Velitchkova Maya, Stefanov Martin, Popova Antoaneta V
Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, Acad, G. Bonchev Str. Bl. 21, 1113 Sofia, Bulgaria.
Plants (Basel). 2023 Aug 20;12(16):3000. doi: 10.3390/plants12163000.
The effects of a five-day treatment with low light intensity on tomato plants-Ailsa Craig and mutant-at normal and low temperatures and after recovery for three days under control conditions were investigated. The tomato, which has orange fruits, yellowish young leaves, and pale blossoms, accumulates prolycopene rather than all- lycopene. We investigated the impact of low light at normal and low temperatures on the functioning and effectiveness of photosynthetic apparatuses of both plants. The photochemical activities of Photosystem I (PSI) and Photosystem II (PSII) were assessed, and the alterations in PSII antenna size were characterized by evaluating the abundance of PSII-associated proteins Lhcb1, Lhcb2, CP43, and CP47. Alterations in energy distribution and interaction of both photosystems were analyzed using 77K fluorescence. In Aisla Craig plants, an increase in thylakoid membrane fluidity was detected during treatment with low light at a low temperature, while for the mutant, no significant change was observed. The PSII activity of thylakoids from mutant was more strongly inhibited by treatment with low light at a low temperature while low light barely affected PSII in Aisla Craig. The obtained data indicated that the observed differences in the responses of photosynthetic apparatuses of Ailsa Craig and when exposed to low light intensity and suboptimal temperature were mainly related to the differences in sensitivity and antenna complexes of PSII.
研究了低光强度处理五天对番茄品种艾尔莎·克雷格(Ailsa Craig)及其突变体在正常温度和低温下以及在对照条件下恢复三天后的影响。该番茄果实橙色、幼叶淡黄、花朵苍白,积累的是原番茄红素而非全反式番茄红素。我们研究了正常温度和低温下低光对这两种植物光合机构功能和效率的影响。评估了光系统I(PSI)和光系统II(PSII)的光化学活性,并通过评估与PSII相关的蛋白质Lhcb1、Lhcb2、CP43和CP47的丰度来表征PSII天线大小的变化。使用77K荧光分析了两个光系统的能量分布和相互作用的变化。在低温低光处理期间,检测到艾尔莎·克雷格植株类囊体膜流动性增加,而突变体未观察到显著变化。低温低光处理对突变体类囊体的PSII活性抑制更强,而低光对艾尔莎·克雷格的PSII几乎没有影响。所得数据表明,艾尔莎·克雷格和突变体在暴露于低光强度和次优温度时光合机构反应的观察差异主要与PSII的敏感性和天线复合物差异有关。