Warnings/Cautions when collecting Brassica diversity along a large climatic gradient
Falentin, C.; Hadj-Arab, H.; Aissiou, F.; Bartoli, C.; Bazan, G.; Boudet, M.; Bousset-Vaslin, L.; Chwikhi, M.; Coriton, O.; Deniot, G.; Ferreira de Carvalho, J.; Gay, L.; Geraci, A.; Glory, P.; Huteau, V.; Ilahy, R.; Ilardi, V.; Jarillo, J. A.; Meglic, V.; Oddo, E.; Pernas, M.; Manuel, P.; Pipan, B.; Rhim, T.; Richer, V.; Rizza, F.; Ronfort, J.; Rousseau-Gueutin, M.; Schicchi, R.; Sinkovic, L.; Taburel, M.; Terzi, V.; Therene, S.; Tiret, M.; Tlili, I.; Werner Badeck, F.; Chevre, A.-M.
Show abstract
Agriculture faces great challenges to overcome global warming and to improve system sustainability, requiring access to novel genetic diversity. So far, wild populations and local landraces remain poorly explored. This is notably the case for the two diploid species, Brassica oleracea L. (CC, 2n=2x=18) and B. rapa L. (AA, 2n=2x=20). In order to explore genetic diversity in both species, we have collected numerous populations in their center of origin, the Mediterranean basin, on a large contrasting climatic and soil gradient from northern Europe to southern sub-Saharan regions. In these areas, we also collected 14 populations belonging to five B. oleracea closely related species. Before further genetic and agronomic investigations, we controlled the absence of species misidentification using flow cytometry, sequencing of species specific chloroplast genomic region, as well as cytogenetic analyses in case of unexpected results. Looking at the 102 B. oleracea and 146 B. rapa populations showing a good germination among the 112 and 154 populations collected, seventeen populations were misidentified. The most frequent mistake was a confusion of these diploid species with B. napus. Additionally for B. rapa, 2 autotetraploid populations were observed. Habitats of the collected wild populations and landraces are described in our work. This provides a unique plant material characterization that will pave the way for further analyses investigating the genomic regions involved in climatic and microbiota adaptation. This research is supported by the H2020 Prima project BrasExplor.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic analyses of wild and cultivated bacanora agave (Agave angustifolia var. pacifica) reveal inbreeding, few signs of cultivation history and shallow population structure 94%
- Uncovering the Genetic Blueprint of the UAE's National Tree: Genomic Evidence to Guide Prosopis cineraria (L.) Druce Conservation 93%
- RNA-Seq Time Series of Vitis vinifera Bud Development Reveals Correlation of Expression Patterns with the Local Temperature Profile 93%
Similar papers in this journal
- Genomic evidence of genuine wild versus admixed olive populations evolving in the same natural environments in western Mediterranean Basin 96%
- The R2R3-MYB gene family in banana (Musa acuminata): genome-wide identification, classification and expression patterns 94%
- Development of diagnostic SNP markers for quality assurance and control in sweetpotato breeding programs 94%
Similar papers in this journal
- Unraveling the complex story of intergenomic recombination in ABB allotriploid bananas 96%
- In situ evaluation of artificial selection and assisted gene flow for the advancement of flowering onset in Lupinus angustifolius L. (Fabaceae) 94%
- Target enrichment improves phylogenetic resolution in the genus Zanthoxylum (Rutaceae) and indicates both incomplete lineage sorting and hybridization events 92%
Similar papers in this journal
- Multi-location trials and population-based genotyping reveal high diversity and adaptation to breeding environments in a large collection of red clover 96%
- Resynthesis: Marker-based partial reconstruction of elite genotypes in clonally-reproducing plant species 96%
- Oat chromosome and genome evolution defined by widespread terminal intergenomic translocations in polyploids 95%
Similar papers in this journal
- Genomic relationships among diploid and polyploid species of the genus Ludwigia L. section Jussiaea using a combination of molecular cytogenetic, morphological, and crossing investigations 97%
- Late-acting self-incompatible system, preferential allogamy and delayed selfing in the heteromorphic invasive populations of Ludwigia grandiflora subsp. hexapetala 94%
- Evolution within a given virulence phenotype (pathotype) is driven by changes in aggressiveness: a case study of French wheat leaf rust populations 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.