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Updated: Apr 12, 2026

Genotyping Single Nucleotide Polymorphisms in the Mitochondrial Genome by Pyrosequencing
Published on: February 10, 2023
Mitochondrial activity in gametes and transmission of viable mtDNA
Liliana Milani1, Fabrizio Ghiselli2
1Dipartimento di Scienze Biologiche, Geologiche ed Ambientali, Università di Bologna, Via Selmi 3, 40126, Bologna, Italy. liliana.milani@unibo.it.
Background:
The retention of a genome in mitochondria (mtDNA) has several consequences, among which the problem of ensuring a faithful transmission of its genetic information through generations despite the accumulation of oxidative damage by reactive oxygen species (ROS) predicted by the free radical theory of ageing. A division of labour between male and female germ line mitochondria was proposed: since mtDNA is maternally inherited, female gametes would prevent damages by repressing oxidative phosphorylation, thus being quiescent genetic templates. We assessed mitochondrial activity in gametes of an unusual biological system (doubly uniparental inheritance of mitochondria, DUI), in which also sperm mtDNA is transmitted to the progeny, thus having to overcome the problem of maintaining genetic information viability while producing ATP for swimming.
Results:
Ultrastructural analysis shows no difference in the conformation of mitochondrial cristae in male and female mature gametes, while mitochondria in immature oocytes exhibit a simpler internal structure. Our data on transcriptional activity in germ line mitochondria show variability between sexes and different developmental stages, but we do not find evidence for transcriptional quiescence of mitochondria. Our observations on mitochondrial membrane potential are consistent with mitochondria being active in both male and female gametes.
Conclusions:
Our findings and the literature we discussed may be consistent with the hypothesis that template mitochondria are not functionally silenced, on the contrary their activity might be fundamental for the inheritance mechanism. We think that during gametogenesis, fertilization and embryo development, mitochondria undergo selection for different traits (e.g. replication, membrane potential), increasing the probability of the transmission of functional organelles. In these phases of life cycle, the great reduction in mtDNA copy number per organelle/cell and the stochastic segregation of mtDNA variants would greatly improve the efficiency of selection. When a higher mtDNA copy number per organelle/cell is present, selection on mtDNA deleterious mutants is less effective, due to the buffering effect of wild-type variants. In our opinion, a combination of drift and selection on germ line mtDNA population, might be responsible for the maintenance of viable mitochondrial genetic information through generations, and a mitochondrial activity would be necessary for the selective process.
Insights
Mitochondria in both male and female gametes are active, challenging the idea of female gamete mitochondrial quiescence. This activity is crucial for maintaining viable mitochondrial DNA across generations through selection and drift.
Area of Science:
- Mitochondrial biology
- Genetics
- Reproductive biology
Background:
- Mitochondrial DNA (mtDNA) faces oxidative damage, posing challenges for generational transmission.
- A proposed model suggests female gametes are quiescent to protect mtDNA, while male gametes are active for motility.
- Doubly Uniparental Inheritance (DUI) systems provide a unique model to study mitochondrial activity in both sperm and egg.
Purpose of the Study:
- To investigate mitochondrial activity in male and female gametes within a DUI system.
- To determine if mitochondria in female gametes are transcriptionally quiescent.
- To understand the role of mitochondrial activity in the inheritance of mitochondrial genetic information.
Main Methods:
- Ultrastructural analysis of mitochondria in mature and immature gametes.
- Assessment of transcriptional activity in germ line mitochondria.
- Measurement of mitochondrial membrane potential in gametes.
Main Results:
- No significant differences in mitochondrial cristae conformation between mature male and female gametes.
- Immature oocytes show simpler mitochondrial internal structure.
- Mitochondria exhibit transcriptional activity and are not quiescent in either sex; membrane potential indicates activity.
Conclusions:
- Mitochondrial activity, rather than quiescence, may be essential for inheritance mechanisms.
- Selection and genetic drift acting on germ line mtDNA populations ensure the maintenance of viable mitochondrial genetic information.
- Mitochondrial activity during gametogenesis, fertilization, and embryonic development likely facilitates the selection of functional organelles for transmission.
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