Function and evolution of a minimal plastid genome from a nonphotosynthetic parasitic plant.
- 15 November 1992
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 89 (22) , 10648-10652
- https://doi.org/10.1073/pnas.89.22.10648
Abstract
Complete nucleotide sequencing shows that the plastid genome of Epifagus virginiana, a nonphotosynthetic parasitic flowering plant, lacks all genes for photosynthesis and chlororespiration found in chloroplast genomes of green plants. The 70,028-base-pair genome contains only 42 genes, at least 38 of which specify components of the gene-expression apparatus of the plastid. Moreover, all chloroplast-encoded RNA polymerase genes and many tRNA and ribosomal protein genes have been lost. Since the genome is functional, nuclear gene products must compensate for some gene losses by means of previously unsuspected import mechanisms that may operate in all plastids. At least one of the four unassigned protein genes in Epifagus plastid DNA must have a nongenetic and nonbioenergetic function and, thereby, serve as the reason for the maintenance of an active genome. Many small insertions in the Epifagus plastid genome create tandem duplications and presumably arose by slippage mispairing during DNA replication. The extensive reduction in genome size in Epifagus reflects an intensification of the same processes of length mutation that govern the amount of noncoding DNA in chloroplast genomes. Remarkably, this massive pruning occurred with a virtual absence of gene order change.Keywords
This publication has 23 references indexed in Scilit:
- Rapid evolution of the plastid translational apparatus in a nonphotosynthetic plant: Loss or accelerated sequence evolution of tRNA and ribosomal protein genesJournal of Molecular Evolution, 1992
- Green ancestry of malarial parasites?Current Biology, 1992
- Small single-copy region of plastid DNA in the non-photosynthetic angiosperm Epifagus virginiana contains only two genes: Differences among dicots, monocots and bryophytes in gene organization at a non-bioenergetic locusJournal of Molecular Biology, 1992
- The mechanism and functions of ATP‐dependent proteases in bacterial and animal cellsEuropean Journal of Biochemistry, 1992
- Ins and outs of plastid genome evolutionCurrent Opinion in Genetics & Development, 1991
- A divergent plastid genome inConopholis americana, an achlorophyllous parasitic plantPlant Molecular Biology, 1991
- Mercury risk from teethNature, 1991
- Loss of photosynthetic and chlororespiratory genes from the plastid genome of a parasitic flowering plantNature, 1990
- Genetic and biochemical implications of the endosymbiotic origin of the chloroplastJournal of Molecular Evolution, 1981
- The petite mutation in YeastJournal of Molecular Biology, 1970