Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom‐forming fungi

B Looney, S Miyauchi, E Morin, E Drula… - New …, 2022 - Wiley Online Library
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

[引用][C] Evolutionary Transition to the Ectomycorrhizal Habit in the Genomes of a Hyperdiverse Lineage of Mushroom‐Forming fungi

B Looney, S Miyauchi, E Morin, E Drula… - NEW …, 2022 - real.mtak.hu
Evolutionary Transition to the Ectomycorrhizal Habit in the Genomes of a Hyperdiverse Lineage of
Mushroom‐Forming fungi - Repository of the Academy's Library MTA KIK REAL Home About Browse …

[PDF][PDF] Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom-forming fungi

B Looney, FM Martin - New Phytologist, 2022 - group.szbk.u-szeged.hu
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

[引用][C] Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom‐forming fungi

B Looney, S Miyauchi, E Morin, E Drula, PE Courty… - 2022 - agris.fao.org
Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage
of mushroom‐forming fungi Food and Agriculture Organization of the United Nations Discover …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom-forming fungi.

B Looney, S Miyauchi, E Morin, E Drula… - The New …, 2022 - europepmc.org
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom-forming fungi

B Looney, S Miyauchi, E Morin, E Drula, PE Courty… - New Phytologist, 2021 - osti.gov
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom‐forming fungi

B Looney, S Miyauchi, E Morin, E Drula, PE Courty… - New Phytologist, 2022 - cir.nii.ac.jp
抄録< jats: title> Summary</jats: title>< jats: p>< jats: list list-type=" bullet">< jats: list-item><
jats: p> The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom‐forming fungi.

B Looney, S Miyauchi, E Morin, E Drula… - New …, 2022 - search.ebscohost.com
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom-forming fungi.

B Looney, S Miyauchi, E Morin, E Drula, PE Courty… - 2021 - cabidigitallibrary.org
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …

Evolutionary transition to the ectomycorrhizal habit in the genomes of a hyperdiverse lineage of mushroom-forming fungi

B Looney, S Miyauchi, E Morin, E Drula… - The New …, 2022 - pubmed.ncbi.nlm.nih.gov
The ectomycorrhizal (ECM) symbiosis has independently evolved from diverse types of
saprotrophic ancestors. In this study, we seek to identify genomic signatures of the transition …