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大雾山国家公园中对臭氧敏感和不敏感的金光菊(Rudbeckia laciniata var. digitata)的气孔行为

Stomatal behavior of ozone-sensitive and -insensitive coneflowers (Rudbeckia laciniata var. digitata) in Great Smoky Mountains National Park.

作者信息

Grulke N E, Neufeld H S, Davison A W, Roberts M, Chappelka A H

机构信息

Pacific South-west Research Station, USDA Forest Service, Riverside, California, USA.

出版信息

New Phytol. 2007;173(1):100-9. doi: 10.1111/j.1469-8137.2006.01872.x.

DOI:10.1111/j.1469-8137.2006.01872.x
PMID:17176397
Abstract
  • Morphological and physiological attributes were assessed to elucidate the underlying mechanisms of ozone (O(3)) sensitivity in a highly sensitive species, cutleaf coneflower (Rudbeckia laciniata var. digitata). * Foliage at the same height in the canopy on paired O(3)-sensitive and -insensitive cutleaf coneflowers was assessed for level of foliar symptoms, stomatal density, stomatal responsiveness to dynamic changes in light and leaf-to-air vapor pressure deficit (VPD), steady-state responses to light and CO(2), intrinsic transpirational efficiency, and plant water balance. * There were no morphological differences between the sensitivity types that might have contributed to greater O(3) uptake in sensitive individuals. Stomata of sensitive plants were less responsive than those of insensitive plants to experimentally increased and decreased light intensities, and to increased VPD. O(3)-insensitive plants had greater intrinsic transpirational efficiencies, greater maximum assimilation rates under saturating CO(2) and light, and greater carboxylation rates. * Different physiological attributes vary independently within an individual plant, which collectively confer sensitivity or insensitivity to O(3) injury.
摘要

对形态学和生理学属性进行了评估,以阐明高度敏感物种裂叶松果菊(Rudbeckia laciniata var. digitata)对臭氧(O₃)敏感的潜在机制。对成对的O₃敏感型和不敏感型裂叶松果菊冠层中相同高度的叶片进行了评估,内容包括叶部症状水平、气孔密度、气孔对光照和叶-气蒸汽压差(VPD)动态变化的响应、对光照和CO₂的稳态响应、内在蒸腾效率以及植物水分平衡。敏感型和不敏感型之间不存在可能导致敏感个体吸收更多O₃的形态学差异。敏感植物的气孔对实验性增加和降低的光照强度以及增加的VPD的响应不如不敏感植物的气孔。O₃不敏感植物具有更高的内在蒸腾效率、在饱和CO₂和光照条件下更高的最大同化率以及更高的羧化率。不同的生理属性在单个植物体内独立变化,共同赋予对O₃伤害的敏感性或不敏感性。

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