Patterns of mitochondrial inheritance in the myxogastridDidymium iridis
Margaret E. Silliker, Jeffery L. Liles, Jason A. Monroe
Abstract
Margaret E. Silliker, Jeffery L. Liles, Jason A. Monroe
Abstract
Seven strains of the Central American A1 mating series of Didymium iridis were crossed in all possible combinations. Individual plasmodia were isolated and grown to a stage where total DNA could be isolated for DNA-DNA hybridization with cloned mitochondrial DNA probes to determine the pattern of mitochondrial inheritance. Random, biased, and dominant patterns of uniparental mitochondrial inheritance were observed, as well as rare cases of biparental inheritance, depending on the particular parental strains mated. The diverse patterns suggest that the factors controlling mitochondrial inheritance in D. iridis are complex. Differences between trials of the same matings suggest that non-genetic factors may also influence mitochondrial inheritance.
OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Seven strains of the Central American A1 mating series of Didymium iridis were crossed in all possible combinations. Individual plasmodia were isolated and grown to a stage where total DNA could be isolated for DNA-DNA hybridization with cloned mitochondrial DNA probes to determine the pattern of mitochondrial inheritance. Random, biased, and dominant patterns of uniparental mitochondrial inheritance were observed, as well as rare cases of biparental inheritance, depending on the particular parental strains mated. The diverse patterns suggest that the factors controlling mitochondrial inheritance in D. iridis are complex. Differences between trials of the same matings suggest that non-genetic factors may also influence mitochondrial inheritance.
Key concepts: Biology, Mitochondrial DNA, Non-Mendelian inheritance, Genetics, Inheritance (genetic algorithm), Extranuclear inheritance, Nuclear gene, Mating