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Longer Photoperiods with the Same Daily Light Integral Increase Daily Electron Transport through Photosystem II in Lettuce

机译:通过相同的每日光整体增加每日电子运输的较长的光周期通过莴苣中的照片II

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摘要

Controlled environment crop production recommendations often use the daily light integral (DLI) to quantify the light requirements of specific crops. Sole-source electric lighting, used in plant factories, and supplemental electric lighting, used in greenhouses, may be required to attain a specific DLI. Electric lighting is wasteful if not provided in a way that promotes efficient photochemistry. The quantum yield of photosystem II (ΦPSII), the fraction of absorbed light used for photochemistry, decreases with increasing photosynthetic photon flux density (PPFD). Thus, we hypothesized that the daily photochemical integral (DPI), the total electron transport through photosystem II (PSII) integrated over 24 h, would increase if the same DLI was provided at a lower PPFD over a longer photoperiod. To test this, ΦPSII and the electron transport rate (ETR) of lettuce (Lactuca sativa ‘Green Towers’) were measured in a growth chamber at DLIs of 15 and 20 mol m−2 d−1 over photoperiods ranging from 7 to 22 h. This resulted in PPFDs of 189 to 794 μmol m−2 s−1. The ΦPSII decreased from 0.67 to 0.28 and ETR increased from 55 to 99 μmol m−2 s−1 as PPFD increased from 189 to 794 μmol m−2 s−1. The DPI increased linearly as the photoperiod increased, but the magnitude of this response depended on DLI. With a 7-h photoperiod, the DPI was ≈2.7 mol m−2 d−1, regardless of DLI. However, with a 22-h photoperiod, the DPI was 4.54 mol m−2 d−1 with a DLI of 15 mol m−2 d−1 and 5.78 mol m−2 d−1 with a DLI of 20 mol m−2 d−1. Our hypothesis that DPI can be increased by providing the same DLI over longer photoperiods was confirmed.
机译:受控环境作物生产建议经常使用日常光整体(DLI)来量化特定作物的光要求。在植物厂使用的鞋底电气照明和在温室中使用的补充电动照明,可能需要获得特定的DLI。如果没有以促进有效的光化学的方式提供电动照明是浪费的。照相系统II(φPSII)的量子产率,用于光化学的吸收光的级分,随着光合光子通量密度(PPFD)的增加而降低。因此,我们假设每日光化学积分(DPI),通过在24小时内集成的光照整体(PSII)的总电子传输,如果在较长的光周期下方的PPFD下提供相同的DLI,则会增加。为了测试这一点,φPSII和生菜的电子传输速率(ETR)(Lactuca sativa'绿色塔)在15至22小时的光周期的Dlis的生长室中测量了在15%和20mol M-2 D-1的生长室中测量。这导致PPFD为189至794μmolM-2 S-1。 φPSII从0.67减少到0.28,ETR从55升至99μmolM-2 S-1,因为PPFD从189增加到794μmolM-2 S-1。随着光周期的增加,DPI线性增加,但这种反应的大小依赖于DLI。用7-H Photopheriod,无论DLI如何,DPI都是≈2.7molm-2 d-1。然而,通过22-H光周期,DPI为4.54摩尔M-2 D-1,DLI为15mol M-2 D-1和5.78mol M-2 D-1,DLI为20mol M-2 D-1。我们的假设通过提供相同的DLI可以通过提供相同的光周期来增加DPI。

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