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- Title
Molecular characterization of the European rice collection in view of association mapping.
- Authors
Courtois, Brigitte; Greco, Raffaella; Bruschi, Gianluca; Frouin, Julien; Ahmadi, Nourollah; Droc, Gaëtan; Hamelin, Chantal; Ruiz, Manuel; Evrard, Jean-Charles; Katsantonis, Dimitrios; Oliveira, Margarida; Negrao, Sonia; Cavigiolo, Stefano; Lupotto, Elisabetta; Piffanelli, Pietro
- Abstract
In South Europe, rice is grown as an irrigated crop in river deltas where it plays an important role in soil desalinization. Specific varieties are needed for these tough conditions. We analyzed the genetic structure of a set of 305 varieties coming from the European Rice Germplasm Collection (ERGC) with 90 single nucleotide polymorphisms and compared it with a reference set representative of the diversity of Oryza sativa (mini-Germplasm Bank (GB)). These accessions had been characterized for their grain type and growth cycle duration. The polymorphism information contents of the ERGC were lower than those of the mini-GB, indicating a narrower genetic basis. Indeed, almost all ERGC accessions belong to the japonica group. Within the japonica group, both a dendrogram and a Bayesian clustering identified two major clusters. The first cluster encompassed tropical japonicas and American varieties from USA and Argentina characterized by long and narrow grains and medium to long duration. On a finer level, tropical japonicas appear separated from the other accessions. The second cluster is composed of European varieties mostly early or medium in duration and Asian temperate accessions, with a subgrouping based on grain format. A set of 200 accessions was composed for association mapping studies on traits such as salt tolerance.
- Subjects
EUROPE; RICE; MOLECULAR biology; PLANT gene mapping; PLANT growth; PLANT germplasm; PLANT-soil relationships; PLANT diversity; NUCLEOTIDE sequence
- Publication
Plant Genetic Resources: Characterisation & Utilisation, 2011, Vol 9, Issue 2, p233
- ISSN
1479-2621
- Publication type
Article
- DOI
10.1017/S147926211100027X