Divergent evolution of early terrestrial fungi reveals the evolution of Mucormycosis pathogenicity factors

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - academic.oup.com
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent evolution of early terrestrial fungi reveals the evolution of Mucormycosis pathogenicity factors

Y Wang, Y Chang, J Ortanez, JF Peña, D Carter-House… - bioRxiv, 2022 - biorxiv.org
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - escholarship.org
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - osti.gov
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent evolution of early terrestrial fungi reveals the evolution of mucormycosis pathogenicity factors.

Y Wang, Y Chang, J Ortañez, JF Peña, D Carter-House… - 2023 - cabidigitallibrary.org
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors.

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - europepmc.org
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors

Y Wang, Y Chang, J Ortañez… - Genome biology …, 2023 - pubmed.ncbi.nlm.nih.gov
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

[HTML][HTML] Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - ncbi.nlm.nih.gov
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors.

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology & …, 2023 - search.ebscohost.com
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …

Divergent Evolution of Early Terrestrial Fungi Reveals the Evolution of Mucormycosis Pathogenicity Factors

Y Wang, Y Chang, J Ortañez, JF Peña… - Genome Biology and …, 2023 - par.nsf.gov
Fungi have evolved over millions of years and their species diversity is predicted to be the
second largest on the earth. Fungi have cross-kingdom interactions with many organisms …