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Water-use strategies of six co-existing Mediterranean woody species during a summer drought

机译:夏季干旱期间六种并存的地中海木本植物的用水策略

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摘要

Drought stress is known to limit plant performance in Mediterranean-type ecosystems. We have investigated the dynamics of the hydraulics, gas exchange and morphology of six co-existing Mediterranean woody species growing under natural field conditions during a drought that continued during the entire summer. Based on the observed minimum leaf water potentials, our results suggest that the six co-existing species cover a range of plant hydraulic strategies, from isohydric to anisohydric. These differences are remarkable since the selected individuals grow within several meters of each other, sharing the same environment. Surprisingly, whatever the leaf water potentials were at the end of the dry period, stomatal conductance, photosynthesis and transpiration rates were relatively similar and low across species. This result contradicts the classic view that anisohydric species are able to maintain gas exchange for longer periods of time during drought stress. None of the plants showed the expected structural acclimation response to the increasing drought (reduction of leaf-to-sapwood area ratio), thereby rejecting the functional equilibrium hypothesis for our study system. Instead, three of the six species increased photosynthetic area at the branch level. The observed dissimilar patterns of gas exchange, hydraulics and morphology across species seem to be equally successful given that photosynthesis at the leaf level was maintained at similar rates over the whole dry period.
机译:已知干旱胁迫会限制地中海型生态系统中的植物生长。我们调查了在整个夏季持续干旱的自然田间条件下生长的六种并存的地中海木本植物的水力学,气体交换和形态动力学。基于观察到的最小叶片水势,我们的结果表明,这六个共存物种涵盖了从等水到等水的一系列植物水力策略。这些差异非常显着,因为选定的个体彼此之间只有几米长,并且共享相同的环境。令人惊讶的是,无论干旱结束时叶片的水势如何,气孔导度,光合作用和蒸腾速率都相对相似,并且在整个物种中较低。这一结果与经典观点相反,经典观点认为,在干旱胁迫期间,异水物种能够维持较长时间的气体交换。没有植物对干旱增加(叶与边材面积之比降低)表现出预期的结构适应性反应,从而拒绝了我们研究系统的功能平衡假设。相反,六个物种中的三个在分支水平上增加了光合面积。考虑到在整个干旱期间叶片水平的光合作用保持相似的速率,跨物种观察到的气体交换,水力和形态的不同模式似乎同样成功。

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  • 来源
    《Oecologia》 |2011年第1期|p.45-57|共13页
  • 作者单位

    Área de Biodiversidad y Conservación, Departamento de Biología y Geología, Escuela Superior de Ciencias Experimentales y Tecnología, Universidad Rey Juan Carlos, 28933, Mostoles, Spain;

    Forest Ecology and Forest Management Group and Resource Ecology Group, Centre for Ecosystem Studies, Wageningen University, 6700 AA, Wageningen, The Netherlands;

    CREAF/Ecology Unit, Autonomous University of Barcelona, Bellaterra, 08193, Barcelona, Spain;

    Área de Ecología, Facultad de Ciencias, Universidad de Córdoba, 14071, Cordoba, Spain;

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

    Anisohydric; Embolism; Isohydric; Photosynthesis; Stomatal conductance; Water potential;

    机译:异水;代谢;等水;光合作用;气孔导度;水势;

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