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In Vitro Regeneration of Capparis spinosa L. by Using a Temporary Immersion System

机译:通过使用临时浸没系统体外对Capparis spinosa L.的体外再生

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摘要

Three caper (Capparis spinosa L.) biotypes grown on the Sicilian island of Salina (38°33′49″ N) were micropropagated to evaluate two different in vitro culture systems: one using the traditional solid medium, and the other based on liquid culture in a PlantForm bioreactor. PlantForm is a temporary immersion system (TIS), a new propagation method in which the shoots undergo temporary immersion in a liquid medium in order to avoid the accumulation of gas through forced ventilation. This study proposes a protocol to improve the efficiency of in vitro propagation of caper plants, while also reducing production costs, because of the elimination of the gelling agent, and manual labor, requiring limited subcultures and posing minimal contamination risks. Our results show that the caper shoots propagated in bioreactors demonstrated good adaptability and better growth rates than those grown in the conventional system. Statistically significant differences were observed between plants grown in the PlantForm liquid culture and those grown in solid medium regarding the number and length of shoots, which were further promoted by the addition of plant growth regulators (PGRs). The relative growth and real proliferation rate of the caper explants were higher when using meta-Topolin than when using 6-benzylaminopurine as a PGR. Overall, the TIS improved in vitro caper culture by promoting the proliferation, length, and vigor of the shoots.
机译:微繁殖了三种在萨利纳(38°33′49″ N)西西里岛上生长的雀跃(Capparis spinosa L.)生物型,以评估两种不同的体外培养系统:一种使用传统的固体培养基,另一种基于液体培养在PlantForm生物反应器中。 PlantForm是一种临时浸没系统(TIS),一种新的繁殖方法,其中,新芽会暂时浸入液体介质中,以避免通过强制通风而积聚气体。这项研究提出了一种方案,因为它消除了胶凝剂和体力劳动,因此需要有限的继代培养,并且污染风险最小,因此可以提高雀跃植物的体外繁殖效率,同时降低生产成本。我们的结果表明,与传统系统相比,在生物反应器中繁殖的刺山柑芽具有良好的适应性和更高的生长速率。观察到在PlantForm液体培养物中生长的植物与在固体培养基中生长的植物之间在芽的数量和长度方面有统计学上的显着差异,这通过添加植物生长调节剂(PGR)得以进一步促进。当使用间-Topolin比使用6-苄基氨基嘌呤作为PGR时,雀跃外植体的相对生长和实际增殖率更高。总体而言,TIS通过促进芽的增殖,长度和活力来改善体外雀跃培养。

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