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首页> 外文期刊>Trees. Structure and Function >Relationships between vessel element anatomy and physiological as well as morphological traits of leaves in Fagus crenata seedlings originating from different provenances
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Relationships between vessel element anatomy and physiological as well as morphological traits of leaves in Fagus crenata seedlings originating from different provenances

机译:来源不同的青芒幼苗血管元素解剖与叶片生理及形态性状的关系。

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We attempted to observe differences in vessel element anatomy, and physiological and morphological traits of leaves in Fagus crenata seedlings originated from seven different provenances grown under the uniform environmental conditions. We also investigated the relationships between the anatomical characteristics of the vessel elements and physiological plus morphological traits of leaves in Fagus crenata seedlings. To carry out the experiments, Fagus crenata samples were prepared from Chichibu Research Forest of Tokyo University. For anatomical studies of the vessel elements, vessel number per mm2, average vessel area, and the percentage of vessel area from the pith to the bark side were measured. We also measured transpiration rate, stomatal conductance, leaf area, leaf thickness, leaf dry mass per unit leaf area and leaf density for foliar studies. The anatomical characteristics of the vessel elements as well as the physiological and morphological traits of leaves were noticeably different among provenances. In addition, we found significant correlations between the foliar characteristics not only with vessel number per mm2, but also with vessel area percentage and sum of the (vessel area)2, theoretical hydraulic conductivity, from the pith to the bark side. Therefore, we concluded that variations in physiological and morphological traits of leaves in response to provenance variation were in correspondence with vessel number per mm2 as a parameter that determines the total vessel area and consequent water hydraulic conductance in Fagus crenata as a diffuse porous hardwood.
机译:我们试图观察到在相同的环境条件下生长的7种不同种源的青海扁豆幼苗的血管元素解剖结构以及叶片的生理和形态特征上的差异。我们还调查了青海杨幼苗的血管元素的解剖特征与叶片的生理形态特征之间的关系。为了进行实验,从东京大学秩父研究林制备了青海参样品。为了对血管要素进行解剖学研究,测量了每平方毫米的血管数,平均血管面积以及从髓髓到树皮侧的血管面积百分比。我们还测量了蒸腾速率,气孔导度,叶片面积,叶片厚度,每单位叶片面积的叶片干重和叶片密度,以进行叶面研究。不同来源的脉管元素的解剖特征以及叶片的生理和形态特征明显不同。此外,我们发现叶面特性不仅与每平方毫米的容器数量之间存在显着相关性,而且与从髓到树皮侧的容器面积百分比和(容器面积)2的总和,理论水力传导率之间也存在显着相关性。因此,我们得出的结论是,响应于出处变化,叶片生理和形态特征的变化与每平方毫米的容器数相对应,该参数确定了作为散布多孔硬木的深海青杨的总容器面积和随之而来的水力导水率。

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