Publications des scientifiques de l'IRD

Picart-Picolo A., Grob S., Picault N., Franek M., Llauro C., Halter T., Maier T. R., Jobet E., Descombin J., Zhang P. P., Paramasivan V., Baum T. J., Navarro L., Dvorackova M., Mirouze Marie, Pontvianne F. (2020). Large tandem duplications affect gene expression, 3D organization, and plant-pathogen response. Genome Research, 30 (11), p. 1583-1592. ISSN 1088-9051.

Titre du document
Large tandem duplications affect gene expression, 3D organization, and plant-pathogen response
Année de publication
2020
Type de document
Article référencé dans le Web of Science WOS:000586893200004
Auteurs
Picart-Picolo A., Grob S., Picault N., Franek M., Llauro C., Halter T., Maier T. R., Jobet E., Descombin J., Zhang P. P., Paramasivan V., Baum T. J., Navarro L., Dvorackova M., Mirouze Marie, Pontvianne F.
Source
Genome Research, 2020, 30 (11), p. 1583-1592 ISSN 1088-9051
Rapid plant genome evolution is crucial to adapt to environmental changes. Chromosomal rearrangements and gene copy number variation (CNV) are two important tools for genome evolution and sources for the creation of new genes. However, their emergence takes many generations. In this study, we show that in Arabidopsis thaliana, a significant loss of ribosomal RNA (rRNA) genes with a past history of a mutation for the chromatin assembly factor 1 (CAF1) complex causes rapid changes in the genome structure. Using long-read sequencing and microscopic approaches, we have identified up to 15 independent large tandem duplications in direct orientation (TDDOs) ranging from 60 kb to 1.44 Mb. Our data suggest that these TDDOs appeared within a few generations, leading to the duplication of hundreds of genes. By subsequently focusing on a line only containing 20% of rRNA gene copies (20rDNA line), we investigated the impact of TDDOs on 3D genome organization, gene expression, and cytosine methylation. We found that duplicated genes often accumulate more transcripts. Among them, several are involved in plant-pathogen response, which could explain why the 20rDNA line is hyper-resistant to both bacterial and nematode infections. Finally, we show that the TDDOs create gene fusions and/or truncations and discuss their potential implications for the evolution of plant genomes.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du monde végétal [076]
Localisation
Fonds IRD [F B010080013]
Identifiant IRD
PAR00021771
Contact