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Cyclic electron flow around photosystem I is required for adaptation to high temperature in a subtropical forest tree Ficus concinna

机译:为了适应亚热带林木榕榕中的高温需要围绕光系统I的循环电子流

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摘要

Dissipation mechanisms of excess photon energy under high-temperature stress were studied in a subtropical forest tree seedling, Ficus concinna. Net CO2 assimilation rate decreased to 16% of the control after 20 d high-temperature stress, and thus the absorption of photon energy exceeded the energy required for CO2 assimilation. The efficiency of excitation energy capture by open photosystem II (PSII) reaction centres (F v′/F m′) at moderate irradiance, photochemical quenching (q P), and the quantum yield of PSII electron transport (Φ PSII) were significantly lower after high-temperature stress. Nevertheless, non-photochemical quenching (q NP) and energy-dependent quenching (q E) were significantly higher under such conditions. The post-irradiation transient of chlorophyll (Chl) fluorescence significantly increased after the turnoff of the actinic light (AL), and this increase was considerably higher in the 39 °C-grown seedlings than in the 30 °C-grown ones. The increased post-irradiation fluorescence points to enhanced cyclic electron transport around PSI under high growth temperature conditions, thus helping to dissipate excess photon energy non-radiatively.
机译:研究了亚热带林木无花果榕(Ficus continna)在高温胁迫下过量光子能量的耗散机理。高温胁迫20 d后,净CO2同化率降至对照的16%,因此光子能量的吸收超过了CO2同化所需的能量。在中等辐照度,光化学猝灭(q P)和PSII电子传输的量子产率(ΦPSII)下,开放光系统II(PSII)反应中心(F v'/ F m')捕获激发能的效率显着降低经过高温应力。然而,在这种条件下,非光化学猝灭(q NP)和能量依赖性猝灭(q E)明显更高。光化光(AL)关闭后,叶绿素(Chl)荧光的辐照后瞬变显着增加,并且在39°C种植的幼苗中,这种增加显着高于30°C种植的幼苗。辐照后荧光的增加表明,在高生长温度条件下,PSI周围的循环电子传递增强,从而有助于以非辐射方式消散多余的光子能量。

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