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- W47125610 startingPage "71" @default.
- W47125610 abstract "Gynodioecy is a breeding system frequently encountered in flowering plants. It consists of the co-occurrence of hermaphrodites and females in populations. Gynodioecy is generally under nuclear-cytoplasmic control, which involves mitochondrial sterilizing genes and nuclear genes that restore male fertility. Sterilizing mitochondrial genomes have been described in crops in which cytoplasmic male sterility (CMS) is cryptic, i.e. not maintained in populations of wild relative species. However, the isolation of sterilizing genes has led to the definition of a profile that can help to find candidate genes in CMSs found in gynodioecious species. We discuss the expected effect of two alternative evolutionary dynamics of gynodioecy on mitochondrial diversity and describe the pattern of diversity observed at the gene and genome levels. On the basis of whole sequence analyses of mitochondrial genomes in beet and maize, we suggest that CMS mitochondrial genomes might exhibit a faster evolution rate, and a clue to its cause might be found in male sterility itself." @default.
- W47125610 created "2016-06-24" @default.
- W47125610 creator A5017795263 @default.
- W47125610 date "2012-01-01" @default.
- W47125610 modified "2023-09-23" @default.
- W47125610 title "Mitochondrial Genome Evolution and Gynodioecy" @default.
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