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Skip to Search Results- 1Guanqun, Chen (Agricultural, Food and Nutritional Science)
- 1Habibur, Rahman (Agricultural, Food and Nutritional Science)
- 1Hwang, Sheau-fang (AFNS)
- 1Kav, Nat (Faculty of Agricultural, Life and Environmental Sci )
- 1Rahman, Habibur (Agricutural, Food and Nutritional Science)
- 1Rahman, Habibur (Faculty of Agricultural, Life and Environmental Sci )
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Fall 2019
Rutabaga (Brassica napus ssp. napobrassica (L.) Hanelt) is widely grown as a vegetable crop and animal fodder, and is reported to be an excellent source of clubroot (Plasmodiophora brassicae) resistance genes. In this study, the genetic diversity and clubroot resistance of 124 rutabaga accessions...
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Genetic and molecular analysis of clubroot resistance in canola introgressed from rutabaga cvs. Polycross and Brookfield
DownloadFall 2022
Clubroot disease caused by Plasmodiophora brassicae is a serious threat to canola (Brassica napus) production. The evolution of new pathotypes has rendered available resistances ineffective and has necessitated the introgression of new resistance into canola and furthering our understanding of...
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Use of Rutabaga (Brassica napus var. napobrassica) for the Improvement of Canadian Spring Canola (Brassica napus)
DownloadSpring 2016
Spring-type oilseed Brassica napus L., commonly known as canola, has become the cornerstone of agricultural production in Western Canada, with the total acreage seeded increasing in each production year over the past two decades. However, the narrow genetic base of spring B. napus canola coupled...
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Use of Turnip (Brassica rapa var. rapifera) and Rutabaga (B. napus var. napobrassica) for the Improvement of Clubroot Resistance in Spring B. napus Canola
DownloadFall 2022
Clubroot disease, caused by Plasmodiophora brassicae, is one of the most serious threats to spring Brassica napus canola production in Canada. Growing of clubroot-resistant cultivars is the key to control this disease. The genetic base of the Canadian spring B. napus canola for clubroot...