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Effectiveness of Bacteriocin-Producing Lactic Acid Bacteria and Bifidobacterium Isolated from Honeycombs against Spoilage Microorganisms and Pathogens Isolated from Fruits and Vegetables

机译:从蜂窝微粒蜂窝中分离的生成菌生成乳酸菌和双歧杆菌的有效性和水果和蔬菜分离的病原体

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摘要

Screening natural products for bacteriocin-producing bacteria may be the equilibrium point between the consumer demand for mild processing and the industry’s need for hazard control. Raw unprocessed honeycombs filled with oregano honey from the alpine mountainous territory of Epirus, Greece were screened for bacteriocinogenic lactic acid bacteria and Bifidobacterium spp., with inhibitory action towards some pathogens and spoilage microorganisms isolated from fresh fruits and vegetables (number and type of strains: three E. coli, twoL. monocytogenes, two Salmonella spp., two B.cereus, two Erwinia spp., one Xanthomonas spp., L. innocua (ATCC 33090TM) and E. coli 0157:H7 (ATCC 69373)). Among the 101 collected isolates (73 Lactobacillus, 8 Lactococcus, 8 Leuconostoc and 12 Bifidobacterium species) from the oregano honeycombs (an original finding since there are no other reports on the microbial biodiversity of the flora of the oregano honey), 49 strains of lactic acid bacteria (LAB) and Bifidobacterium spp. were selected and tested for their bacteriocin-producing capacity (34 Lactobacillus, 6 Lactococcus, 5 Leuconostoc and 4 Bifidobacterium). The antibacterial activity exerted by the tested LAB and Bifidobacterium strains was not of the same potency. Our results suggest that the main molecules involved in the antimicrobial activity are probably bacteriocin-like substances (a conclusion based on reduced antibacterial activity after the proteolytic treatment of the cell-free supernatant of the cultures) and this antimicrobial activity is specific for the producing strains as well as for the target strains. The spoilage bacteria as well as the reference microorganisms showed increased resistance to the bacteriocin-like substances in comparison to the wild-type pathogens.
机译:筛选生成细菌的天然产物可能是消费者对温和加工需求与行业对危害控制的需求之间的平衡点。从石血管高山荒地的原始未加工的蜂窝中填充牛至蜂蜜,被希腊筛查了噬菌体植物乳酸菌和双歧杆菌SPP。,抑制来自新鲜水果和蔬菜分离的一些病原体和腐败的微生物(菌株的数量和类型:三种大肠杆菌,Twol。单核细胞元,两种沙门氏菌SPP。,两种B.Cereus,两种erwinia SPP。,一个Xanthomonas SPP。,L.Innocua(ATCC 33090TM)和大肠杆菌0157:H7(ATCC 69373))。在101个收集的分离物(73乳杆菌,8乳杆菌,8个乳癌糖杆菌,8只双歧杆菌物种)中,来自牛至蜂窝状(原始发现,因为没有关于牛至蜂蜜的植物群的微生物生物多样性),49株乳酸菌酸细菌(实验室)和双歧杆菌SPP。选择并测试其细菌霉素的产能(34乳杆菌,6乳杆菌,5个Leuconostoc和4个双歧杆菌)。经过测试的实验室和双歧杆菌菌株施加的抗菌活性与效力不相同。我们的研究结果表明,抗菌活性中涉及的主要分子可能是含有菌状的物质(基于培养物的无细胞上清液后的蛋白水解处理后的降低的抗菌活性的结论),并且该抗菌活性对于生产菌株是特异性的以及目标菌株。与野生型病原体相比,腐败的细菌以及参考微生物表现出对菌状物样物质的抗性增加。

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