Isolation and Characterization of Alfalfa-Nodulating Rhizobia Present in Acidic Soils of Central Argentina and Uruguay

Author:

del Papa María F.1,Balagué Laura J.1,Sowinski Susana Castro2,Wegener Caren3,Segundo Eduardo4,Abarca Francisco Martínez4,Toro Nicolás4,Niehaus Karsten3,Pühler Alfred3,Aguilar O. Mario1,Martínez-Drets Gloria2,Lagares Antonio1

Affiliation:

1. Instituto de Bioquı́mica y Biologı́a Molecular, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, 1900-La Plata, Argentina1;

2. División Bioquı́mica, Instituto de Investigaciones Biológicas Clemente Estable, 11600-Montevideo, Uruguay2;

3. Lehrstuhl für Genetik, Fakultät für Biologie, Universität Bielefeld, D-33501 Bielefeld, Germany3; and

4. Departamento de Microbiologı́a del Suelo y Sistemas Simbióticos, Estación Experimental del Zaidı́n, Consejo Superior de Investigaciones Cientı́ficas, 18008-Granada, Spain4

Abstract

ABSTRACT We describe the isolation and characterization of alfalfa-nodulating rhizobia from acid soils of different locations in Central Argentina and Uruguay. A collection of 465 isolates was assembled, and the rhizobia were characterized for acid tolerance. Growth tests revealed the existence of 15 acid-tolerant (AT) isolates which were able to grow at pH 5.0 and formed nodules in alfalfa with a low rate of nitrogen fixation. Analysis of those isolates, including partial sequencing of the genes encoding 16S rRNA and genomic PCR-fingerprinting with MBOREP1 and BOXC1 primers, demonstrated that the new isolates share a genetic background closely related to that of the previously reported Rhizobium sp. Or191 recovered from an acid soil in Oregon (B. D. Eardly, J. P. Young, and R. K. Selander, Appl. Environ. Microbiol. 58:1809–1815, 1992). Growth curves, melanin production, temperature tolerance, and megaplasmid profiles of the AT isolates were all coincident with these characteristics in strain Or191. In addition to the ability of all of these strains to nodulate alfalfa ( Medicago sativa ) inefficiently, the AT isolates also nodulated the common bean and Leucaena leucocephala , showing an extended host range for nodulation of legumes. In alfalfa, the time course of nodule formation by the AT isolate LPU 83 showed a continued nodulation restricted to the emerging secondary roots, which was probably related to the low rate of nitrogen fixation by the largely ineffective nodules. Results demonstrate the complexity of the rhizobial populations present in the acidic soils represented by a main group of N 2 -fixing rhizobia and a second group of ineffective and less-predominant isolates related to the AT strain Or191.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference49 articles.

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