Whole-Genome Sequencing of Newly Emerged Fungal Pathogen Aspergillus Lentulus and Its Azole Resistance Gene

Xiaodong Wang1, Aikedai Yusufu1, Hadiliya Hasimu1

  • 1Department of Dermatology, The First Affiliated Hospital of Xinjiang Medical University, Urumqi, People's Republic of China.

Insights

Aspergillus lentulus exhibits azole resistance due to CYP51A gene mutations and multidrug-resistant ABC transporters. This genomic study reveals key molecular mechanisms contributing to its pathogenicity and antifungal drug resistance.

Area of Science:

  • Medical Mycology
  • Genomics
  • Antifungal Drug Resistance

Background:

  • Aspergillus lentulus, part of the A. fumigatus complex, presents challenges due to azole drug resistance and high mortality rates.
  • Limited genome-wide data hinders comprehensive understanding of A. lentulus's biology, pathogenicity, and resistance mechanisms.

Purpose of the Study:

  • To perform whole-genome sequencing of a clinical A. lentulus isolate (PWCAL1).
  • To analyze the genome-wide profile, identify virulence factors, and predict azole resistance genes.
  • To elucidate the molecular basis of pathogenicity and azole resistance in A. lentulus.

Main Methods:

  • Whole-genome sequencing using PacBio Sequel platform.
  • Gene function annotation (GO, COG, KEGG), comparative genomics, and BLASTP alignment.
  • Identification of virulence factors (HPI, FVF) and prediction of resistance genes (CYP51A, ABC transporters).

Main Results:

  • The A. lentulus PWCAL1 genome is 31.26 Mb with 6883 predicted coding genes.
  • Identified 949 pathogen-host interaction factors and 259 fungal virulence factors.
  • Detected CYP51A gene mutations (F46Y/N248T) and 12 multidrug resistance ATP-binding cassette (ABC) transporter genes, suggesting dual resistance mechanisms.

Conclusions:

  • The genome-wide analysis provides novel insights into A. lentulus's biological characteristics and pathogenicity.
  • The identified CYP51A mutations and ABC transporters are potential key contributors to azole resistance in A. lentulus.
  • This study lays the groundwork for understanding and combating infections caused by this emerging fungal pathogen.