Universitas Gadjah Mada, Faculty of Biology, Department of Tropical Biology, Yogyakarta, Special Region of Yogyakarta, Indonesia.
Braz J Biol. 2023 Jun 5;84:e268133. doi: 10.1590/1519-6984.268133. eCollection 2023.
Phalaenopsis amabilis (L.) Blume commonly called Moth Orchid (Orchidaceae) is a natural orchid species designated as the National Flower of Indonesia for its beautiful flower shape and long-lasting flowering period. Basically, P. amabilis has a long vegetative phase that cause late flowering, about 2 to 3 years for flowering, hence a method to shorten vegetative period is desired. The latest technological approach that can be used to accelerate flowering of P. amabilis is the CRISPR/Cas9 genome editing method to inactivate the GAI (Gibberellic Acid Insensitive) gene as a mutant gene that can accelerate the regulation of FLOWERING TIME (FT) genes flowering biosynthesis pathway. The approach that needs to be taken is to silence the GAI gene with a knockout system which begins with identifying and characterizing the GAI target gene in the P. amabilis which will be used as a single guide RNA. CRISPR/Cas9 mediated knockout efficiency is highly dependent on the properties of the sgRNA used. SgRNA consists of a target sequence, determining its specificity performance. We executed phylogenetic clustering for the PaGAI protein with closely related orchid species such as Dendrobium capra, Dendrobium cultivars and Cymbidium sinensis. SWISS-Model as tool webserver for protein structure homology modeling. Results show that P. amabilis has a specific domain with the occurrence of point mutations in the two conservative domains. Therefore, a single guide RNA reconstruction needs to be implemented.
蝴蝶兰(Phalaenopsis amabilis (L.) Blume),俗称“蝶兰”,属于兰科植物,是一种天然兰花品种,因其美丽的花朵形状和持久的花期而被指定为印度尼西亚的国花。蝴蝶兰的营养生长阶段较长,导致开花较晚,大约需要 2 到 3 年才能开花,因此需要缩短营养生长阶段的方法。目前,最新的技术方法可以用于加速蝴蝶兰的开花,即 CRISPR/Cas9 基因组编辑方法,通过灭活 GAI(赤霉素不敏感)基因作为突变基因来加速开花时间(FT)基因的开花生物合成途径。需要采取的方法是使用敲除系统沉默 GAI 基因,该系统始于鉴定和表征蝴蝶兰中的 GAI 靶基因,该基因将被用作单指导 RNA。CRISPR/Cas9 介导的敲除效率高度依赖于使用的 sgRNA 的特性。sgRNA 由目标序列组成,决定其特异性性能。我们对与蝴蝶兰亲缘关系密切的物种(如短毛石斛、石斛品种和中国兰花)的 PaGAI 蛋白进行了系统发育聚类分析。SWISS-Model 作为蛋白质结构同源建模的工具网络服务器。结果表明,蝴蝶兰具有一个特定的结构域,在两个保守结构域中发生了点突变。因此,需要进行单指导 RNA 重建。