Molecular Marker Systems for Oenothera Genetics
- 1 November 2008
- journal article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 180 (3) , 1289-1306
- https://doi.org/10.1534/genetics.108.091249
Abstract
The genus Oenothera has an outstanding scientific tradition. It has been a model for studying aspects of chromosome evolution and speciation, including the impact of plastid nuclear co-evolution. A large collection of strains analyzed during a century of experimental work and unique genetic possibilities allow the exchange of genetically definable plastids, individual or multiple chromosomes, and/or entire haploid genomes (Renner complexes) between species. However, molecular genetic approaches for the genus are largely lacking. In this study, we describe the development of efficient PCR-based marker systems for both the nuclear genome and the plastome. They allow distinguishing individual chromosomes, Renner complexes, plastomes, and subplastomes. We demonstrate their application by monitoring interspecific exchanges of genomes, chromosome pairs, and/or plastids during crossing programs, e.g., to produce plastome–genome incompatible hybrids. Using an appropriate partial permanent translocation heterozygous hybrid, linkage group 7 of the molecular map could be assigned to chromosome 9·8 of the classical Oenothera map. Finally, we provide the first direct molecular evidence that homologous recombination and free segregation of chromosomes in permanent translocation heterozygous strains is suppressed.Keywords
This publication has 53 references indexed in Scilit:
- The Complete Nucleotide Sequences of the 5 Genetically Distinct Plastid Genomes of Oenothera, Subsection Oenothera: II. A Microevolutionary View Using Bioinformatics and Formal Genetic DataMolecular Biology and Evolution, 2008
- The complete nucleotide sequences of the five genetically distinct plastid genomes of Oenothera , subsection Oenothera : I. Sequence evaluation and plastome evolution †Nucleic Acids Research, 2008
- Asymmetric Postmating Isolation: Darwin's Corollary to Haldane's RuleGenetics, 2007
- Eukaryotic genome evolution: rearrangement and coevolution of compartmentalized genetic informationPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2003
- Inactivation of pollen and other effects of genome-plastome incompatibility inOenotheraÖsterreichische botanische Zeitschrift, 1999
- Systematics of Oenothera Section Oenothera Subsection Oenothera (Onagraceae)Systematic Botany Monographs, 1997
- AFLP: a new technique for DNA fingerprintingNucleic Acids Research, 1995
- Cytogenetic investigations onOenothera wolfii (Onagraceae)Österreichische botanische Zeitschrift, 1986
- A Contribution to the Population Biology of Oenothera grandiflora L'HerAmerican Journal of Botany, 1984
- Versuche über die gametische Konstitution der ÖnotherenMolecular Genetics and Genomics, 1917