Comparative transcriptomics uncovers plant and fungal genetic determinants of mycorrhizal compatibility
Marques-Galvez, J. E.; de Freitas Pereira, M.; Nehls, U.; Ruytinx, J.; Barry, K.; Peter, M.; Martin, F.; Grigoriev, I. V.; Veneault-Fourrey, C.; Kohler, A.
Show abstract
Ectomycorrhizal symbiosis supports tree growth and is crucial for nutrient cycling and temperate and boreal ecosystems functioning. The establishment of functional ECM first requires the association of compatible partners. However, host and fungal genetic determinants governing mycorrhizal compatibility are unknown. To identify such factors in poplar and its fungal associates, we mined existing and de-novo tree and fungal transcriptional datasets. We identified core plant regulons enabling ECM symbiosis at early and mature stages of the interaction. These regulons can be divided into general fungal-sensing and ECM-specific components. We highlight the importance of fungal modulation of plant JA-related defences and the regulation of secretory pathways for ECM compatibility, including upregulation of key fungal small secreted proteins, the downregulation of plant secreted peroxidases and the downregulation of plant cell-wall remodelling proteins concomitantly with the upregulation of fungal glycosyl hydrolases acting on pectin. Not only gene-regulation, but also its temporal scale and dynamics seems to play a crucial role for mycorrhizal compatibility. The expression profile of the host Common Symbiosis Pathway was also studied, revealing constitutive levels of expression of a part of the pathway and moderate upregulation in compatible ECM interactions. Overall, these results underscore the importance of novel biological functions during the establishment of ECM symbiosis, help us gain insights into the molecular events determining mycorrhiza compatibility and serve as a data-rich transcriptomic resource to open new research questions in the field. Significance statementEctomycorrhizal symbiosis is essential for forest ecosystems, but the genetic determinants of host and fungal compatibility remain underexplored. Employing comparative transcriptomics, we identified plant general and ECM-specific gene regulons, outlining the expression profile of Common Symbiosis Pathway genes in multiple ECM interactions and highlighting fungal and plant genes associated to interkingdom crosstalk and cell wall remodelling. These findings help us gain insights into the molecular events determining mycorrhiza compatibility.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Laccaria bicolor pectin methylesterases are involved in ectomycorrhiza development with Populus tremula x Populus tremuloides 97%
- The ectomycorrhizal basidiomycete Laccaria bicolor releases a GH28 polygalacturonase that plays a key role in symbiosis establishment 96%
- The establishment of Populus x Laccaria bicolor ectomycorrhiza requires the inactivation of MYC2 coordinated defense response with a key role for root terpene synthases 94%
Similar papers in this journal
- A novel "ceasefire" model to explain efficient seed transmission of Xanthomonas citri pv. fuscans to common bean. 94%
- The volatile cedrene from plant beneficial Trichoderma guizhouense modulates Arabidopsis root development through auxin transport and signaling 94%
- Ammonium regulates the development and architecture of pine roots through hormonal crosstalk and differential expression of transcription factors in the apex 93%
Similar papers in this journal
- Medicago truncatula CORYNE modulates inflorescence meristem branching, nutrient signaling, and arbuscular mycorrhizal symbiosis 95%
- Nitrogen nutrition impacts grapevine esca leaf symptom incidence, physiology and metabolism 94%
- Early root-root interactions weaken foliar defense responses against Septoria tritici blotch in a durum wheat varietal mixture 94%
Similar papers in this journal
- Colonization by orchid mycorrhizal fungi primes induced systemic resistance against a necrotrophic pathogen 96%
- The genomic impact of mycoheterotrophy: targeted gene losses but extensive expression reprogramming. 95%
- Evidence that common arbuscular mycorrhizal network alleviates phosphate shortage in interconnected walnut sapling and maize plants 95%
Similar papers in this journal
- Metatranscriptomic comparison of endophytic and pathogenic Fusarium-Arabidopsis interactions reveals plant transcriptional plasticity 96%
- Transcriptome analysis of apple leaves infected by the rust fungus Gymnosporangium yamadae at two sporulation stages (spermogonia and aecia) reveals specific host responses, rust pathogenesis-related genes and a shift in the phyllosphere fungal community composition 95%
- Comparative transcriptomic analysis of Zymoseptoria tritici reveals interaction-specific gene expression patterns during susceptible, resistant, and non-host interactions 95%
"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.