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May 8, 2026Ecology Letters0 citations

Native‐Alien Dichotomy in Pathogen Genomics: Host Specialization Versus Environmental Decoupling

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YLYongning LiGPGeorge L. W. PerryMPMahajabeen Padamsee

Key Points

  • This research investigates how host traits and environmental factors influence genome size in pathogenic fungi, and how these influences differ between native and alien pathogens.
  • Analyzed genome size data of pathogenic fungi from New Zealand
  • Compared host traits and environmental factors as predictors of genome size
  • Examined biogeographic patterns across native and alien pathogen groups
  • Host plants strongly predict genome size, particularly in basidiomycota
  • Native pathogens display significant geographic genomic differentiation, while alien pathogens exhibit spatial homogenization
  • Conservative host traits link with smaller genomes in most pathogens, but larger genomes in basidiomycota

Abstract

Genome size is a key genomic trait underpinning evolutionary potential and ecological adaptation in pathogens, yet its biogeographic patterns remain poorly understood. From New Zealand data, we quantify the influence of host traits versus environmental factors on biogeographic patterns of genome size in pathogenic fungi, and test whether these predictors differ between native and alien pathogens. Host plants were the strongest predictors of genome size, with effects particularly pronounced in Basidiomycota and biotrophic fungi. Within co-origin host-pathogen pairs (native-native; alien-alien), conservative host traits were associated with smaller pathogen genomes overall, but with larger genomes in Basidiomycota. Host effects were stronger in native pathogens, while environmental filtering diverged, with climate dominating in native pathogens and terrain-related factors in alien pathogens. Native pathogens exhibited pronounced geographic genomic differentiation, whereas alien pathogens showed spatial homogenization. These results reveal a hierarchical framework that enhances predictions of disease dynamics under global environmental change.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69fd8021bfa21ec5bbf08859https://doi.org/10.1111/ele.70394
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