保障新西兰持续植物生物安全的新病毒诊断方法。
New Virus Diagnostic Approaches to Ensuring the Ongoing Plant Biosecurity of Aotearoa New Zealand.
机构信息
Plant Health and Environment Laboratory, Ministry for Primary Industries, P.O. Box 2095, Auckland 1140, New Zealand.
Science and Surveillance Group, Post Entry Quarantine, Department of Agriculture, Fisheries and Forestry, Mickleham, VIC 3064, Australia.
出版信息
Viruses. 2023 Feb 1;15(2):418. doi: 10.3390/v15020418.
To protect New Zealand's unique ecosystems and primary industries, imported plant materials must be constantly monitored at the border for high-threat pathogens. Techniques adopted for this purpose must be robust, accurate, rapid, and sufficiently agile to respond to new and emerging threats. Polymerase chain reaction (PCR), especially real-time PCR, remains an essential diagnostic tool but it is now being complemented by high-throughput sequencing using both Oxford Nanopore and Illumina technologies, allowing unbiased screening of whole populations. The demand for and value of Point-of-Use (PoU) technologies, which allow for in situ screening, are also increasing. Isothermal PoU molecular diagnostics based on recombinase polymerase amplification (RPA) and loop-mediated amplification (LAMP) do not require expensive equipment and can reach PCR-comparable levels of sensitivity. Recent advances in PoU technologies offer opportunities for increased specificity, accuracy, and sensitivities which makes them suitable for wider utilization by frontline or border staff. National and international activities and initiatives are adopted to improve both the plant virus biosecurity infrastructure and the integration, development, and harmonization of new virus diagnostic technologies.
为了保护新西兰独特的生态系统和初级产业,必须在边境对进口的植物材料进行持续监测,以防范高威胁病原体。为此采用的技术必须强大、准确、快速,并具有足够的灵活性,以应对新出现和不断变化的威胁。聚合酶链反应(PCR),特别是实时 PCR,仍然是一种必不可少的诊断工具,但现在它正在被使用 Oxford Nanopore 和 Illumina 技术的高通量测序所补充,从而可以对整个群体进行无偏筛选。现场即时检测(PoU)技术的需求和价值也在增加,这种技术允许在现场进行筛选。基于重组酶聚合酶扩增(RPA)和环介导等温扩增(LAMP)的等温 PoU 分子诊断不需要昂贵的设备,并且可以达到与 PCR 相当的灵敏度。最近 PoU 技术的进步为提高特异性、准确性和灵敏度提供了机会,这使得它们更适合前线或边境工作人员的更广泛应用。国家和国际的活动和倡议被采用,以提高植物病毒生物安全基础设施的水平,并整合、开发和协调新的病毒诊断技术。
相似文献
Virus Res. 2014-6-24
Viruses. 2021-7-22
World J Gastroenterol. 2014-10-28
Animals (Basel). 2021-7-20
Med Hypotheses. 2020-4-25
引用本文的文献
本文引用的文献
Talanta. 2022-7-1
Monatsh Chem. 2022
ACS Infect Dis. 2022-4-8
Biology (Basel). 2022-2-9