Using genotype × nitrogen interaction variables to evaluate the QTL involved in wheat tolerance to nitrogen constraints
- 14 June 2007
- journal article
- research article
- Published by Springer Nature in Theoretical and Applied Genetics
- Vol. 115 (3) , 399-415
- https://doi.org/10.1007/s00122-007-0575-4
Abstract
Lower market prices and environmental concerns now orientate wheat (Triticum aestivum L.) breeding programs towards low input agricultural practices, and more particularly low nitrogen (N) input management. Such programs require knowledge of the genetic determination of plant reaction to N deficiency. Our aim was to characterize the genetic basis of N use efficiency and genotype × N interactions. The detection of QTL for grain yield, grain protein yield and their components was performed on a mapping population of 222 doubled haploid lines (DH), obtained from the cross between an N stress tolerant variety and an N stress sensitive variety. Experiments on the population were carried out in seven different environments, and in each case under high (N+) and low (N−) N supplies. In total, 233 QTL were detected for traits measured in each combination of environment and N supply, for “global” interaction variables (N+–N− and N−/N+), for sensitivity to N stress and for performance under N-limited conditions which were assessed using factorial regression parameters. The 233 QTL were detected on the whole genome and clustered into 82 genome regions. The dwarfing gene (Rht-B1), the photoperiod sensitivity gene (Ppd-D1) and the awns inhibitor gene (B1) coincided with regions that contained the highest numbers of QTL. Non-interactive QTL were detected on linkage groups 3D, 4B, 5A1 and 7B2. Interactive QTL were revealed by interaction or factorial regression variables (2D2, 3D, 5A1, 5D, 6A, 6B, 7B2) or by both variables (1B, 2A1, 2A2, 2D1, 4B, 5A2, 5B). The usefulness of QTL meta-analysis and factorial regression to study QTL × N interactions and the impact of Rht-B1, Ppd-D1 and B1, are discussed.Keywords
This publication has 54 references indexed in Scilit:
- The genetics of nitrogen use in hexaploid wheat: N utilisation, development and yieldTheoretical and Applied Genetics, 2006
- QTLs for low nitrogen tolerance at seedling stage identified using a recombinant inbred line population derived from an elite rice hybridTheoretical and Applied Genetics, 2005
- A high-density genetic map of hexaploid wheat (Triticum aestivum L.) from the cross Chinese Spring × SQ1 and its use to compare QTLs for grain yield across a range of environmentsTheoretical and Applied Genetics, 2005
- Partial sequences of nitrogen metabolism genes in hexaploid wheatTheoretical and Applied Genetics, 2005
- Targeted molecular mapping of a major wheat QTL forFusariumhead blight resistance using wheat ESTs and synteny with riceGenome, 2003
- Identification of QTLs and Environmental Interactions Associated with Agronomic Traits on Chromosome 3A of WheatCrop Science, 2003
- Genetic differences for nitrogen uptake and nitrogen utilisation efficiencies in winter wheatEuropean Journal of Agronomy, 2000
- Linear and bilinear models for the analysis of multi-environment trials: I. An inventory of modelsEuphytica, 1995
- The Inheritance of Nitrogen and Phosphorus Content in Barley Analysed by Genetic MarkersHereditas, 1995
- Analysis of Nitrogen Accumulation and Use in Bread and Durum WheatCrop Science, 1989