Volume 6, Issue 3 p. 447-455
Free Access

Physical mapping of the mitochondrial genome of Arabidopsis thaliana by cosmid and YAC clones

Mathieu Klein

Corresponding Author

Mathieu Klein

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Ute Eckert-Ossenkopp

Ute Eckert-Ossenkopp

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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Ina Schmiedeberg

Ina Schmiedeberg

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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Petra Brandt

Petra Brandt

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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Michael Unseld

Michael Unseld

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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Axel Brennicke

Axel Brennicke

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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Wolfgang Schuster

Wolfgang Schuster

Institut für Genbiologische Forschung GmbH, Ihnestraße 63, D-14195 Berlin, Germany

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First published: September 1994
Citations: 62

Abstract

As part of the worldwide efforts at molecular analysis of Arabidopsis thaliana as a model plant the complete structure of the mitochondrial genome has been determined. The mitochondrial DNA molecules were mapped by restriction fragment analysis of more than 300 cosmid clones and purified mitochondrial DNA. The entire genome of 372 kb is contained in three different configurations of circular molecules and is split into two additional subgenomic molecules of 234 kb and 138 kb, respectively. These arrangements result from recombinations of the two sets of repeats present in combinations of inverted and/or direct orientation. Alignment of YAC clones confirms the in vivo presence of continuous DNA molecules of more than 300 kb in A. thaliana mitochondria. The presence of this comparatively large mitochondrial genome in a plant with one of the smallest nuclear genomes shows that different size constraints act upon the different genomes in plant cells.

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