Liu R, Ning X E, Li D M, Chen L, Ning Z L
South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.
Photosynthetica. 2023 Apr 11;61(1):115-123. doi: 10.32615/ps.2023.011. eCollection 2023.
To investigate the light intensity suitable for the growth of Stapf, morphology, photosynthetic parameters, and indicators of oxidative stress were analyzed under different light intensities. Compared to high-irradiance treatment, medium and low-irradiance treatments promoted plant growth and restricted transpiration. Compared to medium irradiance, plants under high and low irradiance exhibited significantly lower maximal photochemical efficiency, potential photochemical efficiency, and electron transport rate, but significantly higher malondialdehyde content. This indicated that both excessive light and severe shading inhibited photosynthetic activity and induced oxidative stress, which resulted in a significant decrease in net photosynthetic rate. can adapt to different light intensities, improving light harvesting and utilizing capacity under low irradiance by increasing Chl () content and reducing Chl / ratio, and adapting to high irradiance by enhancing heat dissipation and activity of peroxidase. showed the best performance in growth and photosynthesis under medium irradiance treatment.
为研究适合[植物名称未给出,推测为Stapf相关植物]生长的光照强度,在不同光照强度下分析了其形态、光合参数及氧化应激指标。与高辐照处理相比,中低辐照处理促进了植物生长并限制了蒸腾作用。与中等辐照相比,高辐照和低辐照下的植物表现出显著更低的最大光化学效率、潜在光化学效率和电子传递速率,但丙二醛含量显著更高。这表明过强光照和严重遮荫均抑制光合活性并诱导氧化应激,导致净光合速率显著下降。[植物名称未给出,推测为Stapf相关植物]能够适应不同光照强度,通过增加叶绿素()含量和降低叶绿素/比率来提高低辐照下的光捕获和利用能力,并通过增强热耗散和过氧化物酶活性来适应高辐照。[植物名称未给出,推测为Stapf相关植物]在中等辐照处理下生长和光合作用表现最佳。