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Original XPCTM Effect on Salmonella Typhimurium and Cecal Microbiota from Three Different Ages of Broiler Chickens When Incubated in an Anaerobic In Vitro Culture System

机译:在厌氧体外培养系统中孵育时原始XPCTM对三种不同年龄肉鸡的鼠伤寒沙门氏菌和盲肠微生物群的影响

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摘要

Feed supplements are utilized in the poultry industry as a means for improving growth performance and reducing pathogens. The aim of the present study was to evaluate the effects of Diamond V Original XPCTM (XPC, a fermented product generated from yeast cultures) on Salmonella Typhimurium ST 97 along with its potential for modulation of the cecal microbiota by using an anaerobic in vitro mixed culture assay. Cecal slurries obtained from three broiler chickens at each of three sampling ages (14, 28, and 42 days) were generated and exposed to a 24 h pre-incubation period with the various treatments: XPC (1% XPC, ceca, and feeds), CO (ceca only), and NC (negative control) group consisting of ceca and feeds. The XPC, CO, and NC were each challenged with S. Typhimurium and subsequently plated on selective media at 0, 24, and 48 h. Plating results indicated that the XPC treatment significantly reduced the survival of S. Typhimurium at the 24 h plating time point for both the 28 and 42 days bird sampling ages, while S. Typhimurium reduction in the NC appeared to eventually reach the same population survival level at the 48 h plating time point. For microbiome analysis, Trial 1 revealed that XPC, CO, and NC groups exhibited a similar pattern of taxa summary. However, more Bacteroidetes were observed in the CO group at 24 and 48 h. There were no significant differences (P > 0.05) in alpha diversity among samples based on day, hour and treatment. For beta diversity analysis, a pattern shift was observed when samples clustered according to sampling hour. In Trial 2, both XPC and NC groups exhibited the highest Firmicutes level at 0 h but the Bacteroidetes group became dominant at 6 h. Complexity of alpha diversity was increased in the initial contents from older birds and became less complex after 6 h of incubation. Beta diversity analysis was clustered as a function of treatment NC and XPC groups and by individual hours including 6, 12, 24, and 48 h. Overall, addition of XPC influenced microbiome diversity in a similar fashion to the profile of the NC group.
机译:饲料补充剂在家禽业中用作改善生长性能和减少病原体的手段。本研究的目的是评估Diamond V Original XPC TM (XPC,一种由酵母培养物产生的发酵产物)对鼠伤寒沙门氏菌ST 97的作用,以及其调节盲肠微生物群的潜力。通过使用厌氧体外混合培养测定。产生了三个采样年龄(14、28和42天)中的每只从三只肉鸡获得的盲肠浆液,并将其暴露于24小时的预孵育期,并进行了多种处理:XPC(1%XPC,盲肠和饲料) ,CO(仅限ceca)和NC(阴性对照)组,由ceca和供稿组成。将XPC,CO和NC分别用鼠伤寒沙门氏菌攻击,然后在0、24和48 h接种在选择性培养基上。电镀结果表明,XPCC处理显着降低了在28和42天禽龄的24 h电镀时间点的鼠伤寒沙门氏菌的存活,而NC中的鼠伤寒沙门氏菌减少似乎最终达到了相同的种群存活水平。在48小时的电镀时间点。对于微生物组分析,试验1显示XPC,CO和NC组表现出相似的分类单元摘要模式。然而,在第24和第48小时,CO组中观察到更多的拟杆菌。基于日,小时和处理,样品之间的α多样性没有显着差异(P> 0.05)。对于β多样性分析,当样品根据采样时间聚类时,观察到模式变化。在试验2中,XPC组和NC组都在0 h表现出最高的Firmicutes水平,而拟杆菌科在6 h时占主导地位。 α多样性的复杂性从成年禽的初始含量开始增加,并且在孵化6小时后变得不那么复杂。 Beta多样性分析根据治疗NC和XPC组以及每个小时(包括6、12、24和48小时)进行聚类。总体而言,XPC的添加以与NC组相似的方式影响了微生物组多样性。

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