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首页> 外文期刊>Photosynthetica >Environmental induced variations in leaf dark respiration and net photosynthesis of Quercus ilex L.
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Environmental induced variations in leaf dark respiration and net photosynthesis of Quercus ilex L.

机译:环境诱导的栎栎叶片暗呼吸和净光合作用的变化。

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摘要

The relationships between dark respiration rate (R D) and net photosynthetic rate (P N) in Quercus ilex L. shrubs growing at the Botanical Garden in Rome were analysed. Correlation analysis of the data sets collected in the year 2006 confirmed the dependence among the considered leaf traits, in particular, R D was significantly (p<0.05) correlated with P N (r = 0.40). R D and P N increased from March to May [1.40±0.10 and 10.1±1.8 μmol(CO2) m?2 s?1 mean values of the period, respectively], when air temperature was in the range 14.8–25.2 °C, underlining the highest metabolic activity in the period of the maximum vegetative activity that favoured biomass accumulation. On the contrary, the highest R D [1.60±0.02 μmol(CO2) m?2 s?1], associated to the lowest P N rates (44 % of the maximum) and carbon use efficiency (CUE) in July underlined the mobilization of stored material during drought stress by a higher air temperature (32.7 °C).
机译:分析了在罗马植物园生长的栎属灌木的暗呼吸速率(R D )与净光合速率(PN)之间的关系。 2006年收集的数据集的相关性分析证实了所考虑叶片性状之间的相关性,特别是R D 与P N 显着相关(p <0.05)(r = 0.40)。 RD 和PN 从3月到5月增加[1.40±0.10和10.1±1.8μmol(CO2 )m?2 s?1 平均值期间],当气温在14.8–25.2°C范围内时,表明在最大的植物生长活动期间代谢活性最高,这有利于生物量的积累。相反,最高RD [1.60±0.02μmol(CO2 )m?2 s?1 ]与最低PN 率相关( 7月份的最高排放量的44%)和碳使用效率(CUE)强调了在干旱胁迫下,气温升高(32.7°C)会动员储存的材料。

著录项

  • 来源
    《Photosynthetica 》 |2007年第4期| 633-636| 共4页
  • 作者

    L. Gratani; L. Varone; A. Bonito;

  • 作者单位

    Department of Plant Biology Sapienza University of Rome P.le A. Moro 5 00185 Rome Italy;

    Department of Plant Biology Sapienza University of Rome P.le A. Moro 5 00185 Rome Italy;

    Department of Plant Biology Sapienza University of Rome P.le A. Moro 5 00185 Rome Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    carbon use efficiency; leaf temperature; seasonal course;

    机译:碳利用效率;叶温;季节变化;

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