Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - The ISME …, 2021 - academic.oup.com
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

[PDF][PDF] Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - ISME …, 2021 - backoffice.biblio.ugent.be
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus.

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - The ISME …, 2021 - europepmc.org
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

[HTML][HTML] Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - The ISME …, 2021 - nature.com
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

[PDF][PDF] Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - 2021 - researchgate.net
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - ISME …, 2021 - biblio.ugent.be
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons… - The ISME …, 2021 - pubmed.ncbi.nlm.nih.gov
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, I Druzhinina, J Gibbons, Z Zhong… - 2021 - agris.fao.org
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons… - The ISME …, 2021 - ui.adsabs.harvard.edu
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …

[HTML][HTML] Divergence of a genomic island leads to the evolution of melanization in a halophyte root fungus

Z Yuan, IS Druzhinina, JG Gibbons, Z Zhong… - The ISME …, 2021 - ncbi.nlm.nih.gov
Understanding how organisms adapt to extreme living conditions is central to evolutionary
biology. Dark septate endophytes (DSEs) constitute an important component of the root …