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首页> 外文期刊>HortScience >Addition of White Light to Monochromatic Red and Blue Lights Alters the Formation, Growth, and Dormancy of In Vitro-grown Solanum tuberosum L. Microtubers
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Addition of White Light to Monochromatic Red and Blue Lights Alters the Formation, Growth, and Dormancy of In Vitro-grown Solanum tuberosum L. Microtubers

机译:加入白光到单色红色和蓝色光线改变了体外生长的茄子凋亡的形成,生长和休眠

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Monochromatic light and wide-band white light both affect plant growth and development. However, the different effects between monochromatic light and addition white light to monochromatic light on the formation, growth, and dormancy of microtubers have not been fully explored. Therefore, we evaluated these effects using in vitro potatoes grown under pure blue and red lights and a combination of blue light and red light supplemented with white light, respectively. Current results suggested that light spectra influenced microtuber formation, growth, and dormancy by regulating potato plantlet morphogenesis, affecting the synthesis and transportation of photosyntheticmetabolites, and altering the accumulation and distribution of biomass in various plant tissues. Monochromatic lights and the combined spectra had differing effects. For instance, monochromatic red light induced the growth ofmoremicrotubers, whereas addition white light to red light decreased number but increased weight of microtubers. Meanwhile, monochromatic blue light facilitated tuber growth, whereas addition white light to blue light decreased microtubers weight but increased microtuber number. In addition, composite lights of addition white light to monochromatic red and blue lights both extended the dormancy period, and monochromatic blue light shortened the dormancy period of microtubers >300 mg. Therefore, in microtuber agricultural production, specific light conditions may be applied at different growth stages of in vitro potatoes to increase the number of effective microtubers (>50 mg) and to satisfy storing requirement of seed microtubers.
机译:单色光和宽带白光都影响植物生长和发展。然而,单色光和加法白光与单色光线之间的不同效果尚未得到充分探索。因此,我们使用在纯蓝色和红灯下生长的体外土豆和补充有白光的蓝光和红光的组合来评估这些效果。目前的结果表明,光谱通过调节马铃薯小植物的形态发生,影响光合作用代谢物的合成和运输,并改变各种植物组织中生物质的积累和分布来影响微量机组,生长和休眠。单色灯和组合光谱具有不同的效果。例如,单色红光诱导摩西多药剂的生长,而添加白光与红光的数量减小,但微管的重量增加。同时,单色蓝光有助于块茎生长,而添加白光至蓝光下降,微管重量增加,但显微劳动量增加。另外,复合灯加入白光到单色红色和蓝色灯都延伸了休眠时段,单色蓝光缩短了微管的休眠期> 300毫克。因此,在微管农业生产中,特定的光线条件可以应用于体外土豆的不同生长阶段,以增加有效微管(> 50mg)的数量并满足种子微管的储存要求。

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