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Development and acclimatisation of horticultural plants subjected to narrow-band lighting.

机译:窄带照明下园艺植物的开发和适应。

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Light-emitting diodes (LED) allow narrow-band light to be easily obtained and can be used for narrow-band lighting in plant cultivation, with possible effects on plant growth and development. This study examined use of narrow-band lighting of different wavelengths in the cultivation of ornamental pot plant (Pelargonium and Petunia), tomato (Solanum lycopersicum) transplants and sunflower (Helianthus annuus), either as sole light source in growth chambers, or as end-of-day (EOD) treatment in a greenhouse environment. Biometric measurements on plant growth and measurements of photosynthesis and stomatal conductance showed that when Helianthus was grown exclusively in blue light, stem elongation was greater than when it was grown exclusively in yellow, red, green or white light. Similar results were obtained when blue light was supplied in EOD treatments for Petunia and Pelargonium and for tomato. However, stem elongation was also high when red light was given as EOD treatment to tomato, whereas green light gave the least elongated plants in these conditions. Biomass production was generally not affected by the different EOD treatments. For Helianthus plants grown solely in monochromatic light, plant biomass production was highest in red light. For Pelargonium, photosynthetic rate was highest in blue light. It was concluded that plant response to different wavelengths is species-dependent and that EOD treatment with narrow-band lighting might be useful for plant growth regulation.
机译:发光二极管(LED)可使窄带光容易获得,并可用于植物栽培中的窄带照明,可能对植物的生长发育产生影响。这项研究检查了在装饰盆栽植物(天竺葵和矮牵牛),番茄(Solanum lycopersicum)移植和向日葵(Helianthus annuus)的栽培中使用不同波长的窄带照明作为生长室中的唯一光源或作为最终温室环境中的日常(EOD)处理。对植物生长进行的生物特征测量以及光合作用和气孔导度的测量表明,当向日葵仅在蓝光下生长时,茎伸长大于当其仅在黄,红,绿或白光下生长。当对矮牵牛,天竺葵和番茄进行EOD处理时提供蓝光时,可获得类似的结果。但是,当对番茄进行EOD处理时,红光作为茎的伸长率也很高,而在这些条件下,绿光对植物的伸长最小。生物量生产通常不受不同EOD处理的影响。对于仅在单色光下生长的向日葵植物,植物生物量的产生在红光下最高。天竺葵的光合速率在蓝光下最高。结论是植物对不同波长的响应取决于物种,并且用窄带照明进行EOD处理可能对植物生长调节有用。

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