首页> 外文期刊>Journal of the World Aquaculture Society >Effect of silver carp Hypophthalmichthys molitrix and freshwater mussel Elliptio complanata filtration on the phytoplankton community of Partitioned Aquaculture System units
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Effect of silver carp Hypophthalmichthys molitrix and freshwater mussel Elliptio complanata filtration on the phytoplankton community of Partitioned Aquaculture System units

机译:of鱼和淡水贻贝Elliptio complanata过滤对分区水产养殖系统单元浮游植物群落的影响

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摘要

Growers produce over 2.8 million kg of catfish (over $350 million wholesale revenue) annually in the United States. The microbiology of the phytoplankton community in culture water affects the growth and flavor of the catfish and is a consideration for growers. Filter feeders, like silver carp and freshwater mussels, in controlled growth systems are used to adjust the phytoplankton species. Our goal was to successfully control the algal populations with filter feeders in catfish production. We used silver carp Hypophthahnichthys molitrix as a filter feeder in Partitioned Aquaculture System (PAS) water. Silver carp completely eliminated the cyanobacteria Microcystis by size and biovolume reduction. This created the desired effect of small green algae dominating the algal community. A significant but opposite change was observed when freshwater mussels Elliptio complanata filtered PAS water resulting in Microcystis biovolume and size dominance in the PAS; a less desirable algal community. This study also showed an immediate shift in the phytoplankton community when silver carp and mussels were interchanged between PAS waters. The size-selective filtration by the two filter-feeding taxa was important in determining the composition of the PAS phytoplankton community, and it was apparent that filtration with silver carp successfully depleted undesirable algae. [References: 24]
机译:在美国,养殖者每年生产超过280万公斤的fish鱼(批发收入超过3.5亿美元)。养殖水中浮游植物群落的微生物学影响affect鱼的生长和风味,是养殖者的考虑因素。受控生长系统中的滤食性饲养者,如silver鱼和淡水贻贝,用于调节浮游植物种类。我们的目标是在filter鱼生产中使用滤嘴饲养者成功控制藻类种群。我们在silver养水产养殖系统(PAS)水中使用了silver鱼Hypophthahnichthys molitrix作为滤食器。 size鱼通过大小和生物量减少完全消除了蓝藻微囊藻。这产生了占主导地位的藻类小绿藻的预期效果。当淡水贻贝Elliptio complanata过滤了PAS水时,观察到一个显着但相反的变化,导致PAS中的微囊藻生物量和大小优势。一个不太理想的藻类群落。这项研究还表明,当PA鱼和贻贝在PAS水域之间互换时,浮游植物群落立即发生变化。通过两个过滤器喂食类群进行的大小选择性过滤对于确定PAS浮游植物群落的组成非常重要,而且显然用that鱼过滤成功地消除了不良藻类。 [参考:24]

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