Identification of a major QTL conferring resistance to <i>wheat yellow mosaic virus</i> derived from the winter wheat ‘Hokkai 240’ on chromosome 2AS

Author:

Kawaguchi Kenji123,Ohki Takehiro1,Ishikawa Goro4,Sayama Mitsuru15,Terasawa Yohei1,Oda Shunsuke67,Fujita Masaya67,Ito Miwako13,Hatta Koichi168

Affiliation:

1. NARO Hokkaido Agricultural Research Center

2. Department of Agro-Environmental Science, Obihiro University of Agriculture and Veterinary Medicine

3. Present address: NARO Western Region Agricultural Research Center

4. NARO Institute of Crop Science

5. Present address: NARO Hokkaido Agricultural Research Center

6. NARO Kyushu Okinawa Agricultural Research Center

7. Present address: Headquarters, NARO

8. Present address: Institute of Crop Science, NARO

Publisher

Japanese Society of Breeding

Reference33 articles.

1. Brazier, T. and S. Glemin (2022) Diversity and determinants of recombination landscapes in flowering plants. PLoS Genet 18: e1010141.

2. Churchill, G.A. and R.W. Doerge (1994) Empirical threshold values for quantitative trait mapping. Genetics 138: 963–971.

3. Han, C., D. Li, Y. Xing, K. Zhu, Z. Tian, Z. Cai, J. Yu and Y. Liu (2000) Wheat yellow mosaic virus widely occurring in wheat (Triticum aestivum) in China. Plant Dis 84: 627–630.

4. Horita, H., T. Takeuchi, J. Sasaki, T. Suzuki and T. Kiguchi (2011) Distribution of wheat yellow mosaic disease in Hokkaido. Annual Report of the Society of Plant Protection of North Japan 62: 47–49 (in Japanese).

5. Inoue, T. (1969) Filamentous particles as the causal agent of yellow mosaic disease of wheat. Nogaku Kenkyu 53: 61–68 (in Japanese).

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