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The effects of LEDs and duty ratio on the growth and physiological responses of Silene capitata Kom., endangered plant, in a plant factory

机译:LED和占空比对植物工厂中濒危植物Silene capitata Kom。的生长和生理响应的影响

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In this study, we observed their growth and physiological responses using a variety of duty ratio under the mixed light using red, blue, and white lights. The red+blue mixed light was treated with 95%, 90%, 85%, 80%, and 75% duty ratios and red+blue+white mixed light with 85% and 70% duty ratios. We examined the width and length of leaves, total number of leaves, and number of shoots to examine their growth responses. The physiological responses were studied by measuring their photosynthetic rate, transpiration rate, stomatal conductance, water use efficiency, chlorophyll content, and fluorescence (Fo, Fm, and Fv/Fm). We found that lower duty ratio caused the length and width of the leaves to grow longer under red+blue mixed light but that it did not cause any difference in the red+blue+white mixed light condition. In addition, there was no difference in the number of leaves and shoots among all treatments. In the red+blue mixed light condition, the photosynthetic rate was no difference, but both transpiration rate and stomatal conductance were the highest at 95% duty ratio than in other ratios. Water use efficiency pattern was similar to that of photosynthetic rate; water use efficiency was no difference. Chlorophyll content was the highest at 95% duty ratios, and it was the least at 90%, 85%, and 75% duty ratio. Fo and Fm values were relatively high at 85% and 80% duty ratio and low at 90% duty ratio while Fv/Fm showed no difference. Under the red+blue+white mixed light, all physiological items showed no difference between 70 and 85% treatments. But, photosynthetic rate, water use efficiency, chlorophyll content, and Fv/Fm were relatively greater in the red+blue+white mixed light than in the red+blue mixed light. Therefore, red+blue+white mixed light treated with 70% duty ratio could lessen the environmental stress and save more power when cultivating Silene capitata in a plant factory.
机译:在这项研究中,我们在红色,蓝色和白色光的混合光下使用各种占空比观察了它们的生长和生理反应。红色+蓝色+白色混合光以95%,90%,85%,80%和75%的占空比进行处理,红色+蓝色+白色混合光以85%和70%占空比进行处理。我们检查了叶子的宽度和长度,叶子的总数以及芽的数量,以检查它们的生长反应。通过测量其光合速率,蒸腾速率,气孔导度,水分利用效率,叶绿素含量和荧光(Fo,Fm和Fv / Fm)来研究生理反应。我们发现,较低的占空比会导致叶子的长度和宽度在红色+蓝色混合光的作用下更长,但不会导致红色+蓝色+白色混合光的条件产生任何差异。另外,所有处理之间的叶和芽的数量没有差异。在红蓝混合光条件下,光合速率无差异,但蒸腾速率和气孔导度在占空比为95%时均最高。水分利用效率模式与光合速率相似。水分利用效率无差异。叶绿素含量在占空比为95%时最高,而在占空比为90%,85%和75%时最低。当占空比为85%和80%时,Fo和Fm值相对较高,而当占空比为90%时,Fo和Fm值较低,而Fv / Fm无差异。在红色+蓝色+白色混合光下,所有生理项目在70%和85%的治疗之间均无差异。但是,红色+蓝色+白色混合光的光合速率,水分利用效率,叶绿素含量和Fv / Fm相对大于红色+蓝色混合光。因此,以70%的占空比进行处理的红色+蓝色+白色混合光可以减轻环境压力,并在植物工厂中种植人头草时节省更多电力。

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