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在添加了经过热处理的家禽颗粒的土壤中,存活时间长于未经改良的土壤中的细菌,并且更容易转移到菠菜上并持续存在。

in Soils Amended with Heat-Treated Poultry Pellets Survived Longer than Bacteria in Unamended Soils and More Readily Transferred to and Persisted on Spinach.

机构信息

Department of Microbiological Sciences, North Dakota State University, Fargo, North Dakota, USA.

U.S. Department of Agriculture, Agricultural Research Service, Northeast Area, Environmental Microbial Food Safety Laboratory, Beltsville Agricultural Research Center, Beltsville, Maryland, USA.

出版信息

Appl Environ Microbiol. 2019 May 2;85(10). doi: 10.1128/AEM.00334-19. Print 2019 May 15.

Abstract

Untreated biological soil amendments of animal origin (BSAAO) are commonly used as biological fertilizers but can harbor foodborne pathogens like , leading to potential transfer from soils to fruits and vegetables intended for human consumption. Heat-treated poultry pellets (HTPP) can provide produce growers with a slow-release fertilizer with a minimized risk of pathogen contamination. Little is known about the impact of HTPP-amended soil on the survival of The contributions of RpoS and formation of viable but nonculturable cells to survival in soils are also inadequately understood. We quantified the survival of subsp. serovar Newport wild-type (WT) and -deficient (Δ mutant) strains in HTPP-amended and unamended soil with or without spinach plants over 91 days using culture and quantitative PCR methods with propidium monoazide (PMA-qPCR). Simulated "splash" transfer of Newport from soil to spinach was evaluated at 35 and 63 days postinoculation (dpi). The Newport WT and Δ mutant reached the limit of detection, 1.0 log CFU/g (dry weight), in unamended soil after 35 days, whereas 2 to 4 log CFU/g (dry weight) was observed for both WT and Δ mutant strains at 91 dpi in HTPP-amended soil. Newport levels in soils determined by PMA-qPCR and plate count methods were similar ( > 0.05). HTPP-amended soils supported higher levels of Newport transfer to and survival on spinach leaves for longer periods of time than did unamended soils ( < 0.05). Newport introduced to HTPP-amended soils survived for longer periods and was more likely to transfer to and persist on spinach plants than was Newport introduced to unamended soils. Heat-treated poultry pellets (HTPP) often are used by fruit and vegetable growers as a slow-release fertilizer. However, contamination of soil on farms may occur through contaminated irrigation water or scat from wild animals. Here, we show that the presence of HTPP in soil led to increased Newport survival in soil and to greater likelihood of its transfer to and survival on spinach plants. There were no significant differences in survival durations of WT and Δ mutant isolates of Newport. The statistically similar populations recovered by plate count and estimated by PMA-qPCR for both strains in the amended and unamended soils in this study indicate that all viable populations of Newport in soils were culturable.

摘要

未经处理的动物源生物土壤改良剂(BSAAO)通常用作生物肥料,但可能携带食源性病原体,如 ,导致其从土壤转移到供人类食用的水果和蔬菜。热处理禽粪(HTPP)可为种植者提供一种缓释肥料,最大限度地降低了病原体污染的风险。人们对 HTPP 改良土壤对 的生存的影响知之甚少。RpoS 的形成和活但非可培养细胞的形成对 在土壤中的生存的贡献也了解不足。我们使用培养和定量 PCR 方法(带有吖啶橙的 PCR[PMA-qPCR]),在有或没有菠菜植物的情况下,在 91 天内定量检测了 HTPP 改良和未改良土壤中 subsp. 纽波特野生型(WT)和 -缺陷(Δ 突变体)菌株的存活情况。在接种后 35 和 63 天评估了从土壤到菠菜的“飞溅”转移的 纽波特。未改良土壤中,35 天后,WT 和 Δ 突变体的 纽波特达到检测限,1.0 log CFU/g(干重),而在 HTPP 改良土壤中,WT 和 Δ 突变体的观察值为 2 到 4 log CFU/g(干重)91 天。PMA-qPCR 和平板计数方法确定的土壤中 纽波特水平相似(>0.05)。与未改良土壤相比,HTPP 改良土壤支持更长时间的 纽波特向菠菜叶片转移和存活(<0.05)。与引入未改良土壤的 纽波特相比,引入 HTPP 改良土壤的 纽波特存活时间更长,更有可能转移到菠菜植物上并在其上存活。热处理禽粪(HTPP)通常被水果和蔬菜种植者用作缓释肥料。然而,农场土壤的污染可能是通过受污染的灌溉水或野生动物的粪便造成的。在这里,我们表明,土壤中 HTPP 的存在导致 纽波特在土壤中的存活增加,并增加了其向菠菜植物转移和存活的可能性。WT 和 Δ 突变体分离株的存活时间没有显著差异。在这项研究中,在改良和未改良土壤中,通过平板计数恢复的统计上相似的种群和通过 PMA-qPCR 估计的种群均表明,土壤中所有存活的 纽波特均具有可培养性。

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