2017Australian Journal of Crop ScienceOpen access

Nodulation, contribution of biological N2 fixation, and productivity of the common bean (Phaseolus vulgaris L.) inoculated with rhizobia isolates

Leniany Patrícia Moreira, Ana Paula Santos Oliveira, Instituto Federal Goiano, Rodovia GO-154 - Km 3, S/N - Zona Rural, Campus Ceres, Ceres, GO, 76300-000, Brazil, Enderson Petrônio de Brito Ferreira, Embrapa Arroz e Feijão, Rodovia GO-462, km 12, Santo Antônio de Goiás, GO, 75375-000, Brazil

Open full text 23 citations

Abstract

The common bean has a great economic, social, and nutritional importance and requires high levels of nitrogen for its cultivation.The plant in symbiosis with rhizobia bacteria can benefit from biological nitrogen fixation (BNF).To assess the agronomic efficacy of rhizobia isolates on the nodulation, contribution of BNF and productivity of the common bean, two experiments were conducted in separate locations.Seventeen Rhizobium tropici isolates were selected and compared with three commercial Rhizobium spp.strains: CIAT 899 and H12 (R. tropici) and PRF 81 (R. freirei).The variables analyzed were: number of nodules (NN), nodules dry weight (NDW), root dry weight (RDW), leaf area (LA), shoot dry weight (SDA), total nitrogen in shoots (Total-N), number of pods (NP), number of grains (NG), grain yield (GY), percentage of nitrogen derived from BNF (Ndfa%), and total nitrogen derived from BNF in the shoots (NdBNF).Inoculation with R. tropici isolates promoted significant gains in nodulation, growth, and productivity of the common bean.About 50% of the isolates promoted GY rates equal to or superior to the nitrogen treatment (NT) and to the standard strains CIAT 899, PRF 81, and H12.Among the best isolates, the Ndfa% ranged from 64.2% to 75.8%, with NdBNF ranging from 802.91 to 1037.56 mg plant -1 .The isolate JPrG10A6 of Rhizobium tropici provided high values of NdBNF and GY, showing great potential to be used commercially as inoculant of the common bean crop.

Open-access reader

About this research paper

What this paper is about

The common bean has a great economic, social, and nutritional importance and requires high levels of nitrogen for its cultivation.The plant in symbiosis with rhizobia bacteria can benefit from biological nitrogen fixation (BNF).To assess the agronomic efficacy of rhizobia isolates on the nodulation, contribution of BNF and productivity of the common bean, two experiments were conducted in separate locations.Seventeen Rhizobium tropici isolates were selected and compared with three commercial Rhizobium spp.strains: CIAT 899 and H12 (R. tropici) and PRF 81 (R. freirei).The variables analyzed were: number of nodules (NN), nodules dry weight (NDW), root dry weight (RDW), leaf area (LA), shoot dry weight (SDA), total nitrogen in shoots (Total-N), number of pods (NP), number of grains (NG), grain yield (GY), percentage of nitrogen derived from BNF (Ndfa%), and total nitrogen derived from BNF in the shoots (NdBNF).Inoculation with R. tropici isolates promoted significant gains in nodulation, growth, and productivity of the common bean.About 50% of the isolates promoted GY rates equal to or superior to the nitrogen treatment (NT) and to the standard strains CIAT 899, PRF 81, and H12.Among the best isolates, the Ndfa% ranged from 64.2% to 75.8%, with NdBNF ranging from 802.91 to 1037.56 mg plant -1 .The isolate JPrG10A6 of Rhizobium tropici provided high values of NdBNF and GY, showing great potential to be used commercially as inoculant of the common bean crop.

Why it matters

OpenAlex reports 23 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The common bean has a great economic, social, and nutritional importance and requires high levels of nitrogen for its cultivation.The plant in symbiosis with rhizobia bacteria can benefit from biological nitrogen fixation (BNF).To assess the agronomic efficacy of rhizobia isolates on the nodulation, contribution of BNF and productivity of the common bean, two experiments were conducted in separate locations.Seventeen Rhizobium tropici isolates were selected and compared with three commercial Rhizobium spp.strains: CIAT 899 and H12 (R. tropici) and PRF 81 (R. freirei).The variables analyzed were: number of nodules (NN), nodules dry weight (NDW), root dry weight (RDW), leaf area (LA), shoot dry weight (SDA), total nitrogen in shoots (Total-N), number of pods (NP), number of grains (NG), grain yield (GY), percentage of nitrogen derived from BNF (Ndfa%), and total nitrogen derived from BNF in the shoots (NdBNF).Inoculation with R. tropici isolates promoted significant gains in nodulation, growth, and productivity of the common bean.About 50% of the isolates promoted GY rates equal to or superior to the nitrogen treatment (NT) and to the standard strains CIAT 899, PRF 81, and H12.Among the best isolates, the Ndfa% ranged from 64.2% to 75.8%, with NdBNF ranging from 802.91 to 1037.56 mg plant -1 .The isolate JPrG10A6 of Rhizobium tropici provided high values of NdBNF and GY, showing great potential to be used commercially as inoculant of the common bean crop.

Key concepts: Rhizobia, Phaseolus, Nitrogen fixation, Biology, Shoot, Microbial inoculant, Agronomy, Rhizobium

Related papers

Back to paper searchBrowse research topicsOriginal source
Nodulation, contribution of biological N2 fixation, and productivity of the common bean (Phaseolus vulgaris L.) inoculated with rhizobia isolates — Research Paper | ScholarLens