Gan Qinhua, Wang Xuetao, Wang Yun, Xie Zhenyu, Tian Yang, Lu Yandu
State Key Laboratory of Marine Resource Utilization in South China Sea College of Oceanology Hainan University Haikou Hainan Province 570228 China.
Inspection and Quarantine Technology Center Shandong Entry-Exit Inspection and Quarantine Bureau Qingdao Shandong Province 266002 China.
Adv Sci (Weinh). 2017 Jul 10;4(11):1700127. doi: 10.1002/advs.201700127. eCollection 2017 Nov.
The rapid and sensitive identification of invasive plant pathogens has important applications in biotechnology, plant quarantine, and food security. Current methods are far too time-consuming and need a pre-enrichment period ranging from hours to days. Here, a micro-Raman spectroscopy-based bioassay for culture-free pathogen quarantine inspection at the single cell level within 40 min is presented. The application of this approach can readily and specifically detect plant pathogens pv. and that are closely related pathogenically. Furthermore, the single-bacterium detection was able to discriminate them from a reference Raman spectral library including multiple quarantine-relevant pathogens with broad host ranges and an array of pathogenic variants. To show the usefulness of this assay, pv. and are detected at single-bacterium level in plant tissue lesions without pre-enrichment. The results are confirmed by the plate-counting method and a genetic molecular approach, which display comparable recognition ratios to the Raman spectroscopy-based bioassay. The results represent a critical step toward the use of micro-Raman spectroscopy in rapid and culture-free discrimination of quarantine relevant plant pathogens.
快速、灵敏地鉴定入侵性植物病原体在生物技术、植物检疫和食品安全方面具有重要应用。目前的方法耗时过长,需要数小时至数天的预富集期。在此,我们提出了一种基于显微拉曼光谱的生物测定法,可在40分钟内对单细胞水平的无培养病原体进行检疫检查。这种方法的应用能够轻松、特异性地检测植物病原体pv.以及致病关系密切的病原体。此外,单细菌检测能够将它们与一个参考拉曼光谱库中的病原体区分开来,该光谱库包含多种具有广泛宿主范围的检疫相关病原体以及一系列致病变体。为了证明该测定法的实用性,在未进行预富集的情况下,在植物组织损伤处的单细菌水平检测到了pv.和。结果通过平板计数法和遗传分子方法得到证实,这些方法与基于拉曼光谱的生物测定法具有相当的识别率。这些结果代表了朝着利用显微拉曼光谱快速、无培养地鉴别检疫相关植物病原体迈出的关键一步。