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首页> 外文期刊>Hydrobiologia >The Influence of the Spatial Structure of Hydromacrophytes and Differentiating Habitat on the Structure of Rotifer and Cladoceran Communities
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The Influence of the Spatial Structure of Hydromacrophytes and Differentiating Habitat on the Structure of Rotifer and Cladoceran Communities

机译:水生大型植物的空间结构和生境分化对轮虫和枝角类群落结构的影响。

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摘要

Research on the similarity of zooplankton in various stands of water vegetation, including rushes (Typha angustifolia), nymphaeids (Nymphaea alba) and submerged macrophytes (Charahispida, C. tomentosa, Myriophyllumverticillatum and Utricularia vulgaris) was carried out on the shallow Wielkowiejskie lake (Poland). The analysis of the similarity of the Rotifera community revealed the strongest relationship between the Myriophyllum and Chara tomentosa beds, with C. hispida attaching them. A second pair of habitats was represented by Typha and Nymphaea stands. Cladocerans revealed the greatest similarity between both zones of Chara. Additionally, two more pairs of habitats were distinguished – Typha and Nymphaea and also Utricularia and Myriophyllum. In most cases, the Shannon-Weaver values were high among macrophyte stations. Forward stepwise regression revealed that the length of Nymphaea stems was a single negative predictor determining the Cladocera densities. The water lily stand possessed the richest pelagic community of zooplankton and had the highest cladoceran diversity index. In accordance with CCA-ordination, out of the environmental variables, the macrophyte stem length and the concentration of Ptot were the strongest predictors in determining the distribution of particular species of the zooplankton community. Mainly pelagic species displayed preferences towards physical parameters of habitat, which is manifested in their greater affinity to a denser spatial structure of macrophyte substratum. The similarity of zooplankton communities in Wielkowiejskie lake was based on the characteristic architecture of particular macrophyte species, where the plant length was the strongest predictor. Moreover, the character of the zooplankton communities was also influenced by the concentrations of chlorophyll ‘a’ and the chemical variables, with the strongest impact of Ptot, of periphyton received from a particular macrophyte habitat and from water filling the spaces between plant stems.
机译:在浅层的Wielkowiejskie湖上开展了关于各种水生植物浮游动物相似性的研究,包括仓草(香蒲(Typha angustifolia),若虫(Nymphaea alba)和淹没的大型植物(Charahispida,C。tomentosa,Myriophyllumverticillatum和Utricularia vulgaris))。 )。通过对轮虫群落相似性的分析,揭示了Myriophyllum和Chara tomentosa病床之间的最紧密联系,而C. hispida附着在它们之间。第二对生境以香蒲和睡莲林为代表。锁骨揭示了Chara的两个区域之间的最大相似性。此外,还区分了另外两对栖息地-香蒲和睡莲,还有乌头和桃金娘。在大多数情况下,大型植物站之间的Shannon-Weaver值较高。逐步逐步回归分析表明,睡莲茎的长度是确定枝头菌密度的一个负预测因子。睡莲拥有浮游动物中最丰富的浮游生物群落,并具有最高的枝角类多样性指数。根据CCA的规定,在环境变量中,大型植物茎长度和Ptot浓度是确定浮游动物群落特定物种分布的最强预测因子。主要中上层物种对生境的物理参数表现出偏爱,这表现为它们对大型植物基质较密集的空间结构的亲和力更高。 Wielkowiejskie湖中浮游动物群落的相似性基于特定大型植物物种的特征结构,其中植物长度是最强的预测因子。此外,浮游动物群落的特征还受到叶绿素'a'的浓度和化学变量的影响,其中Ptot 的影响最大,是特定大型植物生境和水之间的空间填充的水生植物的附生生物的影响。植物茎。

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