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首页> 外文期刊>New Zealand Journal of Zoology >Histone H3K9 and H3K27 methylation regulates fungal alkaloid biosynthesis in a fungal endophyte-plant symbiosis
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Histone H3K9 and H3K27 methylation regulates fungal alkaloid biosynthesis in a fungal endophyte-plant symbiosis

机译:组蛋白H3K9和H3K27甲基化调节真菌内生植物共生中真菌生物碱的生物合成

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Epichloe festucae is a filamentous fungus that forms a mutually beneficial symbiotic association with Lolium perenne. This endophyte synthesizes bioprotective lolitrems (ltm) and ergot alkaloids (eas) in planta but the mechanisms regulating expression of the corresponding subtelomeric gene clusters are not known. We show here that the status of histone H3 lysine 9 and lysine 27 trimethylation (H3K9me3/H3K27me3) at these alkaloid gene loci are critical determinants of transcriptional activity. Using ChIP-qPCR we found that levels of H3K9me3 and H3K27me3 were reduced at these loci in plant infected tissue compared to axenic culture. Deletion of E.festucae genes encoding the H3K9- (ClrD) or H3K27- (EzhB) methyltransferases led to derepression of ltm and eas gene expression under non-symbiotic culture conditions and a further enhancement of expression in the double deletion mutant. These changes in gene expression were matched by corresponding reductions in H3K9me3 and H3K27me3 marks. Both methyltransferases are also important for the symbiotic interaction between E.festucae and L.perenne. Our results show that the state of H3K9 and H3K27 trimethylation of E.festucae chromatin is an important regulatory layer controlling symbiosis-specific expression of alkaloid bioprotective metabolites and the ability of this symbiont to form a mutualistic interaction with its host.
机译:毛果番荔枝为丝状真菌,与黑麦草互利共生。该内生菌在植物中合成了生物保护性lolitrems(ltm)和麦角生物碱(eas),但尚不知道调节相应亚端粒基因簇表达的机制。我们在这里显示,在这些生物碱基因座处的组蛋白H3赖氨酸9和赖氨酸27三甲基化(H3K9me3 / H3K27me3)的状态是转录活性的关键决定因素。使用ChIP-qPCR,我们发现植物感染的组织中这些位点处的H3K9me3和H3K27me3的水平与轴突培养相比降低了。在非共生培养条件下,缺失编码H3K9-(ClrD)或H3K27-(EzhB)甲基转移酶的鸡蜡菊基因导致了ltm和eas基因表达的抑制,并进一步增强了双缺失突变体的表达。基因表达的这些变化与H3K9me3和H3K27me3标记的相应减少相匹配。两种甲基转移酶对于E.festucae和L.perenne之间的共生相互作用也很重要。我们的结果表明,凤眼莲染色质的H3K9和H3K27三甲基化状态是控制生物碱生物保护代谢产物共生特异性表达及其与宿主共生相互作用的重要调控层。

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