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Conservation, Regeneration and Genetic Stability of Regenerants from Alginate-Encapsulated Shoot Explants of Gardenia jasminoides Ellis

机译:从栀子茉莉原植物的藻酸盐包封射击植物的再生植物的保护,再生和遗传稳定性ellis

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摘要

The present study demonstrates the potential of the alginate encapsulation of shoot tips and nodal segments of Gardenia jasminoides Ellis, the short-term cold storage of artificial seeds and subsequent successful conversion to desirable, uniform and genetically stable plantlets. Shoot tips and first-node segments below them, derived from shoots of in vitro cultures, responded better than second-to-fourth-node segments on agar-solidified Murashige and Skoog (MS) nutrient medium and thus, they were used as explants for alginate encapsulation. Explant encapsulation in 2.5% sodium alginate in combination with 50 mM of calcium chloride resulted in the production of soft beads, while hardening in 100 mM of calcium chloride formed firm beads of uniform globular shape, suitable for handling. The addition of liquid MS nutrient medium in the sodium alginate solution doubled the subsequent germination response of the beads. The maintenance of alginate beads under light favored their germination response compared to maintenance in darkness. Encapsulated shoot tip explants of gardenia, which were stored at 4 °C for 4, 8 or 12 weeks, showed a gradual decline in their regeneration response (73.3, 68.9, 53.3%, respectively), whereas, non-encapsulated explants (naked), stored under the same time durations of cold conditions, exhibited a sharp decline in regeneration response up to entirely zeroing (48.9, 11.1, 0.0%, respectively). Shoots, derived from 12-week cold-stored encapsulated explants, were easily rooted in solid MS nutrient medium with the addition of 0.5 μM of Indole-3-acetic acid (IAA) and after transplantation of the rooted plantlets individually to pots containing a peat–perlite (3:1, v/v) substrate, they were successfully acclimatized in the greenhouse under the gradual reduction of 75 or 50% shading with survival rates of 95–100%. The genetic stability of the acclimatized plantlets was assessed and compared with the mother plant using inter simple sequence repeat (ISSR) markers. ISSR analysis confirmed that all regenerated plantlets were genetically identical to the mother plant. This procedure of artificial seed production could be useful for the short-term storage of germplasm and the production of genetically identical and stable plants as an alternative method of micropropagation in Gardenia jasminoides.
机译:本研究表明,栀子jasminoides ellis的射击尖端和节点段的藻酸盐封装的潜力,人工种子的短期冷储存和随后的成功转化为理想的,均匀和遗传稳定的植物。射击下面的射尖和第一节点段,源自体外培养的芽,比琼脂固化的Murashige和Skoog(MS)营养培养基更好地优于第二至第四节点段,因此它们被用作外植体藻酸盐封装。外植体在2.5%藻酸钠中的组合与50毫米氯化钙组合导致生产软珠,同时在100mm的氯化钙中加固形成均匀的球形珠子,适合处理。在藻酸钠溶液中加入液态MS营养培养基加倍珠粒的随后发芽响应加倍。与在黑暗中的维护相比,在轻度下的藻酸盐珠粒的维持有助于它们的萌发反应。栀子的包封茎尖端,储存在4℃,8或12周的4,8或12周,其再生响应逐渐下降(73.3,68.9​​,53.3%),而不封装的外植体(裸体)储存在同一时间持续时间的寒冷条件下,在再生响应中表现出完全归零的再生响应(分别为48.9,11.1,0.0%)。源自12周的冷藏封装的外植体,易于在固体MS营养培养基中易于加入0.5μm吲哚-3-乙酸(IAA)和单独移植生根植株后,以含有泥炭的罐子 - 钛(3:1,v / v)衬底,它们在温室中成功地适应于75或50%阴影的温室,其存活率为95-100%。评估适应的植株的遗传稳定性,并使用母植物使用型简单序列重复(ISSR)标记进行比较。 ISSR分析证实,所有再生的植株都与母植物遗传相同。这种人工种子生产的方法可用于种质的短期储存以及栀子茉莉属植物中的替代方法的替代和稳定植物的生产。

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