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The soybean cultivar specificity gene noIX is present, expressed in a nodD-dependent manner, and of symbiotic significance in cultivar-nonspecific strains of Rhizobium (Sinorhizobium) fredii

Department of Plant Pathology, University of Missouri, Columbia, MO 65211, USA Departmento de Microbiología, Universidad de Sevilla, Apdo 1095, 41080-Sevilla, Spain CIDA Las Torres, Apdo Oficial, Alcalá del Rio, Sevilla, Spain Author for correspondence: S. G. Pueppke. Tel: +49 6421 283540. Fax: +49...

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Published in:Microbiology (Society for General Microbiology) 1997-04, Vol.143 (4), p.1381-1388
Main Authors: Bellato, C, Krishnan, H. B, Cubo, T, Temprano, F, Pueppke, S. G
Format: Article
Language:English
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Summary:Department of Plant Pathology, University of Missouri, Columbia, MO 65211, USA Departmento de Microbiología, Universidad de Sevilla, Apdo 1095, 41080-Sevilla, Spain CIDA Las Torres, Apdo Oficial, Alcalá del Rio, Sevilla, Spain Author for correspondence: S. G. Pueppke. Tel: +49 6421 283540. Fax: +49 6421 288997. ABSTRACT Rhizobium (now Sinorhizobium) fredii is a symbiotic nitrogen-fixing bacterium that can nodulate soybean in a cultivar-specific manner. This process is governed by a set of negatively acting nodulation genes termed noIXWBTUV. These genes prevent R. fredii strain USDA257 from infecting soybean cultivars such as McCall, but they do not block nodulation of cultivar Peking. R. fredii strain USDA191 contains DNA sequences that hybridize to noIXWBTUV, yet it forms normal nitrogen-fixing nodules on both McCall and Peking soybean. These sequences were isolated and their structure and function examined in comparison to noIXWBTUV of strain USDA257. Restriction maps of the two loci are identical, as is a 2.4 kb DNA sequence that corresponds to noIX and its promoter region. Expression of noIX by strain USDA191 is flavonoid-dependent in culture and readily detectable in nodules. The gene is not inducible in a mutant of strain USDA191 that lacks the regulatory nodD1 gene, and its expression is greatly attenuated in a nodD2 mutant. noIX is also present and flavonoid-inducible in HH103, a second R. fredii strain that nodulates McCall soybean normally. Inactivation of noIX in strain HH103, USDA191 or USDA257 leads to retardation of initial nodulation rates on soybean cultivars such as Peking and to acquisition of the capacity to form nitrogen-fixing nodules on two species of Erythrina. noIX is thus of symbiotic significance in all three strains, even though it regulates soybean cultivar specificity only in strain USDA257. Keywords: Rhizobium (Sinorhizobium) fredii, Glycine max, nodD, noIX, symbiosis Present address: Fachbereich Biologie/Botanik, Philipps University, Karlvon-Frisch Straße, D-35032 Marburg/Lahn, Germany.
ISSN:1350-0872
1465-2080
DOI:10.1099/00221287-143-4-1381