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Inhibition of the virulence antibiotic resistance and fecal shedding of multiple antibiotic-resistant Salmonella Typhimurium in broilers fed Original XPC™

机译:饲喂原始XPC™的肉仔鸡对多种抗生素耐药性鼠伤寒沙门氏菌的毒力抗生素抗性和粪便脱落的抑制

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摘要

Salmonella carriage is an insidious problem for the poultry industry. While most Salmonella serotypes are avirulent in poultry, these bacteria can contaminate chicken meat during processing, leading to one of the most important food safety hazards. In this study, we examined the anti-Salmonella effects of Diamond V Original XPC (XPC) included in the finisher diet fed to commercial broilers. On 3 occasions between day one (D1) and D20, broilers were experimentally infected with multiple antibiotic-resistant Salmonella Typhimurium. After confirming that the chicks were shedding Salmonella in the feces on D21, broiler chicks were fed a diet containing XPC (n = 57 birds; 1.25 kg/MT) or an XPC-free control diet (CON) (n = 57 birds) to D49. Fecal samples were obtained weekly and subjected to selective culture for enumerating and determining the antibiotic resistance of the Salmonella. Salmonella isolates were then subjected to an in vitro virulence assay, which predicts the ability of Salmonella to cause illness in a mammalian host. Broilers were euthanized on D49 and a segment of the large intestine was removed and subjected to the same assays used for the fecal samples. When compared to the birds fed the CON diet, Salmonella fecal shedding, virulence (invasion and invasion gene expression), and antibiotic resistance were significantly decreased in birds fed XPC (5-fold, 7.5-fold, 6-fold, and 5.3-fold decreases, respectively). Birds fed XPC exhibited heavier body weight (BW) and greater BW gains than those fed the CON diet. The decrease in virulence was associated with a decreased expression of a genetic regulator of Salmonella invasion into cells (hilA), while the decrease in antibiotic resistance was due to a loss of an integron (SGI1) from the input strain. This study revealed that Original XPC inhibits the shedding, downstream virulence, and antibiotic resistance of Salmonella residing in broilers.
机译:沙门氏菌运输是家禽业的一个隐患。尽管大多数沙门氏菌血清型在禽类中均无毒,但这些细菌会在加工过程中污染鸡肉,从而成为最重要的食品安全危害之一。在这项研究中,我们研究了饲喂商业肉鸡的育肥肥中所含的Diamond V Original XPC (XPC)的抗沙门氏菌作用。在第1天(D1)至D20之间的3次中,实验性地用多种抗生素抗性鼠伤寒沙门氏菌感染肉鸡。在确认小鸡在D21上的粪便中排出沙门氏菌后,给肉鸡饲喂含有XPC(n = 57只禽; 1.25 kg / MT)或不含XPC的对照饮食(CON)(n = 57只禽)。 D49每周获取粪便样品,并进行选择性培养以列举和确定沙门氏菌的抗生素抗性。然后将沙门氏菌分离物进行体外毒力测定,该方法可预测沙门氏菌在哺乳动物宿主中引起疾病​​的能力。在D49处使肉鸡安乐死,并去除大肠的一部分,并进行与粪便样品相同的测定。与饲喂CON饲料的家禽相比,饲喂XPC的家禽的沙门氏菌粪便脱落,毒力(侵袭和侵袭基因表达)和抗生素抗性显着降低(分别为5倍,7.5倍,6倍和5.3倍)减少)。饲喂XPC的家禽比饲喂CON的家禽具有更高的体重(BW)和更大的体重增加。毒力的降低与沙门氏菌入侵细胞的基因调节剂的表达降低有关(hilA),而抗生素耐药性的降低则是由于输入菌株中整合子(SGI1)的丧失。这项研究表明,原始的XPC 抑制了肉鸡沙门氏菌的脱落,下游毒力和抗生素抗性。

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