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Improved in vitro rooting in liquid culture using a two piece scaffold system

机译:使用两件脚手架系统改善液体培养中的体外生根

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摘要

Plant tissue culture techniques have been used to propagate horticultural crops at a commercial scale for more than three decades. However, due to the high cost it is generally only used for high value crops. To increase production efficiency and make micropropagation viable for a wider range of species, new approaches to address key steps of the process with high labor inputs need to be evaluated. For this study, a two‐piece scaffold system was designed, prototyped using 3D printing, and tested to physically hold plants upright thereby facilitating liquid based rooting. This system was evaluated with , , and sp. using static liquid culture as well as rocker based temporary immersion system and compared to rooting in semi‐solid based medium as is commonly practiced. Significantly, earlier rooting was observed in all three species in liquid when compared to semi‐solid culture system, and plants cultured in liquid on the rocker generally performed better than those in static liquid. In addition to quicker, more uniform rooting, reducing labor requirements, and preventing root damage. This newly designed system is simple, easy to use, will help to improve efficiency, and reduce the cost of micropropagation.
机译:植物组织培养技术已被用来以商业规模宣传园艺作物超过三十年。然而,由于高成本,它通常仅用于高价值作物。为了提高生产效率,使微扑通可行为更广泛的物种,需要评估新的劳动力投入的过程的关键步骤的新方法。对于本研究,设计了一种双件脚手架系统,使用3D打印进行原型设计,并测试到物理上保持植物直立,从而促进基于液体的生根。该系统被评估为和SP。使用静态液体培养以及基于摇杆的临时浸没系统,与常用的基于半固体基培养基的生根相比。显着地,与半固体培养系统相比,在液体中的所有三种种类中观察到早期生根,并且在摇杆上培养的植物通常比静态液体更好地进行。除了更快,更均匀的生根,降低劳动力要求,并防止根损伤。这个新设计的系统简单,易于使用,将有助于提高效率,降低微垄断成本。

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