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首页> 外文期刊>Canadian Journal of Forest Research >Temperate forest herbs are adapted to high air humidity evidence from climate chamber and humidity manipulation experiments in the field
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Temperate forest herbs are adapted to high air humidity evidence from climate chamber and humidity manipulation experiments in the field

机译:温带森林药草适合高空气湿度的证据来自气候室和野外的湿度操纵实验

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摘要

How growth and morphology of wild plants are controlled by the water vapor saturation deficit of the air (vapor pressure deficit, VPD) is not sufficiently understood. We tested the hypothesis that VPD acts on temperate woodland herbs independently from soil moisture by exposing two species (Mercurialis perennis L. and Stachys sylvatica Torr.) to variable VPD levels in climate chambers and in open-top chambers on the forest floor. A decrease in air humidity from 85% to 40% in the climate chamber experiment, which simulates a microclimate change after canopy gap creation, resulted in a 40% decrease in biomass production of both species when grown in hydroponic culture. This result is supported by the more realistic open-top chamber experiment, which showed a productivity decrease by approximately 25% when plants were continuously exposed to an atmosphere with 15% lower air humidity than ambient. Elevated VPD levels reduced biomass production through either a reduced leaf expansion rate or a lower number of formed leaf buds. We conclude that many woodland herbs require sufficiently high air humidity for optimal growth; permanently decreased air humidity, as may occur in a future drier climate, after gap creation, or after clear-cutting of the forest, may threaten the vitality and survival of woodland herbs.
机译:尚未充分了解如何通过空气的水蒸气饱和度不足(蒸气压不足,VPD)控制野生植物的生长和形态。我们测试了VPD通过将两种物种(Mercurialis perennis L.和Stachys sylvatica Torr。)暴露在气候室和森林地面上的开放式室中的可变VPD水平下而独立于温带林地草药而不受土壤水分影响的假设。在气候室实验中,空气湿度从85%降低到40%,这模拟了在树冠间隙形成后的小气候变化,这使得在水培条件下种植的两种物种的生物量产生了40%的降低。这一结果得到了更为现实的开顶室实验的支持,该实验表明,当植物连续暴露于空气湿度低于环境湿度15%的大气中时,生产率下降约25%。升高的VPD水平通过降低叶片膨胀率或减少形成的叶片数量而减少了生物量的产生。我们得出的结论是,许多林地草药需要足够高的空气湿度才能达到最佳生长。在将来的更干燥的气候中,在缝隙形成之后或在森林被砍伐之后可能永久降低的空气湿度可能会威胁到林地草药的生命力和生存。

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