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在两种具有不同基因组结构的 Leptosphaeria maculans 中进行的无菌生长过程中组蛋白修饰的全基因组图谱绘制。

Genome-wide mapping of histone modifications during axenic growth in two species of Leptosphaeria maculans showing contrasting genomic organization.

机构信息

Université Paris-Saclay, INRAE, AgroParisTech, UMR BIOGER, 78850, Thiverval-Grignon, France.

Max Planck Institute for Evolutionary Biology, August-Thienemann-Str. 2, 24306, Plön, Germany.

出版信息

Chromosome Res. 2021 Jun;29(2):219-236. doi: 10.1007/s10577-021-09658-1. Epub 2021 May 21.

Abstract

Leptosphaeria maculans 'brassicae' (Lmb) and Leptosphaeria maculans 'lepidii' (Lml) are closely related phytopathogenic species that exhibit a large macrosynteny but contrasting genome structure. Lmb has more than 30% of repeats clustered in large repeat-rich regions, while the Lml genome has only a small amount of evenly distributed repeats. Repeat-rich regions of Lmb are enriched in effector genes, expressed during plant infection. The distinct genome structures of Lmb and Lml provide an excellent model for comparing the organization of pathogenicity genes in relation to the chromatin landscape in two closely related phytopathogenic fungi. Here, we performed chromatin immunoprecipitation (ChIP) during axenic culture, targeting histone modifications typical for heterochromatin or euchromatin, combined with transcriptomic analysis to analyze the influence of chromatin organization on gene expression. In both species, we found that facultative heterochromatin is enriched with genes lacking functional annotation, including numerous effector and species-specific genes. Notably, orthologous genes located in H3K27me3 domains are enriched with effector genes. Compared to other fungal species, including Lml, Lmb is distinct in having large H3K9me3 domains associated with repeat-rich regions that contain numerous species-specific effector genes. Discovery of these two distinctive heterochromatin landscapes now raises questions about their involvement in the regulation of pathogenicity, the dynamics of these domains during plant infection and the selective advantage to the fungus to host effector genes in H3K9me3 or H3K27me3 domains.

摘要

菜黑粉菌“芸薹属”(Lmb)和菜黑粉菌“黑芥属”(Lml)是密切相关的植物病原性物种,它们表现出大量的宏同线性,但基因组结构却截然不同。Lmb 中有超过 30%的重复序列聚集在大型重复丰富区域,而 Lml 基因组中只有少量均匀分布的重复序列。Lmb 的重复丰富区域富含效应基因,这些基因在植物感染过程中表达。Lmb 和 Lml 的独特基因组结构为比较两个密切相关的植物病原真菌中致病性基因的组织与染色质景观提供了一个极好的模型。在这里,我们在无菌培养中进行了染色质免疫沉淀(ChIP)实验,针对异染色质或常染色质的典型组蛋白修饰进行了靶向,同时结合转录组分析,分析了染色质组织对基因表达的影响。在这两个物种中,我们发现兼性异染色质富含缺乏功能注释的基因,包括许多效应基因和物种特异性基因。值得注意的是,位于 H3K27me3 结构域中的直系同源基因富含效应基因。与其他真菌物种相比,包括 Lml,Lmb 的特征在于与富含重复序列的区域相关的大型 H3K9me3 结构域,这些区域包含许多物种特异性的效应基因。这两种独特异染色质景观的发现现在提出了一些问题,即它们是否参与了致病性的调节、这些结构域在植物感染过程中的动态变化,以及真菌将效应基因选择性地定位于 H3K9me3 或 H3K27me3 结构域的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00b7/8159818/f3432e37a6a9/10577_2021_9658_Fig1_HTML.jpg

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