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FIGL1 prevents aberrant chromosome associations and fragmentation and limits crossovers in polyploid wheat meiosis

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posted on 2024-04-19, 11:43 authored by Kim Osman, Stuart D Desjardins, James Simmonds, Amanda J Burridge, Kostya Kanyuka, Ian R Henderson, Keith J Edwards, Cristobal Uauy, F Chris H Franklin, James D Higgins, Eugenio Sanchez‐Moran
Summary Meiotic crossovers (COs) generate genetic diversity and are crucial for viable gamete production. Plant COs are typically limited to 1–3 per chromosome pair, constraining the development of improved varieties, which in wheat is exacerbated by an extreme distal localisation bias. Advances in wheat genomics and related technologies provide new opportunities to investigate, and possibly modify, recombination in this important crop species. Here, we investigate the disruption of FIGL1 in tetraploid and hexaploid wheat as a potential strategy for modifying CO frequency/position. We analysed figl1 mutants and virus‐induced gene silencing lines cytogenetically. Genetic mapping was performed in the hexaploid. FIGL1 prevents abnormal meiotic chromosome associations/fragmentation in both ploidies. It suppresses class II COs in the tetraploid such that CO/chiasma frequency increased 2.1‐fold in a figl1 msh5 quadruple mutant compared with a msh5 double mutant. It does not appear to affect class I COs based on HEI10 foci counts in a hexaploid figl1 triple mutant. Genetic mapping in the triple mutant suggested no significant overall increase in total recombination across examined intervals but revealed large increases in specific individual intervals. Notably, the tetraploid figl1 double mutant was sterile but the hexaploid triple mutant was moderately fertile, indicating potential utility for wheat breeding.

Funding

Releasing natural variation in bread wheat by modulating meiotic crossovers

Biotechnology and Biological Sciences Research Council

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History

Author affiliation

College of Life Sciences/Genetics & Genome Biology

Version

  • VoR (Version of Record)

Published in

New Phytologist

Publisher

Wiley

issn

0028-646X

eissn

1469-8137

Copyright date

2024

Available date

2024-04-19

Language

en

Deposited by

Dr James Higgins

Deposit date

2024-04-09

Data Access Statement

The data that support the findings of this study are available in the Supporting Information of this article.

Rights Retention Statement

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