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Variations in the population structure and ecology of Matteuccia struthiopteris

机译:岩土结构和生态学的差异变化

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The aim of the study was to investigate variation in the structure of a population of Matteuccia struthiopteris (L.) Tod. in N-E Poland depending on its location in a river valley and light availability under tree canopies. Ordination statistical methods and structural equation modeling were used to identify ecological relationships in the population. The analysis showed that optimum growth conditions of M. struthiopteris depend on the canopy cover. As the shading increased, the size of trophophyllous leaves and the production of sporophylls decreased. The relationship between the canopy cover and the optimum growth conditions was best expressed by rootstock diameter and, to a lesser extent, by the number and height of trophophylls. An indirect relationship between the number and height of sporophylls and the canopy cover, by rootstock size and trophophyll quantity, was also identified. This relationship may be caused by the predominance of vegetative forms of reproduction. Based on the correlations between the landscape position vs. rootstock diameter and trophophyll height, a difference in the habitat colonization potential of M. struthiopteris could be detected. Three spatial clusters of M. struthiopteris in the river valley were identified: river bank, river terrace, river valley slopes. These relationships and the distribution of other herbaceous plant species occurring at the plots indicate that the distribution pattern of M. struthiopteris in the study area is determined by diverse environmental conditions, however mainly by light conditions.
机译:该研究的目的是调查岩土基毒素(L.)TOD群体结构的变化。在N-E波兰,取决于其在河谷的位置和树木檐篷下的光可用性。排序统计方法和结构方程建模用于识别人群中的生态关系。该分析表明,斯特鲁替替氏菌的最佳生长条件取决于冠层盖。随着阴影的增加,肾盂叶的尺寸和孢子蛋白的产生减少。顶篷覆盖和最佳生长条件之间的关系是最能由砧木直径表达的,并且在较小程度上,通过肾小粒的数量和高度表达。还鉴定了孢子囊的数量和高度与砧木尺寸和替潮毡量之间的间接关系。这种关系可能是由植物营养形式的繁殖的主要造成的。基于景观位置与砧木直径和肾球粒细胞高度之间的相关性,可以检测M.Struthiopteris的栖息地定植电位的差异。河谷中的三个空间簇被确定:河岸,河流露台,河谷坡。这些关系和在图中发生的其他草本植物的分布表明研究区域中M. Struthiopteris的分布模式由不同的环境条件决定,然而主要是光条件。

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