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Mitochondrial membrane potential and ageing in Podospora anserina
F Koll1, C Sidoti, V Rincheval
1Centre de Génétique Moléculaire, Avenue de la Terrasse, 91198 Gif sur Yvette cedex, France.
Abstract:
Some filamentous fungi exhibit a limited vegetative growth with modifications in the mitochondria, suggesting the involvement of mitochondria in the process of ageing. Nevertheless, the relationship between the ability to grow or the fate of these cells relative to their mitochondrial membrane potential (Psi(mt)) level has not been investigated. Using flow cytometric analysis, we have assessed Psi(mt) in young and senescent cultures of wild type strains and mitochondrial or nuclear mutant strains of Podospora anserina that present very long or brief life span. When we compared two distinct populations of cells obtained from the same strain, we can show a correlation not only between Psi(mt) and ageing, but also between Psi(mt) and the frequency of regeneration and/or the life span. However, this relationship is not observed when we compared the cells obtained from different physiological states or mutants strains. These results allow us to suggest that the Psi(mt) modifications during senescence could be only one of the possible consequences of the process and are not the factor driving towards death. We also show that the driving force of Psi(mt) is principally maintained by the alternative pathway during ageing, suggesting a role of the alternative oxidase pathway.
Insights
Mitochondrial membrane potential (Psi(mt)) correlates with aging and lifespan in Podospora anserina. However, Psi(mt) changes during senescence may be a consequence, not the cause, of aging.
Area of Science:
- Cellular Biology
- Mycology
- Aging Research
Background:
- Filamentous fungi show limited growth and mitochondrial changes during aging.
- The link between mitochondrial membrane potential (Psi(mt)) and fungal aging remains unclear.
Purpose of the Study:
- Investigate the relationship between Psi(mt) and cellular aging in Podospora anserina.
- Determine if Psi(mt) influences fungal lifespan and regeneration capacity.
Main Methods:
- Flow cytometry was used to measure Psi(mt) in young and senescent Podospora anserina cultures.
- Analysis included wild-type, mitochondrial, and nuclear mutant strains with varying lifespans.
Main Results:
- Within the same strain, Psi(mt) correlated with aging, regeneration frequency, and lifespan.
- This correlation was not observed between different strains or physiological states.
- The alternative oxidase pathway appears to maintain Psi(mt) during aging.
Conclusions:
- Psi(mt) modifications during senescence are likely a consequence, not the driver, of aging in Podospora anserina.
- The alternative oxidase pathway plays a significant role in maintaining Psi(mt) during the aging process.