Bibliometric analysis on the biological control of mites of the family tetranychidae
DOI:
https://doi.org/10.33448/rsd-v11i12.33960Keywords:
Scientific production; Predator; Pest; Driving.Abstract
Pest mites cause economic damage, so it is essential to know the relationships between pest and predator. For this, a bibliometric review was carried out on the biological control of mites of the Tetranychidae family in agricultural crops. The study was developed using the descriptors “biological control”, “predatory mites”, “Tetranychidae” in the research platforms of the Web of Science, Science Direct, Springer, Scopus and Capes journals, using two methods of analysis: Database through the Microsoft Excel and VOSViewer. In the databases, 2,186 articles were found and 17 were selected. The VOSviewer software grouped 306 articles important to the topic discussed by hundreds of authors, with evidence for food producers. In Microsoft Excel data, the species Tetranychus urticae (pest) and Neoseiulus californicus (predator) were the most cited. Regarding the period of publication, from 2019 to 2021 there was a growth in research with the use of biological control using predatory mites in the control of phytophagous mites of agronomic importance. The analysis shows that this biological control over pest mites has been studied by the academic community, demonstrating the importance of this management.
References
Agrofit. Sistema de Agrotóxicos Fitossanitários - Ministério da Agricultura, Pecuária e Abastecimento - Coordenação Geral de Agrotóxicos e Afins/DFIA/DAS. (2022). https://agrofit.agricultura.gov.br/agrofit_cons/principal_agrofit_cons
Attia, S, Grissa, K. L., Longnay, G., Bitume, E., Hance, T., & Mailleux, A. C. (2013). A review of the major biological approaches to control the worldwide pest Tetranychus urticae (Acari: Tetranychidae) with special reference to natural pesticides. Journal of Pest Science, 86: 361– 386. Doi: 10.1007/s10340-013-0503-0
Carvalho, N. L., Barcellos, A. L., Bubans, V. E., &Pietczk, L. J. (2018). Ácaros fitófagos em plantas cultivadas e os fatores que interferem em sua dinâmica populacional. Revista Técnico Científica do IFSC, 2: 1-.
Croft, B. A., Monetti, L. N., & Pratt, P. D. (1998). Comparative life histories and predation types: are Neoseiulus californicus and N. fallacis (Acari: Phytoseiidae) similar type II selective predators of spider mites? Environ Entomol 27:531–538. 10.1093/ee/27.3.531
Embrapa. Empresa Brasileira de Agropecuária. Sobre o tema: controle biológico (2021). https://www.embrapa.br/tema-controle-biologico/sobre-o-tema
Fonseca, M. M., Pallini, A., Marques, P. H., Lima, E., & Janssen, A. (2020). Compatibility of two predator species for biological control of the two-spotted spider mite. Experimental and Applied Acarology, 80:409–422. doi.org/10.1007/s10493-020-00472-8
Gerson, U., Smiley, R., & Ochoa, R. (2003). Mites (Acari) for pest control. Blackwell Science, Malden. 539p.
Grbic, M., Leeuwen, T. V., & Clark, R. M. (2011). The genome of Tetranychus urticae reveals herbivorous pest adaptations. Nature, 479: 487-492.10.1038/nature10640
Helyer, N., Cattlin, N. D., & Brown, K. C. (2014). Arthropod biological control agentes. In: (eds) Biological Control in Plant Protection: A Color Handbook. Broken Sound Parkway, New York, 276 p.
Maricato, J. M. (2010). Procedimentos metodológicos em estudos bibliométricos e cientométricos: opções e reflexões no contexto dos processos de recuperação e organização da informação. 19 p. (Tese de doutorado) Escola de Comunicações e Artes /Universidade de São Paulo, São Paulo – SP, Brasil.
McMurtry, J., & Croft, B. (1997). Life-styles of phytoseiid mites and their roles in biological control. Annu Rev Entomol 42: 291–321. 10.1146/annurev.ento.42.1.291
Nascimento, R. N., & Maciel, A. G. S. (2021). First occurrence of Tetranychidae mites in Desert Rose in Paraíba, Brazil. Diversitas Journal, 6: 3757–3762. 10.48017/dj.v6i4.1670
Neethu, K. B., Priji, P., Unni, K. N., Sajith, S., Sreedevi, S., Ramani, N., Anitha, K., Rosana, B., Girish, M. B., & Benjamin, S. (2015). New Bacillus thuringiensis strain isolated from the gut of Malabari goat is effective against Tetranychus macfarlanei. Journal of Applied Entomology 140: 187–198. doi.org/10.1111/jen.12235
Oliveira, H., Fadini, M., & Venzon, N. M. (2009). Evaluation of the predatory mite Phytoseiulus macropilis (Acari: Phytoseiidae) as a biological control agent of the two-spotted spider mite on strawberry plants under greenhouse conditions. Exp Appl Acarol 47:275–283. 10.1007/s10493-008-9217-z
Salustino, A. S., Oliveira Filho, M. C., Abreu, K. G., Ferreira, R. R., & Brito, C. H. (2021). Uso dos dermápteros no cenário agronômico: uma análise bibliométrica sobre a utilização destes predadores. Research, Society and Development, 10: 1-10. https://doi.org/10.33448/rsd-v10i3.13611
Santamaria, M. E., Arnaiz, A., Rosa-Diaz, I., González-Melendi, P., Romero-Hernandez, G., Ojeda-Martinez, D., Garcia, A., Contreras, E., Martinez, M., & Diaz, I. (2020). Plant Defenses Against Tetranychus urticae: Mind the Gaps. Plants, 9: 3-16.
Silva, A. G., Souza, B. H. S., Rodrigues, N. E. L., Bottega, D. B., & Boiça Junior, A. L. (2012). Interação tritrófica: aspectos gerais e suas implicações no manejo integrado de pragas. Nucleus. 9: 1-15. https://doi.org/10.3738/nucleus.v9i1.618
Sousa, J. M. A., & Da Matta, D. H. (2019). Controle biológico conservativo: Plantas herbáceas e a diversidade e abundância de dermápteros em algodoeiro colorido. EntomoBrasilis, 12: 132-140. 10.12741/ebrasilis.v12i3.841
Sparks, T. C., & Nauen, R. (2015). Irac: Mode of action classification and insecticide resistance management. Pesticide Biochemistry and Physiology, 121:122–128.
Stopar, K., Trdan, S., & Bartol, T. (2021). Thrips and natural enemies through text data mining and visualization. Plant Protection Science, 57: 47–58. org/10.17221/34/2020-PPS
Suekane, R., Degrande, Pe., De Melo, E. P., Bertoncello, T. F., Junior, I., Dos Santos De L., & Kodama, C. (2012). Damage level of the two-spotted spider mite Tetranychus urticae Koch (Acari: Tetranychidae) in soybeans. Revista Ceres 59: 77–81.
Van Eck, N. J., Waltman, L. (2010). Software survey: VOSviewer, a computer program for bibliometric mapping. Scientometrics, 84: 523–538. Doi: 10.1007/s11192-009-0146-3
Vanderlei, dos S. A., Werner, C. T. R., & Killian, P. (2020). Análise bibliométrica da produção científica nas bases de dados Scopus e Web of Science sobre Aprendizagem Significativa. Revista Insignare Scientia. 3: 443-460.
Zanuncio Junior, J. S., Lazzarini, A. L., Oliveira, A. A., Rodrigues, L. A., Souza, I. I. M., Andrikopoulos, F. B., Fornazier, M. J., & Costa, A. F. (2018). Manejo agroecológico de pragas: alternativas para uma agricultura sustentável. Revista Científica Intelleto, Venda Nova do Imigrante, ES, 3: 18-34.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2022 Marília de Macêdo Duarte Morais; Khyson Gomes Abreu; Nayana Rodrigues de Sousa; Erisvaldo de Souza Buriti; Renato Nunes do Nascimento; Tarsia Nayara Massary Fonseca; Angélica da Silva Salustino; Carlos Henrique de Brito
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
1) Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
2) Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
3) Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work.