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Variability in Populus leaf anatomy and morphology in relation to canopy position, biomass production, and varietal taxon

机译:杨树叶片解剖结构和形态的变化与冠层位置,生物量产生和品种分类的关系

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摘要

Twelve poplar (Populus) genotypes, belonging to different taxa and to the sections Aigeiros and Tacamahaca, were studied during the third growing season of the second rotation of a high density coppice culture. With the objective to highlight the relationships between leaf traits, biomass production and taxon as well as the influence of canopy position, anatomical and morphological leaf characteristics (i.e. thickness of epidermis, of palisade and spongy parenchyma layers, density and length of stomata, leaf area, specific leaf area (SLA) and nitrogen concentration) were examined for mature leaves from all genotypes and at two canopy positions (upper and lower canopy). Above ground biomass production, anatomical traits, stomatal and morphological leaf characteristics varied significantly among genotypes and between canopy positions. The spongy parenchyma layer was thicker than the palisade parenchyma layer for all genotypes and irrespective of canopy position, except for genotypes belonging to the P. deltoides × P. nigra taxon (section Aigeiros). Leaves at the upper canopy position had higher stomatal density and thicker anatomical layers than leaves at the lower canopy position. Leaf area and nitrogen concentration increased from the bottom to the top of the canopy, while SLA decreased. Positive correlations between biomass production and abaxial stomatal density, as well as between biomass production and nitrogen concentration were found. A principal component analysis (PCA) showed that genotypes belonging to the same taxon had similar anatomical characteristics, and genotypes of the same section also showed common leaf characteristics. However, Wolterson (P. nigra) differed in anatomical leaf characteristics from other genotypes belonging to the same section (section Aigeiros). Hybrids between the two sections (Aigeiros × Tacamahaca) expressed leaf characteristics intermediate between both sections, while their biomass production was low.
机译:在高密度小灌木林第二轮种植的第三个生长季节中,研究了十二个杨树(杨)基因型,分别属于不同的分类单元和Aigeiros和Tacamahaca部分。目的是强调叶片性状,生物量生产和分类单元之间的关系,以及冠层位置,叶片的解剖和形态特征(即表皮厚度,木栅栏和海绵薄壁组织层,气孔的密度和长度,叶面积)的影响,比叶面积(SLA)和氮浓度)检查了所有基因型和两个冠层位置(上部和下部冠层)的成熟叶片。在地上生物量生产中,基因型之间和冠层位置之间的解剖特征,气孔和形态叶片特征差异很大。对于所有基因型,不论冠层位置如何,海绵状薄壁组织层均比木栅栏薄壁层厚,除了属于三角假单胞菌×黑黑紫杉类群的基因型(Aigeiros部分)。与下部冠层位置相比,上部冠层位置的叶片具有较高的气孔密度和较厚的解剖层。叶面积和氮浓度从冠层的底部到顶部增加,而SLA降低。发现生物量产量与背面气孔密度之间以及正比关系之间的正相关关系。主成分分析(PCA)显示,属于同一分类单元的基因型具有相似的解剖特征,而同一剖面的基因型也具有共同的叶片特征。但是,Wolterson(P. nigra)的叶片解剖特征不同于属于同一切片(Aigeiros切片)的其他基因型。两个部分之间的杂种(Aigeiros×Tacamahaca)表现出介于两个部分之间的叶片特性,而其生物量却较低。

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