- THIS ARTICLE
- Full Text (PDF)
- Alert me when this article is cited
- Alert me if a correction is posted
- SERVICES
- Similar articles in this journal
- Similar articles in PubMed
- Alert me to new issues of the journal
- Download to citation manager
- Reprints & Permissions
- CITING ARTICLES
- Citing Articles via HighWire
- Citing Articles via Google Scholar
- GOOGLE SCHOLAR
- Articles by Rand, D. M.
- Articles by Harrison, R. G.
- Search for Related Content
- PUBMED
- PubMed Citation
- Articles by Rand, D. M.
- Articles by Harrison, R. G.
Genetics, Vol 121, 551-569, Copyright © 1989
INVESTIGATIONS |
Molecular Population Genetics of mtDNA Size Variation in Crickets
D. M. Rand and R. G. Harrison
Present address: Museum of Comparative Zoology, 26 Oxford Street, Harvard University, Cambridge, Massachusetts 02138.
Nucleotide sequence analysis of a region of cricket (Gryllus firmus) mtDNA showing discrete length variation revealed tandemly repeated sequences 220 base pairs (bp) in length. The repeats consist of 206 bp sequences bounded by the dyad symmetric sequence 5'GGGGGCATGCCCCC3'. The sequence data showed that mtDNA size variation in this species is due to variation in the number of copies of tandem repeats. Southern blot analysis was used to document the frequency of crickets heteroplasmic for two or more different-sized mtDNAs. In New England populations of G. firmus and a close relative Gryllus pennsylvanicus approximately 60% of the former and 45% of the latter were heteroplasmic. From densitometry of autoradiographs the frequencies of mtDNA size classes were determined for the population samples and are shown to be very different in the two species. However, in populations where hybridization between the two species has occurred, the frequencies of size classes and cytoplasmic genotypes in each species' distinct mtDNA lineage were shifted in a manner suggesting nuclear-cytoplasmic interactions. The data were applied to reported diversity indices and hierarchical statistics. The hierarchical statistics indicated that the greatest proportion of variation for mtDNA size was due to variation among individuals in their cytoplasmic genotypes (heteroplasmic or homoplasmic state). The diversity indices were used to estimate a per-generation mutation rate for size variants of 10(-4). The data are discussed in light of the relationship between genetic drift and mutation in maintaining variation for mtDNA size.
This article has been cited by other articles:
![]() |
S. Tang and B. C. Hyman Mitochondrial Genome Haplotype Hypervariation Within the Isopod Parasitic Nematode Thaumamermis cosgrovei Genetics, June 1, 2007; 176(2): 1139 - 1150. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. R. Purdue, T. K. Oleksyk, and M. H. Smith Independent Occurrences of Multiple Repeats in the Control Region of Mitochondrial DNA of White-Tailed Deer J. Hered., May 1, 2006; 97(3): 235 - 243. [Abstract] [Full Text] [PDF] |
||||
![]() |
X. Guo, S. Liu, and Y. Liu Evidence for Recombination of Mitochondrial DNA in Triploid Crucian Carp Genetics, March 1, 2006; 172(3): 1745 - 1749. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. A. Ray and L. D. Densmore Repetitive Sequences in the Crocodilian Mitochondrial Control Region: Poly-A Sequences and Heteroplasmic Tandem Repeats Mol. Biol. Evol., June 1, 2003; 20(6): 1006 - 1013. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. D. Ladoukakis and E. Zouros Direct Evidence for Homologous Recombination in Mussel (Mytilus galloprovincialis) Mitochondrial DNA Mol. Biol. Evol., July 1, 2001; 18(7): 1168 - 1175. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Ludwig, B. May, L. Debus, and I. Jenneckens Heteroplasmy in the mtDNA Control Region of Sturgeon (Acipenser, Huso and Scaphirhynchus) Genetics, December 1, 2000; 156(4): 1933 - 1947. [Abstract] [Full Text] |
||||
![]() |
R. Raimond, I. Marcadé, D. Bouchon, T. Rigaud, J.-P. Bossy, and C. Souty-Grosset Organization of the Large Mitochondrial Genome in the Isopod Armadillidium vulgare Genetics, January 1, 1999; 151(1): 203 - 210. [Abstract] [Full Text] |
||||
![]() |
R. K. Chesser Heteroplasmy and Organelle Gene Dynamics Genetics, November 1, 1998; 150(3): 1309 - 1327. [Abstract] [Full Text] |
||||
![]() |
C. L. Nesbo, M. O. Arab, and K. S. Jakobsen Heteroplasmy, Length and Sequence Variation in the mtDNA Control Regions of Three Percid Fish Species (Perca fluviatilis, Acerina cernua, Stizostedion lucioperca) Genetics, April 1, 1998; 148(4): 1907 - 1919. [Abstract] [Full Text] [PDF] |
||||


