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Screening of diazotrophic bacteria Azopirillum spp. for nitrogen fixation and auxin production in multiple field sites in southern Brazil
Authors:Luiz Fernando W. Roesch  Patricia Dörr de Quadros  Flávio A. O. Camargo  Eric W. Triplett
Affiliation:1. Department of Microbiology and Cell Science, University of Florida, 1052 Museum Road, Gainesville, FL, 32611-0700, USA
2. Department of Soil Science, Federal University of Rio Grande do Sul, 7712 Bento Gon?alves Avenue, Porto Alegre, 91540-000, Brazil
Abstract:Isolation of microorganisms, screening for desirable characters and selection of efficient strains are important steps to optimize high crop yields and improve the sustainability of the ecosystem. The objective of this study was isolate and identify Azopirillum spp. with enhanced potential to promote plant growth among the natural bacterial population associated with rhizosphere soil, roots and stem of maize collected from five maize-growing regions within the southern state of Rio Grande do Sul in Brazil. Diazotrophic microorganisms were isolated using semi-solid N-free and solid selective media NFb. In order to select the most efficient isolates as candidates for plant growth promotion, the purified bacterial strains were studied for cell morphology, and Gram staining, streptomycin resistance, as well as screened for their potential for nitrogen fixation and auxin production under sterile conditions. Among 224 isolates obtained 121 were able to fix nitrogen and produce auxin. The 30 most promising isolates produced indole-3-acetic acid (IAA) ranging in concentration from 3.51 μg to 246.69 μg IAA mg−1. Nitrogen fixation ranged from 15.43 μg to 95.21 μg of N mg protein−1 day−1 From the 30 most productive isolates, chromosomal DNA was extracted and a portion of the nifH gene was amplified and sequenced. Twenty-nine isolates were found to be similar to the Azospirillum genus and one isolate was found to be similar to Herbaspirillum seropedicae. These bacterial isolates revealed potential to increase crop productivity, however field crop experiments in Rio Grande do Sul climatic conditions should be done in order to formulate recommendations for their use as inoculants.
Keywords:Indol acetic acid   nifH gene  Nitrogen fixation   Zea mays
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