bioRxiv · 10.1101/382259
Desiccation-induced changes in recombination rate and interference in fruit flies: an evidence for fitness-dependent plasticity
Abstract
Meiotic recombination is evolutionarily ambiguous, giving both benefits and costs to its bearers, with the resultant depending on a variety of conditions. The existing theoretical models explain why recombination does exist while the existence of its essential features remains underexplored. Here we test whether recombination plasticity and interference plasticity are fitness dependent. We compare effects of desiccation on recombination and interference in chromosome 3 in desiccation-sensitive and desiccation-tolerant Drosophila lines. We show that in desiccation-sensitive genotypes the treatment causes significant segment-specific increase in single- and double-crossover frequencies while in desiccation-tolerant genotypes changes are less pronounced, if seen at all. These results indicate that desiccation is a recombinogenic factor, and that desiccation-induced changes in both recombination and interference are fitness dependent, with a negative-feedback pattern implying the tendency of less fitted individuals to produce more variable progeny. Such dependence may play an important role in regulation of genetic variation in population experiencing environmental challenges.
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Aggarwal, D. D., Rybnikov, S. R., Cohen, I., Rashkovetsky, E., Michalak, P., Korol, A. B.. 2018-08-01. Desiccation-induced changes in recombination rate and interference in fruit flies: an evidence for fitness-dependent plasticity. https://doi.org/10.1101/382259
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