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Long-Term Effects of Red- and Blue-Light Emitting Diodes on Leaf Anatomy and Photosynthetic Efficiency of Three Ornamental Pot Plants

机译:红光和蓝光发光二极管对三种观赏盆栽植物的叶片解剖和光合效率的长期影响

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摘要

Light quality critically affects plant development and growth. Development of light-emitting diodes (LEDs) enables the use of narrow band red and/or blue wavelengths as supplementary lighting in ornamental production. Yet, long periods under these wavelengths will affect leaf morphology and physiology. Leaf anatomy, stomatal traits, and stomatal conductance, leaf hydraulic conductance (Kleaf), and photosynthetic efficiency were investigated in three ornamental pot plants, namely Cordyline australis (monocot), Ficus benjamina (dicot, evergreen leaves), and Sinningia speciosa (dicot, deciduous leaves) after 8 weeks under LED light. Four light treatments were applied at 100 μmol m−2 s−1 and a photoperiod of 16 h using 100% red (R), 100% blue (B), 75% red with 25% blue (RB), and full spectrum white light (W), respectively. B and RB resulted in a greater maximum quantum yield (Fv/Fm) and quantum efficiency (ΦPSII) in all species compared to R and W and this correlated with a lower biomass under R. B increased the stomatal conductance compared with R. This increase was linked to an increasing stomatal index and/or stomatal density but the stomatal aperture area was unaffected by the applied light quality. Leaf hydraulic conductance (Kleaf) was not significantly affected by the applied light qualities. Blue light increased the leaf thickness of F. benjamina, and a relative higher increase in palisade parenchyma was observed. Also in S. speciosa, increase in palisade parenchyma was found under B and RB, though total leaf thickness was not affected. Palisade parenchyma tissue thickness was correlated to the leaf photosynthetic quantum efficiency (ΦPSII). In conclusion, the role of blue light addition in the spectrum is essential for the normal anatomical leaf development which also impacts the photosynthetic efficiency in the three studied species.
机译:光线质量严重影响植物的生长发育。发光二极管(LED)的发展使得能够在装饰产品中使用窄带的红色和/或蓝色波长作为辅助照明。然而,长时间处于这些波长下会影响叶片的形态和生理。在三种观赏盆栽植物中研究了叶片的解剖结构,气孔性状,气孔导度,叶片水力导度(Kleaf)和光合作用效率,这三种观赏盆栽植物分别是南方冬虫夏草(Corcotline australis)(单子叶植物),榕树(Ficus benjamina)(双子叶,常绿叶子)和辛辛那尼(Sinningia speciosa)落叶)在LED灯下8周后。使用100%红色(R),100%蓝色(B),75%,100μmolm -2 s -1 和16 h的光周期进行四次光处理分别为%红色和25%蓝色(RB)和全光谱白光(W)。与R和W相比,B和RB导致所有物种的最大量子产率(Fv / Fm)和量子效率(ΦPSII)更高,这与R下的生物量较低相关.B与R相比增加了气孔导度。与气孔指数和/或气孔密度的增加有关,但气孔孔径面积不受所施加的光质量的影响。叶片光导率(Kleaf)不受所施加的光照质量的显着影响。蓝光增加了本杰明细叶的叶片厚度,并且观察到栅栏薄壁组织的相对较高的增加。同样在S. speciosa中,在B和RB下发现栅栏薄壁组织增加,尽管总叶厚度没有受到影响。栅栏实质组织厚度与叶片光合量子效率(ΦPSII)相关。总之,添加蓝光在光谱中的作用对于正常的解剖叶片发育至关重要,这也影响了三个研究物种的光合作用效率。

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