Optimizing Common Bean Symbiosis via Stage-Specific Reinoculation and Co-Inoculation
Abstract
1. Introduction
2. Results
2.1. Nodular Analyses
2.2. Morphological Analyses
2.3. Agronomic Analyses
2.4. Principal Component Analysis
3. Discussion
4. Materials and Methods
4.1. Experimental Field Characterization
4.2. Experimental Design and Treatments
4.3. Implementation and Management
4.4. Evaluated Parameters
4.5. Statistical Analysis
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
DAE | Days After Emergence |
NNP | Number of Nodules per Plant |
NDM | Nodule Dry Mass |
PRL | Primary Root Length |
RSDM | Root System Dry Mass |
APDM | Aerial Part of Dry Mass |
LNC | Leaf Nitrogen Content |
FPS | Final Plant Stand |
NPP | Number of Pods per Plant |
NGP | Number of Grains per Pod |
HGM | Hundred Grain Mass |
YIELD | Grain Yield |
References
- Heinemann, A.B.; Pinheiro, P.V.; da Matta, D.H.; Stone, L.F.; Pietrafesa, P.A.; Ribeiro, W.R.; Tsukahara, R.Y.; Joris, H.A.W. Strategies for Fungicide Application Based on the Yield Response of Common Bean Genotypes under El Niño-Southern Oscillation (ENSO). Eur. J. Agron. 2024, 154, 127090. [Google Scholar] [CrossRef]
- Lisciani, S.; Marconi, S.; Le Donne, C.; Camilli, E.; Aguzzi, A.; Gabrielli, P.; Gambelli, L.; Kunert, K.; Marais, D.; Vorster, B.J.; et al. Legumes and Common Beans in Sustainable Diets: Nutritional Quality, Environmental Benefits, Spread and Use in Food Preparations. Front. Nutr. 2024, 11, 1385232. [Google Scholar] [CrossRef]
- Nasar, S.; Shaheen, H.; Murtaza, G.; Tinghong, T.; Arfan, M.; Idrees, M. Socioeconomic Evaluation of Common Bean (Phaseolus vulgaris L.) Cultivation in Providing Sustainable Livelihood to the Mountain Populations of Kashmir Himalayas. Plants 2023, 12, 213. [Google Scholar] [CrossRef] [PubMed]
- FAO. Statistical Databases. Food and Agriculture Organization of the United Nations. 2021. Available online: https://www.fao.org/statistics/en (accessed on 26 March 2025). (In Portuguese).
- CONAB. Companhia Nacional de AbastecimentoAcompanhamento Da Safra Brasileira de Grãos. v. 9, Safra 2023/24, Décimo Segundo Levantamento. Available online: http://www.conab.gov.br/info-agro/safras/graos/boletim-da-safra-de-graos (accessed on 26 March 2025). (In Portuguese)
- Silva, C.G.M.; Moreira, S.G. Nutritional Demand and Nutrient Export by Modern Cultivars of Common Bean. Pesqui. Agropecuária Bras. 2022, 57, e02248. [Google Scholar] [CrossRef]
- Moreira, S.G.; Hoogenboom, G.; Nunes, M.R.; Sanchez, P.A. Circular Agriculture Practices Enhance Phosphorus Recovery for Large-Scale Commercial Farms under Tropical Conditions. J. Agric. Sci. 2023, 161, 763–777. [Google Scholar] [CrossRef]
- Soratto, R.P.; Sandaña, P.; Sousa, W.S.; Fernandes, A.M.; Ciampitti, I.A. Critical Nitrogen Dilution Curve for Estimating Nitrogen Nutrition Index of Common Beans. Field Crops Res. 2025, 322, 109713. [Google Scholar] [CrossRef]
- De Castro Pias, O.H.; Welter, C.A.; Tiecher, T.; Cherubin, M.R.; Flores, J.P.M.; Alves, L.A.; Bayer, C. Common Bean Yield Responses to Nitrogen Fertilization in Brazilian No-till Soils: A Meta-Analysis. Rev. Bras. Ciência Solo 2022, 46, e0220022. [Google Scholar] [CrossRef]
- Eisa, M.; Brondi, M.; Williams, C.; Hejl, R.; Baltrusaitis, J. From Urea to Urea Cocrystals: A Critical View of Conventional and Emerging Nitrogenous Fertilizer Materials for Improved Environmental Sustainability. Sustain. Chem. Environ. 2025, 9, 100209. [Google Scholar] [CrossRef]
- Soumare, A.; Diedhiou, A.G.; Thuita, M.; Hafidi, M.; Ouhdouch, Y.; Gopalakrishnan, S.; Kouisni, L. Exploiting Biological Nitrogen Fixation: A Route Towards a Sustainable Agriculture. Plants 2020, 9, 1011. [Google Scholar] [CrossRef]
- Bonilha da Silva, F.; Barbosa, J.Z.; Tiecher, T.; Borin, J.B.M.; Treichel, B.; Saccol de Sá, E.L. Species-Dependent Effect of Rhizobacteria Co-Inoculation in Legume Plants: A Global Meta-Analysis. Rhizosphere 2024, 30, 100869. [Google Scholar] [CrossRef]
- Mir, M.I.; Mukkamula, N.; Kumar, B.K.; Parray, J.A.; Khan, I.; Hameeda, B.; Babalola, O.O. Impact of Microbial Consortium of Rhizobium tropici and Rhizobium mayense on the Growth of Phaseolus vulgaris L. S. Afr. J. Bot. 2024, 168, 562–572. [Google Scholar] [CrossRef]
- Kalantari, S.; Marefat, A.; Naseri, B.; Hemmati, R. Improvement of Bean Yield and Fusarium Root Rot Biocontrol Using Mixtures of Bacillus, Pseudomonas and Rhizobium. Trop. Plant Pathol. 2018, 43, 499–505. [Google Scholar] [CrossRef]
- Maximiano, M.R.; Megías, E.; Santos, I.R.; Santos, L.S.; Ollero, F.J.; Megías, M.; Franco, O.L.; Mehta, A. Proteome Responses of Rhizobium tropici CIAT 899 upon Apigenin and Salt Stress Induction. Appl. Soil Ecol. 2021, 159, 103815. [Google Scholar] [CrossRef]
- Fiori, A.K.; de Oliveira Gutuzzo, G.; dos Sanzovo, A.W.; de Souza Andrade, D.; de Oliveira, A.L.M.; Rodrigues, E.P. Effects of Rhizobium TropiciAzide-Resistant Mutants on Growth, Nitrogen Nutrition and Nodulation of Common Bean (Phaseolus vulgaris L.). Rhizosphere 2021, 18, 100355. [Google Scholar] [CrossRef]
- Hungria, M.; Nogueira, M.A.; Araujo, R.S. Co-Inoculation of Soybeans and Common Beans with Rhizobia and Azospirilla: Strategies to Improve Sustainability. Biol. Fertil. Soils 2013, 49, 791–801. [Google Scholar] [CrossRef]
- Dall’Agnol, R.F.; Ribeiro, R.A.; Ormeño-Orrillo, E.; Rogel, M.A.; Delamuta, J.R.M.; Andrade, D.S.; Martínez-Romero, E.; Hungria, M. Rhizobium freirei Sp. Nov., a Symbiont of Phaseolus Vulgaris That Is Very Effective at Fixing Nitrogen. Int. J. Syst. Evol. Microbiol. 2013, 63, 4167–4173. [Google Scholar] [CrossRef]
- Hungria, M.; Kaschuk, G. Regulation of N2 Fixation and NO3−/NH4+ Assimilation in Nodulated and N-Fertilized Phaseolus vulgaris L. Exposed to High Temperature Stress. Environ. Exp. Bot. 2014, 98, 32–39. [Google Scholar] [CrossRef]
- Sousa, W.S.; Soratto, R.P.; Peixoto, D.S.; Campos, T.S.; da Silva, M.B.; Souza, A.G.V.; Teixeira, I.R.; Gitari, H.I. Effects of Rhizobium Inoculum Compared with Mineral Nitrogen Fertilizer on Nodulation and Seed Yield of Common Bean. A Meta-Analysis. Agron. Sustain. Dev. 2022, 42, 52. [Google Scholar] [CrossRef]
- De Oliveira, K.S.; Volsi, B.; Telles, T.S.; Mendes, A.D.R.; Yunes, J.S.; Andrade, D.S. Co-Inoculation with Rhizobium, Azospirillum, and Microalgae Increases Common Bean Yield and Profitability. Agron. J. 2025, 117, e21719. [Google Scholar] [CrossRef]
- Telles, T.S.; Silvestre, D.A.; Mendes, A.D.R.; de Souza, L.G.A.; da Conceição Jesus, E.; Andrade, D.S. The Economics of Biological Nitrogen Fixation in Common Bean, Cowpea and Mung Bean in Brazil. Plant Soil. 2025, 1–12. [Google Scholar] [CrossRef]
- Ribeiro, B.B.A.; Teixeira, I.R.; Silva, G.C.; Bravo, T.E.P.; Cunha, N.M.B.; Benício Neto, M.R.; Alves, G.P.C.; Sbroggio Filho, A.M.; Reis, E.F. Reinoculation in Topdressing of Rhizobium tropici, Azospirillum brasilense, and the Micronutrients Mo/Co in Common Bean. Agronomy 2024, 14, 1368. [Google Scholar] [CrossRef]
- Teixeira, I.R.; Lopes, P.R.; Sousa, W.S.; Teixeira, G.C.d.S. Response of Common Bean to Rhizobium Reinoculation in Topdressing. Rev. Bras. Eng. Agrícola Ambient. 2022, 26, 274–282. [Google Scholar] [CrossRef]
- Lourenço, A.E.; Teixeira, I.R.; Rocha, E.C.; Silva, G.C.; Reis, E.F.; Santos, F.L.; Silva, G.R.; Lisboa, C.F.; Kikuti, H.; Silva, A.G. Potential of Reinoculation Using R. Tropici Applied under Cover to Increase Bean Yield. Sustainability 2023, 15, 16452. [Google Scholar] [CrossRef]
- Moretti, L.G.; Lazarini, E.; Bossolani, J.W.; Parente, T.L.; Caioni, S.; Araujo, R.S.; Hungria, M. Can Additional Inoculations Increase Soybean Nodulation and Grain Yield? Agron. J. 2018, 110, 715–721. [Google Scholar] [CrossRef]
- Messias, M.; Asobia, P.C.; de Brito Ferreira, E.P. Rhizobia and Azospirilla Co-Inoculation Boosts Growth and Productivity of Common Bean. Int. J. Agric. Biol. 2023, 29, 65–73. [Google Scholar] [CrossRef]
- Zafar, M.; Abbasi, M.K.; Khan, M.A.; Khaliq, A.; Sultan, T.; Aslam, M. Effect of Plant Growth-Promoting Rhizobacteria on Growth, Nodulation and Nutrient Accumulation of Lentil Under Controlled Conditions. Pedosphere 2012, 22, 848–859. [Google Scholar] [CrossRef]
- Mortinho, E.S.; Jalal, A.; da Silva Oliveira, C.E.; Fernandes, G.C.; Pereira, N.C.M.; Rosa, P.A.L.; do Nascimento, V.; de Sá, M.E.; Teixeira Filho, M.C.M. Co-Inoculations with Plant Growth-Promoting Bacteria in the Common Bean to Increase Efficiency of NPK Fertilization. Agronomy 2022, 12, 1325. [Google Scholar] [CrossRef]
- Petrônio de Brito Ferreira, E.; Fátima da Silva, O.; Elenor Wander, A.; Arroz Feijão, E.; Go-, R.; Capivara, F.; Rural, Z. Economics of Rhizobia and Azospirilla Co-Inoculation in Irrigated Common Bean in Commercial and Family Farming. Pesqui. Agropecuária Bras. 2020, 55, e01532. [Google Scholar] [CrossRef]
- Cunha, N.M.d.B.; Teixeira, I.R.; Teixeira, G.C.d.S.; Rocha, E.C.; Bravo, T.E.P.; Souza, A.L.C.d.; Damião, E.F.; Sbroggio Filho, A.M. Physiological Quality of Bean Seeds Cultivated with Rhizobia Reinoculation and Azospirillum Co-Inoculation at Different Growth Stages. Microorganisms 2025, 13, 805. [Google Scholar] [CrossRef]
- Steiner, F.; Ferreira, H.C.P.; Zuffo, A.M. Can Co-Inoculation of Rhizobium tropici and Azospirillum brasilense Increase Common Bean Nodulation and Grain Yield? Semin. Ciências Agrárias 2019, 40, 81–98. [Google Scholar] [CrossRef]
- Almeida, Q.R.; Teixeira, I.R.; da Silva, G.C.; Rocha, E.C.; Kikuti, H. Reinoculation of Topdressing Rhizobium tropici Combined or Not with Azospirillum brasilense in Common Bean. Pesqui. Agropecuária Trop. 2022, 52, e73419. [Google Scholar] [CrossRef]
- Liu, X.Q.; Xie, M.M.; Hashem, A.; Abd-Allah, E.F.; Wu, Q.S. Arbuscular Mycorrhizal Fungi and Rhizobia Synergistically Promote Root Colonization, Plant Growth, and Nitrogen Acquisition. Plant Growth Regul. 2023, 100, 691–701. [Google Scholar] [CrossRef]
- Vanlauwe, B.; Hungria, M.; Kanampiu, F.; Giller, K.E. The Role of Legumes in the Sustainable Intensification of African Smallholder Agriculture: Lessons Learnt and Challenges for the Future. Agric. Ecosyst. Environ. 2019, 284, 106583. [Google Scholar] [CrossRef]
- Da Silva Neto, M.L.; Smiderle, O.J.; da Silva, K.; Júnior, P.I.F.; Xavier, G.R.; Zilli, J.É. Compatibilidade Do Tratamento de Sementes de Feijão-Caupi Com Fungicidas e Inoculação Com Estirpes de Bradyrhizobium. Pesqui. Agropecuária Bras. 2013, 48, 80–87. [Google Scholar] [CrossRef]
- Wu, X.; Li, H.; Rengel, Z.; Whalley, W.R.; Li, H.; Zhang, F.; Shen, J.; Jin, K. Localized Nutrient Supply Can Facilitate Root Proliferation and Increase Nitrogen-Use Efficiency in Compacted Soil. Soil Tillage Res. 2022, 215, 105198. [Google Scholar] [CrossRef]
- Silva, G.R.; Teixeira, I.R.; Ferreira, A.B.; da Silva, G.C.; Rocha, E.C.; Santos, F.L.S.; Neto, M.R.B.; Cunha, N.M.d.B.; Casaroli, D. Impact of the Application of Rhizobacteria in Bean Cultivars: Potential for Sustainable Management. Agronomy 2025, 15, 377. [Google Scholar] [CrossRef]
- Rosolem, C.A.; Marubayashi, O.M. Seja o Doutor de Seu Feijoeiro, 18th ed.; Informações Agronômicas 2; NPCT: Piracicaba, Brazil, 1994. (In Portuguese) [Google Scholar]
- Schossler, J.H.; Meert, L.; Rizzard, D.A.; Michalovicz, L. Componentes de rendimento e produtividade do feijoeiro comum submetido à inoculação e co-inoculação com estirpes de rhizobiumtropici e azospirillum brasilense. Sci. Agrar. 2016, 17, 10–15. [Google Scholar] [CrossRef]
- Souza, J.E.B.; Ferreira, E.P.d.B. Improving Sustainability of Common Bean Production Systems by Co-Inoculating Rhizobia and Azospirilla. Agric. Ecosyst. Environ. 2017, 237, 250–257. [Google Scholar] [CrossRef]
- Cunha, I.d.C.M. Vale a Pena Usar Inoculante Para Feijão? Veja, Produtos, Práticas e Resultados. Available online: https://agroadvance.com.br/blog-inoculante-para-feijao/ (accessed on 12 August 2025).
- United Nations. Transforming Our World: The 2030 Agenda for Sustainable Development; United Nations: New York, NY, USA, 2015. [Google Scholar]
- Mladenov, P.; Aziz, S.; Topalova, E.; Renaut, J.; Planchon, S.; Raina, A.; Tomlekova, N. Physiological Responses of Common Bean Genotypes to Drought Stress. Agronomy 2023, 13, 1022. [Google Scholar] [CrossRef]
- Ambachew, D.; Mekbib, F.; Asfaw, A.; Beebe, S.E.; Blair, M.W. Trait Associations in Common Bean Genotypes Grown under Drought Stress and Field Infestation by BSM Bean Fly. Crop J. 2015, 3, 305–316. [Google Scholar] [CrossRef]
- Kıymaz, S.; Beyaz, R. Morpho-Physiological Responses of Common Bean (Phaseolus vulgaris L.) Cultivars to Drought Stress. Legume Res. 2019, 42, 505–511. [Google Scholar] [CrossRef]
- Alvares, C.A.; Stape, J.L.; Sentelhas, P.C.; de Moraes Gonçalves, J.L.; Sparovek, G. Köppen’s Climate Classification Map for Brazil. Meteorol. Z. 2013, 22, 711–728. [Google Scholar] [CrossRef] [PubMed]
- EMBRAPA. Manual de Análises Químicas de Solos, Plantas e Fertilizantes. Embrapa Informação Tecnológica 2009, 370. Available online: http://www.infoteca.cnptia.embrapa.br/infoteca/handle/doc/330496 (accessed on 12 August 2025).
- EMBRAPA. Conhecendo a Fenologia Do Feijoeiro e Seus Aspectos Fitotécnicos, 1st ed.; Embrapa Arroz e Feijão: Brasilia, Brazil, 2018; Volume 1. [Google Scholar]
- Moreira, L.P. Nodulation, Contribution of Biological N2 Fixation, and Productivity of the Common Bean (Phaseolus vulgaris L.) Inoculated with Rhizobia Isolates. Aust. J. Crop Sci. 2017, 11, 3–10. [Google Scholar] [CrossRef]
- R Core Team. R: A Language and Environment for Statistical Computing; Foundation for Statistical Computing: Vienna, Austria, 2022. Available online: https://www.R-project.org/ (accessed on 12 August 2025).
- Wickham, H. Ggplot2: Elegant Graphics for Data Analysis; Version 3.5.2. 2016. Available online: https://cran.r-project.org/web/packages/ggplot2/index.html (accessed on 12 August 2025).
- Kassambara, A.; Mundt, F. Facto Extra: Extract and Visualize the Results of Multivariate Data Analyses, R Package Version 1.0.7, 2020. Available online: https://cran.r-project.org/package=factoextra (accessed on 12 August 2025).
Treatment | Description |
---|---|
T1 | Reinoculation with R. tropici topdressing at V3 |
T2 | Reinoculation with R. tropici topdressing at V4 |
T3 | Reinoculation with R. tropici topdressing at R5 |
T4 | Reinoculation with R. tropici topdressing at R6 |
T5 | Co-inoculation with R. tropici + A. brasilense topdressing at V3 |
T6 | Co-inoculation with R. tropici + A. brasilense topdressing at V4 |
T7 | Co-inoculation with R. tropici + A. brasilensis topdressing at R5 |
T8 | Co-inoculation with R. tropici + A. brasilensis topdressing at R6 |
T9 | Control |
T10 | Inoculation with R. tropici via seeds |
T11 | Co-inoculation with R. tropici + A. brasilense via seeds |
T12 | Mineral nitrogen fertilization |
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Bravo, T.E.P.; Teixeira, I.R.; Teixeira, G.C.d.S.; Cunha, N.M.d.B.; Rocha, E.C.; Comachio, L.B.; Alves, G.P.d.C. Optimizing Common Bean Symbiosis via Stage-Specific Reinoculation and Co-Inoculation. Plants 2025, 14, 2676. https://doi.org/10.3390/plants14172676
Bravo TEP, Teixeira IR, Teixeira GCdS, Cunha NMdB, Rocha EC, Comachio LB, Alves GPdC. Optimizing Common Bean Symbiosis via Stage-Specific Reinoculation and Co-Inoculation. Plants. 2025; 14(17):2676. https://doi.org/10.3390/plants14172676
Chicago/Turabian StyleBravo, Tamires Ester Peixoto, Itamar Rosa Teixeira, Gisele Carneiro da Silva Teixeira, Nathan Mickael de Bessa Cunha, Ednaldo Cândido Rocha, Lucas Boaretto Comachio, and Gessiele Pinheiro da Conceição Alves. 2025. "Optimizing Common Bean Symbiosis via Stage-Specific Reinoculation and Co-Inoculation" Plants 14, no. 17: 2676. https://doi.org/10.3390/plants14172676
APA StyleBravo, T. E. P., Teixeira, I. R., Teixeira, G. C. d. S., Cunha, N. M. d. B., Rocha, E. C., Comachio, L. B., & Alves, G. P. d. C. (2025). Optimizing Common Bean Symbiosis via Stage-Specific Reinoculation and Co-Inoculation. Plants, 14(17), 2676. https://doi.org/10.3390/plants14172676