首页> 美国卫生研究院文献>Plant Physiology >Supplementary Ultraviolet-B Radiation Induces a Rapid Reversal of the Diadinoxanthin Cycle in the Strong Light-Exposed Diatom Phaeodactylum tricornutum
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Supplementary Ultraviolet-B Radiation Induces a Rapid Reversal of the Diadinoxanthin Cycle in the Strong Light-Exposed Diatom Phaeodactylum tricornutum

机译:补充紫外线-B辐射在强光照射的硅藻Phaeodactylum tricornutum中诱导diadinoxanthin循环的快速逆转。

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摘要

A treatment of the diatom Phaeodactylum tricornutum with high light (HL) in the visible range led to the conversion of diadinoxanthin (Dd) to diatoxanthin (Dt). In a following treatment with HL plus supplementary ultraviolet (UV)-B, the Dt was rapidly epoxidized to Dd. Photosynthesis of the cells was inhibited under HL + UV-B. This is accounted for by direct damage by UV-B and damage because of the UV-B-induced reversal of the Dd cycle and the associated loss of photoprotection. The reversal of the Dd cycle by UV-B was faster in the presence of dithiothreitol, an inhibitor of the Dd de-epoxidase. Our results imply that the reversal of the Dd cycle by HL + UV-B was caused by an increase in the rate of gross Dt epoxidation, whereas the de-epoxidation of Dd was unaffected by UV-B. This is further supported by our finding that the in vitro de-epoxidation activity and the affinity toward the cosubstrate ascorbic acid of the Dd de-epoxidase were both unaffected by UV-B pretreatment of intact cells. We provide evidence that Dt epoxidation is normally down-regulated by a high pH gradient under HL. It is proposed that supplementary UV-B affected the pH gradient across the thylakoid membrane, which disrupted the down-regulation of Dt epoxidation and led to the observed increase in the rate of Dt epoxidation.
机译:在可见光范围内用高光(HL)处理硅藻三角藻(Phaeodactylum tricornutum)会导致二恶黄质(Dd)转化为重黄体质(Dt)。在随后的HL加辅助紫外线(UV)-B处理中,Dt迅速环氧化为Dd。 HL + UV-B抑制了细胞的光合作用。这是由于UV-B的直接破坏以及由于UV-B引起的Dd循环逆转以及相关的光保护丧失而造成的。在二硫苏糖醇(Dd脱环氧酶的抑制剂)存在下,UV-B逆转Dd循环的速度更快。我们的结果表明,HL + UV-B逆转Dd循环是由总Dt环氧化速率的增加引起的,而Dd的脱环氧化不受UV-B的影响。我们的发现进一步支持了这一点,即体外脱环氧化活性和Dd脱环氧化酶对共底物抗坏血酸的亲和力均不受完整细胞的UV-B预处理的影响。我们提供的证据表明,在HL下,高pH梯度通常会下调Dt环氧化作用。提出补充的UV-B影响整个类囊体膜的pH梯度,这破坏了Dt环氧化的下调并导致观察到的Dt环氧化速率的增加。

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