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磷酸三羟甲基氨基甲烷、碳酸盐和缓冲蛋白胨水对配合饲料及饲料原料进行预富集的缓冲能力比较

Buffering Capacity Comparison of Tris Phosphate Carbonate and Buffered Peptone Water Pre-Enrichments for Manufactured Feed and Feed Ingredients.

作者信息

Escobar Cesar, Munoz Luis R, Bailey Matthew A, Krehling James T, Pacheco Wilmer J, Hauck Rüdiger, Buhr Richard J, Macklin Kenneth S

机构信息

Department of Poultry Science, College of Agriculture Auburn University, Auburn, AL 36849, USA.

Department of Pathobiology, College of Veterinary Medicine, Auburn University, Auburn, AL 36849, USA.

出版信息

Animals (Basel). 2023 Oct 6;13(19):3119. doi: 10.3390/ani13193119.

Abstract

Various culture-based methods to detect in animal feed have been developed due to the impact of this bacterium on public and animal health. For this project, tris phosphate carbonate (TPC) and buffered peptone water (BPW) buffering capacities were compared as pre-enrichment mediums for the detection of in feed ingredients. A total of 269 samples were collected from 6 feed mills and mixed with the pre-enrichments; pH was measured before and after a 24 h incubation. Differences were observed when comparing pH values by sample type; DDGS and poultry by-product meal presented lower initial pH values for TPC and BPW compared to the other samples. For both TPC and BPW, meat and bone meal presented higher final pH values, while soybean meal and peanut meal had lower final pH values. Furthermore, for BPW, post cooling, pellet loadout, and wheat middlings reported lower final pH values. Additionally, most feed ingredients presented significant differences in pH change after 24 h of incubation, except DDGS. From meat and bone meal samples, four isolates were recovered and identified: three using BPW and one using TPC. TPC provided greater buffer capacity towards neutral pH compared to BPW, but BPW was more effective at recovering .

摘要

由于这种细菌对公众和动物健康有影响,已开发出多种基于培养的方法来检测动物饲料中的[细菌名称未给出]。对于本项目,比较了磷酸三碳酸盐(TPC)和缓冲蛋白胨水(BPW)作为饲料成分中[细菌名称未给出]检测的预富集培养基的缓冲能力。从6家饲料厂共收集了269个样品,并与预富集物混合;在孵育24小时前后测量pH值。按样品类型比较pH值时观察到差异;与其他样品相比,DDGS和家禽副产品粉在TPC和BPW中的初始pH值较低。对于TPC和BPW,肉骨粉的最终pH值较高,而豆粕和花生粕的最终pH值较低。此外,对于BPW,冷却后、颗粒卸料时以及小麦麸皮的最终pH值较低。另外,除DDGS外,大多数饲料成分在孵育24小时后的pH变化存在显著差异。从肉骨粉样品中,回收并鉴定出4株[细菌名称未给出]分离株:3株使用BPW,1株使用TPC。与BPW相比,TPC对中性pH提供了更大的缓冲能力,但BPW在回收[细菌名称未给出]方面更有效。

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