Production and characterization of monosomic addition lines of autoplasmic and alloplasmic Brassica napus with each B-genome chromosome of Brassica juncea
Author:
Affiliation:
1. United Graduate School of Agriculture, Tokyo University of Agriculture and Technology
2. Faculty of Agriculture, Utsunomiya University
Publisher
Japanese Society of Breeding
Subject
Geology,Ocean Engineering,Water Science and Technology
Link
https://www.jstage.jst.go.jp/article/jsbbr/14/4/14_14.95/_pdf
Reference35 articles.
1. Akaba, M., Y. Kaneko, Y. Ito, T. Nakata, S.W. Bang and Y. Matsuzawa (2009a) Production and characterization of Brassica napus-Raphanus sativus monosomic addition lines mediated by the synthetic amphidiploid “Raphanobrassica.” Breed. Sci. 59: 109–118.
2. Akaba, M., Y. Kaneko, Y.K. Hatakeyama, M. Ishida, S.W. Bang and Y. Matsuzawa (2009b) Identification and evaluation of clubroot resistance of radish chromosome using a Brassica napus-Raphanus sativus monosomic addition line. Breed. Sci. 59: 203–206.
3. Angus, J.F., P.A. Gardner, J.A. Kirkegaard and J.M. Desmarchelier (1994) Biofumigation: isothiosyanates released from Brassica roots inhibit growth of the take-all fungus. Plant Soil 162: 107–112.
4. Bang, S.W., Y. Kaneko, Y. Matsuzawa and K.S. Bang (2002) Breeding of Moricandia arvensis monosomic chromosome addition lines (2n=19) of alloplasmic (M. arvensis) Raphanus sativus. Breed. Sci. 52: 193–199.
5. Chévre, A.M., F. Eber, P. This, P. Barret, X. Tanguy, H. Brun, M. Delseny and M. Renard (1996) Characterization of Brassica nigra chromosomes and of blackleg resistance in B. napus-B. nigra addition lines. Plant Breed. 115: 113–118.
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