Alternating between even and odd ploidy levels switches on and off the recombination control, even near the centromeres

Author:

Boideau Franz1ORCID,Huteau Virginie1ORCID,Maillet Loeiz1ORCID,Brunet Anael1ORCID,Coriton Olivier1ORCID,Deniot Gwenaëlle1ORCID,Trotoux Gwenn1ORCID,Taburel-Lodé Maryse1ORCID,Eber Frédérique1ORCID,Gilet Marie1ORCID,Baron Cécile1ORCID,Boutte Julien1ORCID,Richard Gautier1ORCID,Aury Jean-Marc2ORCID,Belser Caroline2ORCID,Labadie Karine3ORCID,Morice Jérôme1ORCID,Falentin Cyril1ORCID,Martin Olivier45ORCID,Falque Matthieu5ORCID,Chèvre Anne-Marie1ORCID,Rousseau-Gueutin Mathieu1ORCID

Affiliation:

1. IGEPP, INRAE, Institut Agro, Université de Rennes , 35650 Le Rheu , France

2. Génomique Métabolique, Genoscope, Institut François Jacob, CEA, CNRS, Univ Evry, Université Paris-Saclay , 91057 Evry , France

3. Genoscope, Institut François Jacob, CEA, Université Paris-Saclay , 91057 Evry , France

4. Institute of Plant Sciences Paris-Saclay, Université de Paris-Saclay, Paris-Cité and Evry, CNRS, INRAE , 91192 Gif-sur-Yvette , France

5. Université Paris-Saclay, INRAE, CNRS, AgroParisTech, GQE—Le Moulon , 91190 Gif-sur-Yvette , France

Abstract

Abstract Meiotic recombination is a key biological process in plant evolution and breeding, as it generates genetic diversity in each generation through the formation of crossovers (COs). However, due to their importance in genome stability, COs are highly regulated in frequency and distribution. We previously demonstrated that this strict regulation of COs can be modified, both in terms of CO frequency and distribution, in allotriploid Brassica hybrids (2n = 3x = 29; AAC) resulting from a cross between Brassica napus (2n = 4x = 38; AACC) and Brassica rapa (2n = 2x = 20; AA). Using the recently updated B. napus genome now including pericentromeres, we demonstrated that COs occur in these cold regions in allotriploids, as close as 375 kb from the centromere. Reverse transcription quantitative PCR (RT-qPCR) of various meiotic genes indicated that Class I COs are likely involved in the increased recombination frequency observed in allotriploids. We also demonstrated that this modified recombination landscape can be maintained via successive generations of allotriploidy (odd ploidy level). This deregulated meiotic behavior reverts to strict regulation in allotetraploid (even ploidy level) progeny in the second generation. Overall, we provide an easy way to manipulate tight recombination control in a polyploid crop.

Funder

ANR

INRAE

Region Bretagne

Saclay Plant Sciences

Publisher

Oxford University Press (OUP)

Reference92 articles.

1. Basic local alignment search tool;Altschul;J Mol Biol,1990

2. MSH2 shapes the meiotic crossover landscape in relation to interhomolog polymorphism in Arabidopsis;Blackwell;EMBO J,2020

3. A modified meiotic recombination in Brassica napus largely improves its breeding efficiency;Boideau;Biology (Basel),2021

4. Epigenomic and structural events preclude recombination in Brassica napus;Boideau;New Phytol,2022

5. Diversity and determinants of recombination landscapes in flowering plants;Brazier;PLoS Genet.,2022

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