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PS-346-1 障害肝併存肝細胞癌患者におけるBCAA製剤とEPA・DHA強化栄養i剤併用効果の検討(PS ポスターセッション,第113回日本外科学会定期学術集会)

2013/03/05 by Shuyang Zhen, Marc W. van Iersel, 利知 中竹 +8 · 2 citations
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · Neuroscience · #Light effects on plants #Photoreceptor and optogenetics research #Photosynthetic Processes and Mechanisms

paper · doi:10.1016/j.jplph.2016.12.004

openalex publication_date 2013/03/05 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/27

Abstract

The efficiency of monochromatic light to drive photosynthesis drops rapidly at wavelengths longer than 685nm. The photosynthetic efficiency of these longer wavelengths can be improved by adding shorter wavelength light, a phenomenon known as the Emerson enhancement effect. The reverse effect, the enhancement of photosynthesis under shorter wavelength light by longer wavelengths, however, has not been well studied and is often thought to be insignificant. We quantified the effect of adding far-red light (peak at 735nm) to red/blue or warm-white light on the photosynthetic efficiency of lettuce (Lactuca sativa). Adding far-red light immediately increased quantum yield of photosystem II (Φ<sub>PSII</sub>) of lettuce by an average of 6.5 and 3.6% under red/blue and warm-white light, respectively. Similar or greater increases in Φ<sub>PSII</sub> were observed after 20min of exposure to far-red light. This longer-term effect of far-red light on Φ<sub>PSII</sub> was accompanied by a reduction in non-photochemical quenching of fluorescence (NPQ), indicating that far-red light reduced the dissipation of absorbed light as heat. The increase in Φ<sub>PSII</sub> and complementary decrease in NPQ is presumably due to preferential excitation of photosystem I (PSI) by far-red light, which leads to faster re-oxidization of the plastoquinone pool. This facilitates reopening of PSII reaction centers, enabling them to use absorbed photons more efficiently. The increase in Φ<sub>PSII</sub> by far-red light was associated with an increase in net photosynthesis (P<sub>n</sub>). The stimulatory effect of far-red light increased asymptotically with increasing amounts of far-red. Overall, our results show that far-red light can increase the photosynthetic efficiency of shorter wavelength light that over-excites PSII.

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