Biofertilizers in the control of Pratylenchus brachyurus in soybean crop

Authors

DOI:

https://doi.org/10.33448/rsd-v11i1.22133

Keywords:

Biological control; Glycine max L; Root lesion nematodes; Pratylenchus brachyurus.

Abstract

Nematodes are of great importance in soybean cultivation, especially the Pratylenchus brachyurus known as root lesion nematode. Its attack on plant roots causes less efficiency in the absorption of water and nutrients, in addition to damaging the plant's development. There is still no fully efficient method to control this phytopathogen, however, some products are available on the market, including biological control. Thus, the aim of this study was to evaluate commercial biological products in the efficiency of reducing the nematode population in soybean crop in Goiás, Brazil. The design was completely randomized in a 2x4 factorial scheme, the first factor being two soybean genotypes (Brasmax Bônus and Nidera NS 8383) and the second factor the treatments consisting of different dosages in an association of three commercial products: No-Estio®, Bio-fertility® and Radic®. The treatments used were: T1 control - without application of the products; T2 half the recommended dose; T3 the recommended dose and T4 a dose and a half that recommended by the manufacturer. Plant evaluation was carried out after 75 days of nematode inoculation. The results obtained showed that both cultivars hosted P. brachyurus, however, the treatments using the products had a lower population density of this nematode. It was concluded that the two soybean cultivars are hosts of Pratylenchus brachyurus. The agronomic character plant height was more affected when there was no application by the biological method. The association of No-Estio®, Bio-fertility® and Radic® products reduced the population density of nematodes in infected plants.

References

Antonio, S. F., Mendes, F. L., Franchini, J. C., Debiasi, H., Dias, W. P., Ramos Junior, E. U. & Silva, J. F. V. (2012). Perdas de produtividade da soja em área infestada por nematoide das lesões radiculares em Vera, MT. In: Congresso Brasileiro de Soja, 6, 2012, Cuiabá. Anais. Cuiabá: Embrapa Soja, 1-4.

Bellé, C., Kuhn, P. R., Kaspary, T. E. & Schmitt, J. (2017). Reação de cultivares de soja a Pratylenchus brachyurus. Revista Agrarian, 10(36), 136-140.

Bonaldo, S. M. (2005). Indução de resistência em plantas a patógenos e insetos. FEALQ.

Brida, A. L., Rosa, J. M. O., Oliveira, C. M. G., Castro, B. M. C., Serrão, J. E., Zanuncio, J. C., Leite, L. G. & Wilcken, S. R. S. (2017). Entomopathogenic nematodes in agricultural áreas in Brazil. Scientific Reports, 7(6), 45254.

Castanheira, C. M., Falcão, H. G., Ida, E. L., Dias-Arieira, C. R. & Barros, B. C. B. (2020). Pratylenchus brachyurus parasitismo n soybean: effects on productivity, vegetative and nematological parameters and chemical properties. European Journal of Plant Pathology, 157(3), 651-661.

Canteri, M. G., Althaus, R. A., Virgens Filho, J. S., Giglioti, E. A. & Godoy, C. V. (2001). SASM - Agri: Sistema para análise e separação de médias em experimentos agrícolas pelos métodos Scott-Knott, Tukey e Duncan. Revista Brasileira de Agrocomputação, 1(2), 18-24.

Cardoso, R. B. & Araújo, F. F. (2011). Multiplicação de Bacillus subtilis em vinhaça e viabilidade no controle da meloidoginose, em cana-de-açúcar. Revista Brasileira de Engenharia Agrícola e Ambiental, 15(12), 1283-1288.

Conab (2020). Décimo primeiro levantamento safra 2019/20 - Boletim de grãos - agosto de 2021, Boletim da Safra de Grãos – Conab, 7(11).

Dias, W. P., Garcia, A., Silva, J. F. V. & Carneiro, G. E. S. (2010). Nematoides em soja: identificação e controle. Embrapa Soja.

Dong, L. Q. & Zhang, K. Q. (2006). Microbial control of plant-parasitic nematodes: a five-party interaction. Plant and Soil, 288, 31-45.

Elsen, A., Baimey, H., Swennen, R. & Waele, D. (2003). Relative mycorrhizal dependency and mycorrhiza-nematode interaction in banana cultivars (Musa spp.) differing in nematode susceptibility. Plant and Soil, 256, 303-313.

Elsen, A., Declerck, S. & Waele, D. (2001). Effects of Glomus intraradices on the reproduction of the burrowing nematode (Radopholus similis) in dixenic culture. Mycorrhiza, 11(3), 49–51.

Embrapa (2004). Tecnologias de Produção de Soja. http://www.cnpso.embrapa.br.

Federici, B. A., Park, H. W., Bideshi, D. K., Wirth, M. C., Johnson, J. J., Sakano, Y & Tang, M. (2007). Developing recombinant bacteria for control of mosquito larvae. Journal of the American Mosquito Control Association, 23(2), 164-175.

Federici, B. A., Park, H. W. & Bideshi, D. K. (2010). Overview of the basic biology of Bacillus thuringiensis with emphasis on genetic engineering of bacterial larvicides for mosquito control. The Open Toxinology Journal, 3(1), 83-100.

Ferraz, S., Freitas, L. G., Lopes, E. A. & Dias-Arieira, C. R. (2010). Manejo sustentável de fitonematoides. Editora UFV.

Franchini, J. C., Debiasi, H., Dias, W. P., Ramos Junior, E. U. & Silva, J. F. V. (2014). A perda de produtividade da soja em área infestada por nematoide das lesões radiculares na região médio norte do Mato Grosso. In: Bernardi, A. C. C., Naime, J. M., Resende, A. V., Bassoi, L. H. & Inamasu, R. Y. (ed.). Agricultura de precisão: resultados de um novo olhar. Embrapa.

Gerdemann, J. W. (1968). Vesicular arbuscular mycorrhiza and pant growth. Annual Review of Phytopathology, 6(6), 397-418.

Goulart, A. M. C. (2008). Aspectos gerais sobre nematoides das lesões radiculares (gênero Pratylenchus). Embrapa Cerrados.

Hartman, G. L, Rupe, J. C, Sikora, E. J, Domier, L. L, Davis, J. A. & Steffey, K. L. (2015). Compendium of soybean diseases and pests. The American Phytopathological Society.

Kamunya, S. M, Wachira, F. N, Lang’at, J, Otieno, W & Sudoi, V. (2008). Integrated management of root-knot nematode (Meloidogyne spp.) in tea (Camellia sinensis) in Kenya. International Journal of Pest Management, 54(1), 129-136.

Kath, J., Dias-Arieira, C. R., Ferreira, J. C. A., Homiak, J. A., Silva, C. R. & Cardoso, C. R. (2017). Control of Pratylenchus brachyurus in soybean with Trichoderma spp. and resistance inducers. Journal of Phytopathology, 165(11-12), 791-799.

Leite, M. L. T., Almeida, F. A., Fonseca, W. L., Oliveira, A. M., Prochnow, J. T., Pereira, F. F. & Neto, F. A. (2019). Effects of vinasse in the suppressiveness to Pratylenchus brachyurus in soybean. Journal of Agricultural Science, 11(1), 538-545.

Lopes, E. A., Ferraz, S., Ferreira, P. A., Freitas, L. G., Dhingra, O. D., Gardiano, C. G. & Carvalho, S. L. (2007). Potencial de isolados de fungos nematófagos no controle de Meloidogyne javanica. Nematologia Brasileira, 31(2), 78-84.

Lopes, A. P. M., Toninato, B. O., Soares, M. R. C. & Dias-Arieira, C. R. (2020). Biological control associated with plant nutrition for Meloidogyne javanica and Pratylenchus brachyurus management in soybean. Journal of Agricultural Science, 12(1), 149-158.

Maciel, S. L. & Ferraz, L. C. C. B. (1996). Reprodução de Meloidogyne incognita raça 2 e de Meloidogyne javanica em oito espécie de plantas medicinais. Scientia Agricola, 53(2-3), 956- 960.

Melo, T. A., Nascimento, I. T. V. & Serra, I. M. R. S. (2021). The Bacillus genus applied to the biological control of plat diseases. Research, Society and Development, 10(9), e18110917817.

Mello, E. S. & Brum, A. L. (2020). A cadeia produtiva da soja e alguns reflexos no desenvolvimento regional do Rio Grande do Sul. Brazilian Journal of Development, 6(10), 74734-74750.

Miamoto, A., Silva, M. T. R., Dias-Arieira, C. R. & Higashi, H. (2017). Alternative products for Pratylenchus brachyurus and Meloidogyne javanica management in soya bean plants. Journal of Phytopathology, 165(10), 635-640.

Morais, D. C. O., Tramontin, M. A. & Andaló, V. (2020). Isolation of entomopathogenic nematodes in the West region of Santa Catarina, Brazil. Arquivos do Instituto Biológico, 87, 1-6.

Moreira, F. M. S. & Siqueira, J. O. (2002). Microbiologia e bioquímica do solo. Editora UFLA.

Oliveira, C. M., Almeida, N. O., Côrtes, M. V. C., Júnior, M. L., Rocha, M. R. & Ulhoa, C. J. (2021). Biological control of Pratylenchus brachyurus with isolates of Trichoderma spp. On soybean. Biological Control, 152, 104425.

Pimentel, M. S., Peixoto, A. R. & Paz, C. D. (2009). Potencial de controle biológico de Meloidogyne utilizando fungos nematófagos e bactérias em cafeeiros. Coffee Science, 4(1), 84-92.

Rosa, T. E. A., Souza, J. C., Pereira, W. J., Moreira, J. A. A. & Araújo, F. G. (2021). Biological nematicides associated with poultry litter in the control of nematodes in soybean and second corn crop. Revista Caatinga, 34(3), 580-589.

Santana-Gomes, S. M., Dias-Arieira, C. R., Ferreira, J. C. A., Schwengber, R. P. & Baldisera, S. S. (2019). Reproduction of Pratylenchus zeae and P. brachyurus in cover crops. Revista Caatinga, 32(2), 295-301.

Santos, A. R. B., Almeida, F. A., Leite, M. L. T., Fonseca, W. L., Neto, F. A., Pereira, F. F., Carvalho, R. M., Barreto, A. F. & Santos, T. S. (2019). Biocontrole no manejo de Pratylenchus brachyurus na soja. Revista de Ciências Agrárias, 42(3), 776-785.

Sediyama, T. (2009). Tecnologias de produção e usos da soja. Mecenas.

Sharma, K., Niraula, P. M., Troell, H. A., Adhikari, M., Alshehri, H. A., Alkharouf, N. W., Lawrence, K. S. & Klink, V. P. (2020). Exocyst components promote an incompatible interaction between Glycine max (soybean) and Heterodera glycines (the soybean cyst nematode). Scientific Reports, 10(2020), 15003.

Shreenivasa, K. R., Krishnappa, K. & Ravichandra, N. G. (2007). Interaction Effects of Arbuscular Mycorrhizal Fungus and Root – Knot Nematode, inco on Growth and Phosphorous Uptake of Tomato. Karnataka J. Agric. Sci., 20 (1), 57-61.

Torkamamenh, D., Laroche, J., Valliyodan, B., O’Donoughue, L., Cober, E., Rajcan, I., Abdelnoor, R. V., Sreedasyam, A., Schmutz, J., Nguyen, H. & Belzile, F. (2021). Soybean (Glycine max) haplotype map (GmHapMap): a universal resource for soybean translational and functional genomic. Plant Biotechnology Journal, 19(2), 324-334.

TRENTIN, E. (2016). Supressão do nematoide Pratylenchus brachyurus e estímulo ao crescimento da soja por fungo micorrízico arbuscular. Dissertação (Mestrado em Ciência do Solo) – Universidade Federal de Santa Maria, Santa Maria.

VILLALVA, M. M. H. (2008). Modificação química para obtenção de um isolado proteico de soja com solubilidade semelhante à da caseína humana. Dissertação (Mestrado em Ciências e Tecnologia de Alimentos) – Universidade Federal de Viçosa, Viçosa.

Vos, C. M., Tesfehun, A. N., Panis, B., Waele, D. & Elsen, A. (2012). Arbuscular mycorrhizal fungi induce systemic resistance in tomato against the sedentary nematode Meloidogyne incognita and the migratory Pratylenchus penetrans. Applied Soil Ecology, 61, 1-6.

Vos, C.M., Geerinckx, K., Mkandawire, R., Panis, B., Waele, D. & Elsen, A. (2012b). Arbuscular mycorrhizal fungi affect both penetration and further life stage development of root-knot nematodes in tomato. Mycorrhiza, 22(2), 157–163.

Xiang, N., Lawrence, K. S. & Donald, P. A. (2018). Biological control potential of plant growth-promoting rhizobacteria suppression of Meloidogyne incognita on cotton and Heterodera glycines on soybean: A review. Journal of Phytopathology, 166(7-8), 449-458.

Zhao, L., Xu, Y. & Lai, X. (2018). Antagonistic endophytic bacteria associated with nodules of soybean (Glycine max L.) and plant growth-promoting properties. Brazilian Journal of Microbiology, 49(2), 269-278.

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Published

09/01/2022

How to Cite

CONCEIÇÃO, D. R.; RIOS, A. D. F. .; NORONHA JÚNIOR, N. dos S.; SANTOS, R. R. dos .; SILVA, R. M. da .; VIDAL, F. A. P.; MACHADO , A. S. .; VENTURA, M. V. A.; MENEZES FILHO, A. C. P. de . Biofertilizers in the control of Pratylenchus brachyurus in soybean crop. Research, Society and Development, [S. l.], v. 11, n. 1, p. e38411122133, 2022. DOI: 10.33448/rsd-v11i1.22133. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/22133. Acesso em: 23 apr. 2024.

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Section

Agrarian and Biological Sciences