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Effects of zinc on Salmonella in the layer house environments and laying hens, and the ability of zinc to induce molt in laying hens

机译:锌对蛋鸡舍环境和蛋鸡沙门氏菌的影响以及锌诱导蛋鸡蜕皮的能力

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摘要

There is increasing interest in developing methods to detect and identify Salmonella, to eliminate or reduce the risk of contamination of shell eggs, and to retain the economic advantages of induced molting without increasing the risk of Salmonella enteritidis infection. S. enteritidis and S. typhimurium are the most common serotypes among 2449 known serotypes of the Salmonella, and are the causes of most egg- related foodborne salmonellosis in humans in the U. S. These two species are also responsible for environmental contamination and the incidence of infections. Therefore, this study was conducted in three phases consisting of ten in vivo and in vitro experiments. This study investigated the effects of zinc on Salmonella growth and survivability in poultry environments, and its ability to induce a molt in single comb white leghorn hens. In part, the antibacterial properties of zinc may reduce environmental contamination in a poultry house by interrupting airborne routes. The first phase involved detecting airborne bacteria by aerosol sampling methods, and then screening any Salmonella mutant (s) that survived desiccation by transposon footprinting. The second phase examined, in vitro, the addition of zinc on the growth kinetics of Salmonella under aerobic or anaerobic conditions, the effects of combinating zinc and acidic conditions on the growth kinetics of Salmonella in vitro under aerobic or anaerobic conditions, and the effects of zinc amended feed on the survival of a dry inoculum of Salmonella. The third phase investigated the ability of zinc propionate, as an alternative salt form of zinc, to induce molt in laying hens, the influence of zinc acetate and zinc propionate on gastrointestinal tract fermentation, and susceptibility of laying hens to S. enteritidis during an induced molt, and the comparison of digestive microbial crop and cecal communities among molted hens fed by either zinc acetate or zinc propionate amended molting diets with hens undergoing feed withdrawal or full fed nonmolted hens using molecular-based denaturing gradient gel electrophoresis.
机译:在开发方法中检测和鉴定沙门氏菌,消除或减少带壳蛋污染的风险以及保留诱变蜕变的经济优势而又不增加肠炎沙门氏菌感染的风险的兴趣日益增加。肠炎沙门氏菌和鼠伤寒沙门氏菌是2449种已知沙门氏菌血清型中最常见的血清型,也是美国人类与鸡蛋相关的食源性沙门氏菌病的主要原因。这两个物种也造成环境污染和感染发生率。因此,这项研究分三个阶段进行,包括十个体内和体外实验。这项研究调查了锌对家禽环境中沙门氏菌生长和生存能力的影响,以及其在单梳白来亨鸡中诱发蜕皮的能力。锌的抗菌特性部分地可以通过中断空气传播途径来减少禽舍中的环境污染。第一阶段涉及通过气溶胶采样方法检测空气传播的细菌,然后筛选通过转座子足迹干燥后仍存活的沙门氏菌突变体。第二阶段在体外研究了锌在有氧或厌氧条件下对沙门氏菌生长动力学的影响,锌和酸性条件的联合对有氧或厌氧条件下沙门氏菌生长动力学的影响以及补锌可以改善沙门氏菌干接种物的存活率。第三阶段研究了丙酸锌(作为锌的另一种盐形式)诱导蛋鸡蜕皮的能力,乙酸锌和丙酸锌对胃肠道发酵的影响以及蛋鸡在诱导过程中对肠炎沙门氏菌的敏感性。蜕皮,并比较了用乙酸锌或丙酸锌饲喂的蜕皮母鸡的消化性微生物作物和盲肠群落,这些蜕皮的饲喂是采用基于分子的变性梯度凝胶电泳技术的母鸡,其中包括饲喂停产的母鸡或完全饲喂未蜕皮的母鸡。

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    Park Shinyoung;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en_US
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