Author:
Miki Yuka,Yoshida Kentaro,Enoki Hiroyuki,Komura Shoya,Suzuki Kazuyo,Inamori Minoru,Nishijima Ryo,Takumi Shigeo
Abstract
AbstractDue to large and complex genomes of Triticeae species, skim sequencing approaches have cost and analytical advantages for detecting genetic markers and building linkage maps. Here, we develop a high-density linkage map and identify quantitative trait loci (QTLs) for recombinant inbred lines of Aegilops tauschii, a D-genome donor of bread wheat, using the recently developed genotyping by Random Amplicon Sequencing-Direct (GRAS-Di) system, which facilitates skimming of the large and complicated genome and generates a large number of genetic markers. The deduced linkage groups based on the GRAS-Di genetic markers corresponded to the chromosome number of Ae. tauschii. We successfully identified stable QTLs for flowering time and spikelet shape-related traits. Genotype differences of RILs at the QTL-linked markers were significantly associated with the trait variations. In particular, one of the QTL-linked markers for flowering time was mapped close to VRN3 (also known as FLOWERING LOCUS T), which controls flowering. The GRAS-Di system is, therefore, an efficient and useful application for genotyping and linkage mapping in species with large and complex genomes, such as Triticeae species.
Funder
Japan Science and Technology Agency
Ministry of Education, Culture, Sports, Science and Technology
Publisher
Springer Science and Business Media LLC
Reference46 articles.
1. Davey, J. W. et al. Genome-wide genetic marker discovery and genotyping using next-generation sequencing. Nat. Rev. Genet. 12, 499–510 (2011).
2. Deschamps, S., Llaca, V. & May, G. D. Genotyping-by-sequencing in plants. Biology (Basel). 1, 460–483 (2012).
3. Thomson, M. J. High-throughput SNP genotyping to accelerate crop improvement. Plant Breed. Biotechnol. 2, 195–212 (2014).
4. Scheben, A., Batley, J. & Edwards, D. Genotyping-by-sequencing approaches to characterize crop genomes: Choosing the right tool for the right application. Plant Biotechnol. J. 15, 149–161 (2017).
5. Enoki, H., & Takeuchi, Y. New genotyping technology, GRAS-Di, using next generation sequencer. Proceedings of the Plant and Animal genome conference XXVI. San Diego, CA. Retrieved from https://pag.confex.com/pag/xxvi/meetingapp.cgi/Paper/29067 (2018).
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