Length heteroplasmy of sturgeon mitochondrial DNA: An illegitimate elongation model

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Abstract

Extensive length polymorphism and heteroplasmy (multiple forms within an individual) of the D-loop region are observed in mitochondrial DNA of the white sturgeon (Acipenser transmontanus). The nucleotide sequence of this region, for both a short and a long form, shows that the differences are due to variable numbers of a perfect 82-bp direct repeat. We propose a model for the replicative origin of length differences, involving a competitive equilibrium between the heavy strand and the D-loop strand. This model suggests that frequent misalignment in the repeat region prior to elongation, facilitated by a stable secondary structure in the displaced strand, can explain both the polymorphism and heteroplasmy in this species.

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Buroker, N. E., Brown, J. R., Gilbert, T. A., O’Hara, P. J., Beckenbach, A. T., Thomas, W. K., & Smith, M. J. (1990). Length heteroplasmy of sturgeon mitochondrial DNA: An illegitimate elongation model. Genetics, 124(1), 157–163. https://doi.org/10.1093/genetics/124.1.157

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