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Impact of short-term storage on the quantity of extended-spectrum beta-lactamase–producing Escherichia coli in broiler litter under practical conditions

机译:在实际条件下短期储存短期储存对肉鸡凋落物在肉鸡凋落物中产生的延长β-内酰胺酶的数量

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摘要

Applying broiler litter containing extended-spectrum beta-lactamase (ESBL)–producing Escherichia coli (E. coli) to arable land poses a potential risk for humans to get colonized by contact with contaminated soil or vegetables. Therefore, an inactivation of these bacteria before land application of litter is crucial. We performed 2 short-term litter storage trials (one in summer and winter, respectively), each covering a time span of 5 D to investigate the effectiveness of this method for inactivation of ESBL-producing E. coli in chicken litter. Surface and deep litter samples were taken from a stacked, ESBL-positive chicken litter heap in triplicates in close sampling intervals at the beginning and daily for the last 3 D of the experiments. Samples were analyzed quantitatively and qualitatively for ESBL-producing E. coli, total E. coli, and enterococci. Selected isolates were further characterized by whole-genome sequencing (WGS). In the depth of the heap ESBL-producing E. coli were detected quantitatively until 72 h and qualitatively until the end of the trial in winter. In summer detection was possible quantitatively up to 36 h and qualitatively until 72 h. For surface litter samples a qualitative detection of ESBL-producing E. coli was possible in all samples taken in both trials. In the deep samples a significant decrease in the bacterial counts of over 2 Log10 was observed for total E. coli in the winter and for total E. coli and enterococci in the summer. Genetic differences of the isolates analyzed by WGS did not correlate with survival advantage. In conclusion, short-term storage of chicken litter stacked in heaps is a useful tool for the reduction of bacterial counts including ESBL-producing E. coli. However, incomplete inactivation was observed at the surface of the heap and at low ambient temperatures. Therefore, an extension of the storage period in winter as well as turning of the heap to provide aerobic composting conditions should be considered if working and storage capacities are available on the farms.
机译:将含有扩展光谱β-内酰胺酶(ESBL)的肉鸡凋落物 - 耕地上发放大肠杆菌(大肠杆菌)对耕地产生了通过与受污染的土壤或蔬菜接触地殖民的潜在风险。因此,在垃圾土地应用之前,这些细菌的灭活是至关重要的。我们进行了2个短期垃圾储存试验(分别在夏季和冬季),每个涵盖5 d的时间跨度探讨该方法在鸡窝中灭活ESBL的E. Coli的灭活的有效性。表面和深垃圾样本从堆叠的ESBL阳性鸡垃圾垃圾堆叠中取出,以在开始和每日的近3d实验中以近三次采样间隔堆叠。分析样品,定量,定性地分析ESBL的大肠杆菌,总大肠杆菌和肠球菌。通过全基因组测序(WGS)进一步表征了选定的分离物。在堆ESBL的深度中,定量地检测到大肠杆菌直至72小时,定性直到冬季试验结束。在夏季检测中,可以定量高达36小时,并且定性直到72小时。对于表面凋落物样品,在两种试验中采用的所有样品中,可以进行ESBL生产大肠杆菌的定性检测。在深度样品中,冬季冬季总体大肠杆菌总共大肠杆菌和肠球菌总共大肠杆菌,观察到超过2个log10的细菌计数的显着降低。由WG分析的分离物的遗传差异与生存优势不相关。总之,堆积在堆中的鸡窝短期储存是减少包括ESBL制造大肠杆菌的细菌计数的有用工具。然而,在堆表面和低环境温度下观察到不完全灭活。因此,如果在农场上使用工作和存储容量,则应考虑冬季储存周期的延长以及堆的转动以提供有氧堆肥条件。

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