Development and characterization of recombinant chromosome substitution lines (RCSLs) usingHordeum vulgaresubsp.spontaneumas a source of donor alleles in aHordeum vulgaresubsp.vulgarebackground
- 1 December 2003
- journal article
- Published by Canadian Science Publishing in Genome
- Vol. 46 (6) , 1010-1023
- https://doi.org/10.1139/g03-080
Abstract
The ancestor of barley (Hordeum vulgare subsp. spontaneum) may be a source of novel alleles for crop improvement. We developed a set of recombinant chromosome substitution lines (RCSLs) using an accession of H. vulgare subsp. spontaneum (Caesarea 26-24, from Israel) as the donor and Hordeum vulgare subsp. vulgare 'Harrington' (the North American malting quality standard) as the recurrent parent via two backcrosses to the recurrent parent, followed by six generations of selfing. Here we report (i) the genomic architecture of the RCSLs, as inferred by simple sequence repeat (SSR) markers, and (ii) the effects of H. vulgare subsp. spontaneum genome segment introgressions in terms of three classes of phenotypes: inflorescence yield components, malting quality traits, and domestication traits. Significant differences among the RCSLs were detected for all phenotypes measured. The phenotypic effects of the introgressions were assessed using association analysis, and these were referenced to quantitative trait loci (QTL) reported in the literature. Hordeum vulgare subsp. spontaneum, despite its overall inferior phenotype, contributed some favorable alleles for agronomic and malting quality traits. In most cases, the introgression of the ancestral genome resulted in a loss of desirable phenotypes in the cultivated parent. Although disappointing from a plant breeding perspective, this finding may prove to be a useful tool for gene discovery.Key words: Hordeum vulgare subsp. vulgare, Hordeum vulgare subsp spontaneum, association analysis, QTLs, genetic resources.Keywords
This publication has 27 references indexed in Scilit:
- Identification of QTLs for early blight (Alternaria solani) resistance in tomato using backcross populations of a Lycopersicon esculentum × L. hirsutum crossTheoretical and Applied Genetics, 2002
- QTL mapping and introgression of yield-related traits from Oryza glumaepatula to cultivated rice (Oryza sativa) using microsatellite markersTheoretical and Applied Genetics, 2002
- Molecular marker assisted genetic analysis of head shattering in six-rowed barleyTheoretical and Applied Genetics, 2000
- QTL analysis of malting quality in barley based on the doubled-haploid progeny of two elite North American varieties representing different germplasm groupsTheoretical and Applied Genetics, 2000
- Advanced backcross QTL analysis of a Lycopersicon esculentum ×Lycopersicon parviflorum crossTheoretical and Applied Genetics, 2000
- Allele-Dependent Barley Grain β-Amylase Activity1Plant Physiology, 1998
- Inheritance and chromosome locations of scald-resistance genes derived from Iranian and Turkish wild barleysTheoretical and Applied Genetics, 1997
- The 5S rRNA gene units in ancestral two-rowed barley (Hordeum spontaneum C. Koch) and bulbous barley (H. bulbosum L.): sequence analysis and phylogenetic relationships with the 5S rDNA units of cultivated barley (H. vulgare L.)Genome, 1996
- The use of wild barley in crosses for grain production under dryland conditionsEuphytica, 1993
- Gene Effects for Resistance to Kernel Shattering in a Barley Cross1Crop Science, 1976