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Effects of liquid yeast cell wall on growth performance, intestinal development, immunity, and cecal Salmonella population of broilers.液态酵母细胞壁对肉鸡生长性能、肠道发育、免疫力及盲肠沙门氏菌数量的影响
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Intestinal inflammation disrupts energy metabolism in layer pullets: insights into energy partitioning and intestinal metabolomic profiling.肠道炎症扰乱蛋鸡的能量代谢:对能量分配和肠道代谢组学分析的见解
J Anim Sci Biotechnol. 2025 May 26;16(1):76. doi: 10.1186/s40104-025-01204-x.
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Yeast protein as a fishmeal substitute: impacts on reproductive performance, immune responses, and gut microbiota in two sow hybrids.酵母蛋白作为鱼粉替代品:对两个母猪杂交品种繁殖性能、免疫反应和肠道微生物群的影响
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酵母细胞壁补充剂影响蛋鸡盲肠和卵巢中肠炎沙门氏菌的载量。

Yeast cell wall supplementation affects the Salmonella enteretidis load in the ceca and ovaries of layer pullets.

机构信息

Southern Poultry Research Group, INC., Watkinsville, GA 30677.

Department of Population Health, The University of Georgia, Athens, GA 30607; Department of Population Health, Food Animal Health and Management, Poultry Diagnostic and Research Center, Southeastern Cooperative Wildlife Disease Study, The University of Georgia, Athens, GA 30607.

出版信息

Poult Sci. 2024 Nov;103(11):104187. doi: 10.1016/j.psj.2024.104187. Epub 2024 Aug 8.

DOI:10.1016/j.psj.2024.104187
PMID:39197339
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11395752/
Abstract

Salmonella enteretidis (SE) has a great propensity to translocate from the cecum into internal organs such as the spleen and liver. However, a major concern is the ability of SE to colonize the ovaries. This study aimed to evaluate the efficacy of cell walls from Saccharomyces cerevisiae to control the Salmonella load in the ceca and ovaries of commercial layer pullets. Ten-week-old layer pullets were divided into 2 groups: one group was fed a control diet with commercial feed without additives, and another group was fed the same diet supplemented with 0.5 kg/metric ton of yeast cell walls (YCWs). At 16 wk of age, the birds in both groups were challenged with 3.0 × 10 CFU/mL SE by oral gavage. The birds were euthanized on d 7 and 14 postchallenge to collect the ceca and ovaries for Salmonella load determination. The results demonstrated that there were no statistical differences in ovary SE infection rates. The trend in the prevalence of SE positivity in the ovaries was similar at 14 d, with 2.1% (YCW pullets) to 4.2% positive for the ovaries of the nontreated pullets. There was also no significant difference in the SE log10 MPN/gram between the YCW and the control groups. In the ceca, the high level of SE (3.0 × 10 cfu/pullet), which results in ovarian transmission, causes high intestinal tract inflammation. There was a significant difference in the prevalence of SE in the ceca at 7 d postchallenge but not at 14 d postchallenge. In conclusion, the reduction in Salmonella load observed in the ceca on d 7 in this study shows the potential of YCW supplementation for reducing Salmonella colonization in poultry.

摘要

肠炎沙门氏菌(SE)极易从盲肠转移到脾脏和肝脏等内部器官。然而,人们主要关注的是 SE 定植卵巢的能力。本研究旨在评估酿酒酵母细胞壁控制商业蛋鸡盲肠和卵巢中沙门氏菌负荷的效果。将 10 周龄蛋鸡分为 2 组:一组饲喂不含添加剂的商业饲料对照日粮,另一组饲喂补充 0.5 千克/吨酵母细胞壁(YCW)的相同日粮。在 16 周龄时,两组鸡均通过口服灌胃感染 3.0×10 CFU/mL SE。在攻毒后第 7 和 14 天处死鸡,收集盲肠和卵巢以确定沙门氏菌负荷。结果表明,卵巢 SE 感染率无统计学差异。在 14 天时,卵巢 SE 阳性率的趋势相似,YCW 组的阳性率为 2.1%(YCW 组),未处理组的阳性率为 4.2%。YCW 组和对照组之间 SE log10 MPN/克也没有显著差异。在盲肠中,高水平的 SE(3.0×10 cfu/只)导致卵巢传播,引起严重的肠道炎症。在攻毒后第 7 天盲肠 SE 的流行率有显著差异,但在攻毒后第 14 天无显著差异。综上所述,本研究中在攻毒后第 7 天观察到盲肠中沙门氏菌负荷减少,表明 YCW 补充剂有潜力减少家禽中沙门氏菌的定植。