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Navigating the Fusarium species complex: Host-range plasticity and genome variations. | LitMetric

Navigating the Fusarium species complex: Host-range plasticity and genome variations.

Fungal Biol

Protecting Crops and the Environment, Rothamsted Research, Harpenden, Herts, AL5 2JQ, UK. Electronic address:

Published: December 2024

AI Article Synopsis

  • The Ascomycete genus Fusarium, established in 1809, includes 431 species with a wide variety of lifestyles, from pathogens to non-pathogenic fungi, adapting to various environments and hosts.
  • A review was conducted to explore the ecological roles of Fusarium species, highlighting their interactions with plants, humans, and animals, and their presence in both natural and human-altered ecosystems.
  • The study emphasizes the availability of sequenced genomes for many Fusarium species and aims to uncover new genetic relationships among these diverse fungi, contributing to the understanding of their evolution and ecological adaptations.

Article Abstract

The Ascomycete genus Fusarium, first introduced by Link in 1809, currently consists of 431 species and 3558 unclassified isolates and hybrids (according to NCBI Taxonomy lists). Collectively, these fungi have diverse lifestyles and infection cycles exploiting a wide range of environments, hosts, ecological niches, and nutrient sources. Here, we carried out a pan-Fusarium species review to describe and explore the glamorous, and the less attractive niches, exploited by pathogenic and endophytic species. We survey species that infect plant, human, animal and/or invertebrate hosts, free-living non-pathogenic species dwelling in land, air or water-based natural ecosystems, through to those species that exploit human-modified environments or are cultivated in industrial production systems. Fully sequenced, assembled and annotated reference genomes are already available for 189 Fusarium species, many at chromosome scale. In addition, for some of the world's most important species extensive single species pangenomes or closely related formae speciales genome clusters are readily available. Previous comparative genomics studies have focussed on taxonomically restricted clusters of Fusarium species. We now investigate potential new relationships between these vastly contrasting Fusarium biologies, niches and environmental occupancies and the evolution of their respective genomes.

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Source
http://dx.doi.org/10.1016/j.funbio.2024.07.004DOI Listing

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