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Highly Efficient Protoplast Isolation and Transient Expression System for Functional Characterization of Flowering Related Genes in Cymbidium Orchids

机译:高效兰花芽兰花相关基因功能表征的原生质体分离和瞬时表达系统

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摘要

Protoplast systems have been proven powerful tools in modern plant biology. However, successful preparation of abundant viable protoplasts remains a challenge for orchids. Herein, we established an efficient protoplast isolation protocol from orchid petals through optimization of enzymatic conditions. It requires optimal D-mannitol concentration (0.5 M), enzyme concentration (1.2 % ( / ) cellulose and 0.6 % ( / ) macerozyme) and digestion time (6 h). With this protocol, the highest yield (3.50 × 10 /g fresh weight of orchid tissue) and viability (94.21%) of protoplasts were obtained from flower petals of . In addition, we achieved high transfection efficiency (80%) through the optimization of factors affecting polyethylene glycol (PEG)-mediated protoplast transfection including incubation time, final PEG4000 concentration and plasmid DNA amount. This highly efficient protoplast-based transient expression system (PTES) was further used for protein subcellular localization, bimolecular fluorescence complementation (BiFC) assay and gene regulation studies of flowering related genes in orchids. Taken together, our protoplast isolation and transfection protocol is highly efficient, stable and time-saving. It can be used for gene function and molecular analyses in orchids and other economically important monocot crops.
机译:原生质体系统已被证明是现代植物生物学中强大的工具。然而,成功制备丰富的可行原生质体仍然是兰花面临的挑战。在这里,我们通过优化酶促条件从兰花花瓣建立了有效的原生质体分离方案。它需要最佳的D-甘露醇浓度(0.5 M),酶浓度(1.2%(/)纤维素和0.6%(/)宏酶)和消化时间(6 h)。通过此方案,从的花瓣中获得了最高的产量(3.50×10 / g兰花组织的鲜重)和原生质体的活力(94.21%)。此外,我们通过优化影响聚乙二醇(PEG)介导的原生质体转染的因素,包括孵育时间,最终PEG4000浓度和质粒DNA量,实现了高转染效率(80%)。这种高效的基于原生质体的瞬时表达系统(PTES)进一步用于蛋白质亚细胞定位,双分子荧光互补(BiFC)分析和兰花中开花相关基因的基因调控研究。综上所述,我们的原生质体分离和转染方案高效,稳定且省时。它可用于兰花和其他经济上重要的单子叶植物的基因功能和分子分析。

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