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A circular mitochondrial plasmid incites hypovirulence in some strains of Cryphonectria parasitica
C B Monteiro-Vitorello1, D Baidyaroy, J A Bell
1Department of Microbiology, Michigan State University, East Lansing 48824-1101, USA.
Abstract:
In the chestnut-blight fungus Cryphonectria parasitica, a plasmid, pCRY1, occurs in the mitochondria of several strains isolated at various locations in the northeastern United States and Canada. The monomer of this plasmid is a 4.2-kb circular double-stranded DNA that has no detectable sequence homology with the 160-kb mitochondrial DNA of Ep155, a standard virulent laboratory strain of C. parasitica. The circular nature and oligomeric characteristics of the plasmid were deduced from the heterogeneous size of plasmid DNA molecules as detected by one- and two-dimensional gel-electrophoresis, the nature and alignment of restriction fragments, and the lack of detectable termini in the nucleotide sequence. The cytoplasmic location of the plasmid was deduced from its co-purification with mitochondria, uniparental (maternal) transmission in sexual crosses, dissociation from the nuclei of the donor strain during its horizontal transfer between vegetatively compatible strains through hyphal anastomoses, and mitochondrial codon usage (UGA = Try). The pCRY1 plasmid contains a long open reading frame that is transcribed and potentially encodes a unique 1214 amino-acid, B-family DNA polymerase similar to those encoded by the LaBelle and Fiji circular mitochondrial plasmids of Neurospora. In this subgroup of proteins, the DTD motif characteristic of B-family DNA polymerases is replaced by TTD. Amino-acid motifs related to those that are characteristic of the 3'-->5' exonuclease domains of B-family DNA polymerases have been located in the amino-terminal portion of the proteins. A comparison of isogenic plasmid-free and plasmid-containing cultures indicates that pCRY1 is an infectious agent that effects a reduction in the pathogenicity of some, but not all, strains of C. parasitica.
Insights
A novel mitochondrial plasmid, pCRY1, found in the chestnut blight fungus Cryphonectria parasitica, encodes a unique DNA polymerase. This infectious plasmid reduces fungal pathogenicity in some strains.
Area of Science:
- Mycology
- Molecular Biology
- Genetics
Background:
- The chestnut blight fungus, Cryphonectria parasitica, harbors a mitochondrial plasmid designated pCRY1.
- pCRY1 is a 4.2-kb circular double-stranded DNA, distinct from the host's mitochondrial DNA.
- This plasmid is found in various strains across northeastern US and Canada.
Purpose of the Study:
- To characterize the structure, location, and genetic content of the pCRY1 plasmid.
- To investigate the functional role and impact of pCRY1 on C. parasitica pathogenicity.
Main Methods:
- Plasmid characterization using gel electrophoresis and restriction fragment analysis.
- Nucleotide sequencing to determine plasmid structure and identify open reading frames.
- Comparative analysis of plasmid-free and plasmid-containing C. parasitica strains.
Main Results:
- pCRY1 is a circular DNA molecule with oligomeric forms, localized within mitochondria.
- It possesses a unique open reading frame encoding a putative B-family DNA polymerase with altered motifs.
- pCRY1 acts as an infectious agent, reducing pathogenicity in certain C. parasitica strains.
Conclusions:
- pCRY1 represents a novel infectious mitochondrial plasmid in C. parasitica.
- The encoded DNA polymerase may play a role in plasmid replication or function.
- pCRY1 influences fungal virulence, offering potential avenues for biological control strategies.