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Updated: Jul 15, 2025

Use of In Vivo Imaging to Screen for Morphogenesis Phenotypes in Candida albicans Mutant Strains During Active Infection in a Mammalian Host
Published on: October 12, 2022
Comparative dynamics of gene expression during in vitro and in vivo Candida albicans filamentation
Rohan S Wakade1, Damian J Krysan1,2
1Department of Pediatrics, Carver College of Medicine, University of Iowa, Iowa City IA.
Abstract:
Candida albicans is one of them most common causes of fungal disease in humans and is a commensal member of the human microbiome. The ability of C. albicans to cause disease is tightly correlated with its ability to undergo a morphological transition from budding yeast to a filamentous form (hyphae and pseudohyphae). This morphological transition is accompanied by the induction of a set of well characterized hyphae-associated genes and transcriptional regulators. To date, the vast majority of data regarding this process has been based on in vitro studies of filamentation using a range of inducing conditions. Recently, we developed an in vivo imaging approach that allows the direct characterization of morphological transition during mammalian infection. Here, we couple this imaging assay with in vivo expression profiling to characterize the time course of in vivo filamentation and the accompanying changes in gene expression. We also compare in vivo observations to in vitro filamentation using a medium (RPMI 1640 tissue culture medium with 10% bovine calf serum) widely used to mimic host conditions. From these data, we make the following conclusions regarding in vivo and in vitro filamentation. First, the transcriptional programs regulating filamentation are rapidly induced in vitro and in vivo. Second, the tempo of filamentation in vivo is prolonged relative to in vitro filamentation and the period of high expression of genes associated with that process is also prolonged. Third, hyphae are adapting to changing infection environments after filamentation has reached steady-state.
Insights
Candida albicans transitions from yeast to hyphae, causing fungal disease. This study reveals prolonged in vivo filamentation and gene expression compared to in vitro conditions, showing hyphae adapt to infection environments.
Area of Science:
- Mycology
- Microbiology
- Infectious Diseases
Background:
- * Candida albicans is a common human fungal pathogen and commensal.
- * Disease causation correlates with yeast-to-hyphae morphological transition.
- * Filamentation is typically studied in vitro, with limited in vivo data.
Conclusions:
- * In vivo and in vitro transcriptional responses to filamentation are rapid.
- * Filamentation in vivo is a slower, more sustained process than in vitro.
- * Candida albicans hyphae exhibit adaptive strategies during host infection.

