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首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Application of wide-spectrum light-emitting diodes in micropropagation of popular ornamental plant species: a study on plant quality and cost reduction
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Application of wide-spectrum light-emitting diodes in micropropagation of popular ornamental plant species: a study on plant quality and cost reduction

机译:广谱发光二极管在流行观赏植物种类微扑发中的应用 - 植物质量与成本降低研究

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In the present study, the applicability of four wide-spectrum light-emitting diodes (LEDs) emitting warm light (AP67, AP673L, G2, and NS1) was determined for the micropropagation of five popular ornamental plant species: Chrysanthemum x grandiflorum, Gerbera jamesonii, Heuchera x hybrida, Ficus benjamina, and Lamprocapnos spectabilis. Plantlets were grown in a growth room with a 16-h photoperiod. The photosynthetic photon flux density was set at 62-65molm(-2)s(-1). The composition of the media and subculture timing were adjusted to the needs of each species tested. The results were compared to the cool daylight-emitting fluorescent (FL) control (TLD 36W/54). In most of the species studied (except for F. benjamina), the highest propagation ratios, or ratios similar to the FL control, were observed under the red- and far-red-abundant G2 LEDs. NS1 spectrum (with the highest proportion of blue and green light) was also efficient for G. jamesonii and L. spectabilis, and it provided a similar propagation ratio as the FL control. Light quality affected shoot length, number of leaves, callus regeneration, and the biosynthesis of chlorophyll. This influence, however, was species-dependent. Lighting conditions did not affect the dry matter and rooting in most of the species tested, except for G. jamesonii. The substitution of FLs with G2 LEDs can result in a 50% reduction of annual electricity costs, while the application of NS1 lamps can generate savings of up to 75%. In conclusion, the G2 LED lighting system seemed to be the most suitable in terms of propagation efficiency, plantlet quality, and cost reduction.
机译:在本研究中,测定出发射暖光(AP67,AP673L,G2和NS1)的四个宽光发光二极管(LED)的适用性,用于五种普遍的观赏植物种类的微迁移:Chrysanthemum x Grandiflorum,Gerbera Jamesonii ,Heuchera X Hybrida,Ficus Benjamina和Lamprocapnos Spectabilis。小植物在具有16-H Photopheriod的生长室中生长。光合光子通量密度设定为62-65molm(-2)S(-1)。调节培养基和传递计时的组合物针对所测试的每种物种的需要。将结果与冷却季光发光荧光(FL)对照(TLD 36W / 54)进行比较。在研究的大多数物种(F.Benjamina除外)中,在红色和远红富裕的G2 LED下观察到与FL控制相似的最高传播比或类似的比率。 NS1光谱(具有最高的蓝色和绿灯)也是G. Jamesonii和L. Spectabilis的有效,并且它提供了与FL控制相似的传播比。光质质量受影响的枝条长度,叶子数,愈伤组织再生,以及叶绿素的生物合成。然而,这种影响是依赖于物种。除了G. Jamesonii之外,照明条件不会影响干燥物质并生根,除了G. Jamesonii。 FLS与G2 LED的替换可能导致每年电力成本降低50%,而NS1灯的应用可以节省高达75%。总之,G2 LED照明系统似乎是最适合的传播效率,Plantlet品质和降低成本。

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