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不同日光照度分布对拟南芥生长的影响,特别关注PsbS的作用。

The effects of different daily irradiance profiles on Arabidopsis growth, with special attention to the role of PsbS.

作者信息

Schiphorst Christo, Koeman Cas, Caracciolo Ludovico, Staring Koen, Theeuwen Tom P J M, Driever Steven M, Harbinson Jeremy, Wientjes Emilie

机构信息

Laboratory of Biophysics, Wageningen University & Research, Wageningen, Netherlands.

Laboratory of Genetics, Wageningen University & Research, Wageningen, Netherlands.

出版信息

Front Plant Sci. 2023 Mar 9;14:1070218. doi: 10.3389/fpls.2023.1070218. eCollection 2023.

Abstract

In nature, light is never constant, while in the controlled environments used for vertical farming, propagation, or plant production for scientific research, light intensity is often kept constant during the photoperiod. To investigate the effects on plant growth of varying irradiance during the photoperiod, we grew under three irradiance profiles: a square-wave profile, a parabolic profile with gradually increasing and subsequently decreasing irradiance, and a regime comprised of rapid fluctuations in irradiance. The daily integral of irradiance was the same for all three treatments. Leaf area, plant growth rate, and biomass at time of harvest were compared. Plants grown under the parabolic profile had the highest growth rate and biomass. This could be explained by a higher average light-use efficiency for carbon dioxide fixation. Furthermore, we compared the growth of wild type plants with that of the PsbS-deficient mutant . PsbS triggers the fast non-photochemical quenching process (qE) that protects PSII from photodamage during sudden increases in irradiance. Based mainly on field and greenhouse experiments, the current consensus is that mutants grow more slowly in fluctuating light. However, our data show that this is not the case for several forms of fluctuating light conditions under otherwise identical controlled-climate room conditions.

摘要

在自然环境中,光照并非恒定不变,而在用于垂直种植、繁殖或科学研究的植物生产的可控环境中,光强在光周期内通常保持恒定。为了研究光周期内不同辐照度对植物生长的影响,我们在三种辐照度模式下种植植物:方波模式、辐照度先逐渐增加后逐渐降低的抛物线模式,以及辐照度快速波动的模式。所有三种处理的每日辐照度积分相同。比较了收获时的叶面积、植物生长速率和生物量。在抛物线模式下生长的植物具有最高的生长速率和生物量。这可以通过更高的二氧化碳固定平均光利用效率来解释。此外,我们比较了野生型植物和缺乏PsbS的突变体的生长情况。PsbS触发快速非光化学猝灭过程(qE),在辐照度突然增加时保护PSII免受光损伤。目前基于田间和温室实验的共识是,突变体在波动光下生长较慢。然而,我们的数据表明,在其他条件相同的可控气候室条件下,对于几种形式的波动光条件并非如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9475/10035889/44a24930acf2/fpls-14-1070218-g001.jpg

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