech Republic.
N Biotechnol. 2019 Jan 25;48:20-28. doi: 10.1016/j.nbt.2018.04.001. Epub 2018 Apr 12.
Silene latifolia serves as a model species to study dioecy, the evolution of sex chromosomes, dosage compensation and sex-determination systems in plants. Currently, no protocol for genetic transformation is available for this species, mainly because S. latifolia is considered recalcitrant to in vitro regeneration and infection with Agrobacterium tumefaciens. Using cytokinins and their synthetic derivatives, we markedly improved the efficiency of regeneration. Several agrobacterial strains were tested for their ability to deliver DNA into S. latifolia tissues leading to transient and stable expression of the GUS reporter. The use of Agrobacterium rhizogenes strains resulted in the highest transformation efficiency (up to 4.7% of stable transformants) in hairy root cultures. Phenotypic and genotypic analyses of the T1 generation suggested that the majority of transformation events contain a small number of independent T-DNA insertions and the transgenes are transmitted to the progeny in a Mendelian pattern of inheritance. In short, we report an efficient and reproducible protocol for leaf disc transformation and subsequent plant regeneration in S. latifolia, based on the unique combination of infection with A. rhizogenes and plant regeneration from hairy root cultures using synthetic cytokinins. A protocol for the transient transformation of S.latifolia protoplasts was also developed and applied to demonstrate the possibility of targeted mutagenesis of the sex linked gene SlAP3 by TALENs and CRISPR/Cas9.
宽叶蔓荆是研究雌雄异株、性染色体进化、植物剂量补偿和性别决定系统的模式物种。目前,该物种还没有遗传转化的方案,主要是因为宽叶蔓荆被认为对体外再生和根癌农杆菌感染具有抗性。我们使用细胞分裂素及其合成衍生物,显著提高了再生效率。测试了几种根癌农杆菌菌株将 DNA 递送到宽叶蔓荆组织中的能力,导致 GUS 报告基因的瞬时和稳定表达。发根农杆菌菌株的使用导致毛状根培养物中最高的转化效率(高达 4.7%的稳定转化体)。T1 代的表型和基因型分析表明,大多数转化事件包含少数独立的 T-DNA 插入,并且转基因以孟德尔遗传模式传递给后代。简而言之,我们报告了一种基于发根农杆菌感染和使用合成细胞分裂素从毛状根培养物再生的独特组合的有效且可重复的宽叶蔓荆叶片圆盘转化和随后的植物再生方案。还开发了宽叶蔓荆原生质体瞬时转化的方案,并应用于证明 TALENs 和 CRISPR/Cas9 靶向性突变性连锁基因 SlAP3 的可能性。