首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Plant regeneration of Nerium oleander L. from alginate-encapsulated shoot explants after short-term cold storage
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Plant regeneration of Nerium oleander L. from alginate-encapsulated shoot explants after short-term cold storage

机译:植物再生烯醇渗夹层L.短期冷藏后的藻酸盐封装的枝条。

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摘要

In this study, an efficient protocol for the regeneration of encapsulated explants of oleander (Nerium oleander L.) has been developed. Shoot tips and 1st nodal segments below the shoot tip, from in vitro-derived oleander microshoots, were encapsulated in 2.5% sodium alginate prepared in liquid MS sucrose-free nutrient medium and hardened in 50 mM of calcium chloride producing solid beads, uniform in shape. These artificial seeds, irrespective of their maintenance under light or in darkness, germinated at frequencies of 38.8-42.2%, producing 3.0-3.3 microshoots per bead. In the case of using 100 mM of calcium chloride for hardening, the beads were firm, of uniform globular shape and suitable for handling, exhibiting a germination response of 68.9%. Encapsulated shoot tip explants, following storage at 4 degrees C for 8 weeks, exhibited a higher regeneration response (60.0%) than non-encapsulated similar explants stored under the same conditions (11.1%). Microshoots, excised from cold-stored encapsulated explants after germination, rooted easily in agar-solidified MS medium with 2 mu M IBA and after their transplantation into a peat-perlite substrate (3:1, v/v), were acclimatised successfully and established in the greenhouse with minimal losses. The present encapsulation procedure could be applied as an alternative method of micropropagation of desirable elite clones of oleander.
机译:在该研究中,已经开发了一种有效的夹纸封装外植体的再生方案(Nerium Oleiumer L.)。从体外蜕皮微孔中射击尖端和第一节点段均在液体MS蔗糖的营养培养基中制备的2.5%藻酸钠中包封,并在50毫米氯化钙生产固体珠粒,均匀。这些人造种子,无论其在光线还是在黑暗下,在38.8-42.2%的频率下发芽,产生3.0-3.3微孔的频率。在使用100毫米氯化钙的硬化的情况下,珠子均匀,具有均匀的球状,适合处理,表现出68.9%的萌发响应。在4℃下储存8周后,封装的枝条外植体表现出比在相同条件下储存的未包封的类似外植体更高的再生响应(60.0%)。从萌发后从冷藏封装的外植体切除的微孔,在琼脂固化的MS培养基中易生根,在将其移植到泥炭珍珠岩底物中(3:1,v / v)后,以成功地驯化并建立在温室里,损失最小。本封装过程可以作为烯切碎物的理想精英克隆的替代方法应用。

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