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Effect of cellular products of potential probiotic bacteria on the immune response of Labeo rohita and susceptibility to Aeromonas hydrophila infection

机译:潜在益生菌细胞产物对roita的免疫反应和嗜水气单胞菌感染敏感性的影响

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In the present study, the immunological efficacy of cellular components from the potential probiotic bacteria Bacillus subtilis VSG1, Pseudomonas aeruginosa VSG2, and Lactobacillus plantarum VSG3 was evaluated in Labeo rohita fingerlings. Fish were immunized intraperitoneally with 0.1 mL phosphate-buffer solution (PBS) containing 0.1 mg of any of the following cellular components: intercellular products (ICPs) of VSG1 (BS-ICPs), heat-killed whole cell products of VSG2 (PA-HKWCPs), or ICPs of VSG3 (LP-ICPs). Fish injected with 0.1 mL PBS served as the control. Various immunological parameters, including the expression of immune-related genes, were measured 14 and 21 days post-immunization. The fish were challenged with Aeromonas hydrophila and mortality was recorded up to 21 days post-infection. The results revealed that administration of cellular components significantly increased the activity of serum lysozyme and the alternative complement pathway, phagocytosis, and respiratory bursts throughout the experimental period. Total serum protein, albumin, and globulin levels were significantly higher in experimental groups than in the control up to 14 days post-immunization, and decreased thereafter. With respect to immune-related genes, IL-beta,COX-2, iNOS, and IL-10 were highly (P 0.05) up-regulated in fish immunized with cellular components, compared to the control. The expression of TNF-alpha and NE-kappa B was up-regulated in immunized fish up to 14 days post-immunization. Interestingly, fish immunized with LP-ICPs exhibited a significantly higher post challenge relative percent survival (83.32%), followed by PA-HKWCPs (66.66%), and BS-ICPs (50%). These results indicate that cellular components of probiotic bacteria can influence immune responses, enhance disease protection, and stimulate immune-related gene expression in rohu. Hence, these cellular components may be useful as adjuvants for vaccines in aquaculture. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究中,潜在的益生菌枯草芽孢杆菌VSG1,铜绿假单胞菌VSG2和植物乳杆菌VSG3的细胞成分的免疫学功效已在Labeo rohita鱼种中进行了评估。用含有0.1 mg下列任何细胞成分的0.1 mL磷酸盐缓冲溶液(PBS)腹膜内免疫鱼:VSG1的细胞间产物(ICPs)(BS-ICPs),VSG2的热灭活全细胞产物(PA-HKWCPs) )或VSG3的ICP(LP-ICP)。注射0.1mL PBS的鱼作为对照。在免疫后14天和21天测量各种免疫学参数,包括免疫相关基因的表达。鱼被嗜水气单胞菌攻击,并在感染后长达21天记录死亡率。结果表明,在整个实验期间,施用细胞成分可显着提高血清溶菌酶的活性,并增强补体途径,吞噬作用和呼吸爆发。直到免疫后14天,实验组的总血清蛋白,白蛋白和球蛋白水平显着高于对照组,此后下降。关于免疫相关基因,与对照组相比,用细胞成分免疫的鱼中IL-β,COX-2,iNOS和IL-10高度上调(P <0.05)。免疫后长达14天,TNF-α和NE-κB的表达在免疫鱼中上调。有趣的是,用LP-ICP免疫的鱼在攻击后的相对存活率(83.32%)显着更高,其次是PA-HKWCP(66.66%)和BS-ICP(50%)。这些结果表明,益生菌的细胞成分可以影响免疫反应,增强疾病防护,并刺激知母中的免疫相关基因表达。因此,这些细胞成分可用作水产养殖中疫苗的佐剂。 (C)2015 Elsevier Ltd.保留所有权利。

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