QTL mapping of agronomic traits in wheat using the UK Avalon ×  Cadenza reference mapping population grown in Kazakhstan

Author:

Amalova Akerke12,Abugalieva Saule12,Chudinov Vladimir3,Sereda Grigoriy4,Tokhetova Laura5,Abdikhalyk Alima1,Turuspekov Yerlan16

Affiliation:

1. Institute of Plant Biology and Biotechnology, Almaty, Kazakhstan

2. Faculty of Biology and Biotechnology, Al-Farabi Kazakh National University, Almaty, Kazakhstan

3. Karabalyk Agricultural Experimental Station, Nauchnoe, Kostanai Region, Kazakhstan

4. Karaganda Research Institute of Agriculture, Karaganda, Kazakhstan

5. Kazakh Rice Research Institute, Kyzylorda, Kazakhstan

6. Faculty of Agrobiology, Kazakh National Agrarian University, Almaty, Kazakhstan

Abstract

Background The success of wheat production is largely dependent on local breeding projects that focus on the development of high-yielding cultivars with the use of novel molecular tools. One strategy for improving wheat productivity involves the deployment of diverse germplasms with a high potential yield. An important factor for achieving success involves the dissection of quantitative trait loci (QTLs) for complex agronomic traits, such as grain yield components, in targeted environments for wheat growth. Methods In this study, we tested the United Kingdom (UK) spring set of the doubled haploid (DH) reference population derived from the cross between two British cultivars, Avalon (winter wheat) and Cadenza (spring wheat), in the Northern, Central, and Southern regions (Karabalyk, Karaganda, Kyzylorda) of Kazakhstan over three years (2013–2015). The DH population has previously been genotyped by UK scientists using 3647 polymorphic DNA markers. The list of tested traits includes the heading time, seed maturation time, plant height, spike length, productive tillering, number of kernels per spike, number of kernels per meter, thousand kernel weight, and yield per square meter. Windows QTL Cartographer was applied for QTL mapping using the composite interval mapping method. Results In total, 83 out of 232 QTLs were identified as stable QTLs from at least two environments. A literature survey suggests that 40 QTLs had previously been reported elsewhere, indicating that this study identified 43 QTLs that are presumably novel marker-trait associations (MTA) for these environments. Hence, the phenotyping of the DH population in new environments led to the discovery of novel MTAs. The identified SNP markers associated with agronomic traits in the DH population could be successfully used in local Kazakh breeding projects for the improvement of wheat productivity.

Funder

ADAPTAWHEAT

Ministry of Agriculture of the Republic of Kazakhstan

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference58 articles.

1. Fe, Zn, and S content in doubled haploid lines of Chinese Spring × SQ1 wheat population;Abugalieva;Vavilov Journal of Genetics and Breeding,2014

2. QTL analysis of productivity and its components in common wheat in the conditions of south-east Kazakhstan;Abugalieva;The Newsletter of Kazakh Agrarian University (Research and Results),2007

3. Mapping of quantitative traits loci for grain protein content in common wheat;Abugalieva;Asian and Australasian Journal of Plant Science and Biotechnology,2010

4. 7th Framework programme of the European Union at https://cordis.europa.eu/project/id/289842;ADAPTAWHEAT,2012

5. World agriculture towards 2030/2050: the 2012 revision. ESA working paper no. 12-03;Alexandratos,2012

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