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Safety and Growth Optimization of Lactic Acid Bacteria Isolated From Feedlot Cattle for Probiotic Formula Design

机译:益生菌配方设计从饲养场牛分离的乳酸菌的安全性和生长优化

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摘要

In order to eliminate the widespread use of antibiotics in livestock production, the research for alternatives has increased lately. This study examined the safety of 40 lactic acid bacteria (LAB) isolated from bovine feedlot environment and previously selected as potential probiotics. A high sensitivity prevalence to ampicillin (AMP, 100%), gentamicin (GEN, 96.3%), kanamycin (KAN, 96.3%), clindamycin (CLI, 85.2%), chloramphenicol (CHL, 92.6%) and streptomycin (STR, 88.9%) while moderate and high resistance against erythromycin (ERY, 48%) and tetracycline (TET, 79%) respectively, were determined. Feedlot enterococci and pediococci displayed high resistance to CLI, ERY, GEN and TET (73, 100, 54.5, and 73%, respectively). Among fifteen resistance genes investigated, seven were identified in lactobacilli; their presence not always was correlated with phenotypic resistance. STR resistance genes, aadA and ant(6) were observed in 7.4 and 3.7% of isolates, respectively; genes responsible for aminoglycosides resistance, such as bla (7.4%), and aph(3”)-III (3.7%) were also recognized. In addition, resistance cat and tetS genes (3.7 and 7.4%, respectively) were harbored by feedlot lactobacilli strains. The presence of ermB gene in 22.3% of isolates, including two of the six strains phenotypically resistant to ERY, exhibited the highest prevalence among the assessed antibiotics. None of the feedlot lactobacilli harbored virulence factors genes, while positive PCR amplification for ace, agg, fsrA, and atpA genes was found for enterococci. With the objective of producing large cell biomass for probiotic delivery, growth media without peptone but containing glucose and skim milk powder (Mgl and Mlac) were selected as optimal. Lactobacillus acidophilus CRL2074, L. amylovorus CRL2115, L. mucosae CRL2069, and L. rhamnosus CRL2084 were strains selected as free of antibiotic resistance and virulence determinants, able to reach high cell numbers in non-expensive culture media and being compatible among them.
机译:为了消除抗生素在牲畜生产中的广泛使用,最近对替代品的研究有所增加。这项研究检查了从牛饲养场环境中分离出的40种乳酸菌(LAB)的安全性,这些乳酸菌以前被选为潜在的益生菌。对氨苄西林(AMP,100%),庆大霉素(GEN,96.3%),卡那霉素(KAN,96.3%),克林霉素(CLI,85.2%),氯霉素(CHL,92.6%)和链霉素(STR,88.9)的高敏感性患病率分别确定了对红霉素(ERY,48%)和四环素(TET,79%)的中度和高度耐药性。育肥场肠球菌和pediococci对CLI,ERY,GEN和TET表现出很高的抵抗力(分别为73%,100%,54.5%和73%)。在调查的十五个抗性基因中,在乳酸杆菌中鉴定出七个;它们的存在并不总是与表型抗性相关。分别在7.4和3.7%的分离物中观察到STR抗性基因,aadA和ant(6)。还认识到负责氨基糖苷抗性的基因,例如bla(7.4%)和aph(3”)-III(3.7%)。此外,饲养场乳杆菌菌株还带有抗性cat和tetS基因(分别为3.7%和7.4%)。 ermB基因在22.3%的分离株中的存在,包括在表型上对ERY耐药的6个菌株中的2个,在评估的抗生素中显示最高的患病率。饲养场的乳酸杆菌均未包含毒力因子基因,而发现肠球菌的ace,agg,fsrA和atpA基因的PCR阳性扩增。为了产生用于益生菌递送的大细胞生物质,选择不含蛋白ept但含有葡萄糖和脱脂奶粉(Mgl和Mlac)的生长培养基为最佳。嗜酸乳杆菌CRL2074,木糖乳杆菌CRL2115,粘膜乳杆菌CRL2069和鼠李糖乳杆菌CRL2084是无抗生素抗性和毒力决定簇的菌株,能够在非昂贵培养基中达到高细胞数,并且在它们之间具有相容性。

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