Physiological Quality of Bean Seeds Cultivated with Rhizobia Reinoculation and Azospirillum Co-Inoculation at Different Growth Stages
Abstract
:1. Introduction
2. Materials and Methods
2.1. Characterization of the Study Area
2.2. Experimental Design and Treatments
2.3. Field Experiment Implementation and Conduct
2.4. Laboratory Experiment Implementation and Conduct
2.4.1. Germination Test
2.4.2. First Count
2.4.3. Accelerated Aging
2.4.4. Electrical Conductivity
2.4.5. Seedling Length
2.4.6. Seedling Dry Mass
2.5. Statistical Analysis
3. Results
3.1. Mean Comparison
3.2. Canonical Discriminant Analysis
3.3. Pearson Correlation
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Conab—Boletim da Safra de Grãos. Available online: http://www.conab.gov.br/info-agro/safras/graos/boletim-da-safra-de-graos (accessed on 10 February 2025).
- Guerra, C.A.; Marchetti, M.E.; Robaina, A.D.; de Souza, L.C.F.; Gonçalves, M.C.; Novelino, J.O. Qualidade Fisiológica de Sementes de Soja Em Função Da Adubação Com Fósforo, Molibdênio e Cobalto. Acta Sci. Agron. 2006, 28, 1–7. [Google Scholar]
- Santos, H.C.; Viana, J.S.; Gonçalves, E.P.; de Lucena Alcântara Bruno, R.; da Silva Fraga, V. Qualidade Fisiológica de Sementes de Sorgo Em Resposta à Adubação Com Cobre e Zinco. Rev.Caatinga 2008, 21, 64–74. [Google Scholar]
- Marcos Filho, J. Fisiologia de Sementes de Plantas Cultivadas; Abrates: Londrina, Brazil, 2015. [Google Scholar]
- Fernandes, D.S.; Soratto, R.P.; Kulczynski, S.M.; Biscaro, G.A.; dos Reis, C.J. Produtividade e Qualidade Fisiológica de Sementes de Feijão Em Conseqüência Da Aplicação Foliar de Manganês. Pesqui. Agropecu. Bras. 2007, 42, 419–426. [Google Scholar] [CrossRef]
- De Castro, L.O.; Teixeira, I.R.; da Silva Teixeira, G.C.; de Bessa Cunha, N.M.; da Conceicao Alves, G.P.; Casaroli, D.; da Silva, A.G. Influence of Inoculant Application Methods on the Physiological Quality of Common Bean Seeds. J. Sustain. Dev. 2025, 18, 46–54. [Google Scholar] [CrossRef]
- Queiroz Rego, C.H.; Cardoso, F.B.; da Silva Cândido, A.C.; Teodoro, P.E.; Alves, C.Z. Co-inoculation with Bradyrhizobium and Azospirillum increases yield and quality of soybean seeds. Agron. J. 2018, 110, 2302–2309. [Google Scholar] [CrossRef]
- Sheteiwy, M.S.; Abd Elgawad, H.; Xiong, Y.C.; Macovei, A.; Brestic, M.; Skalicky, M.; Shaghaleh, H.; Hamoud, Y.A.; El-Sawah, A.M. Inoculation with Bacillus amyloliquefaciens and mycorrhiza confers tolerance to drought stress and improve seed yield and quality of soybean plant. Physiol. Plant. 2021, 172, 2153–2169. [Google Scholar] [CrossRef]
- Getachew, Z.; Abera, G.; Beyene, S. Rhizobium Inoculation and Sulphur Fertilizer Improved Yield, Nutrients Uptake and Protein Quality of Soybean (Glysine max L.) Varieties on Nitisols of Assosa Area, Western Ethiopia. Afr. J. Plant Sci. 2017, 11, 123–132. [Google Scholar] [CrossRef]
- Komala, N.T.; Sumalatha, G.M.; Gurumurthy, R.; Surendra, P. Seed Quality Enhancement Techniques. J. Pharmacogn. Phytochem. 2018, 7, 3124–3128. [Google Scholar]
- Mabrouk, Y.; Hemissi, I.; Salem, I.B.; Mejri, S.; Saidi, M.; Belhadj, O. Potential of Rhizobia in Improving Nitrogen Fixation and Yields of Legumes. In Symbiosis; InTech: London, UK, 2018; Volume 107, pp. 107–122. [Google Scholar] [CrossRef]
- Cruz-Hernández, M.A.; Mendoza-Herrera, A.; Bocanegra-García, V.; Rivera, G. Azospirillum spp. from Plant Growth-Promoting Bacteria to Their Use in Bioremediation. Microorganisms 2022, 10, 1057. [Google Scholar] [CrossRef]
- Lopes, M.J.D.S.; Dias-Filho, M.B.; Gurgel, E.S.C. Successful plant growth-promoting microbes: Inoculation methods and abiotic factors. Front. Sustain. Food Syst. 2021, 5, 606454. [Google Scholar] [CrossRef]
- Vurukonda, S.S.K.P.; Fotopoulos, V.; Saeid, A. Production of a rich fertilizer base for plants from waste organic residues by microbial formulation technology. Microorganisms 2024, 12, 541. [Google Scholar] [CrossRef] [PubMed]
- Martínez-Viveros, O.; Jorquera, M.A.; Crowley, D.E.; Gajardo, G.; Mora, M.L. Mechanisms and practical considerations involved in plant growth promotion by rhizobacteria. J. Soil Sci. Plant Nutr. 2010, 10, 293–319. [Google Scholar] [CrossRef]
- Teixeira, I.R.; Lopes, P.R.; Sousa, W.S.; da Silva Teixeira, G.C. Response of Common Bean to Rhizobium Reinoculation in Topdressing. Rev. Bras. Eng. Agríc. Ambient. 2022, 26, 274–282. [Google Scholar] [CrossRef]
- Ribeiro, B.B.; Teixeira, I.R.; Silva, G.C.; Bravo, T.E.P.; Cunha, N.M.B.; Benício Neto, M.R.; Alves, G.P.; 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]
- Cassán, F.; Coniglio, A.; López, G.; Molina, R.; Nievas, S.; de Carlan, C.L.N.; Donadio, F.; Torres, D.; Rosas, S.; Pedrosa, F.O. Everything You Must Know about Azospirillum and Its Impact on Agriculture and Beyond. Biol. Fertil. Soils 2020, 56, 461–479. [Google Scholar] [CrossRef]
- de Souza, J.E.B.; de Brito Ferreira, E.P. Improving Sustainability of Common Bean Production Systems by Co-Inoculating Rhizobia and Azospirilla. Agric. Ecosyst. Environ. 2017, 237, 250–257. [Google Scholar] [CrossRef]
- Basu, S.; Groot, S.P. Seed Vigour and Invigoration. In Seed Science and Technology: Biology, Production, Quality; Springer Nature: New Delhi, India, 2023; pp. 67–91. [Google Scholar]
- Fiodor, A.; Ajijah, N.; Dziewit, L.; Pranaw, K. Biopriming of Seed with Plant Growth-Promoting Bacteria for Improved Germination and Seedling Growth. Front. Microbiol. 2023, 14, 1142966. [Google Scholar] [CrossRef]
- Bernardino, D.L.M.P.; de Souza David, A.M.S.; Figueiredo, J.C.; de Souza Cangussu, L.V.; da Silva, C.D.; Ribeiro, R.C.F. Efeitos de Rizobactérias e Substratos Na Qualidade Fisiológica de Sementes de Alface. Rev. Ciênc. Agrár. 2018, 41, 316–326. [Google Scholar] [CrossRef]
- Compant, S.; Samad, A.; Faist, H.; Sessitsch, A. A Review on the Plant Microbiome: Ecology, Functions, and Emerging Trends in Microbial Application. J. Adv. Res. 2019, 19, 29–37. [Google Scholar] [CrossRef]
- Abrantes, F.L.; de Sá, M.E.; da Silva, M.P.; de Souza, L.C.D.; Arruda, N. Qualidade Fisiológica de Sementes de Feijão Em Função de Sistemas de Manejo de Solo e Adubação Foliar Com Boro. Rev. Cult. Agron. 2015, 24, 167–180. [Google Scholar] [CrossRef]
- Google Earth Pro. 2023. Available online: https://www.google.com.br/earth/about/versions/#download-pro (accessed on 17 April 2023).
- Dados Climáticos Para Cidades Em Todo o Mundo. Available online: https://pt.climate-data.org/america-do-sul/brasil/goias/anapolis-3192/ (accessed on 10 February 2025).
- Galindo, F.S.; Teixeira Filho, M.C.; Buzetti, S.; Ludkiewicz, M.G.; Rosa, P.A.; Tritapepe, C.A. Technical and Economic Viability of Co-Inoculation with Azospirillum Brasilense in Soybean Cultivars in the Cerrado. Rev. Bras. Eng. Agríc. Ambient. 2018, 22, 51–56. [Google Scholar] [CrossRef]
- de 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. Agropecu. Trop. 2022, 52, e73419. [Google Scholar]
- Oliveira, M.G.d.C.; Oliveira, L.F.C.d.; Wendland, A.; Guimarães, C.M.; Quintela, E.D.; Barbosa, F.R.; Carvalho, M.d.C.S.; Lobo Junior, M.; Silveira, P.M.D.d. Conhecendo a Fenologia Do Feijoeiro e Seus Aspectos Fitotécnicos; Embrapa: Brasília, Brazil, 2018. [Google Scholar]
- Regras para Análise de Sementes; MAPA: Brasília, Brazil, 2009; ISBN 978-85-99851-70-8.
- Krzyzanowski, F.C.; Vieira, R.D.; França-Neto, J.d.B.; Marcos-Filho, J. Vigor de Sementes: Conceitos e Testes; Abrates: Londrina, Brazil, 2020. [Google Scholar]
- Deak, E.A.; Martin, T.N.; Stecca, J.D.; de Fatima Spanevello, J.; Tabaldi, L.A.; Difante, A.C.; Sasso, V.M. Inoculation and Coinoculation Combined with Sulfur Treatment Boost the Physiological Quality of Seeds and Reduce Oxidative Stress in Soybean Seedlings. Symbiosis 2022, 87, 223–235. [Google Scholar] [CrossRef]
- Mellini, B.S.; da Silva, S.A.; de Almeida Rodrigues, M.; Júnior, E.Z.; Silva, P.A.L.; Arf, O. Inoculação e Co-Inoculação Na Qualidade Fisiológica de Sementes de Feijoeiro Irrigado. Cad. Agroecol. 2020, 15. [Google Scholar]
- Turan, M.; Kitir, N.; Elkoca, E.; Uras, D.; Ünek, C.; Nikerel, E.; Soğutmaz Özdemir, B.; Tarhan, L.; Eşitken, A.; Yildirim, E.; et al. Nonsymbiotic and symbiotic bacteria efficiency for legume growth under different stress conditions. In Microbes for Legume Improvement; Springer: Cham, Switzerland, 2017; pp. 387–404. [Google Scholar] [CrossRef]
- Masson-Boivin, C.; Giraud, E.; Perret, X.; Batut, J. Establishing nitrogen-fixing symbiosis with legumes: How many Rhizobium recipes? Trends Microbiol. 2009, 17, 458–466. [Google Scholar] [CrossRef]
- Peres, A.R.; Portugal, J.R.; Rodrigues, R.F.; de Sá, M.; Arf, O.; Franco, A.A.; Garé, L.M. Effect of Common Bean Cultivation with Co-Inoculation (Rhizobium Tropici and Azospirillum Brasilense) and Irrigation Depths on the Physiological Quality of the Seeds Produced. Investig. Agrar. 2018, 20, 11–21. [Google Scholar] [CrossRef]
- Sanglyne, M.W.; Kurbah, L.A.; Das, M.C. Unlocking the Potential of Phloroglucinol and Tocopherol in Improving the Photosynthetic Efficiency, Membrane Stability, and Antioxidant Enzyme Activities of Cryopreserved In Vitro Raised Plantlets of Citrus maxima Merr. and Citrus jambhiri Lush. Res. Sq. 2023; preprint. [Google Scholar] [CrossRef]
- Venkateswarlu, B.; Ramesh, K. Cell membrane stability and biochemical response of cultured cells of groundnut under polyethylene glycol-induced water stress. Plant Sci. 1993, 90, 179–185. [Google Scholar] [CrossRef]
- da Silveira Cardillo, B.E. Inoculações de Rhizobium Tropici e de Azospirillum Brasilense Relacionadas Aos Parâmetros de Qualidade Da Semente e Da Planta Do Feijoeiro. Ph.D. Thesis, Universidade de São Paulo, São Paulo, Brazil, 2020. [Google Scholar]
- Carvalho, N.M.; Nakagawa, J. Sementes: Ciência, Tecnologia e Produção, 5th ed.; Funep: Jaboticabal, Brazil, 2012; p. 590. [Google Scholar]
- Leghari, S.J.; Wahocho, N.A.; Laghari, G.M.; HafeezLaghari, A.; MustafaBhabhan, G.; HussainTalpur, K.; Bhutto, T.A.; Wahocho, S.A.; Lashari, A.A. Role of Nitrogen for Plant Growth and Development: A Review. Adv. Environ. Biol. 2016, 10, 209–219. [Google Scholar]
- Teixeira, I.R.; Borém, A.; de Andrade Araújo, G.A.; de Andrade, M.J.B. Teores de Nutrientes e Qualidade Fisiológica de Sementes de Feijão Em Resposta à Adubação Foliar Com Manganês e Zinco. Bragantia 2005, 64, 83–88. [Google Scholar] [CrossRef]
Ca | Mg | Al | H + Al | K | P | Na | Zn | B | Cu | Fe | Mn |
-------------cmolc dm−3------------- | ----mg dm−3---- | ----------------------------mg dm−3---------------------------- | |||||||||
2.8 | 0.7 | 0 | 2.9 | 119.4 | 12.7 | 6.4 | 6.5 | 0 | 2.2 | 26.2 | 19.3 |
MO | C | pH | CTC | V | Clay | Silt | Sand | ||||
------------g dm−3------------ | CaCl2 | cmolc dm−3 | % | ----------------------------g kg−1---------------------------- | |||||||
28 | 16.24 | 5 | 6.74 | 56.94 | 440 | 110 | 450 |
Treatments | Description |
---|---|
T1 | Rhizobium tropici reinoculation at V3 stage |
T2 | Rhizobium tropici reinoculation at V4 stage |
T3 | Rhizobium tropici reinoculation at R5 stage |
T4 | Rhizobium tropici reinoculation at R6 stage |
T5 | Co-inoculation of R. tropici + A. brasilense at V3 stage |
T6 | Co-inoculation of R. tropici + A. brasilense at V4 stage |
T7 | Co-inoculation of R. tropici + A. brasilense at R5 stage |
T8 | Co-inoculation of R. tropici + A. brasilense at R6 stage |
T9 | Control |
T10 | R. tropici seed inoculation |
T11 | Co-inoculation of R. tropici + A. brasilense on seeds |
T12 | Mineral nitrogen fertilization |
Treatments | FC (%) | GER (%) | AA (%) | EC (μS cm−1 g−1) | SL (cm) | SDM (mg seedling−1) |
---|---|---|---|---|---|---|
T1 | 74.50 abc | 84.00 ab | 9.00 fg | 115.50 a | 19.50 a | 0.18 a |
T2 | 63.00 bc | 82.50 ab | 32.25 abc | 118.00 a | 21.75 a | 0.20 a |
T3 | 72.00 abc | 88.50 ab | 33.25 abc | 113.50 a | 18.50 a | 0.17 a |
T4 | 28.50 d | 76.00 b | 22.75 de | 104.25 a | 20.25 a | 0.18 a |
T5 | 57.50 c | 77.50 b | 29.50 bcd | 102.50 a | 19.75 a | 0.20 a |
T6 | 67.00 abc | 88.00 ab | 36.50 ab | 83.75 a | 19.50 a | 0.18 a |
T7 | 90.50 a | 94.00 a | 39.00 a | 96.00 a | 18.75 a | 0.20 a |
T8 | 72.50 abc | 85.00 ab | 26.25 cd | 87.50 a | 19.25 a | 0.19 a |
T9 | 83.50 ab | 94.00 a | 38.25 ab | 111.00 a | 22.25 a | 0.20 a |
T10 | 86.00 ab | 95.50 a | 2.50 g | 119.50 a | 18.00 a | 0.20 a |
T11 | 80.50 abc | 87.50 ab | 2.25 g | 89.00 a | 17.75 a | 0.20 a |
T12 | 83.50 ab | 90.50 ab | 13.75 fg | 103.50 a | 21.75 a | 0.21 a |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
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. https://doi.org/10.3390/microorganisms13040805
Cunha NMdB, Teixeira IR, Teixeira GCdS, Rocha EC, Bravo TEP, Souza ALCd, Damião EF, Sbroggio Filho AM. Physiological Quality of Bean Seeds Cultivated with Rhizobia Reinoculation and Azospirillum Co-Inoculation at Different Growth Stages. Microorganisms. 2025; 13(4):805. https://doi.org/10.3390/microorganisms13040805
Chicago/Turabian StyleCunha, Nathan Mickael de Bessa, Itamar Rosa Teixeira, Gisele Carneiro da Silva Teixeira, Ednaldo Cândido Rocha, Tamires Ester Peixoto Bravo, Andressa Laís Caldeira de Souza, Eulina Fernandes Damião, and Alexandre Marcos Sbroggio Filho. 2025. "Physiological Quality of Bean Seeds Cultivated with Rhizobia Reinoculation and Azospirillum Co-Inoculation at Different Growth Stages" Microorganisms 13, no. 4: 805. https://doi.org/10.3390/microorganisms13040805
APA StyleCunha, 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. (2025). Physiological Quality of Bean Seeds Cultivated with Rhizobia Reinoculation and Azospirillum Co-Inoculation at Different Growth Stages. Microorganisms, 13(4), 805. https://doi.org/10.3390/microorganisms13040805