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Identification of stem soft rot (Erwinia carotovora subspeciesatroseptica) resistance in potato
Authors:Piara S Bains  Vikram S Bisht  Dermot R Lynch  Lawrence M Kawchuk  John P Helgeson
Institution:1. Alberta Agriculture Food & Rural Development, Crop Diversification Centre North, R.R. #6, T5B 4K3, Edmonton, Alberta, Canada
3. Research Centre, Agriculture & Agri-Food Canada, T1J 4B1, Lethbridge, Alberta, Canada
4. USDA/ARS, Department of Plant Pathology, University of Wisconsin, 53706, Madison, WI
Abstract:Development of potato cultivars resistant to Erwinia species (Erwinia carotovora subspeciesatroseptica, E. carotovora subspeciescarotovora, andErwinia chrysanthemi) causing soft rot of stems and tubers involves identification and transfer of the resistance to breeding lines possessing desirable agronomic traits. In total, 363 accessions of six wildSolanum species, three somatic hybrids and nine sexual progeny of somatic hybrids were screened for stem soft rot resistance. Thirty-one, 50, and 67 percent of accessions ofSolanum boliviense, Solanum chacoense, and Solanumsanctarosae, respectively, were resistant or highly resistant, whereas, 100, 97, and 95 percent of accessions ofSolanum canasense, Solanum tarijense, andSolanum spegazzinii were susceptible or highly susceptible, respectively. Two tuber soft-rot resistant somatic hybrids, A937 and T355-11 produced earlier by the fusion ofSolanum brevidens (PI 218228) andSolanum tuberosum (PI203900) orS. tuberosum cv. Russet Burbank, respectively, and the sexual progeny of A937 andS. tuberosum cv. Katahdin were also highly resistant. Transfer of resistance fromS. brevidens to somatic hybrid (A937) and subsequently to the progeny suggests that the resistance is simply inherited. In addition to the identification of 65 resistant or highly resistant clones of wildSolanum species, this study has identified three tuber soft rot-resistant clones that are also resistant to stem soft rot. Potato cultivars showed a range of responses to the pathogen.
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