Convergent reductive evolution and host adaptation in Mycoavidus bacterial endosymbionts of Mortierellaceae fungi

IF 2.4 3区 生物学 Q3 GENETICS & HEREDITY Fungal Genetics and Biology Pub Date : 2023-09-15 DOI:10.1016/j.fgb.2023.103838
Kevin Amses , Alessandro Desiró , Abigail Bryson , Igor Grigoriev , Stephen Mondo , Anna Lipzen , Kurt LaButti , Robert Riley , Vasanth Singan , Paris Salazar-Hamm , Jason King , Elizabeth Ballou , Teresa Pawlowska , Rasheed Adeleke , Gregory Bonito , Jessie Uehling
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引用次数: 1

Abstract

Intimate associations between fungi and intracellular bacterial endosymbionts are becoming increasingly well understood. Phylogenetic analyses demonstrate that bacterial endosymbionts of Mucoromycota fungi are related either to free-living Burkholderia or Mollicutes species. The so-called Burkholderia-related endosymbionts or BRE comprise Mycoavidus, Mycetohabitans and Candidatus Glomeribacter gigasporarum. These endosymbionts are marked by genome contraction thought to be associated with intracellular selection. However, the conclusions drawn thus far are based on a very small subset of endosymbiont genomes, and the mechanisms leading to genome streamlining are not well understood. The purpose of this study was to better understand how intracellular existence shapes Mycoavidus and BRE functionally at the genome level. To this end we generated and analyzed 14 novel draft genomes for Mycoavidus living within the hyphae of Mortierellomycotina fungi. We found that our novel Mycoavidus genomes were significantly reduced compared to free-living Burkholderiales relatives. Using a genome-scale phylogenetic approach including the novel and available existing genomes of Mycoavidus, we show that the genus is an assemblage composed of two independently derived lineages including three well supported clades of Mycoavidus. Using a comparative genomic approach, we shed light on the functional implications of genome reduction, documenting shared and unique gene loss patterns between the three Mycoavidus clades. We found that many endosymbiont isolates demonstrate patterns of vertical transmission and host-specificity, but others are present in phylogenetically disparate hosts. We discuss how reductive evolution and host specificity reflect convergent adaptation to the intrahyphal selective landscape, and commonalities of eukaryotic endosymbiont genome evolution.

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腐霉科真菌分枝杆菌内共生体的聚合还原进化和宿主适应。
真菌和细胞内细菌内共生体之间的亲密联系越来越被人们所理解。系统发育分析表明,毛霉菌门真菌的细菌内共生体与自由生活的伯克霍尔德菌或软体动物门物种有关。所谓的伯克霍尔德菌相关内共生体或BRE包括Mycovidus、Mycetohabitans和Candidatus Glomeribecter gigasporraum。这些内共生体的基因组收缩被认为与细胞内选择有关。然而,迄今为止得出的结论是基于一小部分内共生体基因组,导致基因组精简的机制尚不清楚。本研究的目的是更好地了解细胞内存在如何在基因组水平上塑造支原体和BRE的功能。为此,我们生成并分析了生活在Mortiellomycotina真菌菌丝中的14个新的支原体基因组草案。我们发现,与自由生活的伯克霍尔德菌亲属相比,我们新的支原体基因组显著减少。使用基因组规模的系统发育方法,包括新的和现有的Mycovidus基因组,我们表明该属是由两个独立衍生的谱系组成的组合,包括三个得到充分支持的MycoVIDus分支。使用比较基因组方法,我们揭示了基因组减少的功能含义,记录了三个支原体分支之间共享和独特的基因丢失模式。我们发现,许多内共生体分离株表现出垂直传播模式和宿主特异性,但其他分离株存在于系统发育不同的宿主中。我们讨论了还原进化和宿主特异性如何反映对菌丝内选择性景观的趋同适应,以及真核内共生体基因组进化的共性。
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来源期刊
Fungal Genetics and Biology
Fungal Genetics and Biology 生物-遗传学
CiteScore
6.20
自引率
3.30%
发文量
66
审稿时长
85 days
期刊介绍: Fungal Genetics and Biology, formerly known as Experimental Mycology, publishes experimental investigations of fungi and their traditional allies that relate structure and function to growth, reproduction, morphogenesis, and differentiation. This journal especially welcomes studies of gene organization and expression and of developmental processes at the cellular, subcellular, and molecular levels. The journal also includes suitable experimental inquiries into fungal cytology, biochemistry, physiology, genetics, and phylogeny. Fungal Genetics and Biology publishes basic research conducted by mycologists, cell biologists, biochemists, geneticists, and molecular biologists. Research Areas include: • Biochemistry • Cytology • Developmental biology • Evolutionary biology • Genetics • Molecular biology • Phylogeny • Physiology.
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