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生物絮团技术和对虾免疫反应:荟萃分析和荟萃回归。

Biofloc technology and immune response of penaeid shrimp: A meta-analysis and meta-regression.

机构信息

Department of Morphophysiology, Agricultural Science Faculty, University of Camagüey Km 5 ½, 74650, Cuba.

Department of Animal Production, Laboratory of Aquaculture & Artemia Reference Center, Ghent University, Belgium.

出版信息

Fish Shellfish Immunol. 2023 Jul;138:108805. doi: 10.1016/j.fsi.2023.108805. Epub 2023 May 9.

Abstract

Biological flocs develop as heterogenious communities of detritus, heterotrophic and autotrophic bacteria, algae, fungi and a variety of other things through appropriate management of the carbon-nitrogen ratio in aquaculture farming systems. These microbial communities improve the water quality, reduce the concentrations of toxic inorganic species, and act as a source of food and immunostimulants. However, the information about their role as immunostimulants is widely variable. To obtain a clearer view of the situation, it is necessary to summarize the current literature on this topic through a quantitative review analysis: a meta-analysis. The present work aims to evaluate the effect of biofloc technology (BFT) implementation on culture water quality through meta-analysis, meta-regression, and correlation analysis. Pubmed, Science Direct, Scopus, and Google Scholar were searched from 2000 to 2022 on the influence of BFT on immunological parameters. Three hundred and thirty-four of the scientific articles used BFT for penaeid shrimp, but only 25 articles met the inclusion criterion of using BFT to evaluate its effect on the shrimp's immunity. The current analysis found that the use of BFT stimulates all the evaluated immunological parameters. Also, meta-regression with fixed data of study parameters showed that slow-release carbon sources, probiotics, and an estimated carbon/nitrogen ratio of 10 potentiated a larger effect on BFT immune stimulation. The meta-analysis demonstrated that the volumes of the settleable solids (SS) and the total suspended solids (TSS) are crucial for the effect of BFT on the shrimp immune system. When TSS was higher than 294 mg/L, the respiratory metabolism of the shrimp was compromised. The analysis found evidence of publication biases, indicating that the data had to be interpreted carefully. Nonetheless, this meta-analysis shows that the data quality was sound and the approach used was appropriate; moreover, it also showed that BFT can be an environmentally friendly alternative culture method that enhances the shrimp's immune system.

摘要

生物絮团通过在水产养殖系统中对碳氮比进行适当管理,形成由碎屑、异养和自养细菌、藻类、真菌和其他各种物质组成的异质群落。这些微生物群落可以改善水质,降低有毒无机物种的浓度,并作为食物和免疫刺激剂的来源。然而,关于它们作为免疫刺激剂的作用的信息差异很大。为了更清楚地了解情况,有必要通过定量综述分析(元分析)来总结关于这个主题的当前文献:。本工作旨在通过元分析、元回归和相关分析来评估生物絮团技术(BFT)实施对养殖水质量的影响。从 2000 年到 2022 年,在 Pubmed、Science Direct、Scopus 和 Google Scholar 上搜索了关于 BFT 对免疫参数影响的研究。使用 BFT 的 334 篇科学文章用于对虾养殖,但只有 25 篇文章符合使用 BFT 来评估其对虾免疫力的纳入标准。目前的分析发现,使用 BFT 刺激了所有评估的免疫参数。此外,使用固定数据进行元回归研究参数表明,缓释碳源、益生菌和估计的碳氮比为 10 增强了 BFT 免疫刺激的更大效果。元分析表明,可沉降固体(SS)和总悬浮固体(TSS)的体积对 BFT 对虾免疫系统的影响至关重要。当 TSS 高于 294mg/L 时,虾的呼吸代谢就会受到影响。分析发现存在发表偏倚的证据,表明必须谨慎解释数据。尽管如此,这项元分析表明数据质量良好,所用方法恰当;此外,它还表明 BFT 可以是一种环保的替代养殖方法,可以增强虾的免疫系统。

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