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Evolutionary compromises in fungal fitness: hydrophobins can hinder the adverse dispersal of conidiospores and challenge their survival

机译:真菌健身中的进化妥协:疏水蛋白可以阻碍Conidiospores的不利分散,并挑战他们的存活率

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摘要

Fungal evolutionary biology is impeded by the scarcity of fossils, irregular life cycles, immortality, and frequent asexual reproduction. Simple and diminutive bodies of fungi develop inside a substrate and have exceptional metabolic and ecological plasticity, which hinders species delimitation. However, the unique fungal traits can shed light on evolutionary forces that shape the environmental adaptations of these taxa. Higher filamentous fungi that disperse through aerial spores produce amphiphilic and highly surface-active proteins called hydrophobins (HFBs), which coat spores and mediate environmental interactions. We exploited a library of HFB-deficient mutants for two cryptic species of mycoparasitic and saprotrophic fungi from the genusTrichoderma(Hypocreales) and estimated fungal development, reproductive potential, and stress resistance. HFB4 and HFB10 were found to be relevant forTrichodermafitness because they could impact the spore-mediated dispersal processes and control other fitness traits. An analysis in silico revealed purifying selection for all cases except for HFB4 fromT. harzianum, which evolved under strong positive selection pressure. Interestingly, the deletion of thehfb4gene inT. harzianumconsiderably increased its fitness-related traits. Conversely, the deletion ofhfb4inT. guizhouenseled to the characteristic phenotypes associated with relatively low fitness. The net contribution of thehfb4gene to fitness was found to result from evolutionary tradeoffs between individual traits. Our analysis of HFB-dependent fitness traits has provided an evolutionary snapshot of the selective pressures and speciation process in closely related fungal species.
机译:真菌进化生物学受到化石,不规则生命周期,不朽和频繁无性繁殖的稀缺来阻碍。真菌的简单和小体在基材内部发展,具有出色的代谢和生态可塑性,其妨碍物种划界。然而,独特的真菌特征可以阐明塑造这些分类群环境适应的进化力。通过空中孢子分散的更高的丝状真菌产生含有疏水蛋白(HFB)的两亲性和高度表面活性蛋白,其涂覆孢子并介导环境相互作用。我们利用Genustrichoderma(囊胚)和估计真菌发育,生殖潜力和应力抗性的两种霉菌霉菌突变体的HFB缺乏突变体。发现HFB4和HFB10是相关的Forthodermafitness,因为它们可能会影响孢子介导的分散过程并控制其他健身性状。除了HFB4 FROF之外,Silico的分析显示所有案例的净化选择。 Harzianum,在强烈的积极选择压力下演变。有趣的是,删除了HFB4gene int。 HarzianumcoSidenty增加了其健身相关的性状。相反,删除HFB4int。贵州塞对具有相对较低的健身相关的特征表型。发现HFB4庚酮对健身的净贡献导致各个特征之间的进化权衡。我们对HFB依赖性健身性状的分析提供了一种在密切相关的真菌物种中选择性压力和形态过程的进化快照。

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    Nanjing Agr Univ Key Lab Plant Immun Jiangsu Prov Key Lab Solid Organ Waste Utilizat Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Fungal Genom Lab FungiG Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Fungal Genom Lab FungiG Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Fungal Genom Lab FungiG Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Fungal Genom Lab FungiG Nanjing 210095 Jiangsu Peoples R China;

    TU Wien Inst Chem Environm &

    Biosci Engn ICEBE A-1060 Vienna Austria;

    Nanjing Agr Univ Fungal Genom Lab FungiG Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Key Lab Plant Immun Jiangsu Prov Key Lab Solid Organ Waste Utilizat Nanjing 210095 Jiangsu Peoples R China;

    KML Vis GmbH A-8020 Graz Austria;

    KML Vis GmbH A-8020 Graz Austria;

    KML Vis GmbH A-8020 Graz Austria;

    TU Wien Inst Chem Environm &

    Biosci Engn ICEBE A-1060 Vienna Austria;

    TU Wien Inst Chem Environm &

    Biosci Engn ICEBE A-1060 Vienna Austria;

    Nanjing Agr Univ Key Lab Plant Immun Jiangsu Prov Key Lab Solid Organ Waste Utilizat Nanjing 210095 Jiangsu Peoples R China;

    Nanjing Agr Univ Key Lab Plant Immun Jiangsu Prov Key Lab Solid Organ Waste Utilizat Nanjing 210095 Jiangsu Peoples R China;

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  • 正文语种 eng
  • 中图分类 微生物学;
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