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Molecular Characterization of Vegetative Incompatibility Genes That Restrict Hypovirus Transmission in the Chestnut Blight Fungus Cryphonectria parasitica

机译:营养不足的基因,限制栗病毒真菌拟南芥中的次病毒传播的分子特征

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摘要

Genetic nonself recognition systems such as vegetative incompatibility operate in many filamentous fungi to regulate hyphal fusion between genetically dissimilar individuals and to restrict the spread of virulence-attenuating mycoviruses that have potential for biological control of pathogenic fungi. We report here the use of a comparative genomics approach to identify seven candidate polymorphic genes associated with four vegetative incompatibility (vic) loci of the chestnut blight fungus Cryphonectria parasitica. Disruption of candidate alleles in one of two strains that were heteroallelic at vic2, vic6, or vic7 resulted in enhanced virus transmission, but did not prevent barrage formation associated with mycelial incompatibility. Detailed characterization of the vic6 locus revealed the involvement of nonallelic interactions between two tightly linked genes in barrage formation, heterokaryon formation, and asymmetric, gene-specific influences on virus transmission. The combined results establish molecular identities of genes associated with four C. parasitica vic loci and provide insights into how these recognition factors interact to trigger incompatibility and restrict virus transmission.
机译:遗传非自我识别系统(如植物不相容性)在许多丝状真菌中起作用,以调节遗传异种个体之间的菌丝融合,并限制对病原性真菌具有生物控制潜力的减毒性分枝杆菌病毒的传播。我们在这里报告的比较基因组学方法的使用来确定七个候选多态性基因与板栗疫病真菌Cryphonectria parasitica的四个营养不相容性(vic)位点相关。在vic2,vic6或vic7处为异源等位基因的两个菌株之一中候选等位基因的破坏导致病毒传播增强,但并未阻止与菌丝体不相容性相关的弹幕形成。 vic6基因座的详细表征揭示了两个紧密相关的基因之间的非等位基因相互作用涉及弹幕形成,异核体形成以及对病毒传播的不对称基因特异性影响。合并的结果建立了与四个寄生虫梭状芽胞杆菌基因位点相关的基因的分子身份,并提供了关于这些识别因子如何相互作用以触发不相容性和限制病毒传播的见解。

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