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Split-seed: a new tool for maize researchers

机译:分粒种子:玉米研究人员的新工具

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Until recently, immature embryos have been a choice tissue for manipulation in culture for regeneration and production of transgenic maize plants. The utility of this explant has been compromised by low output, genotype dependence and time-consuming incubation in tissue culture. We have developed a new explant, the split-seed, which addresses these limitations by formally treating each seed as though it were a “dicot”. By splitting maize seed longitudinally, three different tissues: the scutellum, the coleoptilar-ring and the shoot apical meristems are simultaneously exposed. The cells of these tissues can be made competent to enhance the regeneration, given that the molecular networks resulting from exposure of the split-seed to hormones is likely to be different from whole seed and, in turn, affects the in vitro response. Using this explant, callus induction frequency exceeded 92% and the regeneration frequency was 76%. The mean number of shoots regenerated via callus was 11 shoots per callus clump and 28 shoots per explant at first sub-culture. All of the regenerated plants survived and were 95% fertile. The large numbers of fertile plants produced were regenerated in 6–8 weeks. Finally, the incidence of regenerated plants varies as a function of growth regulator profile.
机译:直到最近,不成熟的胚胎一直是用于培养中用于再生和生产转基因玉米植物的一种选择组织。低产量,基因型依赖性和组织培养中耗时的孵育损害了这种外植体的效用。我们开发了一种新的外植体,即分裂种子,通过将每颗种子当作“种子”来正式对待,从而解决了这些限制。通过纵向分裂玉米种子,可以同时暴露出三种不同的组织:盾片,胚芽鞘环和茎尖分生组织。假定分裂种子暴露于激素后形成的分子网络可能与整个种子不同,从而影响了体外反应,则可以使这些组织的细胞具有增强再生的能力。使用该外植体,愈伤组织的诱导频率超过92%,再生频率为76%。在第一次传代培养中,通过愈伤组织再生的平均芽数为每个愈伤组织块11个芽,每个外植体28个芽。所有再生的植物均存活并具有95%的繁殖力。产生的大量可育植物在6-8周内得以再生。最后,再生植物的发生率随生长调节剂谱的变化而变化。

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