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Pan-genome analysis reveals a highly plastic genome and extensive secreted protein polymorphism in Puccinia striformis f.sp.tritici
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作者 Jierong Wang yuxi peng +4 位作者 Yiwen Xu Zhiru Li Gangming Zhan Zhensheng Kang Jing Zhao 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2024年第5期574-577,共4页
The obligate biotrophic basidiomycete fungus Puccinia striformis f.sp.tritici(Pst)is the causative agent of wheat stripe(yellow)rust,a disease that results in severe damage to global wheat production(Chen and Kang,201... The obligate biotrophic basidiomycete fungus Puccinia striformis f.sp.tritici(Pst)is the causative agent of wheat stripe(yellow)rust,a disease that results in severe damage to global wheat production(Chen and Kang,2017).This pathogen has a mixed reproductive mode encompassing both asexual and sexual reproduction.The asexual stage is accomplished by reinfecting wheat with urediniospores,while the sexual cycle involves five different spore types and two phylogenetically unrelated plant hosts wheat,which is the primary host,and barberry,which is the alternate host(Zhao et al.,2016).This extremely complex lifecycle facilitates large genetic variation among Pst populations,which is conducive to the emergence of new virulent races that can overcome wheat resistance genes,resulting in epidemics(Chen and Kang,2017).Secreted effector proteins,the key virulence factors in fungal pathogens,can not only suppress plant immune systems but also trigger host immune responses following recognition by plant receptors(Toruno et al.,2016). 展开更多
关键词 PUCCINIA OVERCOME wheat
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