QTL analysis of root-lesion nematode resistance in barley: 1. Pratylenchus neglectus

被引:0
|
作者
Shiveta Sharma
Shailendra Sharma
Friedrich J. Kopisch-Obuch
Tobias Keil
Eberhard Laubach
Nils Stein
Andreas Graner
Christian Jung
机构
[1] Christian-Albrechts-University of Kiel,Plant Breeding Institute
[2] Nordsaat Saatzucht GmbH,undefined
[3] Leibniz Institute of Plant Genetics and Crop Plant Research (IPK),undefined
来源
Theoretical and Applied Genetics | 2011年 / 122卷
关键词
Linkage Group; Doubled Haploid; Doubled Haploid Line; Resistance Allele; DArT Marker;
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摘要
The root-lesion nematode Pratylenchus neglectus can cause severe losses in barley cultivation. Multiplication rates had been found to vary greatly between different barley accessions. Two winter barley cultivars, Igri and Franka, had been found to differ in their ability to resist this parasite. An existing Igri × Franka doubled haploid population was chosen to genetically map resistance genes after artificial inoculation with P. neglectus in the greenhouse and climate chamber. A continuous phenotypic variation was found indicating a quantitative inheritance of P. neglectus resistance. An existing map was enriched by 527 newly developed Diversity Array Technology markers (DArTs). The new genetic linkage map was comprised of 857 molecular markers that cover 1,157 cM on seven linkage groups. Using phenotypic data collected from four different experiments in 3 years, five quantitative trait loci were mapped by composite interval mapping on four (3H, 5H, 6H and 7H) linkage groups. A quantitative trait locus with a large phenotypic effect of 16% and likelihood of odds (LOD) score of 6.35 was mapped on linkage group 3H. The remaining four QTLs were classified as minor or moderate with LOD scores ranging from 2.71 to 3.55 and R2 values ranging from 8 to 10%. The DNA markers linked to the resistance QTLs should be quite useful for marker-assisted selection in barley breeding because phenotypic selection is limited due to time constraints and labor costs.
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页码:1321 / 1330
页数:9
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