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Detection of Human Pathogens on Plants

机译:检测植物对人类病原体

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Unlike most plant pathogens, which typically multiply to large numbers after colonizing tissues of susceptible plants, human pathogens that associate with plants often fail to thrive in this environment and usually occur in low numbers. Nevertheless,their presence on plants could have significant public health and economic consequences. In recent years, national and international disease outbreaks associated with human pathogens on plant products, such as lettuce, spinach, green onions, seeds, sprouts, peppers, spices, tomatoes, and cantaloupes, have occurred frequently. Current standardized assays for the detection of major human pathogens on plants rely largely on microbiological, biochemical, and immunological analyses that are laborious and time consuming. Newer molecular-based methods, such as PCR, loop mediated isothermal amplification, and metagenomics approaches offer enhanced speed and sensitivity, and some of these have already been incorporated into the standard assays. However, molecular detection methods do not produce a live microbial isolate, which may be needed for government regulatory actions and future scientific studies. New enrichment strategies (especially the use of chromogenic selective media) have made culture detection more sensitive and accurate. Effective detection and diagnostic methods of the future will continue to differ in features depending upon the intended application and operators.
机译:与大多数植物病原体不同,该病原体通常在敏感植物的组织殖民化组织后,与植物缔合的人病原体经常在这种环境中持续并且通常以低数量发生。尽管如此,他们对植物的存在可能具有重要的公共卫生和经济后果。近年来,与植物产品上的人类病原体相关的国家和国际疾病爆发,如莴苣,菠菜,葱,种子,豆芽,辣椒,香料,西红柿和哈密瓜经常发生。目前的标准化测定用于检测植物的主要人类病原体依赖于微生物,生化和免疫分析,这是艰苦的,耗时的饮食。基于较新的分子方法,例如PCR,环介导的等温扩增和偏见方法提供增强的速度和敏感性,其中一些已经纳入标准测定中。然而,分子检测方法不会产生现场微生物隔离物,可能需要政府监管行动和未来的科学研究。新的浓缩策略(特别是使用色原性选择性介质)使培养检测更敏感和准确。根据预期的应用程序和运营商,未来的有效检测和诊断方法将继续在功能中不同。

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