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Effects of the red:far-red light ratio on photosynthetic characteristics of greenhouse cut Chrysanthemum – Short communication

机译:红:远红光比对温室切花菊花光合特性的影响-短时通讯

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For the use of LED as a light source to regulate the photosynthesis of chrysanthemum leaves under greenhouse conditions, the effects of different red (660 ± 30 nm) to far-red (730 ± 30 nm) radiation ratios (R:FR) on the photosynthetic characteristics and chlorophyll fluorescence parameters of chrysanthemum leaves were studied. Red and far-red LED light sources were combined in different proportions to produce four R:FR ratio treatments: 0.5, 2.5, 4.5 and 6.5. The chlorophyll a content, SPAD value, net photosynthetic rate, light-saturated maximum photosynthetic rate, CO2-saturated carboxylation rate, apparent quantum efficiency and carboxylation efficiency were all the highest under the R:FR ratio of 2.5, followed by the R:FR ratio of 4.5. Potential photochemical efficiency of photosystem II, photochemical quenching and electron transport rate for the R:FR ratios of 2.5 and 4.5 were markedly higher than those for 0.5 and 6.5, however, those parameters did not differ significantly between the R:FR ratios of 2.5 and 4.5.
机译:对于使用LED作为调节温室条件下菊花叶片光合作用的光源,不同的红色(660±30 nm)到远红色(730±30 nm)的辐射比(R:FR)会影响菊苣叶片的光合作用。研究了菊花叶片的光合特性和叶绿素荧光参数。红色和远红色LED光源以不同比例组合以产生四种R:FR比率处理:0.5、2.5、4.5和6.5。叶绿素a含量,SPAD值,净光合速率,光饱和最大光合速率,CO 2 饱和羧化速率,表观量子效率和羧化效率在R:FR比下最高。 2.5,然后是R:FR比4.5。 R和FR的比率为2.5和4.5时,光系统II的潜在光化学效率,光化学猝灭和电子传输速率显着高于0.5和6.5,但是,这些参数在R和FR的比率为2.5和4.5之间没有显着差异。 4.5。

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