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AMF-induced biocontrol against plant parasitic nematodes in Musa sp.: a systemic effect

机译:AMF诱导的针对Musa sp。中植物寄生线虫的生物防治:全身性作用

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摘要

Although mycorrhizal colonization provides a bioprotectional effect against a broad range of soil-borne pathogens, including plant parasitic nematodes, the commercial use of arbuscular mycorrhizal fungi (AMF) as biocontrol agents is still in its infancy. One of the main reasons is the poor understanding of the modes of action. Most AMF mode of action studies focused on AMF-bacterial/fungal pathogens. Only few studies so far examined AMF-plant parasitic nematode interactions. Therefore, the aim of the study was to determine whether the AMF Glomus intraradices was able to incite systemic resistance in banana plants towards Radopholus similis and Pratylenchus coffeae, two plant parasitic nematodes using a split-root compartmental set-up. The AMF reduced both nematode species by more than 50%, even when the AMF and the plant parasitic nematodes were spatially separated. The results obtained demonstrate for the first time that AMF have the ability to induce systemic resistance against plant parasitic nematodes in a root system.
机译:尽管菌根定殖对包括植物寄生线虫在内的多种土壤传播的病原体具有生物保护作用,但作为生物防治剂的丛枝菌根真菌(AMF)的商业用途仍处于起步阶段。主要原因之一是对行动方式的了解不足。大多数AMF作用模式研究集中于AMF细菌/真菌病原体。到目前为止,只有很少的研究检查了AMF植物寄生线虫的相互作用。因此,本研究的目的是确定AMF Glomus内辐射体是否能够激发香蕉植物对Radopholus similis和Pratylenchus coffeae(两种植物寄生线虫,使用分根隔室结构)的系统抗性。即使当AMF和植物寄生线虫在空间上分开时,AMF仍将两种线虫种类减少了50%以上。获得的结果首次证明AMF具有诱导根系中植物寄生线虫的系统抗性的能力。

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