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Artificial substrata increase pond farming density of grass carp (Ctenopharyngodon idella) by increasing the bacteria that participate in nitrogen and phosphorus cycles in pond water

机译:人工基质通过增加参与池塘水中氮和磷循环的细菌来增加草鱼的池塘养殖密度

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摘要

Aquaculture has become a primary method to produce various aquatic products, and intensive aquaculture technologies have become commercially important. To improve the efficiency of intensive aquaculture per unit area without reducing the growth rate of cultured fish, the present study explored the potential of artificial substrata in ponds. Our results showed that the concentrations of total nitrogen (TN) and total phosphorous (TP) in the ponds with different stocking densities of grass carp were lower than those in the control group in most cases. Further, the feed conversion rate of grass carp was significantly reduced by introducing these artificial substrata, and the culture density could be significantly increased without reducing the growth rates of these fish. Artificial substrata also significantly enriched specific bacteria and changed the structure of the microbiota in pond water. The relative abundance of Proteobacteria was significantly increased, and bacteria closely related to N and P cycles, such as Hyphomicrobium, Chitinimonas, Legionella, Shewanella, Roseiflexus, and Planktothrix were significantly enhanced. These results showed that the artificial substratum could increase TN and TP removal in aquaculture pond water by enriching N and P cycle-related bacteria, thus significantly increasing the specific growth rate of grass carp and significantly reducing their feed conversion rate. Finally, the stocking density of grass carp and the yield per unit area of pond could be increased without reducing the growth rate.
机译:水产养殖已成为生产各种水产品的主要方法,集约化水产养殖技术已在商业上变得重要。为了提高集约化养殖单位面积的效率而又不降低养殖鱼的生长速度,本研究探索了池塘中人工基质的潜力。我们的结果表明,在不同放养密度的草鱼池塘中,总氮(TN)和总磷(TP)的浓度在大多数情况下均低于对照组。此外,通过引入这些人工基质显着降低了草鱼的饲料转化率,并且可以在不降低这些鱼的生长率的情况下显着提高养殖密度。人工基质还显着丰富了特定细菌,并改变了池塘水中微生物的结构。变形杆菌的相对丰度显着增加,并且与氮和磷循环密切相关的细菌(例如,Hyphomicrobium,Chitinimonas,军团菌,Shewanella,Roseiflexus和Planktothrix)显着增强。这些结果表明,人造基质可以通过富集氮和磷循环相关细菌来提高水产养殖池塘水中总氮和总磷的去除,从而显着提高草鱼的比生长速率,并显着降低其饲料转化率。最后,在不降低生长率的情况下,可以增加草鱼的放养密度和池塘单位面积的产量。

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