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Photosynthetic Effects of Light-emitting Diode (LED) on in Vitro-derived Strawberry (Fragariax Ananassa cv. Festival) Plants Under in Vitro Conditions

机译:发光二极管(LED)对体外条件下的体外草莓(Fragariax Ananassa CV。节日)植物的光合作用

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Purpose of this study was to investigate the effect of different photosynthetic photon flux density (PPFD) conditions using LED lamps on culture of shoot explants derived from in vitro shoots of Fragariax ananassa cv. Festival. To examine the combined effect of 55% red LED, 15% far red LED, 10% blue LED, 15% green LED and 5% warm light LED light on in vitro growth of plantlets, fresh and dry plant biomass, plant height, leaf area, number of shoot, shoot length, number of root and percentage of rooting and various growth of micro-propagated plants were assessed under four light intensities (25, 50, 75 and 100mol m(-2)s(-1) PPFD; TRT2, TRT3, TRT4, TRT5, respectively). Un-rooted strawberry shoots were cultured in the Culture Pack-rockwool system with MS medium under CO2-enriched condition. The best response for regeneration of shoots and root induction was observed for shoot explants obtained on MS supplemented with BAP 1mg/l and NAA 0.5mg/l at TRT3 (50mol m(-2)s(-1) PPFD). Chlorophyll and net photosynthesis were optimal in plants grown under TRT4 (75mol m(-2)s(-1) PPFD). Stomatal resistance and Fv/Fm values were highest at low light irradiance (TRT2). The highest efficiency and high frequency of shoot formation occurred after 30days. Elongation of shoot buds was obtained at TRT4 (75mol m(-2)s(-1) PPFD) and TRT5 (100mol m(-2)s(-1) PPFD) on the same MS medium. Regenerated shoots rooted best on the same medium of elongation. Irradiance at 75mol m(-2)s(-1) PPFD was suitable for the acclimatization of strawberry plants. We concluded that the present protocol can be efficiently used for mass propagation of the strawberry.
机译:本研究的目的是研究不同光合光子通量密度(PPFD)条件的效果,使用LED灯培养来自FragAliax ananassa CV的体外芽的芽外植物的培养物。节日。要检查55%红色LED的综合效果,15%的遥远红色LED,10%的蓝色LED,15%绿色LED和5%暖光LED灯在体外植物生长,植物生物量,植物高度,叶子在四个光强度(25,50,75和100molM(-2)S(-1)PPFD下评估面积,射击次数,生根植物的根源数和生根百分比和各种生长的百分比和各种生长的百分比和微传播植物的各种生长。 TRT2,TRT3,TRT4,TRT5)。在CO 2富集的病症下,用MS培养基培养了未生根的草莓芽。观察到在TRT3(50molM(-2)(-1)ppfd)上补充有BAP1mg / L和NAA 0.5mg / L的MS上获得的芽外植体的芽外植体的最佳反应。在TRT4(75molM(-2)(-1)ppfd)下生长的植物中叶绿素和净光合作用是最佳的。在低光辐照度(TRT2)下,气孔抗性和FV / FM值最高。 30天后发生的最高效率和高频率。在相同的MS培养基上在TRT4(75molM(-2)(-2)(-1)ppfd)和TRT5(-1)(-2)(-1)ppfd)上获得芽芽的伸长率。再生枝条在相同的伸长介质上根源。 75mol M(-2)S(-1)PPFD的辐照度适用于草莓植物的适应。我们得出结论,本方案可以有效地用于草莓的大规模繁殖。

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