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Effect of the structural complexity of aquatic macrophytes on epiphytic algal, macroinvertebrates, and their interspecific relationships

机译:水生造血对果实藻类,大型藻类,大型脊椎动物及其三角关系的影响

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摘要

Aquatic macrophytes may have a significant effect on associated communities such as epiphytes and macroinvertebrates, which through the structural complexity of habitat, provide shelter, resources, and interspecific interactions. We tested the hypothesis that the structural complexity of macrophytes positively modifies epiphytes and macroinvertebrates and that the interspecific interactions of epiphytes and macrophytes positively influence macroinvertebrates by synergism of epiphyte availability and increased habitat complexity. The macrophytes presented different structural complexities, ranging from low (Cyperus articulatus), medium (Nymphaea pulchella) to high complexity (Eichhornia crassipes and Ludwigia helminthorrhiza). The richness, diversity, and biomass of epiphytes presented a significant difference and positive relationship with the increase of the structural complexity of the macrophytes. The synergism between the structural complexity of the macrophytes and the epiphytic biomass (r(2) = 0.37; p = 0.0002), increased the biomass of macroinvertebrates (r(2) = 0.47; p = 0.003). The functional traits of the epiphytes were directly related to the morphology of the macrophytes with the unicellular, pedunculated, and firmly adhered dominating. The dominance of these traits indicates the absence or low disturbance (e.g., rain) in the studied site. The responses of the functional characteristics of the epiphytes are important to understand ecosystem functioning and dynamics. Therefore, we conclude that epiphytes showed a positive relationship with the structural complexity of the macrophytes. Moreover, macroinvertebrates showed a positive relationship with the increased macrophyte morphological complexity and increased biomass of epiphytes. The management of macrophytes with different structural complexities can be a strategy to recover the biodiversity in tropical aquatic ecosystems.
机译:水生型宏观物质可能对相关的社区(如肢体和大型脊椎动物)具有显着影响,这通过栖息地的结构性复杂性,提供庇护,资源和间隙相互作用。我们测试了宏观物质的结构复杂性积极地改变腰果细胞和大甲椎间体的结构,并且肉瘤和宏观物质的间隙相互作用通过骨骺可用性和增加的栖息地复杂性的协同作用以及栖息地复杂的协同作用。宏观物质呈现出不同的结构复杂性,从低(Cypetus Articulatus),中等(Nymphaea Pulchella)到高复杂性(Eichhornia Crassipes和Ludwigia Helminthorrhiza)。骨骺的丰富性,多样性和生物量与宏观物质结构复杂性的增加呈现了显着的差异和阳性关系。宏观物质结构复杂性与外膜生物量(R(2)= 0.37; p = 0.0002)之间的协同作用,增加了大类脊椎动物的生物质(R(2)= 0.47; p = 0.003)。腰果的功能性状与单细胞,剪裁,牢固地粘附的主导直接相关。这些特征的主导地位表明了研究现场中的缺失或低扰动(例如,雨)。外切数的功能特征的反应对于了解生态系统功能和动态非常重要。因此,我们得出结论,腰果与宏观物质的结构复杂性显示出阳性关系。此外,大型椎骨制术与增加的宏观物质形态复杂性和越含环的生物量增加的阳性关系。具有不同结构复杂性的宏观物质的管理可以是在热带水生生态系统中恢复生物多样性的策略。

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