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Survival Dynamics and Colonization of Exogenous Probiotic Bacteria Bacillus subtilis in Aquaculture Water and Intestine of Zebra Fish (Danio rerio)

机译:水生养殖水和斑马鱼肠中外源益生菌枯草芽孢杆菌的存活动态和定殖

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摘要

Adaptability of probiotic bacteria is an important trait for the survival and colonization in water or fish intestine and the performance of their bio-control function. Bacillus is a widely used genus of probiotic bacteria in aquaculture. However, its survival dynamics and effect on water or fish intestine is still unclear. In this study, we assessed the survival dynamics of exogenous Bacillus subtilis Bst51 and its effect on the microbial community structure in water and fish intestine by using green fluorescent protein (GFP) labeling and bacteriological methods. Results showed that GFP labeling was an efficient method for detection of the survival of B. subtilis in the water column and fish intestine. Our results showed that when administered only once, the concentration of Bst51 in water declined to one-tenth of the original concentration and reached a stable state after 24 h. This confirmed that Bst51 strain was able to survive and colonize in aquaculture water with concentrations higher than 103 CFU (Colony Forming Units)/mL. The concentration of Bst51 cells in zebra fish intestine decreased slightly and remained constant at around 5×106 CFU/g after only one treatment. The results confirmed that if Bst51 cells have a concentration of over 109 CFU/mL they can survive and colonize in zebra fish intestine.
机译:益生菌的适应性是在水或鱼肠中生存和定居及其生物防治功能的重要特征。芽孢杆菌是水产养殖中广泛使用的益生菌属。但是,其存活动态以及对水或鱼肠的影响尚不清楚。在这项研究中,我们通过使用绿色荧光蛋白(GFP)标记和细菌学方法评估了外源枯草芽孢杆菌Bst51的存活动态及其对水和鱼肠中微生物群落结构的影响。结果表明,GFP标记是检测枯草芽孢杆菌在水柱和鱼肠中存活的有效方法。我们的结果表明,仅施用一次,水中Bst51的浓度下降到原始浓度的十分之一,并在24小时后达到稳定状态。这证实了Bst51菌株能够以高于103 CFU(菌落形成单位)/ mL的浓度在水产养殖水中生存和定殖。斑马鱼肠中Bst51细胞的浓度仅经过一次处理即可略有下降,并保持恒定在5×106 CFU / g左右。结果证实,如果Bst51细胞的浓度超过109 CFU / mL,它们可以在斑马鱼肠中存活并定居。

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