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Isolation and characterization of rice mutants compromised in<Emphasis Type="Italic"> Xa21</Emphasis>-mediated resistance to<Emphasis Type="Italic"> X. oryzae</Emphasis> pv.<Emphasis Type="Italic"> oryzae</Emphasis>
Authors:Email author" target="_blank">G?L?WangEmail author  C?Wu  L?Zeng  C?He  M?Baraoidan  F?de?Assis Goes da Silva  C?E?Williams  P?C?Ronald  H?Leung
Institution:(1) Department of Plant Pathology, The Ohio State University, Kottman Hall, 2021 Coffey Road, Columbus, OH 43210-1087, USA;(2) International Rice Research Institute, P.O. Box 3127, Makati City, The Philippines;(3) Institute of Microbiology, Chinese Academy of Sciences, Beijing, China;(4) Department of Plant Pathology, University of California, Davis, CA 95616, USA;(5) USDA-ARS Crop Production and Pest Control Research Unit and Department of Entomology, Purdue University, West Lafayette, IN 47907, USA
Abstract:The rice gene, Xa21, confers resistance to diverse races of Xanthomonas oryzae pv. oryzae (Xoo) and encodes a receptor-like kinase with leucine-rich repeats in the extra-cellular domain. To identify genes essential for the function of the Xa21 gene, 4,500 IRBB21 (Xa21 isogenic line in IR24 background) mutants, induced by diepoxybutane and fast neutrons, were screened against Philippine race six (PR6) Xoo for a change from resistance to susceptibility. From two greenhouse screens, 23 mutants were identified that had changed from resistant to fully (6) or partially (17) susceptible to PR6. All fully susceptible mutants carried rearrangements at the Xa21 locus as detected by PCR and Southern hybridization. For the partially susceptible mutants, no changes were detected at the Xa21 locus based on Southern and PCR analyses. However, two of these mutants were confirmed via genetic analysis to have mutations at the Xa21 locus. Partially susceptible mutants exhibited variation in level of susceptibility to different Xoo strains, suggesting that they may carry different mutations required for the Xa21-mediated resistance. The mutants identified in this study provide useful materials for dissecting the Xa21-mediated resistance pathway in rice.Communicated by D.J. Mackill
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