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应对镰刀菌复合种:宿主范围可塑性与基因组变异

Navigating the Fusarium species complex: Host-range plasticity and genome variations.

作者信息

Armer Victoria J, Kroll Erika, Darino Martin, Smith Daniel P, Urban Martin, Hammond-Kosack Kim E

机构信息

Protecting Crops and the Environment, Rothamsted Research, Harpenden, Herts, AL5 2JQ, UK.

Intelligent Data Ecosystems, Rothamsted Research, Harpenden, Herts, AL5 2JQ, UK.

出版信息

Fungal Biol. 2024 Dec;128(8 Pt B):2439-2459. doi: 10.1016/j.funbio.2024.07.004. Epub 2024 Jul 14.

DOI:10.1016/j.funbio.2024.07.004
PMID:39653491
Abstract

The Ascomycete genus Fusarium, first introduced by Link in 1809, currently consists of 431 species and 3558 unclassified isolates and hybrids (according to NCBI Taxonomy lists). Collectively, these fungi have diverse lifestyles and infection cycles exploiting a wide range of environments, hosts, ecological niches, and nutrient sources. Here, we carried out a pan-Fusarium species review to describe and explore the glamorous, and the less attractive niches, exploited by pathogenic and endophytic species. We survey species that infect plant, human, animal and/or invertebrate hosts, free-living non-pathogenic species dwelling in land, air or water-based natural ecosystems, through to those species that exploit human-modified environments or are cultivated in industrial production systems. Fully sequenced, assembled and annotated reference genomes are already available for 189 Fusarium species, many at chromosome scale. In addition, for some of the world's most important species extensive single species pangenomes or closely related formae speciales genome clusters are readily available. Previous comparative genomics studies have focussed on taxonomically restricted clusters of Fusarium species. We now investigate potential new relationships between these vastly contrasting Fusarium biologies, niches and environmental occupancies and the evolution of their respective genomes.

摘要

子囊菌纲镰刀菌属由林克于1809年首次提出,目前包含431个物种以及3558个未分类的分离株和杂交种(根据美国国立生物技术信息中心的分类列表)。总体而言,这些真菌具有多样的生活方式和感染周期,可利用广泛的环境、宿主、生态位和营养来源。在此,我们对镰刀菌属进行了全面综述,以描述和探索致病和内生物种所利用的迷人以及不太引人关注的生态位。我们调查了感染植物、人类、动物和/或无脊椎动物宿主的物种,生活在陆地、空气或水基自然生态系统中的自由生活非致病物种,以及那些利用人类改造环境或在工业生产系统中培养的物种。目前已有189种镰刀菌的全基因组被测序、组装和注释,其中许多是染色体水平的。此外,对于一些世界上最重要的物种,广泛的单物种泛基因组或密切相关的专化型基因组簇也很容易获得。以往的比较基因组学研究主要集中在镰刀菌属分类学上受限的类群。我们现在研究这些截然不同的镰刀菌生物学、生态位和环境占据情况与其各自基因组进化之间潜在的新关系。

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Navigating the Fusarium species complex: Host-range plasticity and genome variations.应对镰刀菌复合种:宿主范围可塑性与基因组变异
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