Tian Lei, Xu Yan, Li Josh, Tan Jinyi, Zhang Yuelin, Li Xin
Michael Smith Laboratories, University of British Columbia, Vancouver, BC, Canada.
Department of Botany, University of British Columbia, Vancouver, BC, Canada.
Nat Commun. 2025 Aug 12;16(1):7492. doi: 10.1038/s41467-025-62932-2.
Sclerotinia sclerotiorum is a phytopathogenic soilborne fungus that damages diverse crops worldwide. It has recently been discovered that this fungus distributes its 16 chromosomes irregularly between two nuclei within each haploid ascospore. Here, we study the meiotic process by tracking phenotypic segregation and recombination events in the progeny of a strain resulting from the fusion of two morphologically distinct mutants. We show that, despite the unusual chromosomal distribution into two nuclei, chromosome segregation and genetic recombination occur normally in S. sclerotiorum, likely due to a tight coordination between the two complementing nuclei during meiosis. Consistently, an atypical ascospore development process deviating from the conventional model was observed. Furthermore, we show that our co-segregation analyses method can be used to identify causal mutations in uncharacterized mutants, uncovering a role for deubiquitination in fungal development and virulence.
核盘菌是一种植物病原性土传真菌,对全球多种作物造成损害。最近发现,这种真菌在每个单倍体子囊孢子内的两个细胞核之间不规则地分配其16条染色体。在这里,我们通过追踪两个形态不同的突变体融合产生的菌株后代中的表型分离和重组事件来研究减数分裂过程。我们表明,尽管染色体异常分布在两个细胞核中,但核盘菌的染色体分离和遗传重组正常发生,这可能是由于减数分裂过程中两个互补细胞核之间的紧密协调。一致地,观察到一个偏离传统模型的非典型子囊孢子发育过程。此外,我们表明,我们的共分离分析方法可用于鉴定未表征突变体中的因果突变,揭示去泛素化在真菌发育和毒力中的作用。