Genetics, Vol. 150, 1239-1244, November 1998, Copyright © 1998

Positive Correlation Between Recombination Rates and Levels of Genetic Variation in Natural Populations of Sea Beet (Beta vulgaris subsp. maritima)

Thomas Krafta, Torbjörn Sälla, Ingrid Magnusson-Radingb, Nils-Otto Nilssonb, and Christer Halldéna
a Department of Genetics, Lund University, S-223 62 Lund, Sweden
b Novartis Seeds AB, Box 302, S-261 23 Landskrona, Sweden

Corresponding author: Thomas Kraft, Department of Genetics, Lund University, Sölvegatan 29, S-223 62 Lund, Sweden., thomas.kraft{at}gen.lu.se (E-mail).

Communicating editor: A. G. CLARK

The relation between the level of genetic variation and the rate of recombination per physical unit was investigated in sea beet (Beta vulgaris subsp. maritima). The rate of recombination per physical unit was estimated indirectly through marker density in an RFLP linkage map of sugar beet. From this map, we also selected RFLP markers covering two of the nine chromosomes in Beta. The markers were used to estimate the level of genetic variation in three populations of sea beet, two from Italy and one from England. Two estimates of genetic variation were employed, one based on the number of alleles in the sample and the other on heterozygosity. A statistically significant positive correlation was found between recombination rate and genetic variation. Several theoretical explanations for this are discussed, background selection being one. A correlation similar to this has been observed previously in Drosophila, one that was higher than what we obtained for Beta. This is consistent with various biological differences between the two species.





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