Reciprocal Genome Projection Reveals Reference-Conditioned Functional Variation in Clinical Aspergillus Section Nigri Isolates

Closely related Aspergillus section Nigri species are difficult to resolve taxonomically, while short-read comparisons may be influenced by reference-genome choice. We applied reciprocal genome projection to 31 whole-genome sequencing libraries representing South African clinical section-Nigri isolates, Japanese and USA A. niger-labeled isolates, and A. welwitschiae-labeled isolates. Reads were aligned independently to A. niger ATCC 1015 and A. welwitschiae Aspwel1, followed by reference-specific differential-representation and KEGG analyses. Species-level classification showed substantial overlap between A. niger and A. welwitschiae. The A. welwitschiae–South African comparison identified 44 and 59 effect-qualified features under the respective projections, including 20 reciprocal feature pairs defining a reference-robust A. welwitschiae-associated core. The clinical Japanese–South African comparison identified 116 and 127 features, with 14 concordant KEGG orthologs involving sterol modification, protein prenylation, cofactor metabolism, redox processing, cell-wall turnover and ribosome maturation. No pathway remained significant after false discovery-rate correction; nominal pathway signals were reference-sensitive. Reciprocal projection, therefore, recovered localized cohort-associated genomic differentiation while identifying reference-conditioned effects. These findings represent differential genomic-read representation and do not independently establish copy-number variation, pathway activity, virulence or antifungal resistance.

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Journal
Pathogens
Published
2026-09-04
DOI
https://doi.org/10.3390/pathogens15090941
Primary Topic
Antifungal resistance and susceptibility
Type
article
Field-Weighted Citation Impact
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article

Reciprocal Genome Projection Reveals Reference-Conditioned Functional Variation in Clinical Aspergillus Section Nigri Isolates

Nokuthula Peace Mchunu, Siphiwengesihle Kuhle Silindile Mbamali, Kugen Permaul, Nikwando Mohlomi et al.
Pathogens
Antifungal resistance and susceptibility
article

Reciprocal Genome Projection Reveals Reference-Conditioned Functional Variation in Clinical Aspergillus Section Nigri Isolates

Nokuthula Peace Mchunu, Siphiwengesihle Kuhle Silindile Mbamali, Kugen Permaul, Nikwando Mohlomi, Magriet van der Nest
article en

Abstract

Closely related Aspergillus section Nigri species are difficult to resolve taxonomically, while short-read comparisons may be influenced by reference-genome choice. We applied reciprocal genome projection to 31 whole-genome sequencing libraries representing South African clinical section-Nigri isolates, Japanese and USA A. niger-labeled isolates, and A. welwitschiae-labeled isolates. Reads were aligned independently to A. niger ATCC 1015 and A. welwitschiae Aspwel1, followed by reference-specific differential-representation and KEGG analyses. Species-level classification showed substantial overlap between A. niger and A. welwitschiae. The A. welwitschiae–South African comparison identified 44 and 59 effect-qualified features under the respective projections, including 20 reciprocal feature pairs defining a reference-robust A. welwitschiae-associated core. The clinical Japanese–South African comparison identified 116 and 127 features, with 14 concordant KEGG orthologs involving sterol modification, protein prenylation, cofactor metabolism, redox processing, cell-wall turnover and ribosome maturation. No pathway remained significant after false discovery-rate correction; nominal pathway signals were reference-sensitive. Reciprocal projection, therefore, recovered localized cohort-associated genomic differentiation while identifying reference-conditioned effects. These findings represent differential genomic-read representation and do not independently establish copy-number variation, pathway activity, virulence or antifungal resistance.

PathogensVol. 15(9)
Durban University of Technology (ZA), University of Pretoria (ZA), National Research Foundation (ZA), University of KwaZulu-Natal (ZA)
National Research Foundation
Openalex Percentile: Top 11%
Antifungal resistance and susceptibility
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