Molecular characterization of a pericentric inversion in mouse chromosome 8 implicates telomeres as promoters of meiotic recombination
- 1 January 1993
- journal article
- Published by Springer Nature in Chromosoma
- Vol. 102 (2) , 112-120
- https://doi.org/10.1007/bf00356028
Abstract
A “hot spot” of meiotic recombination has been found in males on murine chromosome 8 using nonisotopic hybridization of a series of probes to mitotic and meiotic chromosomes. The sequences responsible for this enhanced recombination are the telomeric repeats. Mice both normal and hetero- or homozygous for a pericentric inversion, In(8) 1 Rl, were analyzed. The inversion subdivides chromosome 8 into three discreet regions: (1) a fraction of the micro “short arm” that contains 30–150 kb of telomeric sequences and only about one-fifth of the contiguous minor-satellite sequences (approximately 200 kb); (2) the inverted region; and (3) the noninverted distal two-thirds of the chromosome. In 70 spermatocytes from inversion heterozygotes, examined by electron microscopy, synapsis of the inverted region was complete but entirely nonhomologous. Nonhomologous synapsis persists from initiation of synaptonemal complex formation in zygonema/early pachynema until dissolution in late pachynema. This nonhomologous synapsis also suppresses crossing over within the inverted segment. The opportunity for proximal homologous recombination is thus restricted to the roughly 250 kb segment located between the short-arm break and the end of the bivalent. Nonetheless, an extreme proximal chiasma was observed in 11% of the heterozygous chromosome-8 bivalents, 34% of the normal 8 bivalents and 35% of the homozygous inversion 8 bivalents from spermatocyte preparations. Since in the normal chromosomes all minor satellite sequences are adjacent to the telomere, while in the inversion chromosomes most of these sequences are transposed to an interstitial position without a corresponding shift in chiasma position, the minor-satellite sequences can be ruled out as promoters of recombination. Instead, the data suggest that it is the telomeric sequences that promote recombination, not just within the telomeric repeat itself, but quite frequently in sequences more than 250 kb away.Keywords
This publication has 33 references indexed in Scilit:
- Mouse minor satellite DNA genetically maps to the centromere and is physically linked to the proximal telomereGenomics, 1991
- The chromosomal distribution of the major and minor satellite is not conserved in the genusMusChromosoma, 1990
- Recombination occurs during telomere formation in yeastNature, 1989
- Human telomeres: fusion and interstitial sitesTrends in Genetics, 1989
- Analysis of synaptonemal complexes in two fertile heterozygous boars, both carriers of a reciprocal translocation involving an acrocentric chromosomeCytogenetic and Genome Research, 1989
- Formation of parallel four-stranded complexes by guanine-rich motifs in DNA and its implications for meiosisNature, 1988
- Pairing of ZW gonosomes and the localized recombination nodule in two Z-autosome translocations in Gallus domesticusCytogenetic and Genome Research, 1988
- Synaptonemal complexes in a subfertile man with a pericentric inversion in chromosome 21Cytogenetic and Genome Research, 1988
- A primary genetic linkage map for human chromosome 12Genomics, 1987
- A new type of nonhomologous synapsis in T(X;4)1R1 translocation male miceCytogenetic and Genome Research, 1986