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Macroinvertebrate communities in the Big East Lake water network in relation to environmental factors

机译:大东湖水网络中的大型无脊椎动物群落与环境因素的关系

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The Big East Lake water network (BELWN), located in Wuhan city, China, is mainly composed of six lakes and isolated from the Yangtze river. At the background of restoring the hydrological connectivity between rivers and lakes, four season investigations were conducted during 2014–2015 to study the spatial distribution and seasonal dynamics of macroinvertebrate communities, explore their relationships with environmental factors, and forecast the change trends in assemblages in a long period after restoration measures. A total of 40 species were recorded, oligochaetes and chironomids dominated the communities. Season variation in density and biomass were distinct and the community differences in lakes related to the degrees of organic pollution. In comparison with the historical data, the species richness of mollusks in Donghu lake sharply decreased due to water pollution and the loss of diverse habitat. Concerning on the whole BELWN, the whole taxa recorded in our study was slightly fewer than the previous study. A new recorded species polychaete Nephtys sp. was first collected with an important ecological interest. As an urban lake system dominated by eutrophication, the water nutrients significantly affected the distribution of macroinvertebrates. According to the GAM models, the dominant species responded to environmental gradients with different response curves. After restoring the hydrological connectivity between rivers and lakes, the macroinvertebrate communities would change and the biodiversity would steadily increase with time. Additionally, the new recorded species Nephtys sp. would spread into the whole BELWN in the foresee future.
机译:大东湖水网(BELWN)位于中国武汉市,主要由六个湖泊组成,与长江隔离。在恢复湖泊与湖泊之间水文连通性的背景下,2014-2015年进行了四个季节的调查,以研究大型无脊椎动物群落的空间分布和季节动态,探索它们与环境因素的关系,并预测群落中各种群落的变化趋势。恢复措施后的时间较长。总共记录了40种,寡头类和鸟纲占主导地位。密度和生物量的季节变化是明显的,湖泊中的群落差异与有机污染的程度有关。与历史数据相比,东湖软体动物的物种丰富度由于水污染和生境多样性的丧失而急剧下降。关于整个BELWN,我们研究中记录的整个分类单元比以前的研究略少。一个新记录的物种polychaete Nephtys sp。首先是出于重要的生态意义而收集的。作为一个以富营养化为主的城市湖泊系统,水养分显着影响了大型无脊椎动物的分布。根据GAM模型,优势物种对环境梯度的响应具有不同的响应曲线。恢复河流和湖泊之间的水文联系后,大型无脊椎动物群落将发生变化,生物多样性将随着时间稳定增长。此外,新记录的物种Nephtys sp。在可预见的将来会传播到整个BELWN。

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