首页> 外文期刊>Trees - Structure and Function >Photosynthesis studies on European evergreen and deciduous oaks grown under Central European climate conditions: II. Photoinhibitory and light-independent violaxanthin deepoxidation and downregulation of photosystem II in evergreen, winter-acclimated European Quercus taxa
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Photosynthesis studies on European evergreen and deciduous oaks grown under Central European climate conditions: II. Photoinhibitory and light-independent violaxanthin deepoxidation and downregulation of photosystem II in evergreen, winter-acclimated European Quercus taxa

机译:在中欧气候条件下种植的欧洲常绿和落叶橡木的光合作用研究:II。常绿,冬季驯化的欧洲栎类植物中光抑制性和光独立性紫黄质的深度氧化和光系统II的下调

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摘要

In the context of the search for future forestry species in Central Europe under climate change scenarios, the evergreen Mediterranean Quercus taxa Q. ilex ssp. ilex and Q. suber and the semideciduous hybrids. Q. × turneri and Q. × hispanica were studied in relation to their photochemical efficiency of photosystem II and to the activity of the xanthophyll cycle under Central European winter conditions. The evergreen taxa were remarkably insensitive to winter stress in the field and reacted towards frost periods with the phenomenon of “chronic photoinhibition”, i.e. a decrease in pre-dawn F v/F m and an increase in the deepoxidation state of the xanthophylls. Under dark and warmer conditions (room temperature), winter-acclimated leaves of the evergreen taxa except for Q. × turneri produced zea- and antheraxanthin and decreased F v/F m, possibly by creation of a chlororespiratory pH-gradient. It is suggested that the ability for dark violaxanthin deepoxidation may contribute to the winter hardiness of the evergreen taxa.
机译:在气候变化情景下寻找中欧未来的林业物种的背景下,常绿的地中海栎类群Q. ilex ssp。 ilex和Q.suber以及半落叶杂种。在欧洲中部冬季条件下,研究了Q.×turneri和Q.×Hispanica与光系统II的光化学效率以及叶黄素循环活性之间的关系。常绿类群对田间的冬季压力非常不敏感,并在霜冻期起反应,出现“慢性光抑制”现象,即黎明前的F v / F m 降低。叶黄素的深度氧化状态增加。在黑暗和温暖的条件下(室温),除Q.×turneri之外,常绿类群的冬季驯化叶片会产生玉米和花青素,并降低F v / F m ,可能是通过建立氯呼吸pH梯度。这表明暗紫罗兰色黄素的深度氧化能力可能有助于常绿类群的冬季坚韧性。

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