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首页> 外文期刊>Aquaculture Reports >The potential of rearing juveniles of bluegill, Lepomis macrochirus, in a biofloc system
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The potential of rearing juveniles of bluegill, Lepomis macrochirus, in a biofloc system

机译:在生物活地系统中饲养蓝鳃叶,Lepomis Macrochirus的潜力

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Biofloc technology (BFT) can potentially enhance growth and provide supplemental nutrition to some fish species, but this has not been investigated in bluegill Lepomis macrochirus juveniles. In this study, L. macrochrius juveniles were cultured in a clear-water (CW) system versus BFT when using either corn starch (BFT-Sta) or sucrose-sugar (BFT-Sug) for 32 days at a carbon (C) to nitrogen (N) ratio of 15. After 32 days, water composition of cultivable bacteria were identified using molecular techniques while the survival, growth, histopathology, biochemical composition, and contribution of C and N from bioflocs (based on stable isotope analysis) to L. macrochrius were determined. In the CW system, Escherichia coli was detected but not in the BFT tanks, whereas Aeromonas hydrophila was present in the BFT tanks but not in CW. Fish obtained C and N from bioflocs at 4.11 % and 9.5 % in the BFT-Sta treatment, respectively, and 18.8 % and 1.4 % in the BFT-Sug treatment, respectively. A temporary loss of aeration in the BFT treatments led to dissolved oxygen (DO) plummeting, leading to 50 % mortality, which is indicative of the risk involved when using BFT but also the tolerance of L. macrochrius to temporary low DO. BFT also significantly reduced L. macrochrius growth, which was likely compounded by consistently elevated ammonia and reduced feed intake/feeding activities. The nutritional contribution of bioflocs to L. macrochirus along with no abnormal gill histopathology suggests BFT could have great potential for this species.
机译:Biofloc技术(BFT)可能会增强生长并为某些鱼类提供补充营养,但这尚未在Bluegill Lepomis Macrochirus青少年中进行调查。在本研究中,在碳(C)中使用玉米淀粉(BFT-STA)或蔗糖 - 糖(BFT-SUG)32天时,在透明水(CW)系统与BFT中培养Macrochrius幼虫。氮气(n)比例为15. 32天后,使用分子技术鉴定培养细菌的水成分,而生物生存,生长,组织病理学,生物化学组合物和从生物遗传物(基于稳定同位素分析)到L. 。宏观树立了。在CW系统中,检测到大肠杆菌,但不在BFT罐中,而Aeromonas疏水物存在于BFT罐中但不在CW中。在BFT-STA治疗中,在BFT-STA治疗中,在生物氟氯虫中获得C和N.分别为4.11%和9.5%,分别为18.8%和1.4%。在BFT治疗中暂时的通气丧失导致溶解的氧气(DO)暴跌,导致50%的死亡率,这表明使用BFT时的风险,但也是L. Macrochrius暂时低的耐受性。 BFT也显着降低了L. Macrochrius的生长,这可能通过始终升高的氨和减少的进料进料/喂养活性复杂化。 Biofcocs对L. Macrochirus的营养贡献随着没有异常鳃组织病理学表明BFT可能具有很大的潜力。

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