High levels of population differentiation for mitochondrial DNA haplotypes inPinus radiata, muricata, andattenuata
- 1 June 1993
- journal article
- Published by Springer Nature in Theoretical and Applied Genetics
- Vol. 86 (5) , 605-611
- https://doi.org/10.1007/bf00838716
Abstract
We analyzed mitochondrial (mt) DNA restriction fragment length polymorphisms (RFLPs) associated with cytochrome oxidase, subunit I (coxI)-related gene sequences in 268 trees derived from 19 natural populations of three species of pines from California (USA): Monterey pine (Pinus radiata D. Don), bishop pine (P. Muricata D. Don), and knobcone pine (P. attenuata Lemm.). Total genomic DNA was digested with four restriction endonucleases and probed with a 750-bp fragment of the mitochondrialcoxI gene amplified fromP. attenuata via the polymerase chain reaction (PCR). ThecoxI gene is repeated at least 4 times in some populations, and all variants that we observed resulted from complex rearrangements rather than from point mutations. There was limited intrapopulation variation, but strong differentiation among populations. When applied to haplotype frequencies, Nei's gene diversity within populations (Hs) averaged 7% (±3), and Gst varied from 75% forP. Radiata to 96% forP. muricata. The high degree of population differentiation for mtDNA suggests that it can be a powerful marker of population differences, but its rapid rate of structural evolution appears to result from recombination among a limited number of repetitive elements-giving frequent homoplasious fragment phenotypes. The phylogenetic trees disagreed with results from chloroplast DNA, nuclear gene, and morphological studies.Keywords
This publication has 15 references indexed in Scilit:
- Taxonomic and population differentiation of mitochondrial diversity inPinus banksiana andPinus confortaTheoretical and Applied Genetics, 1993
- Mitochondrial DNA in Plant Systematics: Applications and LimitationsPublished by Springer Nature ,1992
- Paternal leakage of mitochondrial DNA inPinusTheoretical and Applied Genetics, 1991
- Allozyme Differentiation and Biosystematics of the Californian Closed-Cone Pines (Pinus subsect. Oocarpae)Systematic Botany, 1988
- Rates of nucleotide substitution vary greatly among plant mitochondrial, chloroplast, and nuclear DNAs.Proceedings of the National Academy of Sciences, 1987
- Molecular Mechanisms of Mitochondrial-Genome Evolution in Higher PlantsThe American Naturalist, 1987
- Why do chloroplasts and mitochondria contain so many copies of their genome?BioEssays, 1987
- Chloroplast DNA polymorphisms in lodgepole and jack pines and their hybrids.Proceedings of the National Academy of Sciences, 1987
- THE CALIFORNIAN CLOSED CONE PINES (SUBSECTION OOCARPAE LITTLE AND CRITCHFIELD): A TAXONOMIC HISTORY AND REVIEWTaxon, 1986
- Further studies of turpentine composition of Pinus muricata in relation to its taxonomyPhytochemistry, 1966