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The plastome mutator of Oenothera continues to function as originally described

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Summary

Recently, Lindenhahn et al. (1985) hypothesized that the plastome mutator (pm) system in Oenothera originated through contaiminating cross-pollination and that the variegation was an example of hybrid plastome-genome incompatibility. Their evidence was based on restriction pattern analyses of white sectors which showed wild-type plastome III patterns rather than the wild-type plastome I patterns of the green portions of their plants. Their hypothesis does not adequately account for the results which our laboratories have obtained independently; the pm-system of Oenothera continues to generate many new and different plastome mutations following the genetic parameters as published originally (Epp 1973). Our studies support mutator gene function. The restriction pattern of the chloroplast DNA of five newly isolated pm-induced variegation sectors are reported here to show a restriction pattern identical to the green wild-type plastids. The restriction pattern reported by Lindenhahn et al. (1985) for their white sector plastids is different than we would expect from a pm-induced plastome mutation. Their overall analysis did not utilize many of the salient features of the genetics of Oenothera and of the pm-system. The white sectors they observed are probably due to an accidental contamination by plastome III plastids. Suggestions are made for delineating experimentally plastome mutations and hybrid incompatibility. For future analyses, a comparative study of numerous pm-induced sectors is recommended, since the pm-system readily generates many different plastome mutations with independent origins. This comparison would greatly assist in the interpretation of restriction patterns.

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References

  • Cleland RE (1958) The evolution of the North American Oenotheras of the “biennis” group. Planta 51:378–398

    Google Scholar 

  • Epp MD (1972) Genetic analysis of induced nuclear and extrachromosomal chloroplast mutations of Oenothera hookeri T. and G. Ph.D. Dissertation, Cornell University, Ithaca, New York

    Google Scholar 

  • Epp MD (1973) Nuclear gene-induced plastome mutations in Oenothera hookeri. I. Genetic analysis. Genetics 75:465–483

    Google Scholar 

  • Gordon KHJ, Crouse EJ, Bohnert HJ, Herrmann RG (1982) Physical mapping of differences in chloroplast DNA of the five wild-type plastomes in Oenothera subsection Euoenothera. Theor Appl Genet 61:373–384

    Google Scholar 

  • Herrmann RG, Seyer P, Schedel R, Gordon K, Bisanz C, Winter P, Hildebrandt JW, Wlaschek M, Alt J, Driesel AJ, Sears BB (1980) The plastid chromosomes of several dicotyledons. In: Bücher T, Sebald W, Weiss H (eds) Biological chemistry of organelle formation. Springer, Berlin, Heidelberg, New York, pp 97–112

    Google Scholar 

  • Kutzelnigg H, Stubbe W (1974) Investigations on plastome mutants in Oenothera. I. General considerations. Subcell Biochem 3:73–89

    Google Scholar 

  • Lindenhahn MM, Metzlaff M, Hagemann R (1985) Remarkable restriction pattern differences between green and white branches of variegated ‘plastome mutator’ plants of Oenothera hookeri. Mol Gen Genet 200:503–505

    Google Scholar 

  • Metzlaff M, Pohlheim F, Börner T, Hagemann R (1982) Hybrid variegation in the genus Pelargonium. Curr Genet 5:245–249

    Google Scholar 

  • Schötz F (1958) Periodische Ausbleichungserscheinungen des Laubes bei Oenothera. Planta 52:351–392

    Google Scholar 

  • Sears BB (1983) Genetics and evolution of the chloroplast. Stadler Symp 15:119–139

    Google Scholar 

  • Stubbe W (1959) Genetische Analyse des Zusammenwirkens von Genom und Plastom bei Oenothera. Z Vererblehre 90:288–298

    Google Scholar 

  • Stubbe W (1960) Untersuchungen zur genetischen Analyse des Plastoms von Oenothera. Z Bot 48:191–218

    Google Scholar 

  • Stubbe W (1964) The role of the plastome in evolution of the genus Oenothera. Genetica 35:28–33

    Google Scholar 

  • van der Meer JP (1974) Hybrid chlorosis in interspecific crosses of Oenothera: polygenic inheritance of the nuclear component. Can J Genet Cytol 16:193–201

    Google Scholar 

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Communicated by H. Saedler

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Epp, M.D., Erion, J.L., Sears, B.B. et al. The plastome mutator of Oenothera continues to function as originally described. Mol Gen Genet 206, 515–518 (1987). https://doi.org/10.1007/BF00428894

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  • DOI: https://doi.org/10.1007/BF00428894

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