TY - JOUR
T1 - Genetic determinants of endophytism in the Arabidopsis root mycobiome
AU - Mesny, Fantin
AU - Miyauchi, Shingo
AU - Thiergart, Thorsten
AU - Pickel, Brigitte
AU - Atanasova, Lea
AU - Karlsson, Magnus
AU - Huettel, Bruno
AU - Barry, Kerrie W.
AU - Haridas, Sajeet
AU - Chen, Cindy
AU - Bauer, Diane
AU - Andreopoulos, William
AU - Pangilinan, Jasmyn
AU - LaButti, Kurt
AU - Riley, Robert
AU - Lipzen, Anna
AU - Clum, Alicia
AU - Drula, Elodie
AU - Henrissat, Bernard
AU - Kohler, Annegret
AU - Grigoriev, Igor
AU - Martin, Francis M.
AU - Hacquard, Stephane
PY - 2021
Y1 - 2021
N2 - Plant roots host diverse fungal communities that affect plant health. Here, Mesny et al. use comparative genomics and transcriptomics of fungal isolates from the Arabidopsis thaliana root mycobiota, together with root colonization assays, to identify genetic determinants of endophytism.The roots of Arabidopsis thaliana host diverse fungal communities that affect plant health and disease states. Here, we sequence the genomes of 41 fungal isolates representative of the A. thaliana root mycobiota for comparative analysis with other 79 plant-associated fungi. Our analyses indicate that root mycobiota members evolved from ancestors with diverse lifestyles and retain large repertoires of plant cell wall-degrading enzymes (PCWDEs) and effector-like small secreted proteins. We identify a set of 84 gene families associated with endophytism, including genes encoding PCWDEs acting on xylan (family GH10) and cellulose (family AA9). Transcripts encoding these enzymes are also part of a conserved transcriptional program activated by phylogenetically-distant mycobiota members upon host contact. Recolonization experiments with individual fungi indicate that strains with detrimental effects in mono-association with the host colonize roots more aggressively than those with beneficial activities, and dominate in natural root samples. Furthermore, we show that the pectin-degrading enzyme family PL1_7 links aggressiveness of endophytic colonization to plant health.
AB - Plant roots host diverse fungal communities that affect plant health. Here, Mesny et al. use comparative genomics and transcriptomics of fungal isolates from the Arabidopsis thaliana root mycobiota, together with root colonization assays, to identify genetic determinants of endophytism.The roots of Arabidopsis thaliana host diverse fungal communities that affect plant health and disease states. Here, we sequence the genomes of 41 fungal isolates representative of the A. thaliana root mycobiota for comparative analysis with other 79 plant-associated fungi. Our analyses indicate that root mycobiota members evolved from ancestors with diverse lifestyles and retain large repertoires of plant cell wall-degrading enzymes (PCWDEs) and effector-like small secreted proteins. We identify a set of 84 gene families associated with endophytism, including genes encoding PCWDEs acting on xylan (family GH10) and cellulose (family AA9). Transcripts encoding these enzymes are also part of a conserved transcriptional program activated by phylogenetically-distant mycobiota members upon host contact. Recolonization experiments with individual fungi indicate that strains with detrimental effects in mono-association with the host colonize roots more aggressively than those with beneficial activities, and dominate in natural root samples. Furthermore, we show that the pectin-degrading enzyme family PL1_7 links aggressiveness of endophytic colonization to plant health.
UR - https://res.slu.se/id/publ/115068
U2 - 10.1038/s41467-021-27479-y
DO - 10.1038/s41467-021-27479-y
M3 - Journal article
SN - 2041-1723
VL - 12
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 7227
ER -