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首页> 外文期刊>Global change biology >Elevated CO2 concentrations and stomatal density: observations from 17 plant species growing in a CO2 spring in central Italy
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Elevated CO2 concentrations and stomatal density: observations from 17 plant species growing in a CO2 spring in central Italy

机译:二氧化碳浓度和气孔密度升高:来自意大利中部二氧化碳春季的17种植物的观测结果

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摘要

Stomatal density (SD) and stomatal conductance (g(s)) can be affected by an increase of atmospheric CO2 concentration. This study was conducted on 17 species growing in a naturally enriched CO2 spring and belonging to three plant communities. Stomatal conductance, stomatal density and stomatal index (SI) of plants from the spring, which were assumed to have been exposed for generations to elevated [CO2], and of plants of the same species collected in a nearby control site, were compared. Stomatal conductance was significantly lower in most of the species collected in the CO2 spring and this indicated that CO2 effects on g, are not of a transitory nature but persist in the long term and through plant generations. Such a decrease was, however, not associated with changes in the anatomy of leaves: SD was unaffected in the majority of species (the decrease was only significant in three out of the 17 species examined), and also SI values did not vary between the two sites with the exception of two species that showed increased SI in plants grown in the CO2-enriched area. These results did not support the hypothesis that long-term exposure to elevated [CO2] may cause adaptive modification in stomatal number and in their distribution. [References: 41]
机译:气孔密度(SD)和气孔电导率(g(s))可能受大气CO2浓度增加的影响。这项研究是针对17种在自然富集的CO2春季生长的物种进行的,它们属于三个植物群落。比较了从春季开始一直暴露于高浓度[CO2]的植物的气孔导度,气孔密度和气孔指数(SI),并比较了附近控制地点收集的同一物种的气孔导度,气孔密度和气孔指数(SI)。在CO2春季收集的大多数物种中,气孔导度显着降低,这表明CO2对g的影响不是短暂的,而是长期存在并贯穿植物世代。但是,这种下降与叶片解剖结构的变化无关:大多数物种的SD均不受影响(下降仅在所研究的17个物种中的三个物种中是显着的),并且SI值在两个物种之间也没有变化。除了两个物种外,两个地点显示出在富含二氧化碳的地区种植的植物中SI的增加。这些结果不支持以下假设:长期暴露于升高的[CO2]可能会导致气孔数量及其分布的适应性改变。 [参考:41]

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