bioRxiv · 10.1101/2024.06.17.599414
Genotype-environment-driven dysbiosis in the skin microbiome of ichthyosis
Abstract
Monogenic skin disorders such as ichthyosis introduce multiple sources of disturbance to the skin, including the direct biochemical consequences of the genotype, the phenotypic changes in skin physiology, and an altered skin microbiome. The association between changes in the skin microbiome and the diseases genotypic and phenotypic effects are of both ecological and clinical interest but are historically obscured by 1) the limited resolution of metagenomic profiles, and 2) additional sources of variation such as age and topical/oral treatments. Here we characterize the skin microbiome from seven ichthyosis genotypes, at species, strain, and metabolic pathway levels. Critically, we assess the association between these microbiome features and the ichthyosis genotype and phenotype while adjusting for contextual host covariables. We show that the ichthyosis genotype, especially that caused by mutations in TGM1, and the ichthyosis phenotype, particularly transepidermal water loss (TEWL), and personal covariables, such as topical emollients and oral retinoids, collectively, and sometimes antagonistically, influence the species community, strain population, and metabolic potential of the skin microbiome. One Sentence SummarySpecies, strain, and the composition of metabolic pathways of the cutaneous microbiome in ichthyosis are influenced by the mutation genotype of ichthyosis, phenotypic features of ichthyosis such as transepidermal water loss, scaling, and skin hydration, and host age and treatment.
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Zhou, W., Ring, N., Caldwell, R., Milstone, L., Oh, J.. 2024-06-17. Genotype-environment-driven dysbiosis in the skin microbiome of ichthyosis. https://doi.org/10.1101/2024.06.17.599414
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