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首页> 外文期刊>Neotropical Entomology >Composition and Structure of the Chironomidae (Insecta: Diptera) Community Associated with Bryophytes in a First-Order Stream in the Atlantic Forest, Brazil
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Composition and Structure of the Chironomidae (Insecta: Diptera) Community Associated with Bryophytes in a First-Order Stream in the Atlantic Forest, Brazil

机译:在巴西大西洋森林的一级流中与苔藓植物相关的Chironomidae(Insecta:Diptera)群落的组成和结构

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摘要

This study describes the structure of the Chironomidae community associated with bryophytes in a first-order stream located in a biological reserve of the Atlantic Forest, during two seasons. Samples of bryophytes adhered to rocks along a 100-m stretch of the stream were removed with a metal blade, and 200-mL pots were filled with the samples. The numerical density (individuals per gram of dry weight), Shannon's diversity index, Pielou's evenness index, the dominance index (DI), and estimated richness were calculated for each collection period (dry and rainy). Linear regression analysis was employed to test the existence of a correlation between rainfall and the individual's density and richness. The high numerical density and richness of Chironomidae taxa observed are probably related to the peculiar conditions of the bryophyte habitat. The retention of larvae during periods of higher rainfall contributed to the high density and richness of Chironomidae larvae. The rarefaction analysis showed higher richness in the rainy season related to the greater retention of food particles. The data from this study show that bryophytes provide stable habitats for the colonization by and refuge of Chironomidae larvae, mainly under conductions of faster water flow and higher precipitation.
机译:这项研究描述了两个季节中位于大西洋森林生物保护区的一级流中与苔藓植物相关的猫科动物的结构。用金属刀片除去沿流100 m附着在岩石上的苔藓植物样品,并用样品填充200 mL盆。在每个收集期(干燥和阴雨),都计算了数值密度(每克干重的个体),香农的多样性指数,皮鲁的均匀度指数,优势度指数(DI)和估计的丰富度。线性回归分析用于检验降雨与个人密度和丰富度之间的相关性。观察到的Chironomidae类群的高数值密度和丰富度可能与苔藓植物栖息地的特殊条件有关。在降雨较高的时期,幼虫的滞留有助于Chironomidae幼虫的高密度和丰富性。稀薄度分析表明,雨季的丰度更高,这与食物颗粒的滞留量更大有关。这项研究的数据表明,苔藓植物为Chironomidae幼虫的定居和庇护提供了稳定的栖息地,主要是在更快的水流和更高的降水的传导下。

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