Photoinactivation of photosystem II in high light-acclimated grapevines

J. Flexas, L. Hendrickson, W. Chow
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引用次数: 44

Abstract

Grapevines are considered well adapted to high irradiance during growth. It is still controversial, however, whether photoinactivation of photosystem II is completely avoided in high light-acclimated grapevines growing in the field. This study examines the functional stability of PSII in leaf discs (floated on water) of field-grown, high light-acclimated grapevines as a function of photon exposure. Measuring functional PSII units by flash-induced oxygen evolution, it was found that the susceptibility of PSII to photoinactivation was less in sun-exposed leaves than shade leaves of Vitis riparia Michaux, and enhanced by lincomycin, an inhibitor of chloroplast-encoded protein synthesis. Vitis vinifera L. cv. Chardonnay, grown in a glasshouse with slightly lower irradiance, exhibited an intermediate susceptibility. Significantly, the dark-relaxed quantum efficiency of PSII, measured as (Fm – Fo)/Fm, where Fm and Fo are the chlorophyll (Chl) fluorescence yields for closed and open reaction centres, respectively, declined much more slowly than did the number of functional PSII units in V. riparia. Thus, measurements of (Fm – Fo)/Fm may give an impression of little photoinactivation of PSII, even when nearly half of functional PSII units may be lost. By contrast, the parameter 1/Fo – 1/Fm is a more linear indicator of functional PSII units. The results indicate that grapevines may suffer photoinactivation of PSII, at least when leaf discs are floated on water.
高光驯化葡萄光系统II的光失活
葡萄藤在生长过程中被认为很好地适应了高辐照度。然而,在田间生长的高光驯化葡萄是否完全避免了光系统II的光失活仍然存在争议。本研究考察了PSII在田间生长的高光驯化葡萄叶片(漂浮在水面上)中作为光子暴露函数的功能稳定性。利用闪光灯诱导氧演化法测定PSII的功能单位,结果发现,与遮荫叶片相比,暴露在阳光下的葡萄叶片的PSII对光失活的敏感性较低,而林可霉素(一种叶绿体编码蛋白合成抑制剂)增强了PSII的敏感性。葡萄(Vitis vinifera L.)霞多丽在辐照度稍低的温室中生长,表现出中等的敏感性。值得注意的是,PSII的暗放松量子效率(Fm - Fo)/Fm,其中Fm和Fo分别是关闭和打开反应中心的叶绿素(Chl)荧光产率)的下降速度远远慢于V. riparia中PSII功能单元的数量。因此,测量(Fm - Fo)/Fm可能给人的印象是PSII的光失活很少,即使近一半的功能PSII单位可能丢失。相比之下,参数1/Fo - 1/Fm是功能PSII单位的更线性的指标。结果表明,至少当叶片浮在水面上时,葡萄可能遭受PSII的光失活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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