Pilidium lythri: A Climate-Driven Disruptor of Plant-Associated Microbiomes and Ecological Stability
Siegieda, D.; Panek, J.; Hannula, E. S.; Frac, M.
Show abstract
While global warming accelerates phytopathogen spread, still little is known on how fungal pathogens disrupt fragile balance in plant-microbe interactions. Here, we demonstrate that the thermotolerant fungus Pilidium lythri combines broad chemical resistance with a remarkable ability to destabilize microbial communities in strawberry soil-plant systems. Using high-throughput sequencing (16S rRNA and ITS markers) across 72 samples, combined with mixed-effects modelling, source-tracking, microbiota assembly mechanisms investigation and network analysis we demonstrate that P. lythri disrupted bacterial community assembly processes, transitioning from deterministic to stochastic dynamics in the bulk soil, aligning with the Anna Karenina Principle. Despite stable dominance index (ENS) under infection bacterial and fungal communities, rhizosphere fungal diversity increased under infection. Network analysis of this niche revealed decreased fungal connectivity, with enhanced antagonistic interactions between taxa. We also noted that microbial migration patterns between niches under pathogen inoculation highlighted shifts in community interactions. Our work uncovers how emerging thermotolerant fungal phytopathogens destabilize plant holobiont without reducing diversity, important for managing emerging agricultural threats in a warming climate.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Response of the plant core microbiome to Fusarium oxysporum infection and identification of the pathobiome. 97%
- Evaluation of seasonal dynamics of fungal DNA assemblages in a flow-regulated stream in a restored forest using eDNA metabarcoding 95%
- The isolation and characterization of Taphrina betulina and other yeasts residing in the Betula pendula phylloplane. 94%
Similar papers in this journal
- Seedling microbiota engineering using bacterial synthetic community inoculation on seeds 96%
- The impact of the rice production system (irrigated vs lowland) on root-associated microbiome from farmer's fields in western Burkina Faso 95%
- Fungal traits help to understand the decomposition of simple and complex plant litter 95%
Similar papers in this journal
- Rhizospheric bacteria from the Atacama Desert hyper-arid core: cultured community dynamics and plant growth promotion 96%
- Abiotic treatment to common bean plants results in an altered seed microbiome. 95%
- Evaluation of ready-to-use freezer stocks of a synthetic microbial community for maize root colonization 94%
Similar papers in this journal
- Grapevine pruning time affects natural wound colonization by wood-invading fungi 97%
- Hyphal exploration strategies and habitat modification of an arbuscular mycorrhizal fungus in microengineered soil chips 94%
- Diversity and function of fungi associated with the fungivorous millipede, Brachycybe lecontii 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.