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Genomic innovations linked to infection strategies across emerging pathogenic chytrid fungi

机译:基因组创新与新兴病原性壶菌真菌感染策略相关

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摘要

To understand the evolutionary pathways that lead to emerging infections of vertebrates, here we explore the genomic innovations that allow free-living chytrid fungi to adapt to and colonize amphibian hosts. Sequencing and comparing the genomes of two pathogenic species of Batrachochytrium to those of close saprophytic relatives reveals that pathogenicity is associated with remarkable expansions of protease and cell wall gene families, while divergent infection strategies are linked to radiations of lineage-specific gene families. By comparing the host–pathogen response to infection for both pathogens, we illuminate the traits that underpin a strikingly different immune response within a shared host species. Our results show that, despite commonalities that promote infection, specific gene-family radiations contribute to distinct infection strategies. The breadth and evolutionary novelty of candidate virulence factors that we discover underscores the urgent need to halt the advance of pathogenic chytrids and prevent incipient loss of biodiversity.
机译:为了了解导致脊椎动物新发感染的进化途径,我们在这里探索了基因组创新,这些创新允许自由生活的糜类真菌适应和定居两栖动物宿主。测序和比较杆状细菌的两个致病物种与腐生近亲的基因组的基因组,发现致病性与蛋白酶和细胞壁基因家族的显着扩展有关,而不同的感染策略与谱系特异性基因家族的辐射有关。通过比较宿主和病原体对两种病原体对感染的反应,我们阐明了共同宿主物种内显着不同的免疫反应的特征。我们的结果表明,尽管存在促进感染的共性,但特定的基因家族辐射却有助于形成独特的感染策略。我们发现的候选毒力因子的广度和进化的新颖性凸显了迫切需要停止病原性壶菌的进展并防止生物多样性的初期丧失。

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