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PMID: 21510849 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

Polyploidization increases meiotic recombination frequency in Arabidopsis.

BMC biology ·Vol. 9 ·2011-04-21 ·Pages 24

Pecinka A, Fang W, Rehmsmeier M, Levy AA, Mittelsten Scheid O

Abstract

Polyploidization is the multiplication of the whole chromosome complement and has occurred frequently in vascular plants. Maintenance of stable polyploid state over generations requires special mechanisms to control pairing and distribution of more than two homologous chromosomes during meiosis. Since a minimal number of crossover events is essential for correct chromosome segregation, we investigated whether polyploidy has an influence on the frequency of meiotic recombination. Using two genetically linked transgenes providing seed-specific fluorescence, we compared a high number of progeny from diploid and tetraploid Arabidopsis plants. We show that rates of meiotic recombination in reciprocal crosses of genetically identical diploid and autotetraploid Arabidopsis plants were significantly higher in tetraploids compared to diploids. Although male and female gametogenesis differ substantially in meiotic recombination frequency, both rates were equally increased in tetraploids. To investigate whether multivalent formation in autotetraploids was responsible for the increased recombination rates, we also performed corresponding experiments with allotetraploid plants showing strict bivalent pairing. We found similarly increased rates in auto- and allotetraploids, suggesting that the ploidy effect is independent of chromosome pairing configurations. The evolutionary success of polyploid plants in nature and under domestication has been attributed to buffering of mutations and sub- and neo-functionalization of duplicated genes. Should the data described here be representative for polyploid plants, enhanced meiotic recombination, and the resulting rapid creation of genetic diversity, could have also contributed to their prevalence.

MeSH Terms
Arabidopsis/cytology,genetics Biological Evolution Chromosome Pairing Chromosomes, Plant/genetics Gametogenesis, Plant Plants, Genetically Modified/genetics Recombination, Genetic Tetraploidy
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Pecinka Ales
Gregor Mendel Institute of Molecular Plant Biology, 1030 Vienna, Austria.
Fang Wei
Rehmsmeier Marc
Levy Avraham A
Mittelsten Scheid Ortrun
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Article Info
Journal
BMC biology
Abbr.
BMC Biol
ISSN
1741-7007
Published
2011-04-21
Epub
2011-00-21
Pages
24
Language
English
Region
England
NLM ID
101190720
PMCID
PMC3110136
Subset
IM
Corrections
ErratumIn
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