Genetic map of triticale compiling DArT, SSR, and AFLP markers

Author:

Tyrka M.1,Bednarek P.T.2,Kilian A.3,Wędzony M.4,Hura T.4,Bauer E.5

Affiliation:

1. Rzeszów University of Technology, Department of Biochemistry and Biotechnology, Powstańców Warszawy 6, 35-959 Rzeszów, Poland.

2. Plant Breeding and Acclimatization Institute, 05-870 Błonie, Radzików, Poland.

3. Diversity Arrays Technology, 1 Wilf Crane Cr, Yarralumla, Canberra, ACT 2600, Australia.

4. The Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, Niezapominajek 21, 30-239 Cracow, Poland.

5. University of Hohenheim, State Plant Breeding Institute, Fruwirthstr. 21, 70593 Stuttgart, Germany.

Abstract

A set of 90 doubled haploid (DH) lines derived from F1plants that originated from a cross between × Triticosecale Wittm. ‘Saka3006’ and ×Triticosecale Wittm. ‘Modus’, via wide crossing with maize, were used to create a genetic linkage map of triticale. The map has 21 linkage groups assigned to the A, B, and R genomes including 155 simple sequence repeat (SSR), 1385 diversity array technology (DArT), and 28 amplified fragment length polymorphism (AFLP) markers covering 2397 cM with a mean distance between two markers of 4.1 cM. Comparative analysis with wheat consensus maps revealed that triticale chromosomes of the A and B genomes were represented by 15 chromosomes, including combinations of 2AS.2AL#, 2AL#2BL, 6AS.6AL#, and 2BS.6AL# instead of 2A, 2B, and 6A. In respect to published maps of rye, substantial rearrangements were found also for chromosomes 1R, 2R, and 3R of the rye genome. Chromosomes 1R and 2R were truncated and the latter was linked with 3R. A nonhomogeneous distribution of markers across the triticale genome was observed with evident bias (48%) towards the rye genome. This genetic map may serve as a reference linkage map of triticale for efficient studies of structural rearrangements, gene mapping, and marker-assisted selection.

Publisher

Canadian Science Publishing

Subject

Genetics,Molecular Biology,General Medicine,Biotechnology

Reference51 articles.

1. Apolinarska, B. 1996. Different chromosome combinations on tetra- and hexaploid level from hybrids of tetraploid rye × tetraploid triticale.InTriticale: today and tomorrow.Edited byH. Guedes-Pinto, N. Darvey, and V.P. Carnide. Kluwer Academic Publishers, Dordrecht, the Netherlands. pp. 189–194.

2. Genome merger: from sequence rearrangements in triticale to their elimination in wheat–rye addition lines

3. DArT markers for the rye genome - genetic diversity and mapping

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