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Biochar-amended potting medium reduces the susceptibility of rice to root-knot nematode infections

机译:生物炭修正的灌封培养基降低了水稻对根结线虫感染的易感性

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摘要

Background: Biochar is a solid coproduct of biomass pyrolysis, and soil amended with biochar has been shown to enhance the productivity of various crops and induce systemic plant resistance to fungal pathogens. The aim of this study was to explore the ability of wood biochar to induce resistance to the root-knot nematode (RKN) Meloidogyne graminicola in rice (Oryza sativa cv. Nipponbare) and examine its histochemical and molecular impact on plant defense mechanisms. Results: A 1.2 % concentration of biochar added to the potting medium of rice was found to be the most effective at reducing nematode development in rice roots, whereas direct toxic effects of biochar exudates on nematode viability, infectivity or development were not observed. The increased plant resistance was associated with biochar-primed H2O2 accumulation as well as with the transcriptional enhancement of genes involved in the ethylene (ET) signaling pathway. The increased susceptibility of the Ein2b-RNAi line, which is deficient in ET signaling, further confirmed that biochar-induced priming acts at least partly through ET signaling. Conclusion: These results suggest that biochar amendments protect rice plants challenged by nematodes. This priming effect partially depends on the ET signaling pathway and enhanced H2O2 accumulation.
机译:背景:生物炭是生物质热解的固体副产物,用生物炭改良的土壤已显示出可以提高各种农作物的生产力并诱导植物对真菌病原体的抗性。这项研究的目的是探索木材生物炭诱导对水稻(Oryza sativa cv。Nipponbare)根结线虫(RKN)根结线虫(Meloidogyne graminicola)的抗性的能力,并研究其对植物防御机制的组织化学和分子影响。结果:发现添加到水稻盆栽培养基中的生物炭浓度为1.2%,对于减少稻根中线虫的生长最有效,而未观察到生物炭渗出物对线虫生存力,传染性或发育的直接毒性作用。植物抗性的提高与生物炭引发的H2O2积累以及与乙烯(ET)信号通路有关的基因的转录增强有关。 Ein2b-RNAi系在ET信号传导方面的敏感性增强,进一步证实生物炭诱导的启动至少部分通过ET信号传导起作用。结论:这些结果表明,生物炭改良剂可以保护受到线虫攻击的水稻植株。这种引发作用部分取决于ET信号通路和增强的H2O2积累。

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