Huang Wei, Yang Ying-Jie, Hu Hong, Cao Kun-Fang, Zhang Shi-Bao
Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany - Chinese Academy of Sciences, KunmingChina; Yunnan Key Laboratory for Wild Plant ResourcesKunming, China.
Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden - Chinese Academy of Sciences Mengla, China.
Front Plant Sci. 2016 Jul 19;7:1068. doi: 10.3389/fpls.2016.01068. eCollection 2016.
The photosystem II (PSII) activity of C3 plants is usually inhibited at noon associated with high light but can be repaired fast in the afternoon. However, the diurnal variation of photosystem I (PSI) activity is unknown. Although, cyclic electron flow (CEF) has been documented as an important mechanism for photosynthesis, the diurnal variation of CEF in sun leaves is little known. We determined the diurnal changes in PSI and PSII activities, light energy dissipation in PSII and the P700 redox state in two tropical tree species Erythrophleum guineense and Khaya ivorensis grown in an open field. The PSI activity (as indicated by the maximum quantity of photo-oxidizable P700) was maintained stable during the daytime. CEF was strongly activated under high light at noon, accompanying with high levels of non-photochemical quenching (NPQ) and PSI oxidation ratio. In the afternoon, CEF was maintained at a relatively high level under low light, which was accompanied with low levels of NPQ and P700 oxidation ratio. These results indicated that CEF was flexibly modulated during daytime under fluctuating light conditions. Under high light at noon, CEF-dependent generation of proton gradient across the thylakoid membranes (ΔpH) mainly contributed to photoprotection for PSI and PSII. By comparison, at low light in the afternoon, the CEF-dependent formation of ΔpH may be important for PSII repair via an additional ATP synthesis.
C3植物的光系统II(PSII)活性通常在中午与高光强相关时受到抑制,但在下午可快速修复。然而,光系统I(PSI)活性的日变化尚不清楚。尽管循环电子流(CEF)已被证明是光合作用的一种重要机制,但阳生叶片中CEF的日变化却鲜为人知。我们测定了两种生长在开阔地的热带树种几内亚格木和非洲桃花心木中PSI和PSII活性的日变化、PSII中的光能耗散以及P700的氧化还原状态。PSI活性(以可光氧化P700的最大量表示)在白天保持稳定。中午高光强下CEF被强烈激活,同时伴随着高水平的非光化学猝灭(NPQ)和PSI氧化率。下午,在低光强下CEF维持在相对较高的水平,同时伴随着低水平的NPQ和P700氧化率。这些结果表明,在波动的光照条件下,白天CEF受到灵活调节。中午高光强下,依赖CEF的类囊体膜两侧质子梯度(ΔpH)的产生主要有助于PSI和PSII的光保护。相比之下,下午低光强时,依赖CEF的ΔpH形成可能通过额外的ATP合成对PSII修复很重要。