The Key Laboratory of Oasis Eco-Agriculture, Xinjiang Production and Construction Group/College of Agronomy, Shihezi University, Shihezi 832003, China.
College of Life Sciences, Shanghai Normal University, 100 Guilin Road, Shanghai 200234, China.
Int J Mol Sci. 2023 Mar 15;24(6):5589. doi: 10.3390/ijms24065589.
Cyclic electron flow around photosystem I (CEF-PSI) is shown to be an important protective mechanism to photosynthesis in cotton leaves. However, it is still unclear how CEF-PSI is regulated in non-foliar green photosynthetic tissues such as bracts. In order to learn more about the regulatory function of photoprotection in bracts, we investigated the CEF-PSI attributes in Yunnan 1 cotton genotypes ( L.) between leaves and bracts. Our findings demonstrated that cotton bracts possessed PROTON GRADIENT REGULATION5 (PGR5)-mediated and the choroplastic NAD(P)H dehydrogenase (NDH)-mediated CEF-PSI by the same mechanism as leaves, albeit at a lower rate than in leaves. The ATP synthase activity of bracts was also lower, while the proton gradient across thylakoid membrane (ΔpH), rate of synthesis of zeaxanthin, and heat dissipation were higher than those of the leaves. These results imply that cotton leaves under high light conditions primarily depend on CEF to activate ATP synthase and optimize ATP/NADPH. In contrast, bracts mainly protect photosynthesis by establishing a ΔpH through CEF to stimulate the heat dissipation process.
循环电子流绕过光系统 I(CEF-PSI)被证明是棉花叶片光合作用的一种重要保护机制。然而,CEF-PSI 在非叶绿色光合组织(如苞片)中的调控方式仍不清楚。为了更多地了解苞片中光保护的调节功能,我们研究了云南 1 号棉花基因型(Gossypium hirsutum L.)叶片和苞片之间的 CEF-PSI 属性。我们的发现表明,棉花苞片通过与叶片相同的机制,具有质子梯度调节 5(PGR5)介导的和类囊体 NAD(P)H 脱氢酶(NDH)介导的 CEF-PSI,尽管其速率低于叶片。苞片的 ATP 合酶活性也较低,而类囊体膜质子梯度(ΔpH)、玉米黄质合成速率和热耗散则高于叶片。这些结果表明,高光条件下的棉花叶片主要依赖 CEF 来激活 ATP 合酶并优化 ATP/NADPH。相比之下,苞片主要通过建立 CEF 来刺激热耗散过程来保护光合作用,从而产生 ΔpH。