Biocompatibilidad de hongos y aceites esenciales o extractos de plantas: una revisión bibliométrica

Autores/as

DOI:

https://doi.org/10.33448/rsd-v10i11.19874

Palabras clave:

Revisión bibliométrica; Hongos entomopatógenos; Aceites esenciales; Extractos vegetales.

Resumen

Duponchelia fovealis es una plaga agrícola que causa grandes pérdidas en las plantaciones de fresa. Como alternativa a los insecticidas químicos tradicionales, se utilizan hongos entomopatógenos (EPFs) para controlar esta plaga. Una forma de aumentar la eficacia de estos EPFs es combinándolos con extractos de plantas o aceites esenciales (AE). Realizamos una revisión de la literatura en la base de datos Web of Science utilizando Bibliometrix (versión 4.0.0. - herramienta de software libre R). Nuestro propósito fue analizar datos sobre el uso de AE ​​o extractos de plantas con microorganismos para el control de plagas y observar las tendencias de investigación sobre este tema. Entre 1994 y 2020, se publicaron 112 artículos, siendo la Egyptian Journal of Biological Pest Control la revista más destacada. El país con mayor número de publicaciones sobre el tema en el período analizado fue Brasil (n = 38), seguido de India (n = 26) y Estados Unidos (n = 20). Las palabras clave que más destacaron fueron compatibilidad, hongos entomopatógenos, Beauveria bassiana, control biológico, Azadirachta indica, nanopartículas de plata, hongo entomopatógeno, Metarhizium anisopliae, neem y biocompatibilidad. Aunque este campo de investigación está creciendo, no se encontró ningún registro de un vínculo entre EPF y EO o "extractos de plantas para controlar Duponchelia fovealis".

Citas

Ali, S., Farooqi, M. A., Sajjad, A., Ullah, M. I., Qureshi, A. K., Siddique, B., Waheed, W., Sarfraz, M., & Asghar, A. (2018). Compatibility of entomopathogenic fungi and botanical extracts against the wheat aphid, Sitobion avenae (Fab.) (Hemiptera: Aphididae). Egyptian Journal of Biological Pest Control, 28(1), 1–6. https://doi.org/10.1186/s41938-018-0101-9.

Amatuzzi, R. F., Cardoso, N., Poltronieri, A. S., Poitevin, C. G., Dalzoto, P., Zawadeneak, M. A., & Pimentel, I. C. (2018). Potential of endophytic fungi as biocontrol agents of Duponchelia fovealis (Zeller) (Lepidoptera: Crambidae). Brazilian Journal of Biology, 78(3), 429–435. https://doi.org/10.1590/1519-6984.166681.

Amatuzzi, R. F., Poitevin, C. G., Poltronieri, A. S., Zawadneak, M. A. C., & Pimentel, I. C. (2018). Susceptibility of Duponchelia fovealis Zeller (Lepidoptera: Crambidae) to soil-borne entomopathogenic fungi. Insects, 9(2). https://doi.org/10.3390/insects9020070.

EWG’s 2021 Shopper’s Guide to Pesticides in Produce | Dirty Dozen. (n.d.). https://www.ewg.org/foodnews/dirty-dozen.php

Farooq, M. A., Atta, B., Gogi, M. D., Arif, M. J., & Arain, Q. A. (2020). Compatibility of entomopathogenic fungi and Azadirachta indica extract against the cotton pink bollworm, Pectinophora gossypiella (Saunders) (Lepidoptera: Gelechiidae) under controlled conditions. Egyptian Journal of Biological Pest Control. https://doi.org/10.1186/s41938-020-00260-x.

Diniz, A. G., Barbosa, L. F. S., Santos, A. C. da S., Oliveira, N. T. de, Costa, A. F. da, Carneiro-Leão, M. P., & Tiago, P. V. (2020). Bio-insecticide effect of isolates of Fusarium caatingaense (Sordariomycetes: Hypocreales) combined to botanical extracts against Dactylopius opuntiae (Hemiptera: Dactylopiidae). Biocontrol Science and Technology, 30(4), 384–395. https://doi.org/10.1080/09583157.2020.1720601.

Gonzalez, F., Tkaczuk, C., Monica Dinu, M., Fiedler, Z., Vidal, S., Zchori-Fein, E., & Messelink, G. J. (2016). New opportunities for the integration of microorganisms into biological pest control systems in greenhouse crops. Journal of Pest Science, 89, 295–311. https://doi.org/10.1007/s10340-016-0751-x.

Halder, J., Rai, A. B., & Kodandaram, M. H. (2013). Compatibility of Neem Oil and Different Entomopathogens for the Management of Major Vegetable Sucking Pests. The National Academy of Sciences, 36(1), 19–25. https://doi.org/10.1007/s40009-012-0091-1.

Islam, M. T., Olleka, A., & Ren, S. (2010). Influence of neem on susceptibility of Beauveria bassiana and investigation of their combined efficacy against sweetpotato whitefly, Bemisia tabaci on eggplant. Pesticide Biochemistry and Physiology, 98(1), 45–49. https://doi.org/10.1016/j.pestbp.2010.04.010.

Isman, M. B. (2000). Plant essential oils for pest and disease management. Crop Protection, 19(8–10), 603–608. https://doi.org/10.1016/S0261-2194(00)00079-X.

ISO, I. S. 9235: 2013 A. natural raw materials—vocabulary. (2013). ISO 9235:2013 - Aromatic natural raw materials -- Vocabulary. ISO, International Standard 9235: 2013 Aromatic Natural Raw Materials—Vocabulary. https://www.iso.org/obp/ui/#iso:std:iso:9235:ed-2:v1:en.

Jaber, L. R., Araj, S. E., & Qasem, J. R. (2018). Compatibility of endophytic fungal entomopathogens with plant extracts for the management of sweetpotato whitefly Bemesia tabaci Gennadius (Homoptera: Aleyrodidae). Biological Control, 117, 164–171. https://doi.org/10.1016/j.biocontrol.2017.11.009.

Nana, P., Ekesi, S., Nchu, F., & Maniania, N. K. (2016). Compatibility of Metarhizium anisopliae with Calpurnia aurea leaf extracts and virulence against Rhipicephalus pulchellus. Journal of Applied Entomology, 140(8), 590–597. https://doi.org/10.1111/jen.12289.

Nana, P., Maniania, N. K., Maranga, R. O., Boga, H. I., Kutima, H. L., & Eloff, J. N. (2012). Compatibility between Calpurnia aurea leaf extract, attraction aggregation, and attachment pheromone and entomopathogenic fungus Metarhizium anisopliae on viability, growth, and virulence of the pathogen. Journal of Pest Science, 85(1), 109–115. https://doi.org/10.1007/s10340-011-0399-5.

Poitevin, C. G., Porsani, M. V., Poltronieri, A. S., Zawadneak, M. A. C., & Pimentel, I. C. (2018). Fungi isolated from insects in strawberry crops act as potential biological control agents of Duponchelia fovealis (Lepidoptera: Crambidae). Applied Entomology and Zoology, 53(3), 323–331. https://doi.org/10.1007/s13355-018-0561-0.

Rehman, H. ur, Rasul, A., Farooqi, M. A., Aslam, H. M. U., Majeed, B., Sagheer, M., & Ali, Q. (2020). Compatibility of some botanicals and the entomopathogenic fungus, Beauveria bassiana (Bals.), against the red flour beetle, Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). Egyptian Journal of Biological Pest Control, 30(1). https://doi.org/10.1186/s41938-020-00329-7.

Santos, A. C. da S., Oliveira, R. L. S., da Costa, A. F., Tiago, P. V., & de Oliveira, N. T. (2016). Controlling Dactylopius opuntiae with Fusarium incarnatum–equiseti species complex and extracts of Ricinus communis and Poincianella pyramidalis. Journal of Pest Science, 89(2), 539–547. https://doi.org/10.1007/s10340-015-0689-4.

Sosa, A. L., Girardi, N. S., Rosso, C. L., Salusso, F., Etcheverry, M. G., & Passone, M. A. (2020). In vitro compatibility of Pimpinella anisum and Origanum vulgare essential oils with nematophagous fungi and their effects against Nacobbus aberrans. Journal of Pest Science, 93, 1381–1395. https://doi.org/10.1007/s10340-020-01252-4.

Sousa, L. A. D., Pires Júnior, H. B., Soares, S. F., Ferri, P. H., Ribas, P., Lima, E. M., Furlong, J., Bittencourt, V. R. E. P., Perinotto, W. M. de S., & Borges, L. M. F. (2011). Potential synergistic effect of Melia azedarach fruit extract and Beauveria bassiana in the control of Rhipicephalus (Boophilus) microplus (Acari: Ixodidae) in cattle infestations. Veterinary Parasitology, 175(3–4), 320–324. https://doi.org/10.1016/j.vetpar.2010.10.012.

Vásquez, C., Velandia, P., Jiménez, M., & Velastegui, G. (2018). Efectividad in vitro del extracto etano del crisantemo y de hongos acaropatógenos en el control del ácaro rojo en las palmeras. Bioagro, 30(2), 135–144.

Velez, B. A. de A., Diniz, A. G., Barbosa, L. F. S., Santos, A. C. da S., da Costa, A. F., & Tiago, P. V. (2019). Potential of Fusarium incarnatum-equiseti species complex isolates with Chenopodium ambrosioides and Enterolobium contortisiliquum extracts to control Dactylopius opuntiae. International Journal of Tropical Insect Science, 39(2), 131–138. https://doi.org/10.1007/s42690-019-00014-9.

Vergel, S. J. N., Bustos, R. A., Rodríguez, C. D., & Cantor, R. F. (2011). Laboratory and greenhouse evaluation of the entomopathogenic fungi and garlic-pepper extract on the predatory mites, Phytoseiulus persimilis and Neoseiulus californicus and their effect on the spider mite Tetranychus urticae. Biological Control, 57(2), 143–149. https://doi.org/10.1016/j.biocontrol.2011.02.007.

Vieira, E. S., & Gomes, J. A. N. F. (2009). A comparison of Scopus and Web of science for a typical university. Scientometrics, 81(2), 587–600. https://doi.org/10.1007/s11192-009-2178-0.

Xu, X., & Hu, X. (2020). The effect of aggregation of pathogen and biocontrol microbe propagules on biocontrol potential: a simple modelling study. Phytopathology Research, 2(1), 1–9. https://doi.org/10.1186/s42483-020-0047-1.

Zawadneak, M. A. C., Gonçalves, R. B., Poltronieri, A. S., Santos, B., Bischoff, A. M., Borba, A. M., & Pimentel, I. C. (2017). Biological parameters of Duponchelia fovealis (Lepidoptera: Crambidae) reared in the laboratory on two diets. In European Journal of Entomology (Vol. 114, pp. 291–294). Czech Academy of Sciences. https://doi.org/10.14411/eje.2017.035.

Zibaee, I., Bandani, A. R., & Sendi, J. J. (2013). Pathogenicity of Beauveria bassiana to fall webworm (Hyphantria cunea) (Lepidoptera: Arctiidae) on different host plants. Plant Protection Science, 49(4), 169–176. https://doi.org/10.17221/72/2012-pps.

Zupic, I., & Čater, T. (2015). Bibliometric Methods in Management and Organization. Organizational Research Methods, 18(3), 429–472. https://doi.org/10.1177/1094428114562629.

Descargas

Publicado

05/09/2021

Cómo citar

MACHADO, C. M. B. .; PIMENTEL, I. C. . Biocompatibilidad de hongos y aceites esenciales o extractos de plantas: una revisión bibliométrica . Research, Society and Development, [S. l.], v. 10, n. 11, p. e405101119874, 2021. DOI: 10.33448/rsd-v10i11.19874. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/19874. Acesso em: 17 jul. 2024.

Número

Sección

Revisiones