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Published on: December 28, 2017
Phenotypic Variability in a Coinfection With Three Independent Candida parapsilosis Lineages
Emilia Gómez-Molero1, Jesse R Willis2, Anna Dudakova1
1Institute for Medical Microbiology, University Medical Center Göttingen, Göttingen, Germany.
Abstract:
The human pathogenic yeast Candida parapsilosis has gained significant importance over the past decades as one of the principal causes of fungal bloodstream infections. Isolates of C. parapsilosis are known to be able to switch between several different colony morphologies in vitro, which are correlated with different cell shapes, altered cell surface properties, and thus different capacities to form biofilms on indwelling medical devices. In a set of six clinical specimens from a single surgery patient yielding stable smooth- as well as crepe-morphology isolates, we investigated the differences between five of them on a phenotypic and genomic level. In contrast to the initial assumption that they were switched forms of a clonal strain, karyotyping and genome sequencing showed that the patient was colonized by at least three distinct linages. Statistical analysis placed these groups distantly across the population of C. parapsilosis. Interestingly the single blood culture isolate was of smooth morphology and matched with an isolate from the patient's nose of similar morphology. Strong variation between the isolates was seen in adhesin-encoding genes, where repeat regions showed significant variation in length and repeat-numbers, most strikingly in HWP1 of the smooth isolates. Although no differences in drug susceptibility were evident, the high phylogenetic distance separating the individual strains highlights the need for testing of multiple colonies in routine practice. The absence of biofilm formation in the blood stream isolate indicates a lack of respective adhesins in the cell wall, in turn pointing toward lack of adhesion as a positively contributing factor for dissemination.
Insights
Candida parapsilosis bloodstream infections can stem from multiple distinct lineages within a single patient. Genetic analysis revealed significant variations in adhesin genes, impacting biofilm formation and dissemination potential.
Area of Science:
- Medical Mycology
- Genomics
- Infectious Diseases
Background:
- Candida parapsilosis is a major cause of fungal bloodstream infections.
- Isolates exhibit colony morphology switching affecting biofilm formation.
- Morphological variants were initially assumed to be clonal.
Purpose of the Study:
- Investigate phenotypic and genomic differences in C. parapsilosis isolates from a single patient.
- Determine if morphologically distinct isolates represent clonal variants or distinct lineages.
- Analyze variations in adhesin genes and their correlation with biofilm formation.
Main Methods:
- Karyotyping and whole-genome sequencing of clinical isolates.
- Phenotypic analysis of colony morphology and cell shape.
- Statistical analysis of phylogenetic relationships.
- Analysis of variation in adhesin-encoding genes, including HWP1.
Main Results:
- Karyotyping and genome sequencing revealed at least three distinct C. parapsilosis lineages in the patient.
- Phylogenetic analysis showed these lineages were distantly related.
- Significant variation in adhesin-encoding genes, particularly HWP1, was observed.
- The blood culture isolate showed no biofilm formation, correlating with a lack of specific adhesins.
Conclusions:
- Routine testing should include multiple colonies due to distinct lineage presence.
- Variations in adhesin genes contribute to differing pathogenic potentials.
- Lack of adhesion may facilitate dissemination of C. parapsilosis in bloodstream infections.

