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Multilevel analysis between Physcomitrium patens and Mortierellaceae endophytes explores potential long‐standing interaction among land plants and fungi.

Authors :
Mathieu, Davis
Bryson, Abigail E.
Hamberger, Britta
Singan, Vasanth
Keymanesh, Keykhosrow
Wang, Mei
Barry, Kerrie
Mondo, Stephen
Pangilinan, Jasmyn
Koriabine, Maxim
Grigoriev, Igor V.
Bonito, Gregory
Hamberger, Björn
Source :
Plant Journal; Apr2024, Vol. 118 Issue 2, p304-323, 20p
Publication Year :
2024

Abstract

SUMMARY: The model moss species Physcomitrium patens has long been used for studying divergence of land plants spanning from bryophytes to angiosperms. In addition to its phylogenetic relationships, the limited number of differential tissues, and comparable morphology to the earliest embryophytes provide a system to represent basic plant architecture. Based on plant–fungal interactions today, it is hypothesized these kingdoms have a long‐standing relationship, predating plant terrestrialization. Mortierellaceae have origins diverging from other land fungi paralleling bryophyte divergence, are related to arbuscular mycorrhizal fungi but are free‐living, observed to interact with plants, and can be found in moss microbiomes globally. Due to their parallel origins, we assess here how two Mortierellaceae species, Linnemannia elongata and Benniella erionia, interact with P. patens in coculture. We also assess how Mollicute‐related or Burkholderia‐related endobacterial symbionts (MRE or BRE) of these fungi impact plant response. Coculture interactions are investigated through high‐throughput phenomics, microscopy, RNA‐sequencing, differential expression profiling, gene ontology enrichment, and comparisons among 99 other P. patens transcriptomic studies. Here we present new high‐throughput approaches for measuring P. patens growth, identify novel expression of over 800 genes that are not expressed on traditional agar media, identify subtle interactions between P. patens and Mortierellaceae, and observe changes to plant–fungal interactions dependent on whether MRE or BRE are present. Our study provides insights into how plants and fungal partners may have interacted based on their communications observed today as well as identifying L. elongata and B. erionia as modern fungal endophytes with P. patens. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09607412
Volume :
118
Issue :
2
Database :
Complementary Index
Journal :
Plant Journal
Publication Type :
Academic Journal
Accession number :
176650483
Full Text :
https://doi.org/10.1111/tpj.16605