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Photosynthetic response of Nereocystis luetkeana (Phaeophyta) to high light

机译:绿藻对强光的光合响应

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摘要

Photosynthetic response to high light was determined for Bull kelp, Nereocystis luetkeana (K. Mertens) Postels and Ruprecht in order to understand how this species is affected by short-term fluctuations in irradiance. Exposure of N. luetkeana blades to high intensity photosynthetically active radiation (1000 mu mol photons m(-2) s(-1)) caused increased non-photochemical quenching of fluorescence and higher de-epoxidation ratios for xanthophyll pigments indicating that energy-quenching xanthophylls were used to protect blades against photoinhibition. Despite initiation of these photoprotective mechanisms, maximum photochemical efficiency of photosystem II (F-v/F-m) decreased 40% in response to a 60 min exposure to 1000 mu mol photons m(-2) s(-1) photosynthetically active radiation indicating that photoinhibition had occurred. Light-saturated rates of oxygen evolution were not changed significantly by the high light treatment. Recovery of maximum photochemical efficiency of photosystem II to within 8% of initial values occurred after a 300-min dim light period. Younger sections of the blades were slightly more susceptible to high light damage than older sections. Middle sections of the blades were more prone to light-induced damage at water temperatures of 7 degrees C or 18 degrees C, as compared to 13 degrees C. Exposure to biologically effective ultraviolet-B radiation (UV-Bbe) (up to 4.5 kJ m(-2) day(-1)) in photoinhibitory light conditions did not significantly affect light-induced damage to photosystem II.
机译:为了解公牛海带,Nereocystis luetkeana(K. Mertens)Postels和Ruprecht对高光的光合响应,以了解该物种如何受到短期照度波动的影响。 N. luetkeana叶片暴露于高强度的光合活性辐射(1000μmol光子m(-2)s(-1))导致非光化学猝灭作用增强,叶黄素色素的脱环氧化率更高,表明能量猝灭叶黄素用于保护叶片免受光抑制。尽管启动了这些光保护机制,但响应1000μmol光子m(-2)s(-1)光合有效辐射60分钟,光系统II(Fv / Fm)的最大光化学效率下降了40%,表明光抑制具有发生了。通过高光处理,氧的光饱和速率没有明显变化。在300分钟的暗光周期后,发生了光系统II的最大光化学效率恢复到初始值的8%之内。较年轻的叶片,较年轻的叶片更容易受到强光的伤害。与13摄氏度相比,叶片的中间部分在7摄氏度或18摄氏度的水温下更容易受到光诱导的损害。暴露于生物有效的紫外线B辐射(UV-Bbe)(最高4.5 kJ在光抑制光条件下的m(-2)day(-1))不会显着影响光诱导的对Photosystem II的损害。

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