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首页> 外文期刊>Tree Physiology >Foliar uptake, carbon fluxes and water status are affected by the timing of daily fog in saplings from a threatened cloud forest
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Foliar uptake, carbon fluxes and water status are affected by the timing of daily fog in saplings from a threatened cloud forest

机译:受威胁的云雾森林中幼树的日雾时间会影响叶片的吸收,碳通量和水分状况

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In cloud forests, foliar uptake (FU) of water has been reported for numerous species, possibly acting to relieve daily water and carbon stress. While the prevalence of FU seems common, how daily variation in fog timing may affect this process has not been studied. We examined the quantity of FU, water potentials, gas exchange and abiotic variation at the beginning and end of a 9-day exposure to fog in a glasshouse setting. Saplings of Abies fraseri (Pursh) Poir. and Picea rubens Sarg. were exposed to morning (MF), afternoon (AF) or evening fog (EF) regimes to assess the ability to utilize fog water at different times of day and after sustained exposure to simulated fog. The greatest amount of FU occurred during MF (up to 50%), followed by AF (up to 23%) and then EF, which surprisingly had no FU. There was also a positive relationship between leaf conductance and FU, suggesting a role of stomata in FU. Moreover, MF and AF lead to the greatest improvements in daily water balance and carbon gain, respectively. Foliar uptake was important for improving plant ecophysiology but was influenced by diurnal variation in fog. With climate change scenarios predicting changes to cloud patterns and frequency that will likely alter diurnal patterns, cloud forests that rely on this water subsidy could be affected.C1 Berry, Z. Carter; Wake Forest Univ, Dept Biol, Winston Salem, NC 27109 USASC Environmental Sciences & Ecology
机译:在云雾森林中,据报道许多物种的叶片吸收水(FU),可能起到缓解日常水分和碳胁迫的作用。尽管FU的流行似乎很普遍,但尚未研究雾时间的每日变化如何影响该过程。我们在温室中暴露9天的雾开始和结束时检查了FU的量,水势,气体交换和非生物变化。冷杉树苗(Pursh)Poir的树苗。和Picea rubens Sarg。暴露于早晨(MF),下午(AF)或傍晚雾(EF)的情况下,以评估在一天的不同时间以及持续暴露于模拟雾后利用雾水的能力。在MF期间,FU的发生量最大(高达50%),其次是AF(高达23%),然后是EF,令人惊讶的是没有FU。叶片电导与FU之间也存在正相关关系,表明气孔在FU中的作用。此外,MF和AF分别导致每日水平衡和碳增加的最大改善。叶吸收对改善植物的生态生理很重要,但受到雾的昼夜变化的影响。随着气候变化情景预测云模式和频率的变化可能会改变昼夜模式,依赖这种水补贴的云森林可能会受到影响。威克森林大学,生物学部,温斯顿塞勒姆,NC 27109美国空军环境科学与生态

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