Non-photochemical quenching

非光化学猝灭
  • 文章类型: Journal Article
    先前在田间条件下研究了成年和幼年地中海植物之间的光合差异,然而,它们的光保护效率的相应差异尚未得到充分研究。本研究旨在研究两种生长形式不同的地中海本地植物的成虫和幼虫之间的光保护潜力可能存在的差异。因此,个体类胡萝卜素的季节性变化,电子传输速率(ETR),在冬季落叶树CercissiliquastrumL.和常绿硬叶状灌木NeriumoleanderL.的成年和少年的完全暴露的成熟叶片中监测非光化学猝灭(NPQ)。所有植物都在明显相似的田间条件下生长。在这两个物种中,青少年在春季表现出比成年人低的ETR和增加的NPQ值,差异在夏季干旱期间加剧,在秋季减少。同时,幼鱼在春季和夏季显示出显着较高的基于叶绿素的总类胡萝卜素,这主要是由于对叶黄素循环成分(VAZ)的投资较高,结合增加的中午去环氧化状态(DEPS)和玉米黄质在黑暗中的部分保留。在夹竹桃中,尽管冬季青少年的ETR较低,两个年龄段的NPQ都非常低。总之,青少年表现出增强的光保护潜力,尤其是在夏天,由于它们的光化学能力降低。在有利的春季期间,成虫的光合优势可能归因于共存的生殖努力的需要。
    The photosynthetic differences between adult and juvenile Mediterranean plants were previously studied under field conditions, yet the corresponding differentiation of their photoprotective efficiency has not been sufficiently investigated. The present study aims to examine possible differences in the photoprotective potential between adults and juveniles of two native Mediterranean plants with distinct growth forms. Thus, the seasonal variations in individual carotenoids, electron transport rate (ETR), and non-photochemical quenching (NPQ) were monitored in fully exposed mature leaves from adults and juveniles of the winter deciduous tree Cercis siliquastrum L. and the evergreen sclerophyllous shrub Nerium oleander L. All plants were grown under apparently similar field conditions. In both species, juveniles displayed substantially lower ETR and increased NPQ values than adults in spring, with the differences intensifying during summer drought and diminishing in autumn. Concomitantly, juveniles showed significantly higher chlorophyll-based total carotenoids in spring and summer mainly due to the higher investment in xanthophyll cycle components (VAZ), in combination with an increased mid-day de-epoxidation state (DEPS) and partial retention of zeaxanthin in the dark. In N. oleander, although ETR was lower in juveniles during winter, NPQ was extremely low in both ages. In conclusion, juveniles exhibit enhanced photoprotection potential, especially in the summer, due to their reduced photochemical capacity. The photosynthetic superiority of adults during the favorable spring period may be attributed to the needs of the co-existing reproductive effort.
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  • 文章类型: Journal Article
    几十年来,南极地衣一直被用作气候变化的指标,但只有少数物种被研究过。我们使用PAM荧光系统在自然和实验室条件下评估了fruticose地衣的光合性能。与适应太阳的俄罗斯石油公司相比。,北极星的光合性能表现出适应阴影的地衣特征,它的叶绿素荧光不会在没有雨的干燥天发生。为了了解其干燥-再水化反应,我们测量了在黎明和日光的平均光照强度以及自然小气候的干燥条件下,北极星的PSII光化学变化。有趣的是,日光和快速干燥条件下的样品显示Fv/Fm和rETRmax延迟降低,以及Y(II)和Y(NPQ)水平的增加。这些结果表明,北极星的光保护机制取决于阳光,并且随着干燥耐受性的提高而变得更加有效。Amplicon测序显示,北极星的主要光生物是非甾体,这在南极洲以前没有报道过。总的来说,这些来自野外和实验室的结果可以更好地了解南极地区适应阴影的地衣的特定生态生理反应。
    Antarctic lichens have been used as indicators of climate change for decades, but only a few species have been studied. We assessed the photosynthetic performance of the fruticose lichen Cladonia borealis under natural and laboratory conditions using the PAM fluorescence system. Compared to that of sun-adapted Usnea sp., the photosynthetic performance of C. borealis exhibits shade-adapted lichen features, and its chlorophyll fluorescence does not occur during dry days without rain. To understand its desiccation-rehydration responses, we measured changes in the PSII photochemistry in C. borealis under the average light intensity of dawn light and daylight and the desiccating conditions of its natural microclimate. Interestingly, samples under daylight and rapid-desiccation conditions showed a delayed reduction in Fv\'/Fm\' and rETRmax, and an increase in Y(II) and Y(NPQ) levels. These results suggest that the photoprotective mechanism of C. borealis depends on sunlight and becomes more efficient with improved desiccation tolerance. Amplicon sequencing revealed that the major photobiont of C. borealis was Asterochloris irregularis, which has not been reported in Antarctica before. Collectively, these results from both field and laboratory could provide a better understanding of specific ecophysiological responses of shade-adapted lichens in the Antarctic region.
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