首页> 美国卫生研究院文献>PLoS Genetics >The Genomes of the Fungal Plant Pathogens Cladosporium fulvum and Dothistroma septosporum Reveal Adaptation to Different Hosts and Lifestyles But Also Signatures of Common Ancestry
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The Genomes of the Fungal Plant Pathogens Cladosporium fulvum and Dothistroma septosporum Reveal Adaptation to Different Hosts and Lifestyles But Also Signatures of Common Ancestry

机译:真菌植物病原菌叶枯病菌和臭豆菌的基因组显示出对不同宿主和生活方式的适应性但也具有共同祖先的特征。

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摘要

We sequenced and compared the genomes of the Dothideomycete fungal plant pathogens Cladosporium fulvum (Cfu) (syn. Passalora fulva) and Dothistroma septosporum (Dse) that are closely related phylogenetically, but have different lifestyles and hosts. Although both fungi grow extracellularly in close contact with host mesophyll cells, Cfu is a biotroph infecting tomato, while Dse is a hemibiotroph infecting pine. The genomes of these fungi have a similar set of genes (70% of gene content in both genomes are homologs), but differ significantly in size (Cfu >61.1-Mb; Dse 31.2-Mb), which is mainly due to the difference in repeat content (47.2% in Cfu versus 3.2% in Dse). Recent adaptation to different lifestyles and hosts is suggested by diverged sets of genes. Cfu contains an α-tomatinase gene that we predict might be required for detoxification of tomatine, while this gene is absent in Dse. Many genes encoding secreted proteins are unique to each species and the repeat-rich areas in Cfu are enriched for these species-specific genes. In contrast, conserved genes suggest common host ancestry. Homologs of Cfu effector genes, including Ecp2 and Avr4, are present in Dse and induce a Cf-Ecp2- and Cf-4-mediated hypersensitive response, respectively. Strikingly, genes involved in production of the toxin dothistromin, a likely virulence factor for Dse, are conserved in Cfu, but their expression differs markedly with essentially no expression by Cfu in planta. Likewise, Cfu has a carbohydrate-degrading enzyme catalog that is more similar to that of necrotrophs or hemibiotrophs and a larger pectinolytic gene arsenal than Dse, but many of these genes are not expressed in planta or are pseudogenized. Overall, comparison of their genomes suggests that these closely related plant pathogens had a common ancestral host but since adapted to different hosts and lifestyles by a combination of differentiated gene content, pseudogenization, and gene regulation.
机译:我们测序和比较了十二生丝真菌真菌植物病原体克氏假单胞菌(Cado)(Syn。Passalora fulva)和Dothistroma septosporum(Dse)的基因组,它们在系统发育上密切相关,但是具有不同的生活方式和宿主。尽管两种真菌都在细胞外生长,并与宿主叶肉细胞紧密接触,但Cfu是感染番茄的一种生物营养菌,而Dse是感染松树的一种半生物营养菌。这些真菌的基因组具有相似的基因集(两个基因组中70%的基因含量均为同源物),但大小差异显着(Cfu> 61.1-Mb; Dse 31.2-Mb),这主要是由于重复含量(Cfu中为47.2%,Dse中为3.2%)。不同的基因集表明最近适应不同的生活方式和宿主。 Cfu包含一个我们预测的番茄素排毒所需的α-玉米淀粉酶基因,而Dse中不存在该基因。编码分泌蛋白的许多基因对于每个物种而言都是唯一的,并且Cfu中重复序列丰富的区域针对这些物种特有的基因而富集。相反,保守的基因暗示了共同的宿主血统。 Dse中存在Cfu效应子基因的同系物,包括Ecp2和Avr4,分别诱导Cf-Ecp2-和Cf-4介导的超敏反应。令人惊讶的是,毒素 Dse 可能的致毒因子dothistromin的产生所涉及的基因在 Cfu 中是保守的,但是它们的表达明显不同,基本上没有表达植物中的Cfu 。同样, Cfu 的碳水化合物降解酶目录与死灵或半生生物的相似,并且比 Dse 具有更大的果胶分解基因阿森纳,但其中许多基因不是在植物中表达 或被伪生成。总体而言,对它们的基因组进行比较表明,这些密切相关的植物病原体具有共同的祖先宿主,但是由于它们通过区分基因含量,假基因化和基因调控相结合而适应了不同宿主和生活方式。

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