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首页> 外文期刊>Aquatic ecosystem health & management >Monitoring the effects of aquaculture effluents on benthic macroinvertebrate populations and functional feeding responses in a tropical highland headwater stream (Kenya)
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Monitoring the effects of aquaculture effluents on benthic macroinvertebrate populations and functional feeding responses in a tropical highland headwater stream (Kenya)

机译:监测水产养殖废水对底栖大型无脊椎动物种群和热带高原水源流(肯尼亚)的功能性摄食反应的影响

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Intensification of aquaculture may result in more fish culture waste being discharged into adjacent rivers and streams. Due to composition of such wastes, ecological conditions in waterbodies may be adversely affected. We determined the ecological consequences of freshwater land-based Tilapia farms on headwater streams using macroinvertebrate community attributes and functional feeding response in an upstream tributaries of a highland stream in Kenya. Nine aquaculture sites adjacent to tributaries of three headwater streams with different fish production volumes were sampled and monitored for macroinvertebrate abundance, richness, composition of Ephemeroptera, Plecoptera and Trichoptera, Oligochaetes and Chironomids (percentage Oligochaetes and Chironomids), species diversity as well as the functional feeding group responses. The total abundance of benthic macroinvertebrate consistently increased near discharge points and immediately downstream of the effluent outlets near the aquaculture farms. We observed positive correlations between macroinvertebrate attributes (except Ephemeroptera, Plecoptera and Trichoptera) with fish production at aquaculture facilities adjacent to the tributaries of the headwater streams. The proportion of Oligochaetes and Chironomids (percentage Oligochaetes and Chironomids) increased while that of Ephemeroptera, Plecoptera and Trichoptera at discharge points and downstream of the farms decreased. Also, relative abundance of scrapers and shredders decreased significantly, while significant increase of abundance was observed for deposit feeders, filter feeders and parasites with low predator population at discharge and downstream points. These consistent patterns indicated changes in ecosystem integrity and functioning, due to aquaculture effluents with particulate organic matter from fish food-derived wastes becoming a central source of energy in river benthic food webs.
机译:水产养殖的集约化可能导致更多的鱼类养殖废物被排入邻近的河流和溪流。由于这些废物的成分,水体中的生态条件可能受到不利影响。我们使用大型无脊椎动物群落属性和肯尼亚高地溪流上游支流的功能性饲喂反应,确定了淡水陆基罗非鱼养殖场对上游水源流的生态影响。对三个鱼类产量不同的上游水源支流附近的9个水产养殖场进行了采样并进行了监测,以监测其大型无脊椎动物的丰度,丰富度,phe翅目,鞘翅目和毛鳞翅目,少纲和纲动物的比例(少纲和纲动物的百分比),物种多样性以及功能喂养小组的回应。在排放点附近和水产养殖场附近的污水出口下游,底栖大型无脊椎动物的总丰度持续增加。我们观察到上游水源支流附近的水产养殖设施的大型无脊椎动物属性(E,鳞翅目和鳞翅目除外)与鱼类生产之间呈正相关。在出水点和养殖场下游,E纲和Chi纲的比例增加(Ol纲和Chi纲的百分比),而phe,鳞翅目和毛翅纲的比例下降。此外,刮板和切碎机的相对丰度显着下降,而沉积物进料器,滤料进料器和在排放点和下游点捕食者数量低的寄生虫的丰度显着增加。这些一致的模式表明,由于水产养殖废水和鱼类食品衍生的废物中的颗粒有机物成为河流底栖食物网的主要能源,生态系统的完整性和功能发生了变化。

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