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Manipulation of Ploidy in Caenorhabditis elegans
Published on: March 15, 2018
Diploidy within a Haploid Genus of Entomopathogenic Fungi
Knud Nor Nielsen1, João Felipe Moreira Salgado2,3, Myrsini Eirini Natsopoulou1
1Section for Organismal Biology, Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg C, Denmark.
Abstract:
Fungi in the genus Metarhizium are soil-borne plant-root endophytes and rhizosphere colonizers, but also potent insect pathogens with highly variable host ranges. These ascomycete fungi are predominantly asexually reproducing and ancestrally haploid, but two independent origins of persistent diploidy within the Coleoptera-infecting Metarhizium majus species complex are known and has been attributed to incomplete chromosomal segregation following meiosis during the sexual cycle. There is also evidence for infrequent sexual cycles in the locust-specific pathogenic fungus Metarhizium acridum (Hypocreales: Clavicipitaceae), which is an important entomopathogenic biocontrol agent used for the control of grasshoppers in agricultural systems as an alternative to chemical control. Here, we show that the genome of the M. acridum isolate ARSEF 324, which is formulated and commercially utilized is functionally diploid. We used single-molecule real-time sequencing technology to complete a high-quality assembly of ARSEF 324. K-mer frequencies, intragenomic collinearity between contigs and single nucleotide variant read depths across the genome revealed the first incidence of diploidy described within the species M. acridum. The haploid assembly of 44.7 Mb consisted of 20.8% repetitive elements, which is the highest proportion described of any Metarhizium species. The long-read diploid genome assembly sheds light on past research on this strain, such as unusual high UVB tolerance. The data presented here could fuel future investigation into the fitness landscape of fungi with infrequent sexual reproduction and aberrant ploidy levels, not least in the context of biocontrol agents.
Insights
The locust pathogen Metarhizium acridum (M. acridum) isolate ARSEF 324 was found to be diploid, not haploid. This discovery in a key biocontrol fungus opens new avenues for understanding fungal evolution and fitness.
Area of Science:
- Mycology
- Genomics
- Evolutionary Biology
Background:
- Metarhizium fungi are vital soil endophytes and insect pathogens.
- While typically haploid and asexual, some Metarhizium species exhibit diploidy.
- Metarhizium acridum is a crucial biocontrol agent for grasshopper management.
Purpose of the Study:
- To investigate the ploidy level of the commercially utilized Metarhizium acridum isolate ARSEF 324.
- To characterize the genome of M. acridum ARSEF 324 using advanced sequencing technology.
- To explore the implications of diploidy in M. acridum for biocontrol and fungal research.
Main Methods:
- Utilized single-molecule real-time (SMRT) sequencing for high-quality genome assembly.
- Analyzed k-mer frequencies and read depths to determine ploidy.
- Assessed intragenomic collinearity to confirm genome structure.
Main Results:
- The genome of M. acridum ARSEF 324 was confirmed as functionally diploid.
- This represents the first documented instance of diploidy in the M. acridum species.
- The genome assembly revealed 20.8% repetitive elements, the highest in Metarhizium.
Conclusions:
- The diploid nature of M. acridum ARSEF 324 provides insights into its unusual traits, like UVB tolerance.
- This finding encourages further research into the fitness of fungi with infrequent sexual reproduction and variable ploidy.
- Understanding diploidy in M. acridum can enhance its application as a biocontrol agent.
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