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Transmission of Engineered Plastids in Sugarcane a C

机译:在甘蔗中传递工程塑植物a c

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摘要

We report here plastid transformation in sugarcane using biolistic transformation and embryogenesis-based regeneration approaches. Somatic embryos were developed from unfurled leaf sections, containing preprogrammed progenitor cells, to recover transformation events on antibiotic-containing regeneration medium. After developing a proficient regeneration system, the FLARE-S (fluorescent antibiotic resistance enzyme, spectinomycin and streptomycin) expression cassette that carries species-specific homologous sequence tails was used to transform plastids and track gene transmission and expression in sugarcane. Plants regenerated from streptomycin-resistant and genetically confirmed shoots were subjected to visual detection of the fluorescent enzyme using a fluorescent stereomicroscope, after genetic confirmation. The resultant heteroplasmic shoots remained to segregate on streptomycin-containing MS medium, referring to the unique pattern of division and sorting of cells in C4 monocotyledonous compared to C3 monocotyledonous and dicotyledonous plants since in sugarcane bundle sheath and mesophyll cells are distinct and sort independently after division. Hence, the transformation of either mesophyll or bundle sheath cells will develop heteroplasmic transgenic plants, suggesting the transformation of both types of cells. Whilst developed transgenic sugarcane plants are heteroplasmic, and selection-based regeneration protocol envisaging the role of division and sorting of cells in the purification of transplastomic demands further improvement, the study has established many parameters that may open up exciting possibilities to express genes of agricultural or pharmaceutical importance in sugarcane.
机译:我们在此报道使用生物化转化和基于胚胎发生的再生方法的甘蔗塑体转化。从含有预编程的祖细胞的Dreatled叶片部分开发了体细胞胚,以回收含抗生素的再生培养基的转化事件。在开发熟练的再生系统之后,使用携带物种特异性同源序列尾部的FLARE-S(荧光抗生素抗性酶,透明霉素和链霉菌霉素)表达盒转化塑料和轨道基因透射和在甘蔗中的表达。在遗传确认后,使用荧光立体显微镜对从链霉素抗性和遗传确认的芽中再生的植物进行视觉检测荧光酶。所得的异质芽仍然是在含链霉素的MS培养基上分离,参考C4单圈和双象叶和二象状植物在C4单圈和双象叶植物中的独特模式和分类,因为在甘蔗束鞘中和培养基细胞在分裂后独立而排序。因此,叶片或束鞘细胞的转化将发生异质转基因植物,表明两种类型细胞的转化。虽然开发的转基因甘蔗植物是异质的,并且选择的选择性再生方案设想分裂和分类在细胞的纯化中的纯化在转体构建需要进一步改进中,但该研究已经建立了许多可能开辟了表达农业基因或表达农业基因的令人兴奋的可能性的参数甘蔗的药物重要性。

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