Huang Wei, Zhang Shi-Bao, Liu Tao
Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, China.
National Local Joint Engineering Research Center on Germplasm Utilization and Innovation of Chinese Medicinal Materials in Southwest China, Yunnan Agricultural University, Kunming, China.
Front Plant Sci. 2018 May 15;9:637. doi: 10.3389/fpls.2018.00637. eCollection 2018.
Although photoinhibition of photosystem II (PSII) frequently occurs under natural growing conditions, knowledge about the effect of moderate photoinhibition on linear electron flow (LEF) remains controversial. Furthermore, mechanisms underlying the decrease in LEF upon PSII photoinhibition are not well clarified. We examined how selective PSII photoinhibition influenced LEF in the attached leaves of shade-demanding plant . After leaves were exposed to a high level of light (2258 μmol photons m s) for 30 and 60 min, the maximum quantum yield of PSII (/) decreased by 17 and 23%, respectively, whereas the maximum photo-oxidizable P700 () remained stable. Therefore, this species displayed selective PSII photodamage under strong illumination. After these treatments, LEF was significantly decreased under all light levels but acidification of the thylakoid lumen changed only slightly. Furthermore, the decrease in LEF under low light was positively correlated with the extent of PSII photoinhibition. Thus, the decline in LEF was not caused by the enhancement of lumenal acidification, but was induced by a decrease in PSII activity. These results indicate that residual PSII activity is an important determinant of LEF in this shade-adapted species, and they provide new insight into how strong illumination affects the growth of shade-demanding plants.
尽管在自然生长条件下光系统II(PSII)的光抑制经常发生,但关于适度光抑制对线性电子流(LEF)影响的认识仍存在争议。此外,PSII光抑制后LEF下降的潜在机制尚未得到充分阐明。我们研究了选择性PSII光抑制如何影响喜阴植物附着叶片中的LEF。叶片在高光水平(2258 μmol光子·m⁻²·s⁻¹)下暴露30分钟和60分钟后,PSII的最大量子产率(Fv/Fm)分别下降了17%和23%,而最大光氧化P700(Pm)保持稳定。因此,该物种在强光照射下表现出选择性PSII光损伤。经过这些处理后,在所有光照水平下LEF均显著下降,但类囊体腔的酸化仅略有变化。此外,低光下LEF的下降与PSII光抑制的程度呈正相关。因此,LEF的下降不是由类囊体腔酸化增强引起的,而是由PSII活性降低诱导的。这些结果表明,残余的PSII活性是这种适应阴生环境物种中LEF的重要决定因素,并且它们为强光如何影响喜阴植物的生长提供了新的见解。