Mapping quantitative trait loci in inbred backcross lines ofLycopersicon pimpinellifolium(LA1589)
Open Access
- 1 December 2002
- journal article
- Published by Canadian Science Publishing in Genome
- Vol. 45 (6) , 1189-1202
- https://doi.org/10.1139/g02-091
Abstract
Although tomato has been the subject of extensive quantitative trait loci (QTLs) mapping experiments, most of this work has been conducted on transient populations (e.g., F2or backcross) and few homozygous, permanent mapping populations are available. To help remedy this situation, we have developed a set of inbred backcross lines (IBLs) from the interspecific cross between Lycopersicon esculentum cv. E6203 and L. pimpinellifolium (LA1589). A total of 170 BC2F1plants were selfed for five generations to create a set of homozygous BC2F6lines by single-seed descent. These lines were then genotyped for 127 marker loci covering the entire tomato genome. These IBLs were evaluated for 22 quantitative traits. In all, 71 significant QTLs were identified, 15% (11/71) of which mapped to the same chromosomal positions as QTLs identified in earlier studies using the same cross. For 48% (34/71) of the detected QTLs, the wild allele was associated with improved agronomic performance. A number of new QTLs were identified including several of significant agronomic importance for tomato production: fruit shape, firmness, fruit color, scar size, seed and flower number, leaf curliness, plant growth, fertility, and flowering time. To improve the utility of the IBL population, a subset of 100 lines giving the most uniform genome coverage and map resolution was selected using a randomized greedy algorithm as implemented in the software package MapPop (http://www.bio.unc.edu/faculty/vision/lab/mappop/). The map, phenotypic data, and seeds for the IBL population are publicly available (http://soldb.cit.cornell.edu) and will provide tomato geneticists and breeders with a genetic resource for mapping, gene discovery, and breeding.Key words: tomato, Lycopersicon esculentum, IBLs, QTL, mapping.Keywords
This publication has 40 references indexed in Scilit:
- Variation for Insect Resistance and Horticultural Traits in Tomato Inbred Backcross Populations Derived from Lycopersicon pennelliiCrop Science, 1998
- QTL analysis of horticultural traits differentiating the cultivated tomato from the closely related species Lycopersicon pimpinellifoliumTheoretical and Applied Genetics, 1996
- Advanced backcross QTL analysis: a method for the simultaneous discovery and transfer of valuable QTLs from unadapted germplasm into elite breeding linesTheoretical and Applied Genetics, 1996
- fw 2.2:a major QTL controlling fruit weight is common to both red- and green-fruited tomato speciesTheoretical and Applied Genetics, 1995
- Perspectives of molecular marker assisted breeding for earliness in tomatoEuphytica, 1994
- Intrapopulation Recombination for 15N-Determined Dinitrogen Fixation Ability in Common BeanPlant Breeding, 1991
- Resolution of quantitative traits into Mendelian factors by using a complete linkage map of restriction fragment length polymorphismsNature, 1988
- MAPMAKER: An interactive computer package for constructing primary genetic linkage maps of experimental and natural populationsGenomics, 1987
- Genetic control of the pre-anthesis development of spring rape (Brassica napus L.). II.* Identification of individual genes controlling developmental patternAustralian Journal of Agricultural Research, 1979
- EVALUATION OF THE INBRED–BACKCROSS METHOD FOR STUDYING THE GENETICS OF CONTINUOUS VARIATIONCanadian Journal of Plant Science, 1978