首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Changes of Photosynthetic Behaviors and Photoprotection during Cell Transformation and Astaxanthin Accumulation in Haematococcus pluvialis Grown Outdoors in Tubular Photobioreactors
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Changes of Photosynthetic Behaviors and Photoprotection during Cell Transformation and Astaxanthin Accumulation in Haematococcus pluvialis Grown Outdoors in Tubular Photobioreactors

机译:管状光生物反应器中生长在室外的红血球菌细胞转化和虾青素积累过程中光合行为和光保护的变化

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摘要

The cell transformation from green motile cells to non-motile cells and astaxanthin accumulation can be induced in the green alga Haematococcus pluvialis cultured outdoors. In the initial 3 d of incubation (cell transformation phase), light absorption and photosynthetic electron transport became more efficient. After five days of incubation (astaxanthin accumulation phase), the light absorption per active reaction center (ABS/RC) increased, but the efficiency of electron transport (ψo) and the quantum yield of electron transport (φEo) decreased with increased time, indicating that the capacity of photosynthetic energy utilization decreased significantly during astaxanthin accumulation, leading to an imbalance between photosynthetic light absorption and energy utilization. It would inevitably aggravate photoinhibition under high light, e.g., at midday. However, the level of photoinhibition in H. pluvialis decreased as the incubation time increased, which is reflected by the fact that Fv/Fm determined at midday decreased significantly in the initial 3 d of incubation, but was affected very little after seven days of incubation, compared with that determined at predawn. This might be because the non-photochemical quenching, plastid terminal oxidase, photosystem I cyclic electron transport, defensive enzymes and the accumulated astaxanthin can protect cells against photoinhibition.
机译:在户外培养的绿藻类嗜血红球菌中,可以诱导从绿色运动细胞向非运动细胞的细胞转化和虾青素的积累。在孵育的最初3天(细胞转化阶段),光吸收和光合作用电子传输变得更加有效。孵育五天后(虾青素积累阶段),每个活性反应中心的光吸收(ABS / RC)增加,但电子传输效率(ψo)和电子传输量子产率(φEo)随时间增加而降低,表明虾青素积累过程中光合能量利用能力显着下降,导致光合光吸收与能量利用之间的不平衡。在强光下,例如在中午,不可避免地会加剧光抑制。然而,随着培养时间的延长,雨水螺旋藻的光抑制水平降低,这反映在以下事实:在培养的最初3天中午测定的Fv / Fm显着下降,但在培养7天后受到的影响很小。 ,与黎明前确定的相比。这可能是因为非光化学猝灭,质体末端氧化酶,光系统I循环电子转运,防御酶和积累的虾青素可以保护细胞免受光抑制作用。

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