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Listeria monocytogenes Prevalence Varies More within Fields Than between Fields or over Time on Conventionally Farmed New York Produce Fields

机译:Histeria单核细胞质患病率在田野之间或随着常规养殖的纽约生产领域的田间而异

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摘要

Past studies have shown that the on-farm distribution of Listeria monocytogenes is affected by environmental factors (e.g., weather). However, most studies were conducted at large scales (e.g., across farms), whereas few studies examined drivers of L. monocytogenes prevalence at smaller scales (e.g., within a single field). This study was performed to address this knowledge gap by (i) tracking L. monocytogenes distribution in two fields on one farm over a growing season and (ⅱ) identifying factors associated with L. monocytogenes isolation from drag swab, soil, and agricultural water samples. Overall, L. monocytogenes was detected in 78% (21 of 27), 19% (7 of 36), and 8% (37 of 486) of water, drag swab, and soil samples, respectively. All isolates were characterized by pulsed-field gel electrophoresis. Of the 43 types identified, 14 were isolated on multiple sampling visits and/or from multiple sample types, indicating persistence in or repeated introduction into the farm environment during the study. Our findings also suggest that L. monocytogenes prevalence, even at the small spatial scale studied here, (i) was not uniform and (ⅱ) varied more within fields than between fields or over time. This is illustrated by plot (in-field variation), field (between-field variation), and sampling visit (time), accounting for 18, 2, and 3% of variance in odds of isolating L. monocytogenes, respectively. Moreover, according to random forest analysis, water-related factors were among the top-ranked factors associated with L. monocytogenes isolation from all sample types. For example, the likelihood of isolating L. monocytogenes from drag and soil samples increased monotonically as rainfall increased. Overall, findings from this single-farm study suggests that mitigation strategies for L. monocytogenes in produce fields should focus on water-associated risk factors (e.g., rain and distance to water) and be tailored to specific high-risk in-field areas.
机译:过去的研究表明,李斯特菌单核细胞增生的农场分布受环境因素的影响(例如,天气)。然而,大多数研究是在大鳞片(例如,农场)进行的,而少数研究L.单核细胞素的司机在较小的尺度下患病率(例如,在单一领域内)。本研究进行了通过(i)在一个生长季节的一个农场上的两个领域跟踪L.单核细胞化分布的这种知识差距和(Ⅱ)鉴定与L.单核细胞生成的因素免受阻力拭子,土壤和农业水样中的判断。总体而言,在78%(21个),19%(76),19%(7.)和8%(486个中)的水,拖动拭子和土壤样品中,检测单核细胞增生。所有分离物的特征在于脉冲场凝胶电泳。在鉴定的43种类型中,14次被隔离在多个采样访问和/或来自多种样品类型,表明在研究期间持续或重复引入农场环境。我们的研究结果还表明,即使在这里研究的小空间尺度下,(i)也不均匀,并且(Ⅱ)在田间或随时间之间或随着时间的推移时,(i)的小空间尺度普遍存在。这通过曲线(现场变化),场(场)(场)和场变异之间)和取样访问(时间),分别占分离L.单核细胞增生的几种差异的18,2和3%的差异。此外,根据随机森林分析,水有关因素是与L.单核细胞生与所有样品分离相关的排名因子中。例如,从阻力和土壤样品中分离L.单核细胞增生的可能性单调增加,因为降雨量增加。总体而言,来自该单一农场研究的结果表明,生产领域的L.单核细胞增生的缓解策略应关注水相关的危险因素(例如,雨水和水距离),并根据特定的高风险局部地区定制。

著录项

  • 来源
    《Journal of food protection》 |2020年第11期|1958-1966|共9页
  • 作者单位

    Department of Food Science Cornell University 354 Stocking Hall Ithaca New York 14853 USA;

    Department of Food Science Cornell University 354 Stocking Hall Ithaca New York 14853 USA Department of Food Science and Technology Eastern Shore Agriculture Research and Extension Center Virginia Polytechnic Institute and State University 33446 Research Drive Painter Virginia 23420 USA;

    Department of Food Science Cornell University 354 Stocking Hall Ithaca New York 14853 USA;

    Department of Food Science Cornell University 354 Stocking Hall Ithaca New York 14853 USA;

    Department of Food Science Cornell University 354 Stocking Hall Ithaca New York 14853 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Listeria; Precipitation; Prevalence; Produce; Pulsed-field gel electrophoresis; Spatiotemporal;

    机译:listeria;沉淀;患病率;生产;脉冲场凝胶电泳;时尚;

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