H'/> Canopy hydrometeorological dynamics across a chronosequence of a globally invasive species, <ce:italic>Ailanthus altissima</ce:italic> (Mill., tree of heaven)
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Canopy hydrometeorological dynamics across a chronosequence of a globally invasive species, Ailanthus altissima (Mill., tree of heaven)

机译:在全球侵入性物种的一致性中,艾尔蒽斯altissima (磨坊,天堂)

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Highlights ? As Ailanthus altissima invasion matures it significantly alters hydrometeorological processes. ? Canopy structure and ecohydrological parameters shift with age of invasion to favor stemflow. ? Increased stemflow may support water needs or enhance near-stem allelopathy of A. altissima. Abstract Many mechanisms aid invasive plants’ competitive interactions. Yet, the extent to which invasive plants alter canopy hydrometeorological mechanisms determining the quantity and distribution of rainwater resources to soils have never been assessed. We examine these mechanisms for a global invader, Ailanthus altissima, across an invasion chronosequence (stands aged 20, 30, 40 years) for 99 storms, each with ?200 net rainfall observations. With age woody area index, ratio of wet canopy evaporation and rainfall rates, and stem drainage coefficient increased; while leaf area index, canopy water storage, and gap fraction declined. This corresponded to increased stemflow and decreased throughfall across annual, seasonal, and interstorm scales. Promotion of stemflow may be advantageous to the invasive species as it increases water supply to roots and may help distribute allelopathic chemicals through the soil. Further research is needed on relationships between canopy hydrometeorological changes during invasion and redistribution of water to soils. ]]>
机译:<![cdata [ 突出显示 作为斜体> ailanthus altissima 侵入成熟它显着改变了水质气象过程。 < / ce:list-item> 冠层结构和生态学参数随着入侵年龄转移,以支持STEM流。 增加的茎流量可能支持水需求或增强 a的近茎化感觉病。 Altissima 抽象 许多机制援助侵入植物的竞争性互动。然而,从未评估了侵入性植物改变冠层水样机制对土壤雨水资源的数量和分布的程度。我们研究了全球入侵者的这些机制,艾尔坦逊人Altissima ,横跨99个风暴的入侵时间(20,30,40岁)的侵入时间(20,30岁),每个人都有200次净降雨观察。随着年龄的木质区域指数,湿冠层蒸发比率和降雨率,以及茎引流系数增加;叶片区域指数,树冠储水和间隙分数下降。这相当于茎流量的增加和跨越年度,季节性和层间尺度的降低。促进茎流可能是有利的侵入物种,因为它增加了源性的供水,并且可以通过土壤有助于分配化脓化学品。需要进一步的研究在侵袭和再分布到土壤中的树冠水质气象变化之间的关系。 ]]>

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