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首页> 外文期刊>Chemosphere >Biofloc technology application in indoor culture of Labeo rohita (Hamilton, 1822) fingerlings: The effects on inorganic nitrogen control, growth and immunity
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Biofloc technology application in indoor culture of Labeo rohita (Hamilton, 1822) fingerlings: The effects on inorganic nitrogen control, growth and immunity

机译:Biofloc技术在Labeo rohita(汉密尔顿,1822年)鱼种的室内培养中的应用:对无机氮控制,生长和免疫力的影响

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摘要

The present study was undertaken to investigate the effect of biofloc-based aquaculture system on inorganic nitrogen control, and growth and immunological responses of rohu (Labeo rohita). Fingerlings of rohu were cultured in indoor biofloc tanks in light-limited condition for 16 weeks with daily addition of molasses as carbon source to maintain the C/N ratio at 15. Different water quality parameters were measured at weekly interval. Growth, survival and welfare indices including stress and immunological status were measured after the end of the experimental period. Factor analysis using water quality variables indicated ammonia immobilization by heterotrophic bacteria, rather than nitrification, as the dominant mechanism influencing ammonia removal in the biofloc system. Ammonia immobilization was concomitant with microbial biomass production, as also revealed through factor analysis. The biofloc culture system enhanced the growth of rohu significantly than the control fish. As a measure of stress, the serum glucose content did not differ significantly between the fish cultured in biofloc and control system. Among the immunological parameters, respiratory burst and alkaline phosphatase activity showed significant enhancement in fish grown in biofloc system than the control. However, myeloperoxidase activity and total serum protein content did not show any statistically significant difference between biofloc and control system. The enhanced growth and welfare of the cultured fish may be attributed to in situ maintenance of water quality within the biofloc system and presence of microbial floc. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行本研究以研究基于生物絮凝剂的水产养殖系统对无机氮的控制以及如hu(Labeo rohita)的生长和免疫应答的作用。在室内有光的条件下,在室内生物絮凝池中培养胭脂hu的鱼种16周,每天添加糖蜜作为碳源,以将C / N比保持在15。每周测量不同的水质参数。实验期结束后测量生长,生存和福利指数,包括压力和免疫状况。使用水质变量进行因子分析表明,异养细菌将氨固定而不是硝化,这是影响生物絮凝系统脱氨的主要机理。氨固定化还伴随着微生物生物量的产生,这也通过因素分析得以揭示。生物絮凝物养殖系统比对照鱼显着提高了红hu的生长。作为压力的衡量标准,在生物絮凝剂和控制系统中养殖的鱼之间的血清葡萄糖含量没有显着差异。在免疫学参数中,在生物絮凝系统中生长的鱼的呼吸爆发和碱性磷酸酶活性显着增强。但是,髓过氧化物酶活性和总血清蛋白含量在生物絮凝剂和对照系统之间没有显示任何统计学上的显着差异。养殖鱼类生长和福利的提高可能归因于生物絮凝系统内原位维持水质以及存在微生物絮凝物。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2017年第9期|8-14|共7页
  • 作者单位

    Cent Agr Univ, Coll Fisheries, Dept Aquat Hlth & Environm, Lembucherra 799210, Tripura W, India;

    Cent Agr Univ, Coll Fisheries, Dept Aquat Hlth & Environm, Lembucherra 799210, Tripura W, India;

    Cent Agr Univ, Coll Fisheries, Dept Extens & Social Sci, Lembucherra 799210, Tripura W, India;

    Cent Agr Univ, Coll Fisheries, Dept Aquat Hlth & Environm, Lembucherra 799210, Tripura W, India;

    Assam Univ, Triguna Sch Technol, Dept Agr Engn, Silchar 788011, Assam, India;

    Cent Agr Univ, Coll Fisheries, Dept Aquat Hlth & Environm, Lembucherra 799210, Tripura W, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biofloc; Aquaculture; Nitrogen removal; Factor analysis; Growth; Fish welfare;

    机译:生物絮凝;水产养殖;脱氮;因子分析;生长;鱼类福利;

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