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Blaison, M.

Publications and source records attributed to Blaison, M..

2 recordsLinked to original sources

The Brachypodium distachyon pangenome highlights Transposable Element dynamics in the species

The role of transposable elements (TEs) in host adaptation has gained lots of interest in the recent past. Individuals of the same species undergo independent TE insertions, causing genetic variability upon which natural selection can fosters adaptation of individuals to their environment. While de novo assembled genomes are becoming increasingly affordable, overcoming bias introduced by a single reference genome, suitable pangenomic approaches are required to explore genomes of a species. We developed a new pipeline called panREPET that identifies TE insertions shared by groups of individuals. Unlike other pangenomic tools, panREPET operates independently of a reference genome and provides the precise sequence and genomic coordinates of each TE copy for each genome. We showcase here the potential of this tool on TE insertions shared among 42 Brachypodium distachyon genomes and compared our results against existing tools to demonstrate its better efficiency. With this tool, we were able to date two major TE bursts corresponding to major climate events: 22 kya during the Last Glacial Maximum and 10 kya during the Holocene, showing a potential link between environmental stress and TE activity.

genomics↗

FrangiPANe, a tool for creating a panreference using left behind reads

We present here FrangiPANe, a pipeline developed to build panreference using short reads through a map-then-assemble strategy. Applying it to 248 African rice genomes using an improved CG14 reference genome, we identified an average of 8 Mb of new sequences and 5,290 new contigs per individual. In total, 1.4 G of new sequences, consisting of 1,306,676 contigs, were assembled. We validated 97.7% of the contigs of the TOG5681 cultivar individual assembly from short reads on a newly long reads genome assembly of the same TOG5681 cultivar. FrangiPANe also allowed the anchoring of 31.5% of the new contigs within the CG14 reference genome, with a 92.5% accuracy at 2kb span. We annotated in addition 3,252 new genes absent from the reference. FrangiPANe was developed as a modular and interactive application to simplify the construction of a panreference using the map-then-assemble approach. It is available as a Docker image containing (i) a Jupyter notebook centralizing codes, documentation and interactive visualization of results, (ii) python scripts and (iii) all the software and libraries requested for each step of the analysis. We foreseen our approach will help leverage large-scale illumina dataset for pangenome studies in GWAS or detection of selection.

plant biology↗