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  5. Horizontal transfers between fungal Fusarium species contributed to successive outbreaks of coffee wilt disease.

Horizontal transfers between fungal Fusarium species contributed to successive outbreaks of coffee wilt disease.

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Resource type
Journal article
Creator (person)
Peck, Lily D.
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Llewellyn, Theo
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Bennetot, Bastien
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O’Donnell, Samuel
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Nowell, Reuben W.
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Date published
December 5, 2024
Abstract

Outbreaks of fungal diseases have devastated plants and animals throughout history. Over the past century, the repeated emergence of coffee wilt disease caused by the fungal pathogen severely impacted coffee production across sub-Saharan Africa. To improve the disease management of such pathogens, it is crucial to understand their genetic structure and evolutionary potential. We compared the genomes of 13 historic strains spanning 6 decades and multiple disease outbreaks to investigate population structure and host specialisation. We found that . comprised at least 4 distinct lineages: 1 host-specific to , 1 to . var. robusta, and 2 historic lineages isolated from various species. The presence/absence of large genomic regions across populations, the higher genetic similarities of these regions between species than expected based on genome-wide divergence and their locations in different loci in genomes across populations showed that horizontal transfers of effector genes from members of the . species complex contributed to host specificity. Multiple transfers into . populations matched different parts of the . mobile pathogenicity chromosome and were enriched in effector genes and transposons. Effector genes in this region and other carbohydrate-active enzymes important in the breakdown of plant cell walls were shown by transcriptomics to be highly expressed during infection of . by the fungal arabica strains. Widespread sharing of specific transposons between . and . , and the correspondence of a putative horizontally transferred regions to a (large mobile element involved in horizontal gene transfers in fungi), reinforce the inference of horizontal transfers and suggest that mobile elements were involved. Our results support the hypothesis that horizontal gene transfers contributed to the repeated emergence of coffee wilt disease.

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Science
Contributor (person)
Kamoun, Sophien
Editor
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Funder
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Natural Environment Research Council, United Kingdom
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NE/L002515/1 - NE/S010866/1
Imperial College London, United Kingdom
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Stevenson Fund
Journal title
PLOS Biology
Volume
22
Issue
12
Article number
e3002480
Publisher
Public Library of Science (PLoS)
Place of publication
San Francisco, Calif., US
eISSN
1545-7885
Date accepted
September 30, 2024
Official URL
https://doi.org/10.1371/journal.pbio.3002480
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.1371/journal.pbio.3002480
Alternate identifier
10.1371/journal.pbio.3002480
Keywords
Coffee diseases
Host-specific pathogens
Fusarium xylarioides
Coffea
Horizontal gene transfer
Fusarium oxysporum
Coffee wilt disease
Fusarium
Additional information
IF = 9.8 (2023-2024)
Managed by the British Library and supported by the AHRC

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