Yang Min, Qi Ying, Gao Penghua, Li Lifang, Guo Jianwei, Zhao Yongteng, Liu Jiani, Chen Zebin, Yu Lei
College of Agronomy, Yunnan Key Laboratory of Konjac Biology, Yunnan Urban Agricultural Engineering and Technological Research Center, Kunming University, Kunming, 650214, China.
Commun Biol. 2025 May 19;8(1):766. doi: 10.1038/s42003-025-08196-4.
Pcc is one of the key pathogenic factors responsible for destructive soft rot in konjac. To date, the assembly and functional adaptation of the plant endophytic microbiome under Pcc stress remain poorly understood. Here, we found that Pcc stress leads to rapid reorganization of the endogenous microbiome in multiple organs of both susceptible and resistant konjac plants. Under Pcc stress, the negative interactions within the bacterial-fungal interdomain network intensified, suggesting an increase in ecological competition between bacterial and fungal taxa. We further discovered that the relative abundance dynamics of the classes Dothideomycetes and Sordariomycetes, as core fungal taxa, changed in response to Pcc stress. By isolating culturable microorganisms, we demonstrated that 46 fungal strains strongly inhibited the growth of Pcc. This implies that endophytic fungal taxa in konjac may protect the host plant through ecological competition or by inhibiting the growth of pathogenic bacteria. Metagenomic analysis demonstrated that microbial communities associated with resistant Amorphophallus muelleri exhibited unique advantages over susceptible Amorphophallus konjac in enhancing environmental adaptability, regulating plant immune signaling, strengthening cell walls, and inducing defense responses. Our work provides important evidence that endophytic fungal taxa play a key role in the host plant's defense against necrotizing bacterial pathogens.
胡萝卜软腐果胶杆菌是魔芋毁灭性软腐病的关键致病因素之一。迄今为止,人们对植物内生微生物群落在胡萝卜软腐果胶杆菌胁迫下的组装和功能适应性仍知之甚少。在此,我们发现胡萝卜软腐果胶杆菌胁迫导致感病和抗病魔芋植株多个器官内源性微生物群快速重组。在胡萝卜软腐果胶杆菌胁迫下,细菌-真菌跨域网络内的负相互作用增强,表明细菌和真菌类群之间的生态竞争加剧。我们进一步发现,作为核心真菌类群的座囊菌纲和粪壳菌纲的相对丰度动态响应胡萝卜软腐果胶杆菌胁迫而发生变化。通过分离可培养微生物,我们证明46株真菌菌株强烈抑制胡萝卜软腐果胶杆菌的生长。这意味着魔芋内生真菌类群可能通过生态竞争或抑制病原菌生长来保护寄主植物。宏基因组分析表明,与抗病魔芋相关的微生物群落在增强环境适应性、调节植物免疫信号、强化细胞壁和诱导防御反应方面比感病魔芋具有独特优势。我们的工作提供了重要证据,表明内生真菌类群在寄主植物抵御坏死性细菌病原体中起关键作用。