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首页> 外文期刊>North American Journal of Aquaculture >Comparison of Phytoplankton Communities in Catfish Split-Pond Aquaculture Systems with Conventional Ponds
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Comparison of Phytoplankton Communities in Catfish Split-Pond Aquaculture Systems with Conventional Ponds

机译:鲶鱼分裂池水产养殖系统与常规池塘的比较

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摘要

There has been a growing interest and use of variations of partitioned aquaculture systems (PAS) in recent years by the southeastern U.S. catfish farming industry. Split-pond systems, one type of PAS, are designed to better manage fish waste byproducts (e.g., ammonia) and dissolved oxygen levels than the conventional earthen ponds that have been used by farmers for many decades. Recent studies have focused on design, water flow rates, and other management areas of catfish split-ponds, but so far there has not been a focused examination of phytoplankton community composition and biomass in these split-ponds. In the current study, pond water samples were collected from split-ponds at a research facility in western Mississippi and at a commercial fish farm in western Alabama approximately every 3 weeks during the fish grow-out period (May to November). Water samples were analyzed for chlorophyll a concentration (phytoplankton biomass) of several major phytoplankton divisions and for types of phytoplankton and their abundance. Overall, chlorophyll a concentrations in the split-ponds were maintained within the typical range (0-800 mu g/L) found in non-PAS (conventional) catfish ponds. The phytoplankton communities in split-ponds were dominated by cyanobacteria or blue-green algae (Cyanophyta) and by the same common species of cyanobacteria (e.g., Planktothrix agardhii, P. perornata, Microcystis aeruginosa, Raphidiopsis brookii) reported in previous studies for conventional catfish ponds. In addition, many types of phytoplankton in the other major divisions-Chlorophyta (green algae), Bacillariophyta (diatoms), Chrysophyta (golden brown algae), Cryptophyta (cryptomonads), Euglenophyta (euglenophytes), and Pyrrhophyta (dinoflagellates)-present in the split-ponds were the same as those reported previously in conventional catfish ponds. Therefore, issues related to management practices for pond water quality (e.g., dissolved oxygen) and undesirable cyanobacteria are expected to be similar to those used for conventional ponds.
机译:近年来,近年来,近年来,近年来,近年来,近年来,近年来的近年来近年来越来越感兴趣。分裂池系统,一种类型的PAS,设计用于更好地管理副产品(例如,氨)和溶解的氧水平,而不是农民已经使用的常规土壤池多数十年。最近的研究专注于设计,水流率和鲶鱼分裂池的其他管理领域,但到目前为止还没有针对性检查这些分裂池中的浮游植物群落组成和生物量。在目前的研究中,池塘水样来自于西部密西西比的研究设施的分裂池塘,大约每3周在西阿拉巴马州的商业养鱼场(5月至11月)。分析了几种主要浮游植物分区的叶绿素A浓度(浮游植物生物量)和浮游植物类型及其丰富的水样。总体而言,叶绿素在非PAS(常规)鲶鱼池中发现的典型范围(0-800 mu g / l)内保持浓度。分裂池中的浮游植物群落由蓝绿曲氏菌或蓝绿藻(睾丸)和蓝绿藻(Cyanophyta)和常规鲶鱼的研究报告的相同常见的蓝藻(例如,Planktothrix Agardhii,P.Perorna,Microcystis Brookii)。池塘。此外,许多类型的浮游植物在其他主要分裂 - 叶绿素(绿藻),杆菌病(硅藻),菊芋(金褐藻),cryptophyta(Cryptomonads),euglenophyta(euglenophytes),和Pyrrhophyta(Dinoflagellates) - 蛋白质分裂池与以前在传统鲶鱼池中报告的池塘相同。因此,预期与池塘水质的管理实践(例如,溶解氧)和不希望的蓝细菌有关的问题将与用于常规池塘的群体相似。

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