Experimental Evolution of Candida by Serial Passaging in Host Cells.


Journal

Methods in molecular biology (Clifton, N.J.)
ISSN: 1940-6029
Titre abrégé: Methods Mol Biol
Pays: United States
ID NLM: 9214969

Informations de publication

Date de publication:
2021
Historique:
entrez: 6 1 2021
pubmed: 7 1 2021
medline: 1 4 2021
Statut: ppublish

Résumé

Experimental evolution is an experiment class of its own; instead of requiring an a priori hypothesis, the genetic adaptation of microbes to defined environments tells us about the underlying pathways and mechanisms. Such experiments are often deceptively simple in their design, based on a single abiotic stressor and what is in essence a long-term continuous culture. However, they generally provide a starting point to thorough follow-up analyses (which are specific for the organism at hand and not part of this method chapter). In this chapter, we describe a method to use a biotic stressor which is frequently encountered by pathogenic fungi-macrophage-like cells-in a serial passaging regime. Experimental evolution under such conditions can reveal new virulence attributes and mechanisms by selecting for adaptive mutations against the host cell-induced stress.It is important to note that every evolution experiment is different, and these techniques should be taken as a general guideline to be adapted to different organisms and questions. Then, it is a powerful tool with many potential applications in pathobiology research.

Identifiants

pubmed: 33405036
doi: 10.1007/978-1-0716-1182-1_10
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

145-154

Références

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doi: 10.1016/j.fgb.2016.06.007
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Lang GI, Desai MM (2014) The spectrum of adaptive mutations in experimental evolution. Genomics 104:412–416
doi: 10.1016/j.ygeno.2014.09.011
Hill JA, Ammar R, Torti D et al (2013) Genetic and genomic architecture of the evolution of resistance to antifungal drug combinations. PLoS Genet 9:e1003390
doi: 10.1371/journal.pgen.1003390
Huang M, Mcclellan M, Berman J et al (2011) Evolutionary dynamics of Candida albicans during in vitro evolution. Eukaryot Cell 10:1413–1421
doi: 10.1128/EC.05168-11
Brunke S, Seider K, Fischer D et al (2014) One small step for a yeast--microevolution within macrophages renders Candida glabrata hypervirulent due to a single point mutation. PLoS Pathog 10:e1004478
doi: 10.1371/journal.ppat.1004478
Wartenberg A, Linde J, Martin R et al (2014) Microevolution of Candida albicans in macrophages restores filamentation in a nonfilamentous mutant. PLoS Genet 10:e1004824
doi: 10.1371/journal.pgen.1004824
Seider K, Brunke S, Schild L et al (2011) The facultative intracellular pathogen Candida glabrata subverts macrophage cytokine production and phagolysosome maturation. J Immunol 187:3072–3086
doi: 10.4049/jimmunol.1003730

Auteurs

Katja Graf (K)

Department of Microbial Pathogenicity Mechanisms, Leibniz Institute for Natural Product Research and Infection Biology, Hans Knoell Institute, Jena, Germany.

Bernhard Hube (B)

Department of Microbial Pathogenicity Mechanisms, Leibniz Institute for Natural Product Research and Infection Biology, Hans Knoell Institute, Jena, Germany.

Sascha Brunke (S)

Department of Microbial Pathogenicity Mechanisms, Leibniz Institute for Natural Product Research and Infection Biology, Hans Knoell Institute, Jena, Germany. Sascha.Brunke@hki-jena.de.

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Classifications MeSH