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首页> 外文期刊>Industrial Crops and Products >Thin cell suspension layer as a new methodology for somatic embryogenesis in Agave tequilana Weber cultivar azul
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Thin cell suspension layer as a new methodology for somatic embryogenesis in Agave tequilana Weber cultivar azul

机译:薄细胞悬液层作为龙舌兰龙舌兰Weber品种azul体细胞胚发生的新方法

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Commercial micropropagation of plants is enhanced with the use of liquid media cultures; however the presence of hyperhydricity is commonly observed in cultures of the succulent plant Agave tequilana Weber cultivar azul, this phenomenon persists even with the use of temporary immersion systems (TIS). Thin cell suspension layer technology is proposed to solve this problem. This technology fuses the advantages of a liquid culture made through cellular dissociation, and the use of solid medium for somatic embryogenesis expression of the species. The technology was evaluated by means of two experiments in order to know the influence of gelling agent phytagelp, and of sucrose concentrations through interaction with three cellular suspension densities. It was clear that concentrations of phytagel at 6, 8, 10 or 12glp# are not significant for embryoid expression of A. tequilana. On the other hand, sucrose at 30 and 60glp# have statistically superior values than concentration of 120glp#. A larger cellular density (161x10pd cellsmlp#) gave a statistical difference in number of embryoids. The advantages of thin cell suspension layer were remarkable: it encouraged complete expression of embryoids without transfer to extra media cultures, and a higher number of generated embryoid was obtained. Absence of hyperhydricity was observed in all regenerants.
机译:通过使用液体培养基培养可以增强植物的商业微繁;但是,在多肉植物龙舌兰龙舌兰Weber品种azul的培养物中通常会观察到过高水的存在,即使使用临时浸没系统(TIS),这种现象仍然存在。提出了薄细胞悬浮层技术来解决这个问题。该技术融合了通过细胞解离制成的液体培养物的优势,以及利用固体培养基表达该物种的体细胞胚发生的优势。通过两个实验对技术进行了评估,以了解胶凝剂phytagelp的影响以及通过与三种细胞悬浮液密度的相互作用对蔗糖浓度的影响。很明显,在6、8、10或12glp#处的phytagel浓度对于龙舌草的胚状表达并不重要。另一方面,在30和60glp#下的蔗糖具有统计学上优于120glp#浓度的值。较大的细胞密度(161x10pd cellsmlp#)给出了胚状体数量的统计差异。薄细胞悬液层的优点是显着的:它鼓励胚状体的完整表达而无需转移到额外的培养基中,并且获得了更多的胚状体。在所有再生剂中均未见过高水合。

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