Department of Plant Pathology, Nanjing Agricultural University, Nanjing, China.
Engineering Center of Bioresource Pesticide in Jiangsu Province, Nanjing, China.
Plant Cell Environ. 2024 Jan;47(1):337-353. doi: 10.1111/pce.14729. Epub 2023 Sep 29.
Phytoalexins play a crucial role in plant immunity. However, the mechanism of how phytoalexin is primed by beneficial microorganisms against broad-spectrum pathogens remains elusive. This study showed that Bacillus cereus AR156 could trigger ISR against broad-spectrum disease. RNA-sequencing and camalexin content assays showed that AR156-triggered ISR can prime the accumulation of camalexin synthesis and secretion-related genes. Moreover, it was found that AR156-triggered ISR elevates camalexin accumulation by increasing the expression of camalexin synthesis genes upon pathogen infection. We observed that the priming of camalexin accumulation by AR156 was abolished in cyp71a13 and pad3 mutants. Further investigations reveal that in the wrky33 mutant, the ability of AR156 to prime camalexin accumulation is abolished, and the mediated ISR against the three pathogens is significantly compromised. Furthermore, PEN3 and PDR12, acting as camalexin transporters, participate in AR156-induced ISR against broad-spectrum pathogens differently. In addition, salicylic acid and JA/ET signalling pathways participate in AR156-primed camalexin synthesis to resist pathogens in different forms depending on the pathogen. In summary, B. cereus AR156 triggers ISR against Botrytis cinerea, Pst DC3000 and Phytophthora capsici by priming camalexin synthesis. Our study provides deeper insights into the significant role of camalexin for AR156-induced ISR against broad-spectrum pathogens.
植物抗毒素在植物免疫中起着至关重要的作用。然而,有益微生物如何通过植物抗毒素来对抗广谱病原体的机制仍不清楚。本研究表明,蜡样芽胞杆菌 AR156 可以触发针对广谱疾病的 ISR。RNA-seq 和 camalexin 含量测定表明,AR156 触发的 ISR 可以触发 camalexin 合成和分泌相关基因的积累。此外,研究发现 AR156 触发的 ISR 通过增加病原菌感染时 camalexin 合成基因的表达来提高 camalexin 的积累。我们观察到,AR156 引发的 camalexin 积累的引发作用在 cyp71a13 和 pad3 突变体中被消除。进一步的研究表明,在 wrky33 突变体中,AR156 引发 camalexin 积累的能力被消除,并且对三种病原体的介导的 ISR 显著受损。此外,作为 camalexin 转运蛋白的 PEN3 和 PDR12,在 AR156 诱导的广谱病原体抗性中发挥不同的作用。此外,水杨酸和 JA/ET 信号通路参与了 AR156 引发的 camalexin 合成,以抵抗不同形式的病原体。总之,蜡样芽胞杆菌 AR156 通过引发 camalexin 合成来触发对灰葡萄孢、Pst DC3000 和辣椒疫霉的 ISR。我们的研究为 AR156 诱导的广谱病原体抗性中 camalexin 的重要作用提供了更深入的认识。