Genetics, Vol. 151, 1165-1172, March 1999, Copyright © 1999

Temporal and Multiple Quantitative Trait Loci Analyses of Resistance to Bacterial Wilt in Tomato Permit the Resolution of Linked Loci

B. Mangina, P. Thoquetb, J. Olivierb, and N. H. Grimsleyb
a Unité de Biométrie et Intelligence Artificielle, INRA, 31326 Castanet-Tolosan, France
b Laboratoire de Biologie Moléculaire des Relations Plantes-Microorganismes, CNRS-INRA, 31326 Castanet-Tolosan, France

Corresponding author: N. H. Grimsley, Laboratoire de Biologie Moléculaire des Relations Plantes-Microorganismes, CNRS-INRA, B.P. 27 Auzeville, 31326 Castanet-Tolosan, France., grimsley{at}toulouse.inra.fr (E-mail)

Communicating editor: C. HALEY

Ralstonia solanacearum is a soil-borne bacterium that causes the serious disease known as bacterial wilt in many plant species. In tomato, several QTL controlling resistance have been found, but in different studies, markers spanning a large region of chromosome 6 showed strong association with the resistance. By using two different approaches to analyze the data from a field test F3 population, we show that at least two separate loci ~30 cM apart on this chromosome are most likely involved in the resistance. First, a temporal analysis of the progression of symptoms reveals a distal locus early in the development of the disease. As the disease progresses, the maximum LOD peak observed shifts toward the proximal end of the chromosome, obscuring the distal locus. Second, although classical interval mapping could only detect the presence of one locus, a statistical "two-QTL model" test, specifically adapted for the resolution of linked QTL, strongly supported the hypothesis for the presence of two loci. These results are discussed in the context of current molecular knowledge about disease resistance genes on chromosome 6 and observations made by tomato breeders during the production of bacterial wilt-resistant varieties.





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