Advances in Genomics of Entomopathogenic Fungi
J B Wang1, R J St Leger1, C Wang2
1University of Maryland, College Park, MD, United States.
Abstract:
Fungi are the commonest pathogens of insects and crucial regulators of insect populations. The rapid advance of genome technologies has revolutionized our understanding of entomopathogenic fungi with multiple Metarhizium spp. sequenced, as well as Beauveria bassiana, Cordyceps militaris, and Ophiocordyceps sinensis among others. Phylogenomic analysis suggests that the ancestors of many of these fungi were plant endophytes or pathogens, with entomopathogenicity being an acquired characteristic. These fungi now occupy a wide range of habitats and hosts, and their genomes have provided a wealth of information on the evolution of virulence-related characteristics, as well as the protein families and genomic structure associated with ecological and econutritional heterogeneity, genome evolution, and host range diversification. In particular, their evolutionary transition from plant pathogens or endophytes to insect pathogens provides a novel perspective on how new functional mechanisms important for host switching and virulence are acquired. Importantly, genomic resources have helped make entomopathogenic fungi ideal model systems for answering basic questions in parasitology, entomology, and speciation. At the same time, identifying the selective forces that act upon entomopathogen fitness traits could underpin both the development of new mycoinsecticides and further our understanding of the natural roles of these fungi in nature. These roles frequently include mutualistic relationships with plants. Genomics has also facilitated the rapid identification of genes encoding biologically useful molecules, with implications for the development of pharmaceuticals and the use of these fungi as bioreactors.
Insights
Genomic studies reveal entomopathogenic fungi, often originating from plants, have evolved to infect insects. This research aids in developing novel mycoinsecticides and understanding fungal roles in ecosystems.
Area of Science:
- Mycology
- Genomics
- Evolutionary Biology
Background:
- Entomopathogenic fungi are key insect pathogens and population regulators.
- Advances in genome sequencing have significantly enhanced the study of fungi like Metarhizium spp., Beauveria bassiana, and Cordyceps militaris.
Purpose of the Study:
- To explore the evolutionary transition of fungi from plant-associated lifestyles to entomopathogenicity.
- To leverage genomic data for understanding virulence, host-switching, and ecological roles of entomopathogenic fungi.
Main Methods:
- Phylogenomic analysis of sequenced fungal genomes.
- Comparative genomics to identify virulence-related characteristics and protein families.
- Investigation of genomic structures related to ecological adaptation and host diversification.
Main Results:
- Phylogenomic data suggest entomopathogenicity is an acquired trait, with ancestors often being plant endophytes or pathogens.
- Genomic information illuminates the evolution of virulence, host range, and adaptation to diverse environments.
- The transition to insect pathogenicity offers insights into acquiring new functional mechanisms for virulence.
Conclusions:
- Genomic resources establish entomopathogenic fungi as model systems for parasitology, entomology, and speciation research.
- Understanding selective forces on fungal fitness traits can drive the development of mycoinsecticides and elucidate natural fungal roles, including plant mutualism.
- Genomics facilitates discovery of bioactive molecules for pharmaceuticals and biotechnological applications.
Related Concept Videos
Modern Molecular Taxonomy
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