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Fish Feed Quality Is a Key Factor in Impacting Aquaculture Water Environment: Evidence from Incubator Experiments

机译:鱼类饲料质量是影响水产养殖水环境的关键因素:来自孵化器实验的证据

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The effect of fish feed quality has gained increasing attention to alleviate the harmful environmental impacts induced by intensive aquaculture. In current research, we have conducted an incubator experiment to highlight the effect of fish feed quality on aquaculture water environment. Fish feed from three manufactures with two different dosages (0.1000?g, 0.2000 g) was added to the culture medium with and without Microcystis aeruginosa. Treatments with Microcystis aeruginosa were named as MHT, MHP and MZT; while the treatments without Microcystis aeruginosa named as HT, HP and ZT. Microcystis aeruginosa densities and nutrients concentrations were measured in the study. Results have shown that fish feed quality (manufactures) has a great effect on nutrients concentrations in the absence of Microcystis aeruginosa (P??0.05). Meanwhile, fish feed can stimulate Microcystis aeruginosa growth that is also influenced by fish feed quality excluding lag phase (0~12 day) significantly in general (P??0.05). The maximum Microcystis aeruginosa density (N max ) is 1221.5, 984.5, 581.0, 2265.9, 2056.8 and 1766.6 1?×?10 4 cells mL -1 for MHT 0.1?g, MHP 0.1?g, MZT 0.1?g, MHT 0.2?g, MHP 0.2?g and MZT 0.2?g, respectively. In treatments with algae, fish feed quality affect total phosphorus (TP) concentrations (except the difference between MHT and MHP) and total nitrogen (TN) concentrations significantly (P??0.05). For most of consumed nutrients, the obvious differences among all treatments were observed excluding lag phase in general (P??0.05), which suggest that the nutrient utilization is also dependent on fish feed quality. Keeping in mind the above facts it is concluded that fish feed quality is a key factor in impacting aquaculture water environment.
机译:鱼类饲料质量的影响越来越关注,以减轻密集水产养殖引起的有害环境影响。在目前的研究中,我们进行了孵化器实验,以突出鱼饲料质量对水产养殖水环境的影响。在具有和不含微囊型铜绿假单胞菌的培养基中向培养基中加入三种制造商中的鱼饲料,含有两种不同的剂量(0.1000μl,0.2000g)。用微囊体铜绿假单胞菌的治疗被命名为MHT,MHP和MZT;虽然没有微囊体铜绿假单胞菌的治疗命名为HT,HP和ZT。在研究中测量微阴压铜绿假单节和营养浓度。结果表明,鱼饲料质量(制造商)对营养物质浓度的浓度有很大的影响,但在没有微囊粒细胞铜绿假单胞菌(P?<β05)。同时,鱼类饲料可以刺激微囊型铜绿假单胞菌生长,这些铜绿假单胞菌还受到滞后阶段(0〜12天)的鱼类饲料质量的影响(P?<?0.05)。最大微囊型铜绿假单胞菌密度(n max)为1221.5,984.5,581.0,2265.9,2056.8和1766.6 1?×10 4细胞ml -1,用于MHT 0.1·G,MHP 0.1·G,MZT0.1≤G,MHT 0.2? G,MHP 0.2?G和MZT0.2≤g。在藻类治疗中,鱼饲料质量会影响总磷(TP)浓度(除了MHT和MHP之间的差异除外)和总氮(TN)浓度显着(P?<β05)。对于大多数消耗的营养成分,观察到所有治疗中的明显差异,不包括滞后阶段(P?<0.05),表明营养利用也取决于鱼类饲料质量。请记住,上述事实得出结论,鱼饲料质量是影响水产养殖水环境的关键因素。

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