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◆ Nature Communications2026-02-13· Biology

Allelic variation of Avr genes in highly virulent strains explains severe wheat stem rust epidemics

Rebecca Spanner, Eva C. Henningsen, Camilla Langlands-Perry, Jian Chen, Jibril Lubega, Oadi Matny, David D. Lewis, Li Chen Cheah, Zhouyang Su, Alexis Feist, Eric S. Nazareno, Feng Li, Megan A. Outram, Taj Arndell, Thomas Vanhercke, Nino Virzì, Ming Luo, Michael Ayliffe, Eric Stone, Kanyuka Kostya, Jana Sperschneider, Peter N. Dodds, Brian J. Steffenson, Melania Figueroa

原始摘要(英文原文)· Original abstract
Wheat stem rust is a disease of global importance caused by the fungal pathogen Puccinia graminis f. sp. tritici (Pgt). Here we generate chromosome-level, nuclear-phased genome references for Pgt isolates ETH2013-1 and ITA2018-1, representing races TKTTF and TTRTF respectively, that have caused major epidemics in Africa and Europe. The nuclear haplotypes of ETH2013-1 and ITA2018-1 are unique and unrelated to those of Ug99 and Pgt21. Pgt nuclear haplotypes show extensive variation in sequence and copy number of six known Avr genes and AvrSr33, which we identify through an effector gene library screen. Recognition properties of 22 novel Avr gene variants explain the race virulence phenotypes and the outbreak of TTRTF on durum cultivars containing Sr13b, since ITA2018-1 carries a homozygous deletion of AvrSr13. This work establishes an Avr gene atlas for Pgt that can inform wheat breeding and enable development of sequence-based virulence diagnostic tools for pathogen surveillance.
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Allelic variation of Avr genes in highly virulent strains explains severe wheat stem rust epidemics — 科研速览 Science Skim