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首页> 外文期刊>International Journal of Food Microbiology >Assessment of root uptake and systemic vine-transport of Salmonella enterica sv. Typhimurium by melon (Cucumis melo) during field production.
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Assessment of root uptake and systemic vine-transport of Salmonella enterica sv. Typhimurium by melon (Cucumis melo) during field production.

机译:评估肠沙门氏菌(Salmonella enterica sv)的根吸收和全身性葡萄运输。在田间生产中用甜瓜( Cucumis melo )引起鼠伤寒。

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摘要

Among melons, cantaloupes are most frequently implicated in outbreaks and surveillance-based recalls due to Salmonella enterica. There is limited but compelling evidence that associates irrigation water quality as a significant risk of preharvest contamination of melons. However, the potential for root uptake from water and soil and subsequent systemic transport of Salmonella into melon fruit is uncharacterized. The aim of this work was to determine whether root uptake of S. enterica results in systemic transport to fruit at high doses of applied inoculum through sub-surface drip and furrow irrigation during field production of melons. Cantaloupe and honeydew were grown under field conditions, in a silt clay loam soil using standard agronomic practices for California. An attenuated S. enterica sv. Typhimurium strain was applied during furrow irrigation and, in separate plots, buried drip-emitter lines delivered the inoculum directly into the established root zone. Contamination of the water resulted in soil contamination within furrows however Salmonella was not detected on top of the beds or around melon roots of furrow-irrigated rows demonstrating absence of detectable lateral transfer across the soil profile. In contrast, positive detection of the applied isolate occurred in soil and the rhizosphere in drip injected plots; survival of Salmonella was at least 41 days. Despite high populations of the applied bacteria in the rhizosphere, after surface disinfection, internalized Salmonella was not detected in mature melon fruit (n = 485). Contamination of the applied Salmonella was detected on the rind surface of melons if fruit developed in contact with soil on the sides of the inoculated furrows. Following an unusual and heavy rain event during fruit maturation, melons collected from the central area of the beds, were shown to harbor the furrow-applied Salmonella. Delivery of Salmonella directly into the peduncle, after minor puncture wounding, resulted in detection of applied Salmonella in the sub-rind tissue below the fruit abscission zone. Results indicate that Salmonella internalization from soil and vascular systemic transport to fruit is unlikely to occur from irrigation water in CA production regions, even if substantially above normal presumptive levels of contamination. Although contaminated irrigation water and subsequently soil in contact with fruit remains a concern for contamination of the external rind, results suggest an acceptable microbial indicator threshold and critical limit for the presence of Salmonella in applied water may be possible by defining appropriate microbiological standards for melon irrigation in California and regions with similar climate, soil texture, and crop management practices
机译:在哈密瓜中,由于沙门氏菌,哈密瓜最常与暴发和基于监视的召回有关。仅有有限但令人信服的证据表明灌溉水质量与瓜子收获前污染的重大风险有关。然而,从水和土壤中吸收根以及随后将沙门氏菌系统转移到甜瓜果实中的潜在潜力尚未被阐明。这项工作的目的是确定是否摄取 S 的根。在瓜田生产期间, enterica 导致通过地下滴灌和犁沟灌溉以大剂量施用的接种物系统地运输至果实。哈密​​瓜和哈蜜在田间条件下使用加利福尼亚州的标准农艺方法在淤泥质壤土中生长。衰减的S。 enterica sv。在沟灌中施用鼠伤寒菌株,在单独的田地中,埋滴灌线将接种物直接递送到确定的根区。水的污染导致沟内土壤受到污染,但是在沟灌行的床顶或瓜根周围未检测到沙门氏菌,这表明在整个土壤剖面上均未检测到横向迁移。相比之下,滴灌地块的土壤和根际中对应用的分离物进行了阳性检测。沙门氏菌的生存期至少为41天。尽管在根际中有大量应用的细菌,但表面消毒后,在成熟的瓜果( n = 485)中未检测到内在化的沙门氏菌。如果果实在接种的犁沟侧面与土壤接触而发育,则在瓜皮的表面上检测到施用的沙门氏菌的污染。在水果成熟过程中发生了一次异常大雨之后,从床中央区域收集的甜瓜被证明带有犁沟施用的沙门氏菌。轻微刺伤后,将沙门氏菌直接递送至花序梗,导致在水果脱落区下方的亚皮组织中检测到已施用的沙门氏菌。结果表明,即使在CA生产区的灌溉水中,沙门氏菌从土壤和血管系统向水果的内部运输的内在化也不大可能发生,即使其污染水平大大高于正常假定水平。尽管受污染的灌溉水以及随后与水果接触的土壤仍然是外皮污染的问题,但结果表明,可以通过以下方法获得可接受的微生物指标阈值和施肥水中沙门氏菌存在的临界限值:为加利福尼亚州以及气候,土壤质地和作物管理方式相似的地区的瓜果灌溉制定适当的微生物标准

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