State Key Laboratory for Conservation and Utilization of Bio-resources in Yunnan, Yunnan Agricultural University, Kunming, China.
Guizhou University of Traditional Chinese Medicine, Guiyang, China.
J Cell Physiol. 2024 Oct;239(10):e30991. doi: 10.1002/jcp.30991. Epub 2023 Mar 22.
Bacillus subtilis XF-1 is a well-investigated biocontrol agent against the biotrophic Plasmodiophora brassicae Woron., the causal agent of clubroot disease of cruciferous crops. The present study demonstrates that XF-1 could efficiently control clubroot disease via leaf spraying and provides an understanding of the biocontrol mechanisms. High-performance thin-layer chromatography (HTPLC) analysis indicated the presence of fengycin-type cyclopeptides in the supernatant. A ppsB deletion mutant of XF-1 resulted in no fengycin production, significantly reduced the lysis rate of testing spores in vitro and the primary infection rate of root hair in vivo, and decreased the protection value against clubroot disease under the greenhouse conditions. Confocal laser scanning microscopy proved that fengycin was not required for leaf internalization and root colonization. Moreover, the expression level of the ppsB gene in XF-1 was regulated by its cell density in root during interaction with P. brassicae. In addition, the ΔppsB mutant of XF-1 could not efficiently control disease because it led to a lower activation level of the jasmonic acid and salicylic acid signaling pathways in roots, which are necessary for the plant defense reaction upon pathogen invasion. Altogether, the present study provides a new understanding of specific cues in the interaction between B. subtilis and P. brassicae as well as insights into the application of B. subtilis in agriculture.
枯草芽孢杆菌 XF-1 是一种研究充分的生物防治剂,可防治十字花科作物根肿病的生物营养型病原体——菜豆根肿菌。本研究表明,XF-1 可通过叶片喷雾有效防治根肿病,并深入了解其生物防治机制。高效薄层层析(HTPLC)分析表明,上清液中存在丰原素型环肽。XF-1 的 ppsB 缺失突变体导致丰原素无法产生,显著降低了体外测试孢子的裂解率和体内根毛的初次侵染率,并降低了温室条件下对根肿病的保护值。共聚焦激光扫描显微镜证明丰原素对于叶片内化和根定植不是必需的。此外,ppsB 基因在 XF-1 中的表达水平受到与 P. brassicae 相互作用时其在根中的细胞密度的调控。此外,XF-1 的ΔppsB 突变体由于导致根中茉莉酸和水杨酸信号通路的激活水平较低,无法有效控制疾病,而这些信号通路对于植物在受到病原体侵袭时的防御反应是必需的。总的来说,本研究提供了对枯草芽孢杆菌与 P. brassicae 相互作用中特定信号的新认识,并深入了解了枯草芽孢杆菌在农业中的应用。