首页> 外文期刊>Plant and Cell Physiology >Plastoquinol is the Main Prenyllipid Synthesized During Acclimation to High Light Conditions in Arabidopsis and is Convertedn to Plastochromanol by Tocopherol Cyclase
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Plastoquinol is the Main Prenyllipid Synthesized During Acclimation to High Light Conditions in Arabidopsis and is Convertedn to Plastochromanol by Tocopherol Cyclase

机译:喹喔啉是拟南芥适应高光照条件下合成的主要戊烯基脂质,并通过生育酚环化酶转化为梧桐酚

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摘要

Plants have evolved various strategies to acclimate to high light conditions at different levels of organization. High light stress stimulates synthesis of different antioxidant enzymes and low molecular weight antioxidants, mainly in chloroplasts. In the present studies we showed that plastoquinol, in addition to α-tocopherol, is the main lipid-soluble antioxidant synthesized during acclimation of Arabidopsis plants to high light conditions. The level of plastoquinol increased >10-fold and independently of tocopherols, as revealed using tocopherol biosynthetic mutants. The high light-induced increase in plastoquinol level was mainly attributable to the photochemically non-active fraction of this compound localized in plastoglobuli, which are the storage site of prenyllipids for their antioxidant action. Our data also revealed that tocopherol cyclase is required for plastochromanol biosynthesis from plastoquinol in vivo. Plastochromanol accumulated in increasing amounts in leaves during growth and it was also identified in seeds. The obtained data suggest that plastochromanol may, similarly to other prenyllipids, fulfill antioxidant function in leaves and seeds, especially during aging.
机译:植物已经进化出各种策略来适应不同组织级别的强光条件。高光胁迫刺激主要在叶绿体中的各种抗氧化剂和低分子量抗氧化剂的合成。在本研究中,我们表明,除α-生育酚外,质体喹诺醇是拟南芥植物适应强光条件下合成的主要脂溶性抗氧化剂。如使用生育酚生物合成突变体所揭示的,质体喹诺醇的水平增加> 10倍,并且独立于生育酚。光诱导的喹喔啉水平的高增加主要归因于该化合物的光化学非活​​性部分位于质球中,这是异戊二烯脂质的抗氧化作用的储存位点。我们的数据还揭示了在体内从生育酚喹啉生物合成苯并二氢吡喃酚需要生育酚环化酶。在生长过程中,原发色醇在叶片中积累的量不断增加,并且在种子中也被发现。所获得的数据表明,与其他异戊二烯类脂质相似,质体苯并二氢吡喃酚可以在叶片和种子中发挥抗氧化功能,尤其是在衰老过程中。

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