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首页> 外文期刊>Oecologia >Foliar pH as a new plant trait: can it explain variation in foliar chemistry and carbon cycling processes among subarctic plant species and types?
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Foliar pH as a new plant trait: can it explain variation in foliar chemistry and carbon cycling processes among subarctic plant species and types?

机译:叶面pH作为一种新的植物性状:是否可以解释亚北极植物种类和类型之间叶化学和碳循环过程的变化?

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摘要

Plant traits have become popular as predictors of interspecific variation in important ecosystem properties and processes. Here we introduce foliar pH as a possible new plant trait, and tested whether (1) green leaf pH or leaf litter pH correlates with biochemical and structural foliar traits that are linked to biogeochemical cycling; (2) there is consistent variation in green leaf pH or leaf litter pH among plant types as defined by nutrient uptake mode and higher taxonomy; (3) green leaf pH can predict a significant proportion of variation in leaf digestibility among plant species and types; (4) leaf litter pH can predict a significant proportion of variation in leaf litter decomposability among plant species and types. We found some evidence in support of all four hypotheses for a wide range of species in a subarctic flora, although cryptogams (fern allies and a moss) tended to weaken the patterns by showing relatively poor leaf digestibility or litter decomposability at a given pH. Among seed plant species, green leaf pH itself explained only up to a third of the interspecific variation in leaf digestibility and leaf litter up to a quarter of the interspecific variation in leaf litter decomposability. However, foliar pH substantially improved the power of foliar lignin and/or cellulose concentrations as predictors of these processes when added to regression models as a second variable. When species were aggregated into plant types as defined by higher taxonomy and nutrient uptake mode, green-specific leaf area was a more powerful predictor of digestibility or decomposability than any of the biochemical traits including pH. The usefulness of foliar pH as a new predictive trait, whether or not in combination with other traits, remains to be tested across more plant species, types and biomes, and also in relation to other plant or ecosystem traits and processes.
机译:植物特征已成为重要的生态系统特性和过程中种间变异的预测因子。在这里,我们介绍叶面pH值作为一种可能的新植物性状,并测试(1)绿叶pH值或凋落物pH是否与与生物地球化学循环相关的生化和结构性叶面性状相关; (2)根据养分吸收方式和较高的分类标准,不同植物类型之间的绿叶pH值或枯枝落叶pH值存在一致的变化; (3)绿叶的pH值可以预测植物物种和类型之间叶片消化率的显着变化; (4)凋落物的pH值可以预测植物物种和类型之间凋落物可分解性变化的显着比例。我们发现了一些证据支持所有四种假设,以证明北极地区菌群中的种类繁多,尽管隐孢子虫(蕨类同伴和苔藓)倾向于在给定的pH值下表现出较差的叶片消化率或凋落物可分解性,从而削弱了模式。在种子植物物种中,绿叶pH值本身仅解释了叶片消化率的种间差异的三分之一,而叶片凋落物的可解释性高达种间差异的四分之一。然而,当将叶面pH作为第二变量添加到回归模型中时,叶面pH值显着提高了叶面木质素和/或纤维素浓度的能力,可作为这些过程的预测指标。当物种按照较高的分类法和养分吸收模式定义为植物类型时,绿色特定叶面积比任何生化特性(包括pH)更能有效预测消化率或可分解性。叶面pH作为新的预测性状的有用性,无论是否与其他性状组合在一起,都需要在更多的植物种类,类型和生物群落中进行测试,还需要与其他植物或生态系统性状和过程相关联。

著录项

  • 来源
    《Oecologia》 |2006年第2期|315-326|共12页
  • 作者单位

    Institute of Ecological Science Department of Systems Ecology Faculty of Earth and Life Sciences Vrije Universiteit;

    Department of Botany Stockholm University;

    Institute of Ecological Science Department of Systems Ecology Faculty of Earth and Life Sciences Vrije Universiteit;

    Instituto Multidisciplinario de Biología Vegetal (UNC-CONICET) and FCEFyN Universidad Nacional de Córdoba;

    Institute of Biological Sciences University of Wales;

    Instituto Multidisciplinario de Biología Vegetal (UNC-CONICET) and FCEFyN Universidad Nacional de Córdoba;

    Royal Swedish Academy of Sciences Abisko Scientific Research StationDepartment of Animal and Plant Sciences University of Sheffield;

    Department of Animal and Plant Sciences University of Sheffield;

    Institute of Ecological Science Department of Systems Ecology Faculty of Earth and Life Sciences Vrije Universiteit;

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

    Anti-herbivore defence; Litter decomposition; Functional trait; Leaf acidity; Specific leaf area;

    机译:抗草食动物防御;凋落物分解;功能性状;叶酸度;比叶面积;

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