Skip to main content
Log in

Evidence for a life span-prolonging effect of a linear plasmid in a longevity mutant of Podospora anserina

  • Original Paper
  • Published:
Molecular and General Genetics MGG Aims and scope Submit manuscript

Abstract

The linear mitochondrial plasmid pAL2-1 of the long-lived mutant AL2 of Podospora anserina was demonstrated to be able to integrate into the high molecular weight mitochondrial DNA (mtDNA). Hybridization analysis and densitometric evaluation of the mitochondrial genome isolated from cultures of different ages revealed that the mtDNA is highly stable during the whole life span of the mutant. In addition, and in sharp contrast to the situation in certain senescence-prone Neurospora strains, the mutated P. anserina mtDNA molecules containing integrated plasmid copies are not suppressive to wild-type genomes. As demonstrated by hybridization and polymerase chain reaction (PCR) analysis, the proportion of mtDNA molecules affected by the integration of pAL2-1 fluctuates between 10% and 50%. Comparative sequence analysis of free and integrated plasmid copies revealed four differences within the terminal inverted repeats (TIRs). These point mutations are not caused by the integration event since they occur subsequent to integration and at various ages. Interestingly, both repeats contain identical sequences indicating that the mechanism involved in the maintenance of perfect TIRs is active on both free and integrated plasmid copies. Finally, in reciprocal crosses between AL2 and the wild-type strain A, some abnormal progeny were obtained. One group of strains did not contain detectable amounts of plasmid pAL2-1, although the mtDNA was clearly of the type found in the long-lived mutant AL2. These strains exhibited a short-lived phenotype. In contrast, one strain was selected that was found to contain wild-type A-specific mitochondrial genomes and traces of pAL2-1. This strain was characterized by an increased life span. Altogether these data suggest that the linear plasmid pAL2-1 is involved in the expression of longevity in mutant AL2.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Akins RA, Kelley RL, Lambowitz AM (1986) Mitochondrial plasmids of Neurospora: integration into mitochondrial DNA and evidence for reverse transcription in mitochondria. Cell 47:505–516

    Google Scholar 

  • Belcour L, Rossignal M, Sellem C, Oldani C (1992) Plasticity and instability of the mitochondrial genome in Podospora anserina. Abstracts First European Conference on Fungal Genetics, Nottingham, OPl/1

  • Bennett KL, Pearson GD (1993) Sequence conversion during post-replicative adenovirus overlap recombination. Proc Natl Acad Sci USA 90:1397–1401

    Google Scholar 

  • Bertrand H, Chan BSS, Griffiths AJF (1985) Insertion of a foreign nucleotide sequence into mitochondrial DNA causes senescence in Neurospora intermedia. Cell 41:877–884

    Google Scholar 

  • Bertrand H, Griffiths AJF, Court DA, Cheng CK (1986) An extrachromosomal plasmid is the etiological precursor of kaIDNA insertion sequences in the mitochondrial chromosome of senescent Neurospora. Cell 47:829–837

    Google Scholar 

  • Court DA, Bertrand H (1992) Genetic organization and structural features of maranhar, a senescence-inducing linear mitochondrial plasmid of Neurospora crassa. Curr Genet 22:385–397

    Google Scholar 

  • Court DA, Griffiths AJF, Kraus SR, Russell PJ, Bertrand H (1991) A new senescence-inducing mitochondrial linear plasmid in field-isolated Neurospora crassa strains from India. Curr Genet 19:129–137

    Google Scholar 

  • Cummings DJ, McNally KL, Domenico JM, Matsuura ET (1990) The complete DNA sequence of the mitochondrial genome of Podospora anserina. Curr Genet 17:375–402

    Google Scholar 

  • Dasgupta J, Chan BS, Keith MA, Bertrand H (1988) Kalilo insertion sequences from the senescent strains of Neurospora intermedia are flanked by long inverted repeats of mitochondrial DNA. Genome 30 [Suppl] 1:23.81.27

    Google Scholar 

  • D'Mello NP, Jazwinski SM (1991) Telomer length constancy during aging of Saccharomyces cerevisiae. J Bacteriol 173:6709–6713

    Google Scholar 

  • Düvell A, Hessberg-Stutzke H, Oeser B, Rogmann-Backwinkel P, Tudzynski P (1988) Structural and functional analysis of mitochondrial plasmids in Claviceps purpurea. Mol Gen Genet 214:128–134

    Google Scholar 

  • Esser K (1974) Podospora anserina. In: King RC (ed) Handbook of genetics I. Plenum Press, New York, pp 531–551

    Google Scholar 

  • Gessner-Ulrich K, Tudzynski P (1992) Transcripts and translation products of a mitochondrial plasmid of Claviceps purpurea. Curr Genet 21:249–254

    Google Scholar 

  • Griffiths AJF (1992) Fungal senescence. Annu Rev Genet 26:351–372

    Google Scholar 

  • Griffiths AJF, Kraus SR, Barton R, Court DA, Meyers CJ, Bertrand H (1990) Heterokaryotic transmission of senescence plasmid DNA in Neurospora. Curr Genet 17:139–145

    Google Scholar 

  • Harley CB, Futcher AB, Greider CW (1990) Telomeres shorten during ageing of human fibroblasts. Nature 345:458–460

    Google Scholar 

  • Hastie ND, Dempster M, Dunlop MG, Thompson AM, Green DK, Allshire RC (1990) Telomere reduction in human colorectal carcinoma and with ageing. Nature 346:866–868

    Google Scholar 

  • Hermanns J, Osiewacz HD (1992) The linear mitochondrial plasmid pAL2-1 of a long-lived Podospora anserina mutant is an invertron encoding a DNA and RNA polymerase. Curr Genet 22:491–500

    Google Scholar 

  • Hermanns J, Osiewacz HD (1994) Three mitochondrial unassigned open reading frames of Podospora anserina represent remnants of a viral-type RNA polymerase gene. Curr Genet 25:150–157

    Google Scholar 

  • Kempken F (1993) Horizontal gene transfer of a fungal linear plasmid. Abstracts 17th Fungal Genetics Conference, p 72

  • Koll F, Begel O, Belcour L (1987) Insertion of short poly d(A)d(T) sequences at recombination junctions in mitochondrial DNA of Podospora. Mol Gen Genet 209:630–632

    Google Scholar 

  • Kück U, Kappelhoff B, Esser K (1985a) Despite mtDNA polymorphism the mobile intron (p1DNA) of the COI gene is present in ten different races of Podospora anserina. Curr Genet 10:59–67

    Google Scholar 

  • Kück U, Osiewacz HD, Schmidt U, Kappelhoff B, Schulte E, Stahl U, Esser K (1985b) The onset of senescence is affected by DNA rearrangements of a discontinuous mitochondrial gene in Podospora anserina. Curr Genet 9:373–382

    Google Scholar 

  • Kuiper MTR, Sabourin JR, Lambowitz AM (1990) Identification of the reverse transcriptase encoded by the Mauriceville and Varkud mitochondrial plasmids of Neurospora. J Biol Chem 12:6936–6943

    Google Scholar 

  • Landau NR, Schatz DG, Rosa M, Baltimore D (1987) Increased frequency of N-region insertion in a murine pre-B-cell line infected with a terminal deoxynucleotidyl transferase retroviral expression vector. Mol Cel Biol 7:3237–3243

    Google Scholar 

  • Levings III CS, Kim BD, Pring DR, Conde MF, Mans RJ, Laughan JR, Gabay-Laughan SJ (1980) Cytoplasmic reversion of cms-S in maize: association with a transpositional element. Science 209:1021–1023

    Google Scholar 

  • Lippe R, Graham FL (1989) Adenoviruses with nonidentical terminal sequences are viable. J Virol 63:5133–5141

    Google Scholar 

  • Maniatis T, Fritsch EF, Sambrook J (1982) Molecular cloning, a laboratory manual. Cold Spring Harbor Laboratory Press, New York

    Google Scholar 

  • Meinhardt F, Kempken F, Kamper J, Esser K (1990) Linear plasmids among eukaryotes: fundamentals and application. Curr Genet 17:89–95

    Google Scholar 

  • Meyers CJ, Griffiths AJF, Bertrand H (1989) Linear kalilo DNA is a Neurospora mitochondrial plasmid that integrates into mitochondrial DNA. Mol Gen Genet 220:113–120

    Google Scholar 

  • Obermaier-Kusser B, Müller-Höcker J, Nelson I, Lestienne P, Enter T, Gerbitz KD (1990) Different copy numbers of apparently identical deleted mitochondrial DNA in tissues from a patient with Kearns-Sayre-syndrome detected by PCR: Biochem Biophys Res Commun 169:1007–1015

    Google Scholar 

  • Obermaier-Kusser B, Paetzke-Brunner I, Enter C, Müller-Höcker J, Zierz S, Ruitenbeck W, Gerbitz KD (1991) Respiratory chain activity in tissues from patients (MELAS) with a point mutation of the mitochondrial genome [tRNALeu(URR)]. FEBS Lett 286:67–70

    Google Scholar 

  • Osiewacz HD, Hermanns J, Marcou D, Triffi M, Esser K (1989) Mitochondrial DNA rearrangements are correlated with a delayed amplification of the mobile intron (plDNA) in a long lived mutant of Podospora anserina. Mutat Res 219:9–15

    Google Scholar 

  • Rieck A, Griffiths AJF, Bertrand H (1982) Mitochondrial variation of Neurospora intermedia from nature. Can J Genet Cytol 24:741–749

    Google Scholar 

  • Roth DB, Chang X-B, Wilson JH (1989) Comparison off filler DNA in immune, nonimmune, and oncogenic rearrangements suggests multiple mechanisms of formation. Mol Cell Biol 9:3049–3057

    Google Scholar 

  • Sainsard-Chanet A, Begel O (1990) Insertion of an LrDNA gene fragment and of filler DNA at a mitochondrial exon-intron junction in Podospora. Nucleic Acids Res 18:779–783

    Google Scholar 

  • Sambrook J, Fritsch EF, Maniatis T (1989) Molecular cloning. A laboratory manual. Cold Spring Harbor Laboratory Press, New York

    Google Scholar 

  • Schulte E, Kück U, Esser K (1988) Extrachromosomal mutants from Podospora anserina: Permanent vegetative growth in spite of multiple recombination events in the mitochondrial genome. Mol Gen Genet 211:342–349

    Google Scholar 

  • Stahl U, Lemke PA, Tudzynski P, Kück U, Esser K (1978) Evidence for a plasmid-like DNA in a filamentous fungus, the ascomycete Podospora anserina. Mol Gen Genet 162:341–343

    Google Scholar 

  • Steinhibler W, Cummings DJ (1986) A DNA polymerase activity with characteristics of a reverse transcriptase in Podospora anserina. Curr Genet 10:389–392

    Google Scholar 

  • Tudzynksi P, Esser K (1986) Extrachromosomal genetics of Claviceps purpurea. II. Plasmids in various wild strains and integrated plasmid sequences in mitochondrial geneomic DNA. Curr Genet 10:463–467

    Google Scholar 

  • Tudzynski P, Stahl U, Esser K (1980) Transformation to senescence with plasmid like DNA in the ascomycete Podospora anserina. Curr Genet 2:181–184

    Google Scholar 

  • Vierny C, Keller AM, Begel O, Belcour L (1982) A sequence of mitochondrial DNA is associated with the onset of senescence in a fungus. Nature 291:157–159

    Google Scholar 

  • Yanisch-Perron C, Vieira J, Messing J (1985) Improved M13 phage cloning vectors and host strains: nucleotide sequences of the M13mp18 and pUC19 vectors. Gene 33:103–119

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Communicated by C. Hollenberg

Rights and permissions

Reprints and permissions

About this article

Cite this article

Hermanns, J., Asseburg, A. & Osiewacz, H.D. Evidence for a life span-prolonging effect of a linear plasmid in a longevity mutant of Podospora anserina . Molec. Gen. Genet. 243, 297–307 (1994). https://doi.org/10.1007/BF00301065

Download citation

  • Received:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00301065

Key words

Navigation