首页> 外文期刊>Frontiers in Veterinary Science >Combination of Antimicrobial Starters for Feed Fermentation: Influence on Piglet Feces Microbiota and Health and Growth Performance, Including Mycotoxin Biotransformation in vivo
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Combination of Antimicrobial Starters for Feed Fermentation: Influence on Piglet Feces Microbiota and Health and Growth Performance, Including Mycotoxin Biotransformation in vivo

机译:饲料发酵抗菌初学者的组合:对仔猪粪便微生物的影响和健康和生长性能,包括体内霉菌毒素生物转化

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The aim of this study was to apply a microbial starter of the lactic acid bacteria (LAB) Lactobacillus uvarum LUHS245, Lctobaccilus casei LUHS210, Pediococcus acidilactici LUHS29, and Pediococcus pentosaceus LUHS183 for feed fermentation and evaluate their influence on feed acidity and microbiological characteristics. The study examined the influence of this LAB combination on piglet feces microbiota and health and growth performance. In addition, mycotoxin biotransformation was analyzed, including masking mycotoxins in feed and piglet feces samples. The 36-day experiment was conducted using 25-day-old LW/NL piglets, which were randomly distributed into two groups: control group, fed with basal diet, and treated group, fed with fermented feed at 500 g kg-1 of total feed. Compared to a commercially available LAB combination, the novel LAB mixture effectively reduced feed pH (on average pH 3.65), produced a 2-fold higher content of L( ) lactic acid, increased viable LAB count (on average 8.8 log10 colony forming units [CFU] g-1), and led to stable feed fermentation during the entire test period (36 days). Fecal microbiota analysis showed an increased number of probiotic bacteria in the treated group, particularly Lactobacillus, when compared with the control group at the end of experiment. This finding indicates that fermented feed can modify microbial profile change in the gut of pigs. In treated piglets’ blood (at day 61), the serum high density lipoprotein (HDL)-cholesterol and triglycerides (TG) were significantly higher, but the levels of T4, glucose, K, alkaline phosphatase (AP) and urea were significantly decreased (p ≤ 0.05) compared with the control group. Mycotoxin analysis showed that alternariol monomethyl ether (AME) and altenuene were found in 61-day-old control piglets’ feces and in fermented feed samples. However, AME was not found in treated piglets’ feces. Feed fermentation with the novel LAB combination is a promising means to modulate piglets’ microbiota, which is essential to improve nutrient absorption, growth performance, and health parameters. The new LAB composition suggests a novel dietary strategy to positively manipulate fermented feed chemicals and bio-safety, the piglet gut microbial ecology to reduce antimicrobials use in pig production, and increase local feed stock uses and economical effectiveness of the process.
机译:本研究的目的是应用乳酸菌的微生物起动器(实验室)Lactobacillus Uvarum Luhs245,Lctobacishus酪虫Luhs210,Pediococcus acidicerici luhs29和Pediococcus pentosaceus Luhs183用于饲料发酵,并评估它们对饲料酸度和微生物学特性的影响。该研究检测了该实验室组合对仔猪粪便微生物和健康和生长性能的影响。此外,分析了霉菌毒素生物转化,包括掩盖饲料和仔猪粪便样品中的霉菌毒素。使用25天龄的LW / NL仔猪进行36天的实验,将其随机分布成两组:对照组,用基础饮食,治疗组喂养,用500g kg-1的发酵饲料喂养喂养。与市售的实验室组合相比,新型实验室混合物有效地减少了进料pH(平均pH3.65),产生了2倍的L()乳酸含量,增加了可行的实验室计数(平均8.8 log10菌落形成单元[ CFU] G-1),并在整个测试期间导致稳定的饲料发酵(36天)。粪便微生物群分析显示,与实验结束时与对照组相比,治疗组的益生菌数量增加,特别是乳酸杆菌。该发现表明发酵饲料可以在猪的肠道中改变微生物轮廓变化。在处理过的仔猪血液(在第61天)中,血清高密度脂蛋白(HDL) - 碳酸和甘油三酯(TG)显着升高,但T4,葡萄糖,K,碱性磷酸酶(AP)和尿素的水平显着降低(p≤0.05)与对照组相比。霉菌毒素分析表明,在61天龄对照仔猪粪便和发酵的进料样品中发现了单甲醇单甲醇单甲醇(AME)和铝烯。然而,在治疗的仔猪粪便中没有发现ame。具有新型实验室组合的饲料发酵是调节仔猪微生物群的有希望的手段,这对于提高营养吸收,生长性能和健康参数至关重要。新的实验室组成表明,一种新的膳食策略来积极地操纵发酵饲料化学品和生物安全,仔猪肠道微生物生态学,以减少猪生产中的抗微生物用途,并增加当地饲料股票使用和过程的经济效果。
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