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培养和筛选植物寄生线虫 Ditylenchus dipsaci。

Culturing and Screening the Plant Parasitic Nematode Ditylenchus dipsaci.

机构信息

Department of Molecular Genetics, University of Toronto; Department of Biochemistry, University of Toronto; The Donnelly Centre for Cellular and Biomolecular Research, University of Toronto.

Department of Molecular Genetics, University of Toronto; The Donnelly Centre for Cellular and Biomolecular Research, University of Toronto.

出版信息

J Vis Exp. 2022 Jan 31(179). doi: 10.3791/63438.

Abstract

Plant-parasitic nematodes (PPNs) destroy over 12% of global food crops every year, which equates to roughly 157 billion dollars (USD) lost annually. With a growing global population and limited arable land, controlling PPN infestation is critical for food production. Compounding the challenge of maximizing crop yields are the mounting restrictions on effective pesticides because of a lack of nematode selectivity. Hence, developing new and safe chemical nematicides is vital to food security. In this protocol, the culture and collection of the PPN species Ditylenchus dipsaci are demonstrated. D. dipsaci is both economically damaging and relatively resistant to most modern nematicides. The current work also explains how to use these nematodes in screens for novel small molecule nematicides and reports on data collection and analysis methodologies. The demonstrated pipeline affords a throughput of thousands of compounds per week and can be easily adapted for use with other PPN species such as Pratylenchus penetrans. The techniques described herein can be used to discover new nematicides, which may, in turn, be further developed into highly selective commercial products that safely combat PPNs to help feed an increasingly hungry world.

摘要

植物寄生线虫每年破坏超过全球 12%的粮食作物,相当于每年损失约 1570 亿美元。随着全球人口的增长和可耕地的有限,控制植物寄生线虫的侵染对于粮食生产至关重要。由于缺乏线虫选择性,有效杀虫剂的使用受到越来越多的限制,这使得最大限度地提高作物产量的挑战更加复杂。因此,开发新的安全的化学杀线虫剂对于粮食安全至关重要。本方案展示了植物寄生线虫物种 Ditylenchus dipsaci 的培养和收集。D. dipsaci 不仅具有经济破坏性,而且对大多数现代杀线虫剂相对具有抗性。目前的工作还解释了如何在新型小分子杀线虫剂的筛选中使用这些线虫,并报告了数据收集和分析方法学。所展示的方案每周可处理数千种化合物,并且可以轻松适应于其他植物寄生线虫物种,如 Pratylenchus penetrans。本文所述的技术可用于发现新的杀线虫剂,这些杀线虫剂反过来又可以进一步开发成高度选择性的商业产品,安全地防治植物寄生线虫,以帮助养活日益饥饿的世界。

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