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Associations between Macrophyte Life Forms and Environmental and Morphometric Factors in a Large Sub-tropical Floodplain

机译:大型亚热带洪泛区大型植物生命形式与环境和形态因素之间的关联

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摘要

Macrophyte assemblages are composed of species with different life forms and various ecological functions. Our aim was to investigate the potential environmental determinants of changes in the biomass of individual life forms and of the composition of the macrophyte assemblage in terms of life forms diversity. We sampled 23 waterbodies at low and high water levels in the Middle Paraná River floodplain. Macrophyte biomass samples were collected and classified in terms of life forms. We performed a redundancy analysis using the biomass of the various life forms to assess the importance of environmental variables to the composition of macrophyte life forms. Linear regressions were applied to investigate the environmental determinants of the biomasses of individual life forms. The degree of connectivity and the combination of depth, hydrology and nitrate were the main determinants of the composition in terms of life forms. The biomass of each individual life form was explained by different combinations of environmental variables, but the connectivity was the most important one. Our study shows that groups of species with similar life forms respond to environmental factors in particular ways, which might alter the biomass composition of life forms. Given that the ecosystem functioning depends on the functional characteristics of local communities, our findings about the relation between environmental changes and the community composition in terms of life forms (or functional composition) can be a helpful tool for predicting changes on ecosystem processes (such as nutrient cycling) against possible future scenarios.
机译:大型植物群落由具有不同生命形式和各种生态功能的物种组成。我们的目的是研究潜在的环境决定因素,这些因素会改变个体生命形式的生物量以及大型植物组合的组成,从而改变生命形式。我们在巴拉那河中游平原上抽取了23个水位高低的水体。收集大型植物生物质样品并按照生命形式分类。我们使用各种生命形式的生物量进行了冗余分析,以评估环境变量对大型植物生命形式组成的重要性。应用线性回归研究个体生命形式生物量的环境决定因素。就生命形式而言,连通度以及深度,水文和硝酸盐的组合是构成的主要决定因素。每种生命形式的生物量都可以通过环境变量的不同组合来解释,但是连通性是最重要的一种。我们的研究表明,具有相似生命形式的物种群体以特定方式对环境因素做出响应,这可能会改变生命形式的生物量组成。鉴于生态系统功能取决于当地社区的功能特征,我们关于环境变化与社区组成之间在生命形式(或功能组成)方面的关系的发现可能是预测生态系统过程变化(例如营养循环)。

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