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Distribution of Cronartium x flexili, an interspecific hybrid of two fungal tree rust pathogens, in subalpine forest ecosystems of western USA. | LitMetric

AI Article Synopsis

  • Interspecific hybridization can lead to new fungal pathogens, particularly when involving native and invasive species, with potential negative effects on ecosystems.
  • The study focused on the hybrid Cronartium x flexili between the invasive Cronartium ribicola and native Cronartium comandrae, collecting samples from different tree species across multiple sites.
  • Findings indicate that hybridization is occurring, with distinct genotypes found in specific areas, and while low in frequency, this hybrid has the potential to spread and impact forest health significantly.

Article Abstract

Interspecific hybridization plays a key role in the evolution of novel fungal pathogens, and when it occurs between native and invasive species, can lead to potentially serious consequences. In this study, we examined the temporal and spatial distribution of a recently detected hybrid (Cronartium x flexili) of two tree pathogens, invasive to North America Cronartium ribicola and native Cronartium comandrae. In total, 726 and 1452 aecia from 178 Pinus contorta ssp. latifolia and 357 Pinus flexilis trees were collected from 26 sites in four national forests in 2019-2021. Using morphological and molecular analyses, 71 aecia collected from 25 P. flexilis trees had intermediate morphology and contained heterozygous SNPs in two genomic regions. Population analyses revealed the presence of multiple hybrid genotypes randomly distributed among sites and years. No aecia from P. contorta ssp. latifolia were identified as hybrids suggesting unidirectional gene flow from native C. comandrae to invasive C. ribicola. Aeciospores from 2 hybrid aecia produced urediniospores on Ribes nigrum. Overall, these results suggest that, even though low in frequency, C. x flexili is persistent in the region and has pathogenic potential. Hybrid expansion into the large range of susceptible pines could have cascading impacts on forest health.

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Source
http://dx.doi.org/10.1016/j.funbio.2023.11.005DOI Listing

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