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UV-screening and springtime recovery of photosynthetic capacity in leaves of Vaccinium vitis-idaea above and below the snow pack

机译:雪包装疫苗叶片叶片叶片光合容量的紫外线筛选和春季恢复

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摘要

Evergreen plants in boreal biomes undergo seasonal hardening and dehardening adjusting their photosynthetic capacity and photopmtection; acclimating to seasonal changes in temperature and irradiance. Leaf epidermal ultraviolet (UV)-screening by flavonols responds to solar radiation, perceived in part through increased ultraviolet-B (UV-B) radiation, and is a candidate trait to provide cross-photoprotection. At Hyytiala Forestry Station, central Finland, we examined whether the accumulation of flavonols was higher in leaves of Vaccinium vitis-idaea L. growing above the snowpack compared with those below the snowpack. We found that leaves exposed to colder temperatures and higher solar radiation towards the top of hummocks suffered greater photoinhibition than those at the base of hummocks. Epidermal UV-screening was highest in upper-hummock leaves, particularly during winter when lower leaves were beneath the snowpack. There was also a negative relationship between indices of flavonols and anthocyanins across all leaves suggesting fine-tuning of flavonoid composition for screening vs. antioxidant activity in response to temperature and irradiance. However, the positive correlation between the maximum quantum yield of photosystem II photochemistry (F-v/F-m) and flavonol accumulation in upper hummock leaves during dehardening did not confer on them any greater cross-protection than would be expected from the general relationship of F-v/F-m with temperature and irradiance (throughout the hummocks). Irrespective of timing of snow-melt, photosynthesis fully recovered in all leaves, suggesting that V. vills-idaea has the potential to exploit the continuing trend for longer growing seasons in central Finland without incurring significant impairment from reduced duration of snow cover.
机译:北方生物群岛的常绿植物经历了季节性的硬化和脱垂调节它们的光合容量和光栅;适应温度和辐照度的季节变化。黄酮醇的叶片表皮紫外线(UV) - 筛选响应太阳辐射,部分通过增加的紫外-b(UV-B)辐射感知,并且是提供交叉光保护的候选性状。在芬兰中部的Hyytiala Forestry Station,我们检查了在与积雪低于积雪之下的血管上以上的肺炎患者的叶片叶片的积累较高。我们发现,暴露于较冷的温度和更高的太阳辐射朝向木材顶部的叶子遭受了比木质底部底部的更大的照相。表皮紫外线筛选是高艇叶中最高的,特别是在冬天在下叶片下方的冬天。在所有叶片上的黄酮和花青素索引之间也存在负面关系,表明黄芪组合物的微调筛选与温度和辐照度的抗氧化活性。然而,在脱垂期间,上皮叶片的最大量子产率(FV / FM)和Flavonol积累之间的最大量子产率与黄酮叶积累的正相关性不达到比FV / FM的一般关系所期望的更大的交叉保护。随着温度和辐照度(整个小贩)。无论雪 - 融化的时间,光合作用在所有叶子中都完全恢复,暗示V. Vills-Idaea有可能利用芬兰中部长期增长季节的持续趋势,而不会导致雪覆盖持续时间造成显着的损害。

著录项

  • 来源
    《Plant Physiology and Biochemistry》 |2019年第2019期|共13页
  • 作者单位

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

    Univ Helsinki Dept Forest Sci Inst Atmospher &

    Earth Syst Res Opt Photosynthesis Lab FIN-00014 Helsinki Finland;

    Univ Helsinki Dept Forest Sci Inst Atmospher &

    Earth Syst Res Opt Photosynthesis Lab FIN-00014 Helsinki Finland;

    Finnish Meteorol Inst POB 503 FIN-00101 Helsinki Finland;

    Univ Helsinki Fac Biol &

    Environm Sci Viikki Plant Sci Ctr ViPS Organisrnal &

    Evolutionary Biol FIN-00014 Helsinki Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;植物生物化学;
  • 关键词

    spring dehardening; Flavonoids; Anthocyanins; Understorey; Spectral quality; Photoprotection; Arctic browning;

    机译:春季脱垂;黄酮类化合物;花青素;人物;光谱质量;光保护;北极褐变;

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