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详细探讨生物絮凝对免疫和血液学参数的影响,以及提高对疾病的抵抗力。

A detailed look at the impacts of biofloc on immunological and hematological parameters and improving resistance to diseases.

机构信息

Department of Fisheries Sciences and Engineering, Faculty of Natural Resources, University of Jiroft, Jiroft, Kerman, Iran.

Shrimp Research Center, Iranian Fisheries Sciences Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Bushehr, 75169-89177, Iran.

出版信息

Fish Shellfish Immunol. 2023 Jun;137:108796. doi: 10.1016/j.fsi.2023.108796. Epub 2023 May 4.

Abstract

The innate immunity of invertebrates serves as a critical trait that provides a valuable foundation for studying the common biological responses to environmental changes. With the exponential growth of the human population, the demand for protein has soared, leading to the intensification of aquaculture. Regrettably, this intensification has resulted in the overuse of antibiotics and chemotherapeutics, which have led to the emergence of resistant microbes or superbugs. In this regard, biofloc technology (BFT) emerges as a promising strategy for disease management in aquaculture. By harnessing the power of antibiotics, probiotics, and prebiotics, BFT offers a sustainable and eco-friendly approach that can help mitigate the negative impacts of harmful chemicals. By adopting this innovative technology, we can enhance the immunity and promote the health of aquatic organisms, thereby ensuring the long-term viability of the aquaculture industry. Using a proper carbon to nitrogen ratio, normally adding an external carbon source, BFT recycles waste in culture system with no water exchange. Heterotrophic bacteria grow along with other key microbes in the culture water. Heterotrophs play a major role in assimilating ammonia from feed and fecal waste, crucial pathway to form suspended microbial aggregates (known as 'biofloc'); while chemoautotrophs (e.g. nitrifying bacteria) oxidize ammonia into nitrite, and nitrite into nitrate promoting a healthy farming conditions. By using a highly aerated media and an organic substrates that contain carbon and nitrogen, protein-rich microbes are able to flocculate in culture water. Several types of microorganisms and their cell components have been studied and applied to aquatic animals as probiotics or immunostimulants (lipopolysaccharide, peptidoglycan, and 1-glucans) to enhance their innate immunity and antioxidant status, thereby enhancing their resistance to disease. In recent years, many studies have been conducted on the application of BFT for different farmed aquatic species and it has been observed as a promising method for the development of sustainable aquaculture, especially due to less use of water, increased productivity and biosecurity, but also an enhancement of the health status of several aquaculture species. This review analyses the immune status, antioxidant activity, blood and biochemical parameters, and level of resistance against pathogenic agents of aquatic animals farmed in BFT systems. This manuscript aims to gather and showcase the scientific evidences related to biofloc as a 'health promoter' in a unique document for the industry and academia.

摘要

无脊椎动物的先天免疫是一种重要特征,为研究环境变化下常见的生物反应提供了有价值的基础。随着人口的指数级增长,对蛋白质的需求猛增,导致水产养殖业的集约化发展。遗憾的是,这种集约化发展导致抗生素和化疗药物的过度使用,从而导致抗微生物或超级细菌的出现。在这方面,生物絮团技术(BFT)作为水产养殖疾病管理的一种有前途的策略出现了。BFT 通过利用抗生素、益生菌和益生元的力量,提供了一种可持续和环保的方法,可以帮助减轻有害化学物质的负面影响。通过采用这项创新技术,我们可以增强水生生物的免疫力并促进其健康,从而确保水产养殖业的长期可行性。通过使用适当的碳氮比,通常添加外部碳源,BFT 可以在不换水的情况下回收养殖系统中的废物。异养菌与养殖水中的其他关键微生物一起生长。异养菌在从饲料和粪便废物中同化氨方面起着主要作用,这是形成悬浮微生物聚集体(称为“生物絮团”)的关键途径;而化能自养菌(例如硝化细菌)将氨氧化为亚硝酸盐,将亚硝酸盐氧化为硝酸盐,促进健康的养殖条件。通过使用高充气介质和含有碳和氮的有机基质,富含蛋白质的微生物能够在养殖水中絮凝。已经研究并将几种类型的微生物及其细胞成分作为益生菌或免疫刺激剂(脂多糖、肽聚糖和 1-葡聚糖)应用于水生动物,以增强其先天免疫和抗氧化状态,从而增强其对疾病的抵抗力。近年来,已经对 BFT 在不同养殖水生物种中的应用进行了许多研究,并且由于水的使用量减少、生产力提高和生物安全性提高,BFT 被认为是可持续水产养殖发展的一种有前途的方法,但也增强了几种养殖物种的健康状况。本综述分析了在 BFT 系统中养殖的水生动物的免疫状态、抗氧化活性、血液和生化参数以及对病原体的抵抗力。本文旨在收集和展示与生物絮团作为“健康促进剂”相关的科学证据,并为行业和学术界提供一份独特的文件。

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