Segmental Duplications Drive the Evolution of Accessory Regions in a Major Crop Pathogen
作者:Anouk C. van Westerhoven, Carolina Aguilera-Gálvez, Giuliana Nakasato‐Tagami, Xiaoqian Shi‐Kunne, Einar Martínez de la Parte, Edgar A. Chavarro‐Carrero, H.J.G. Meijer, Alice Feurtey, Nani Maryani, N. Ordóñez, Harrie Schneiders, Koen Nijbroek, Alexander Wittenberg, R. Hofstede, Fernando A. García-Bastidas, E.H. Sørensen, Rony Swennen, A. Drenth, Eva H. Stukenbrock, G.H.J. Kema, Michael Seidl · 发表于:bioRxiv (Cold Spring Harbor Laboratory) · 年份:2023 · DOI:10.1101/2023.06.07.544053 · 被引用次数:11 · 研究领域:Plant Pathogens and Fungal Diseases、Plant-Microbe Interactions and Immunity、Banana Cultivation and Research
Abstract Many pathogens evolved compartmentalized genomes with conserved core and variable accessory regions which carry effector genes mediating virulence. The fungal plant pathogen Fusarium oxysporum has such accessory regions often spanning entire chromosomes. The presence of specific accessory regions influences the host range, and horizontal transfer of some accessory regions can modify the pathogenicity of the receiving strain. However, understanding how these accessory regions evolve in strains that infect the same host remains limited. Here, we define the pan-genome of 69 diverse Fusarium strains that cause Fusarium wilt of banana, a significant constraint to global banana production. In this diverse panel of Fusarium strains infecting banana, we analyzed the diversity and evolution of the accessory regions. Accessory regions in Fusarium strains infecting the same banana cultivar are highly diverse, and we could not identify any shared genomic regions and in planta induced effectors. We demonstrate that segmental duplications drive the evolution of accessory regions. Furthermore, we show that recent segmental duplications and aneuploidy occur specifically in accessory chromosomes and cause the expansion of accessory regions in F. oxysporum . Taken together we conclude that extensive recent duplications drive the evolution of accessory regions in Fusarium , which contribute to the evolution of virulence.