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Effector gene silencing mediated by histone methylation underpins host adaptation in an oomycete plant pathogen.

Nucleic Acids Res. 2020; 
Wang L, Chen H,, Li J, Shu H, Zhang X, Wang Y,, Tyler BM, Dong S,.
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摘要

The relentless adaptability of pathogen populations is a major obstacle to effective disease control measures. Increasing evidence suggests that gene transcriptional polymorphisms are a strategy deployed by pathogens to evade host immunity. However, the underlying mechanisms of transcriptional plasticity remain largely elusive. Here we found that the soybean root rot pathogen Phytophthora sojae evades the soybean Resistance gene Rps1b through transcriptional polymorphisms in the effector gene Avr1b that occur in the absence of any sequence variation. Elevated levels of histone H3 Lysine27 tri-methylation (H3K27me3) were observed at the Avr1b locus in a naturally occurring Avr1b-silenced strain but not in an Avr... More

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