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首页> 外文期刊>Aquaculture >Absorption efficiency of blue mussels (Mytilus edulis and M. trossulus) feeding on Atlantic salmon (Salmo salar) feed and fecal particulates: implications for integrated multi-trophic aquaculture.
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Absorption efficiency of blue mussels (Mytilus edulis and M. trossulus) feeding on Atlantic salmon (Salmo salar) feed and fecal particulates: implications for integrated multi-trophic aquaculture.

机译:蓝贻贝( Mytilus edulis 和 trossulus )对大西洋鲑鱼()饲料和粪便颗粒的吸收效率:对整合的影响多养水产养殖。

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摘要

Blue mussels (Mytilus edulis and M. trossulus) are grown adjacent to Atlantic salmon (Salmo salar) cages in some open-water, Integrated Multi-Trophic Aquaculture (IMTA) systems. Absorption efficiency (AE) data of salmon feed 'fines' or salmon feces consumed by blue mussels is limited, but is crucial for determining organic load delivery to secondary niches (e.g. deposit feeders placed under mussel rafts) and the efficiency of IMTA systems. This study aimed to investigate AE of salmon particulates relative to some commercial shellfish diets and potential effects of mussel size. In the laboratory trials, there were significant differences of fecal OC (p=0.00) across diets but no significant differences (p=0.07) of fecal OC between mussel size classes (30-35 mm, 50-55 mm and 70-75 mm lengths) fed the same diet. The AE of a commercial spat formula (Phaeodactylum tricornutum, Chaetoceros-B, and Nanochloropsis oculata), a commercial diatom diet (Thalassiosira weissflogeii), salmon feed, salmon feces, and total particulate matter (TPM) at salmon cages; averaged 87, 81, 90, 86, and 54%, respectively. TPM at a salmon cage increased with total organic matter (r2=0.76), but decreased in OC (r2=0.87), suggesting periods of substantial inorganic particle (e.g. silt) flux. Consequently, mean values of OC and AE of TPM at salmon cages was less than what would be expected if mussels were ingesting significant portions of salmon particulates. The results of this study emphasize the temporal/spatial variation of 'particle plumes' exiting fish cages is a major consideration for the placement of suspension or filter feeders at open-water IMTA sites. However, the AE data presented suggests that organic material in particulate salmon culture waste can effectively be utilized by blue mussels.
机译:蓝贻贝( Mytilus edulis 和 trossulus )在一些开放水域,综合养殖场的大西洋鲑鱼( Salmo salar )网箱附近生长-营养水产养殖(IMTA)系统。蓝贻贝消耗的鲑鱼饲料``细粉''或鲑鱼粪便的吸收效率(AE)数据有限,但对于确定将有机负荷输送至次生生态位(例如放置在贻贝筏下的沉积物给料器)和IMTA系统的效率至关重要。这项研究旨在调查鲑鱼颗粒相对于某些商业贝类饮食的AE以及贻贝大小的潜在影响。在实验室试验中,不同日粮中粪便OC( p = 0.00)存在显着差异,但贻贝大小等级之间的粪便OC没有显着差异( p = 0.07)( 30-35毫米,50-55毫米和70-75毫米的长度)饲喂相同的饮食。商用硅藻饮食( Thalassiosira weissflogeii )的商业吐司配方(三角角藻,Chaetoceros-B Nanochloropsis oculata )的AE,鲑鱼笼中的鲑鱼饲料,鲑鱼粪便和总颗粒物(TPM);平均分别为87%,81%,90%,86%和54%。鲑鱼笼中的TPM随着总有机质的增加( r 2 = 0.76)而增加,而OC的含量降低( r 2 = 0.87),表明存在大量的无机颗粒(例如淤泥)通量。因此,鲑鱼笼中TPM的OC和AE平均值低于贻贝摄入大量鲑鱼颗粒的预期值。这项研究的结果强调,离开鱼笼的“羽状颗粒”的时空变化是在露天IMTA地点放置悬浮物或滤料器的主要考虑因素。但是,所提供的AE数据表明,鲑鱼养殖废弃物中的有机物质可以被贻贝有效利用。

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