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养殖鱼类中的乳酸菌——最新进展

Lactic Acid Bacteria in Finfish-An Update.

作者信息

Ringø Einar, Hoseinifar Seyed Hossein, Ghosh Koushik, Doan Hien Van, Beck Bo Ram, Song Seong Kyu

机构信息

Faculty of Bioscience, Fisheries and Economics, Norwegian College of Fishery Science, UiT The Arctic University of Norway, Tromsø, Norway.

Department of Fisheries, Faculty of Fisheries and Environmental Sciences, Gorgan University of Agricultural Sciences and Natural Resources, Gorgan, Iran.

出版信息

Front Microbiol. 2018 Aug 10;9:1818. doi: 10.3389/fmicb.2018.01818. eCollection 2018.

Abstract

A complex and dynamic community of microorganisms, play important roles within the fish gastrointestinal (GI) tract. Of the bacteria colonizing the GI tract, are lactic acid bacteria (LAB) generally considered as favorable microorganism due to their abilities to stimulating host GI development, digestive function, mucosal tolerance, stimulating immune response, and improved disease resistance. In early finfish studies, were culture-dependent methods used to enumerate bacterial population levels within the GI tract. However, due to limitations by using culture methods, culture-independent techniques have been used during the last decade. These investigations have revealed the presence of , and as indigenous species. Numerous strains of LAB isolated from finfish are able to produce antibacterial substances toward different potential fish pathogenic bacteria as well as human pathogens. LAB are revealed be the most promising bacterial genera as probiotic in aquaculture. During the decade numerous investigations are performed on evaluation of probiotic properties of different genus and species of LAB. Except limited contradictory reports, most of administered strains displayed beneficial effects on both, growth-and reproductive performance, immune responses and disease resistance of finfish. This eventually led to industrial scale up and introduction LAB-based commercial probiotics. Pathogenic LAB belonging to the genera , and have been detected from ascites, kidney, liver, heart, and spleen of several finfish species. These pathogenic bacteria will be addressed in present review which includes their impacts on finfish aquaculture, possible routes for treatment. Finfish share many common structures and functions of the immune system with warm-blooded animals, although apparent differences exist. This similarity in the immune system may result in many shared LAB effects between finfish and land animals. LAB-fed fish show an increase in innate immune activities leading to disease resistances: neutrophil activity, lysozyme secretion, phagocytosis, and production of pro-inflammatory cytokines (β, and α). However, some LAB strains preferentially induces instead, a potent anti-inflammatory cytokine. These results indicate that LAB may vary in their immunological effects depending on the species and hosts. So far, the immunological studies using LAB have been focused on their effects on innate immunity. However, these studies need to be further extended by investigating their involvement in the modulation of adaptive immunity. The present review paper focuses on recent findings in the field of isolation and detection of LAB, their administration as probiotic in aquaculture and their interaction with fish immune responses. Furthermore, the mode of action of probiotics on finfish are discussed.

摘要

一个复杂且动态的微生物群落,在鱼类胃肠道(GI)中发挥着重要作用。在定殖于胃肠道的细菌中,乳酸菌(LAB)通常被认为是有益微生物,因为它们能够刺激宿主胃肠道发育、消化功能、黏膜耐受性、激发免疫反应并提高抗病能力。在早期的硬骨鱼研究中,使用的是依赖培养的方法来计数胃肠道内的细菌种群水平。然而,由于使用培养方法存在局限性,在过去十年中已采用非培养技术。这些研究揭示了 、 和 作为本土物种的存在。从硬骨鱼中分离出的众多乳酸菌菌株能够针对不同的潜在鱼类病原菌以及人类病原体产生抗菌物质。乳酸菌被认为是水产养殖中最有前景的益生菌属。在这十年间,对不同属和种的乳酸菌的益生菌特性进行了大量研究。除了有限的矛盾报道外,大多数施用的菌株对硬骨鱼的生长和繁殖性能、免疫反应及抗病能力都显示出有益效果。这最终导致了工业化扩大生产并引入了基于乳酸菌的商业益生菌。已从几种硬骨鱼的腹水、肾脏、肝脏、心脏和脾脏中检测到属于 、 和 属的致病性乳酸菌。本综述将探讨这些病原菌,包括它们对硬骨鱼养殖的影响以及可能的治疗途径。硬骨鱼与温血动物在免疫系统的许多结构和功能上有共同之处,尽管存在明显差异。免疫系统的这种相似性可能导致硬骨鱼和陆地动物之间在乳酸菌的许多作用上具有共性。喂食乳酸菌的鱼先天免疫活性增加,从而导致抗病能力增强:中性粒细胞活性、溶菌酶分泌、吞噬作用以及促炎细胞因子(β、 和α)的产生。然而,一些乳酸菌菌株反而优先诱导 ,一种强效的抗炎细胞因子。这些结果表明,乳酸菌的免疫作用可能因物种和宿主而异。到目前为止,使用乳酸菌的免疫学研究主要集中在它们对先天免疫的影响上。然而,这些研究需要通过调查它们在适应性免疫调节中的作用来进一步扩展。本综述文章重点关注乳酸菌分离和检测领域的最新发现、它们在水产养殖中作为益生菌的应用以及它们与鱼类免疫反应的相互作用。此外,还讨论了益生菌对硬骨鱼的作用方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98b8/6096003/cd678bbcb3d9/fmicb-09-01818-g0001.jpg

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