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树实验室:用于撒哈拉以南非洲地区植物病毒和害虫早期检测的便携式基因组学。

Tree Lab: Portable genomics for Early Detection of Plant Viruses and Pests in Sub-Saharan Africa.

机构信息

School of Molecular Sciences and Australian Research Council Centre of Excellence in Plant Energy Biology, University of Western Australia, Crawley, Perth, WA 6009, Australia.

Mikocheni Agricultural Research Institute (MARI), Dar es Salaam P.O. Box 6226, Tanzania.

出版信息

Genes (Basel). 2019 Aug 21;10(9):632. doi: 10.3390/genes10090632.

Abstract

In this case study we successfully teamed the PDQeX DNA purification technology developed by MicroGEM, New Zealand, with the MinION and MinIT mobile sequencing devices developed by Oxford Nanopore Technologies to produce an effective point-of-need field diagnostic system. The PDQeX extracts DNA using a cocktail of thermophilic proteinases and cell wall-degrading enzymes, thermo-responsive extractor cartridges and a temperature control unit. This closed system delivers purified DNA with no cross-contamination. The MinIT is a newly released data processing unit that converts MinION raw signal output into nucleotide base called data locally in real-time, removing the need for high-specification computers and large file transfers from the field. All three devices are battery powered with an exceptionally small footprint that facilitates transport and setup. To evaluate and validate capability of the system for unbiased pathogen identification by real-time sequencing in a farmer's field setting, we analysed samples collected from cassava plants grown by subsistence farmers in three sub-Sahara African countries (Tanzania, Uganda and Kenya). A range of viral pathogens, all with similar symptoms, greatly reduce yield or destroy cassava crops. Eight hundred (800) million people worldwide depend on cassava for food and yearly income, and viral diseases are a significant constraint to its production. Early pathogen detection at a molecular level has great potential to rescue crops within a single growing season by providing results that inform decisions on disease management, use of appropriate virus-resistant or replacement planting. This case study presented conditions of working in-field with limited or no access to mains power, laboratory infrastructure, Internet connectivity and highly variable ambient temperature. An additional challenge is that, generally, plant material contains inhibitors of downstream molecular processes making effective DNA purification critical. We successfully undertook real-time on-farm genome sequencing of samples collected from cassava plants on three farms, one in each country. Cassava mosaic begomoviruses were detected by sequencing leaf, stem, tuber and insect samples. The entire process, from arrival on farm to diagnosis, including sample collection, processing and provisional sequencing results was complete in under 3 h. The need for accurate, rapid and on-site diagnosis grows as globalized human activity accelerates. This technical breakthrough has applications that are relevant to human and animal health, environmental management and conservation.

摘要

在本案例研究中,我们成功地将新西兰 MicroGEM 公司开发的 PDQeX DNA 纯化技术与 Oxford Nanopore Technologies 公司开发的 MinION 和 MinIT 移动测序设备相结合,开发了一种有效的现场即时诊断系统。PDQeX 使用嗜热蛋白酶和细胞壁降解酶混合物、热响应提取盒和温度控制单元提取 DNA。该封闭系统提供无交叉污染的纯化 DNA。MinIT 是一种新发布的数据处理单元,它可在本地实时将 MinION 原始信号输出转换为核苷酸碱基,从而无需在现场使用高规格计算机和大量文件传输。所有三个设备均由电池供电,占地面积极小,便于运输和设置。为了评估和验证该系统在撒哈拉以南非洲三个国家(坦桑尼亚、乌干达和肯尼亚)的农民田间环境中通过实时测序进行无偏病原体识别的能力,我们分析了从自给农民种植的木薯植物中采集的样本。一系列具有相似症状的病毒病原体极大地降低了木薯的产量或摧毁了木薯作物。全世界有 8 亿人依赖木薯作为食物和年收入,病毒病是其生产的一个重大制约因素。在分子水平上进行早期病原体检测具有很大的潜力,可以通过提供有关疾病管理、使用适当的抗病毒或替代种植的决策信息,在单个生长季节内挽救作物。本案例研究介绍了在现场工作的条件,这些现场的情况是有限或无法获得市电、实验室基础设施、互联网连接和高度变化的环境温度。另一个挑战是,通常情况下,植物材料中含有下游分子过程的抑制剂,因此有效 DNA 纯化至关重要。我们成功地对来自三个农场的木薯植物样本进行了实时现场基因组测序,每个农场一个。通过对叶片、茎、块茎和昆虫样本进行测序,检测到木薯花叶 begomoviruses。从到达农场到诊断,包括样本采集、处理和临时测序结果,整个过程在 3 小时内完成。随着全球化的人类活动加速,对准确、快速和现场诊断的需求不断增长。这一技术突破在人类和动物健康、环境管理和保护方面具有应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbc5/6769854/47552218d682/genes-10-00632-g001.jpg

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