Chauhan Raj Deepika, Taylor Nigel James
Donald Danforth Plant Science Center, 975 North Warson Road, St. Louis, MO 63132, USA.
Plant Cell Tissue Organ Cult. 2018;132:219-224. doi: 10.1007/s11240-017-1315-3. Epub 2017 Oct 4.
A novel protocol for de novo shoot organogenesis from cassava has been developed utilizing meta-topolin to stimulate shoot regeneration from leaf, petiole and stem internode explants. While use of meta-topolin alone was capable of inducing shoot regeneration, a two-stage system combining meta-topolin with 2,4-D in a first stage medium, followed by subculture onto elevated levels of meta-topolin, was superior for inducing multiple shoot regeneration events in more than 35% of explants in cultivar TME 7. Caulogenesis was achieved in eleven additional cultivars. Metatopolin was also found to be beneficial for stimulating shoot regeneration from somatic embryos and cotyledon explants. The shoot organogenesis techniques described enhance the capacity of existing embryogenic systems and present previously unavailable morphogenic pathways for developing genetic transformation and gene editing technologies in cassava.
利用间- 激动素刺激木薯叶片、叶柄和茎节外植体再生芽,已开发出一种用于木薯从头芽器官发生的新方案。虽然单独使用间- 激动素能够诱导芽再生,但在第一阶段培养基中将间- 激动素与2,4 - D结合,然后继代培养到更高水平的间- 激动素的两阶段系统,在品种TME 7中,能使超过35%的外植体诱导出多个芽再生事件。在另外11个品种中也实现了成苗。还发现间- 激动素有利于刺激体细胞胚和子叶外植体的芽再生。所描述的芽器官发生技术提高了现有胚性系统的能力,并为木薯开发遗传转化和基因编辑技术提供了以前无法获得的形态发生途径。