Salvatori Nicole, Alberti Giorgio, Muller Onno, Peressotti Alessandro
Department of Life Sciences, University of Trieste, Trieste, Italy.
Department of Agricultural, Food, Environmental, and Animal Sciences, University of Udine, Udine, Italy.
Front Plant Sci. 2022 Apr 25;13:862275. doi: 10.3389/fpls.2022.862275. eCollection 2022.
In natural environments, plants are exposed to variable light conditions, but photosynthesis has been mainly studied at steady state and this might overestimate carbon (C) uptake at the canopy scale. To better elucidate the role of light fluctuations on canopy photosynthesis, we investigated how the chlorophyll content, and therefore the different absorbance of light, would affect the quantum yield in fluctuating light conditions. For this purpose, we grew a commercial variety (Eiko) and a chlorophyll deficient mutant (MinnGold) either in fluctuating (F) or non-fluctuating (NF) light conditions with sinusoidal changes in irradiance. Two different light treatments were also applied: a low light treatment (LL; max 650 μmol m s) and a high light treatment (HL; max 1,000 μmol m s). Canopy gas exchanges were continuously measured throughout the experiment. We found no differences in C uptake in LL treatment, either under F or NF. Light fluctuations were instead detrimental for the chlorophyll deficient mutant in HL conditions only, while the green variety seemed to be well-adapted to them. Varieties adapted to fluctuating light might be identified to target the molecular mechanisms responsible for such adaptations.
在自然环境中,植物会受到多变的光照条件影响,但光合作用主要是在稳态下进行研究的,这可能会高估冠层尺度上的碳(C)吸收量。为了更好地阐明光照波动对冠层光合作用的作用,我们研究了叶绿素含量以及因此而产生的不同光吸收率如何在波动光照条件下影响量子产率。为此,我们在光照强度呈正弦变化的波动(F)或非波动(NF)光照条件下种植了一个商业品种(Eiko)和一个叶绿素缺乏突变体(MinnGold)。还应用了两种不同的光照处理:低光照处理(LL;最大650 μmol·m⁻²·s⁻¹)和高光照处理(HL;最大1000 μmol·m⁻²·s⁻¹)。在整个实验过程中持续测量冠层气体交换。我们发现,在LL处理中,无论是在F还是NF条件下,碳吸收都没有差异。相反,光照波动仅在HL条件下对叶绿素缺乏突变体有害,而绿色品种似乎对其适应良好。可以鉴定出适应波动光照的品种,以针对负责这种适应的分子机制。