Department of Life Sciences, Imperial College London, London, UK.
Sci Rep. 2024 Aug 28;14(1):19993. doi: 10.1038/s41598-024-68730-y.
The global food security crisis is partly caused by significant crop losses due to pests and pathogens, leading to economic burdens. Phytophthora palmivora, an oomycete pathogen, affects many plantation crops and costs over USD 1 billion each year. Unfortunately, there is currently no prevention plan in place, highlighting the urgent need for an effective solution. P. palmivora produces motile zoospores that respond to weak electric fields. Here, we show that external electric fields can be used to reduce root infection in two plant species. We developed two original essays to study the effects of weak electric fields on the interaction between P. palmivora's zoospores and roots of Arabidopsis thaliana and Medicago truncatula. In the first configuration, a global artificial electric field is set up to induce ionic currents engulfing the plant roots while, in the second configuration, ionic currents are induced only locally and at a distance from the roots. In both cases, we found that weak ionic currents (250-550 μA) are sufficient to reduce zoospore attachment to Arabidopsis and Medicago roots, without affecting plant health. Moreover, we show that the same configurations decrease P. palmivora mycelial growth in Medicago roots after 24 h. We conclude that ionic currents can reduce more than one stage of P. palmivora root infection in hydroponics. Overall, our findings suggest that weak external electric fields can be used as a sustainable strategy for preventing P. palmivora infection, providing innovative prospects for agricultural crop protection.
全球粮食安全危机部分是由于害虫和病原体导致的大量作物损失造成的,从而带来了经济负担。疫霉菌(Phytophthora palmivora)是一种卵菌病原体,影响着许多种植园作物,每年造成的损失超过 10 亿美元。不幸的是,目前没有预防计划,这突显了迫切需要有效的解决方案。疫霉菌产生游动的游动孢子,对弱电场做出反应。在这里,我们展示了外部电场可用于减少两种植物物种的根部感染。我们开发了两篇原始论文来研究弱电场对疫霉菌游动孢子与拟南芥和紫花苜蓿根部相互作用的影响。在第一种配置中,设置了一个全局人工电场,以诱导包含植物根部的离子电流,而在第二种配置中,仅在远离根部的局部位置诱导离子电流。在这两种情况下,我们发现弱离子电流(250-550 μA)足以减少游动孢子附着在拟南芥和紫花苜蓿根部上,而不会影响植物健康。此外,我们表明,相同的配置在 24 小时后会降低疫霉菌在紫花苜蓿根部的菌丝生长。我们得出结论,离子电流可以减少水培中疫霉菌根部感染的多个阶段。总的来说,我们的研究结果表明,弱外部电场可作为预防疫霉菌感染的可持续策略,为农业作物保护提供了创新前景。