Norman van Rhijn

@normanvanrhijn.bsky.social

Wellcome Trust Fellow at University of Manchester | Fungal infections | AMR | Antifungal dual-use | Focused on Climate Change and Epidemiology

Excited to share our latest work: “Antarctic marine microplastics reveals environmental persistence and rapid evolution of Candida auris.” www.biorxiv.org/content/10.6... This study explores how environmental microplastics may act as reservoirs for Candida auris. 🧵

Antarctic marine microplastics reveals environmental persistence and rapid evolution of Candida auris

Candida ( Candidozyma ) auris is a critical priority fungal pathogen that emerged two decades ago near simultaneously on multiple continents. Since emergence, C. auris resistance to all four classes of antifungal drugs has been described, including pan-drug resistant isolates, sometimes evolving in-patient. Here, we confirm the first isolation of C. auris from Antarctica and show cold-adapted phenotypes and an affinity for binding to nylon. We also provide evidence to suggest mutator phenotypes contribute to the rapid evolution in C. auris and are responsible for the emergence of multiple, distinct genetic clades worldwide. Isolates in clades I, III and IV with a mutator phenotype displayed elevated mutation rates compared to non-auris Candida species. This phenotype had a complex genetic basis and was associated with drug resistance mutations. We postulate that the mutator phenotype has a significant effect on evolutionary potential and is responsible for the emergence and rapid spread of drug-resistance C. auris and novel genetic clades. ### Competing Interest Statement This work was partially support by a Wellcome Trust Institutional Strategic Fung Springboard Fellowship awarded to JR. PH and JR were funded through a JPIAMR IMPACT grant (JPIAMR2024_IMPACT-197 Consortium grant: FuGACI) and the Dutch Organisation for knowledge and innovation in health, healthcare and wellbeing (ZonMw) under project number 10570172410003. NvR is supported by a Wellcome Trust fellowship (226408/Z/22/Z). MCF is a fellow of the Canadian Institute for Advanced Research (CIFAR). RAF is supported by a Wellcome Trust Career Development Award (225303/Z/22/Z). JLS is a Howard Hughes Medical Institute Awardee of the Life Sciences Research Foundation. SD and HG are supported by the MRC Centre for Medical Mycology at the University of Exeter (MR/N006364/2 and MR/V033417/1), and the MRC Doctoral Training Grant (MR/P501955/2), and the NIHR Exeter Biomedical Research Centre. The views expressed are those of the authors and not necessarily those of the NIHR or the Department of Health and Social Care. We also thank the Exeter Sequencing Service facility and support from Wellcome Trust Institutional Strategic Support Fund (WT097835MF), Wellcome Trust Multi User Equipment Awards (WT101650MA and 218247/Z/19/Z), Medical Research Council Clinical Infrastructure Funding (MR/M008924/1) and BBSRC LOLA award (BB/K003240/1), as well as the University of Exeter High-Performance Computing (HPC) facility, funded by the UK MRC Clinical Research Infrastructure Initiative (award number MR/M008924/1). Wellcome Trust, https://ror.org/029chgv08, Strategic Fung Springboard, 226408/Z/22/Z, 225303/Z/22/Z JPI-AMR, JPIAMR2024_IMPACT-197 Consortium grant: FuGACI ZonMw, The Dutch Organisation for knowledge and innovation in health, healthcare and well-being, 10570172410003 CIFAR Howard Hughes Medical Institute Awardee of the Life Sciences Research Foundation MRC Centre for Medical Mycology at the University of Exeter, MR/N006364/2, MR/V033417/1 MRC Doctoral Training Grant, MR/P501955/2 NIHR Exeter Biomedical Research Centre BBSRC, BB/W009625/1 MRC, MR/4002163/1

biorxiv.org

Day 1 of the Brazilian Network Meeting on A fumigatus and Antimicrobial Resistance🌳🍄🌾 A wonderful day on a beautiful campus, the air samplers are out and we are ready for a day of fruitful discussions 🤝

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A long time ago in this same galaxy, we asked ourselves "where does azole antifungal resistance in fungi come from?" So we set about sampling Aspergillus fumigatus to build a collection of 1000+ samples spanning a century from 34 countries.

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New publication🚨Long term collaborations pay off! I met Jean-Paul 8 years ago in France 🇫🇷 where he told me he doubted that A. fumigatus cell wall did not contain any B1,6-glucan🤷 (random conversation) Now we have shown it! ssNMR to the rescue👌 journals.asm.org/doi/epub/10....

Kre6-dependent β-1,6-glucan biosynthesis only occurs in the conidium of Aspergillus fumigatus

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journals.asm.org

A long long longgg time ago this was just a table and some data 🤭 But turned it into what I think is a great resource!

Jo Rhodes@drjorhodes.com · last yr.

A little holiday news: Evolution of antifungal resistance in the environment www.nature.com/articles/s41... This started out as a little thought way back in early 2024 between @normanvanrhijn.bsky.social and I, and turned into a full on review! We hope it proves useful to the community.

Last week as part of Cohort III I finished the Leading for Research Fellows programme🙌🔥 Most interesting to talk to Research Fellow from all over the university that run into the same barriers😅 (a lot of job security talks)

Brazilian TV had a long section about fungal pathogens, AMR and the future risks of fungi🔥thoroughly enjoyed the filming day! Highlighting research from Brazil and how we in the UK collaborate across the globe 🌍 to bring awareness for fungal diseases

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Article in Dutch🇳🇱: Interview met RTL Nieuws over problemen nu en in de toekomst met schimmelinfecties🧫 en een oproep aan de gezondheidszorg, overheid maar ook boeren en gebruikers van antischimmels om in gesprek te gaan www.rtl.nl/nieuws/buite...

Onderzoek: dodelijke schimmels rukken op in Europa

Door de opwarming van de aarde neemt de hoeveelheid pathogene schimmels - oftewel schimmels die mensen ziek kunnen maken - in Europa de komende jaren steeds verder toe. Wetenschappers waarschuwen dat…

rtl.nl