MIG-seq is an effective method for high-throughput genotyping in wheat (Triticum spp.)

Author:

Nishimura Kazusa1,Motoki Ko1,Yamazaki Akira12,Takisawa Rihito3,Yasui Yasuo1,Kawai Takashi4,Ushijima Koichiro4,Nakano Ryohei1,Nakazaki Tetsuya1ORCID

Affiliation:

1. Graduate School of Agriculture, Kyoto University, Kizugawa City, Kyoto Prefecture 619-0218, Japan

2. Faculty of Agriculture, Kindai University, Nara City, Nara Prefecture 631-8505, Japan

3. Faculty of Agriculture, Ryukoku University, Otsu City, Shiga Prefecture 520-2194, Japan

4. Graduate School of Environmental and Life Science, Okayama University, Okayama City, Okayama Prefecture 700-8530, Japan

Abstract

Abstract MIG-seq (Multiplexed inter-simple sequence repeats genotyping by sequencing) has been developed as a low cost genotyping technology, although the number of polymorphisms obtained is assumed to be minimal, resulting in the low application of this technique to analyses of agricultural plants. We applied MIG-seq to 12 plant species that include various crops and investigated the relationship between genome size and the number of bases that can be stably sequenced. The genome size and the number of loci, which can be sequenced by MIG-seq, are positively correlated. This is due to the linkage between genome size and the number of simple sequence repeats (SSRs) through the genome. The applicability of MIG-seq to population structure analysis, linkage mapping, and quantitative trait loci (QTL) analysis in wheat, which has a relatively large genome, was further evaluated. The results of population structure analysis for tetraploid wheat showed the differences among collection sites and subspecies, which agreed with previous findings. Additionally, in wheat biparental mapping populations, over 3,000 SNPs/indels with low deficiency were detected using MIG-seq, and the QTL analysis was able to detect recognized flowering-related genes. These results revealed the effectiveness of MIG-seq for genomic analysis of agricultural plants with large genomes, including wheat.

Funder

Grant-in-Aid for Early-Career Scientists

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,General Medicine

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