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Co-ordination in Morphological Leaf Traits of Early Diverging Angiosperms Is Maintained Following Exposure to Experimental Palaeo-atmospheric Conditions of Sub-ambient O2 and Elevated CO2

机译:在暴露于低于环境的O2和升高的CO2的实验古大气条件下可以维持早期分化的被子植物的形态特征。

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摘要

In order to be successful in a given environment a plant should invest in a vein network and stomatal distribution that ensures balance between both water supply and demand. Vein density (Dv) and stomatal density (SD) have been shown to be strongly positively correlated in response to a range of environmental variables in more recently evolved plant species, but the extent of this relationship has not been confirmed in earlier diverging plant lineages. In order to examine the effect of a changing atmosphere on the relationship between Dv and SD, five early-diverging plant species representing two different reproductive plant grades were grown for 7 months in a palaeo-treatment comprising an O2:CO2 ratio that has occurred multiple times throughout plant evolutionary history. Results show a range of species-specific Dv and SD responses to the palaeo-treatment, however, we show that the strong relationship between Dv and SD under modern ambient atmospheric composition is maintained following exposure to the palaeo-treatment. This suggests strong inter-specific co-ordination between vein and stomatal traits for our study species even under relatively extreme environmental change. This co-ordination supports existing plant function proxies that use the distance between vein endings and stomata (Dm) to infer plant palaeo-physiology.
机译:为了在给定的环境中获得成功,工厂应投资于静脉网络和气孔分布,以确保水的供需之间的平衡。静脉密度(Dv)和气孔密度(SD)已被证明与最近进化的植物物种中的一系列环境变量呈强正相关,但这种关系的程度尚未在较早发散的植物谱系中得到证实。为了研究大气变化对Dv和SD之间关系的影响,在包含O2:CO2比的古生物处理中,代表两种不同生殖植物等级的五个早异植物物种生长了7个月。整个植物进化史的时间。结果显示了对古处理的物种特异性Dv和SD响应的范围,但是,我们显示,在暴露于古处理后,现代环境大气成分下Dv和SD之间的强烈关系得以维持。这表明即使在相对极端的环境变化下,我们研究的物种的静脉和气孔性状之间也存在很强的种间协调。这种协调支持现有的植物功能代理,这些代理使用静脉末端和气孔(Dm)之间的距离来推断植物古生物学。

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