In vitro STORAGE OF SYNTHETIC SEEDS OF Aechmea fasciata

Awatef M. Badr-Elden
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引用次数: 2

Abstract

This study has focused on the synthetic seed technology of Aechmea fasciata with a particular focus on the carbon source in seed bead. BA was the most effective cytokinin comparing with KN, 2iP or TDZ. It induced the maximum proliferation when used at 3 mg/l. The best morphogenetic response of the plantlets was achieved by culturing the encapsulated buds – for 8 weeks - on cytokinin-free MS medium, on media containing 2 mg/l BA or 1.0 mg/l KN. Encapsulated buds exhibited shoot development on MS medium supplemented with some growth retardants PBZ, ABA and CCC. Adding sucrose to the gel matrix influenced the capsule germination. Buds were encapsulated with 3% sodium alginate where 96.67% of the encapsulated buds were converted to plantlets. The plantlets developed elongated buds in perlite containing sucrose as a carbon source. The highest number of roots was obtained by culturing the in vitro proliferating shoots in MS salts supplemented with 2 mg/l IBA. The plants were successfully transferred to pots in a greenhouse with 97% survival percentage and gave 100% flowering percentage after one year from adaptation grown under controlled conditions. The molecular studies using RAPD technique with five primers proved that, the same dose of conservative material PBZ, ABA and CCC that were used to conserve the encapsulated explants. After the regrowth from plantlets it showed that adding PBZ, ABA and CCC was interaction between the conservative materials and plays an important role in the conservation.
花楸合成种子的体外贮藏
本研究主要研究了花楸种子的合成技术,重点研究了花楸种子籽粒中的碳源。与KN、2iP和TDZ相比,BA是最有效的细胞分裂素。当浓度为3 mg/l时,其增殖能力最强。在不含细胞分裂素的MS培养基、含2mg /l BA或1.0 mg/l KN培养基上培养8周后,获得了最佳的形态发生反应。在添加了PBZ、ABA和CCC的MS培养基上,包被芽发育良好。在凝胶基质中加入蔗糖对荚膜萌发有影响。用3%海藻酸钠包埋后,包埋后的芽转化成植株的比例为96.67%。植株在含有蔗糖作为碳源的珍珠岩中发育出细长的芽。在添加2 mg/l IBA的MS盐中培养离体增殖芽,根数最多。这些植物在受控条件下适应生长,一年后成功地转移到温室盆栽中,成活率为97%,开花率为100%。采用RAPD技术对5种引物进行分子分析,结果表明,采用相同剂量的保藏材料PBZ、ABA和CCC对外植体进行保藏。植株再生后发现,添加PBZ、ABA和CCC是保守物质之间的相互作用,在保护中起着重要作用。
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