Synthetically induced Arabidopsis thaliana autotetraploids provide insights into the analysis of meiotic mutants with altered crossover frequency

Author:

Parra‐Nunez Pablo1ORCID,Fernández‐Jiménez Nadia2ORCID,Pachon‐Penalba Miguel3ORCID,Sanchez‐Moran Eugenio1ORCID,Pradillo Mónica2ORCID,Santos Juan Luis2ORCID

Affiliation:

1. School of Biosciences University of Birmingham Edgbaston Birmingham B15 2TT UK

2. Departamento de Genética, Fisiología y Microbiología, Facultad de Ciencias Biológicas Madrid 28040 Spain

3. Wellcome Centre for Cell Biology, Institute of Cell Biology University of Edinburgh Michael Swann Building, Max Born Crescent Edinburgh EH9 3BF UK

Abstract

Summary Mutations affecting crossover (CO) frequency and distribution lead to the presence of univalents during meiosis, giving rise to aneuploid gametes and sterility. These mutations may have a different effect after chromosome doubling. The combination of altered ploidy and mutations could be potentially useful to gain new insights into the mechanisms and regulation of meiotic recombination; however, studies using autopolyploid meiotic mutants are scarce. Here, we have analyzed the cytogenetic consequences in colchicine‐induced autotetraploids (colchiploids) from different Arabidopsis mutants with an altered CO frequency. We have found that there are three types of mutants: mutants in which chiasma frequency is doubled after chromosome duplication (zip4, mus81), as in the control; mutants in which polyploidy leads to a higher‐than‐expected increase in chiasma frequency (asy1, mer3, hei10, and mlh3); and mutants in which the rise in chiasma frequency produced by the presence of two extrachromosomal sets is less than doubled (msh5, fancm). In addition, the proportion of class I/class II COs varies after chromosome duplication in the control. The results obtained reveal the potential of colchiploid meiotic mutants for better understanding of the function of key proteins during plant meiosis. This is especially relevant considering that most crops are polyploids.

Funder

Ministerio de Ciencia e Innovación

European Commission

Publisher

Wiley

Subject

Plant Science,Physiology

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