162
Views
2
CrossRef citations to date
0
Altmetric
Article

Evaluation of antibacterial activity of extract and essential oil of Tagetes patula L. in vitro against Ralstonia solanacearum biovar 2

ORCID Icon, , &
Pages 1484-1500 | Received 02 Dec 2020, Accepted 07 Apr 2021, Published online: 06 May 2021

References

  • Abo-Elyousr KAM, Asran MR. 2019. Antibacterial activity of certain plant extracts against bacterial wilt of tomato. Arch Phytopathol Pflanzenschutz. 42(6):573–578.
  • Adekunle OK, Acharya R, Singh B. 2007. Toxicity of pure compounds isolated from Tagetes minuta oil to Meloidogyne incognita. Australas Plant Dis Notes. 2(1):101–104.
  • Alghuthaymi MA, Ali AA, Hashim AF, Abd-Elsalam KA. 2016. A rapid method for the detection of Ralstonia solanacearum by isolation DNA from infested potato tubers based on magnetic nanotools. Philipp Agric Sci. 99(1):113–118.
  • Armentano M, Bisaccia B, Miglionico R, Russo D, Nolfi N, Carmosino M, et al. 2015. Antioxidant and proapoptotic activities of sclerocarya birrea [(A. Rich.) Hochst.] Methanolic root extract on the hepatocellular carcinoma cell line HepG2. Biomed Res Int. 2015(1):561589.
  • Avellaneda S, Rojas N, Cuéllar A, Fonseca R. 2005. Actividad antibacteriana de Diphysa minutifolia Rose. Rev Cuba Plants Med. 10(2):42–47.
  • Barrera-Roca L, Hung-Guzmán B, Botta-Gómez AM, Hernández-Sosa E, González-Pérez M, Aguilar-Navarro B. 2009. Caracterización física y tamizaje fitoquímico de la especie Tagetes erecta Lin. Rev Cuba Quím. 21(2):10–15.
  • Barrios MO, Rodríguez-Gaviria PA, Morales-Osorio JG, Salazar-Yepes M. 2008. Hospedantes de Ralstonia solanacearum en plantaciones de banano y plátano en Colombia. Rev Fac Nal Agr Medellín. 61(2):4518–4526.
  • Blanco M, Ringuelet J, Consolini A, Viña S. 2014. Rendimiento de biomasa y aceite esencial de quimiotipos de Lippia alba (Mill.) N. E. Brown en respuesta a las prácticas agronómicas, y sus propiedades farmacológicas [Master’s dissertation]. Argentina: Universidad Nacional de la Plata- Facultad de Ciencias Exactas Departamento De Ciencias Biológicas. [
  • Castro-Ramírez AE. 1994. Origin, nature and uses of Tagetes erecta. Rev Geograf Agríc. 20(1):179–189.
  • Céspedes C, Guillermo-Ávila J, Martínez A, Serrato B, Calderón-Múgica J, Salgado-Garciglia R. 2006. Antifungal and Antibacterial Activities of Mexican Tarragon (Tagetes lucida). J Agr Food Chem. 54(10):3521–3527.
  • Chen J, Yu J, Li S. y, Ding W. 2016. Resveratrol and coumarin: novel agricultural antibacterial agent against Ralstonia solanacearum in vitro and in vivo. Molecules. 21(11):1501.
  • Commo F, Bot B. 2016. R package nplr: n-parameter logistic regressions cran.r-project.org [Computer program]. España: Universidad de Murcia.
  • Cruz-Carrillo A, Rodríguez N, Rodríguez CE. 2010. In vitro evaluation of the antibacterial effect of Bidens pilosa, Lantana camara, Schinus molle and Silybum marianum. Rev UDCA Actual Divulg Cient. 13(2):117–124.
  • Dharmagadda V, Naik SN, Mittal PK, Vasudevan P. 2005. Larvicidal activity of Tagetes patula essential oil against three mosquito species. Bioresour Technol. 96(11):1235–1240.
  • Díaz-Cedillo F, Serrato-Cruz M, Cruz-Marcial J, Sánchez-Alonso M, López-Morales V. 2013. Major compounds of essential oil in plant organs of a Tagetes coronopifolia Willd Population. Rev Fitotec Mex. 36(4):405–411.
  • Din N, Ahmad M, Siddique M, Ali A, Naz I, Ullah N, et al. 2016. Phytobiocidal management of bacterial wilt of tomato caused by Ralstonia solanacearum (Smith) Yabuuchi. Span J Agric Res. 14(3):3–6.
  • Elizari I, Maté JI. 2013. Actividad antibacteriana de aceites esenciales de orégano y tomillo incorporados en soluciones formadoras de films sobre el microbiota superficial de filetes de merluza [Master’s dissertation]. España: Universidad pública de navarra, Departamento de Tecnología de Alimentos.
  • Fan WW, Yuan GQ, Li QQ, Lin W. 2014. Antibacterial mechanisms of methyl gallate against Ralstonia solanacearum. Australas Plant Path. 43(1):1–7.
  • Froines JR. 2010. “Evaluation of chloropicrin as a toxic air contaminant” as adopted at the panel’s. In: Findings of the scientific review panel. February 24; Public Meeting: California Department of Pesticide Regulation. p. 1–2.
  • Gillette NE, Ebilgin N, Webster JN, Pederson L, Mori SR, Stein JD, et al. 2009. Aerially applied verbenone-releasing flakes protect Pinus contorta stands from attack by Dendroctonus ponderosae in California and Idaho. Forest Ecol Manag. 257(5):1405–1412.
  • Gioanetto F, Díaz-Vilchis J, Quintero-Sánchez R. 2010. Manual de utilización de las malezas silvestres de Michoacán- Usos allelopáticos, agroecológicos, medicinales, alimentarios, veterinarios y rituales de las adventicias silvestres y arvenses. Morelia Mich: Grafópolis S.A.
  • González SL. 2015. Obtención y caracterización del extracto etanólico del bacché (Eupatorium semialatum benth) para su aplicación farmacéutica y su escalamiento a nivel planta piloto [dissertation]. Guatemala: Universidad de San Carlos de Guatemala, Facultad de Ingeniería, Ingeniería Química.
  • Huertas-Campos MC. 2015. Evaluación in vitro del efecto antibacteriano y citotóxico del extracto metanólico de Physalis peruviana (capulí) sobre cepas de Streptococcus mutans (ATCC25175), Streptococcus sanguinis (ATCC 10556) [dissertation]. Perú: Universidad Peruana de Ciencias Aplicadas.
  • Krishna A, Mallavarapu G, Kumar S, Ramesh S. 2002. Volatile oil constituents of the Capitula, leaves and shoots of Tagetes patula L. J Essent Oil Res. 14(6):433–436.
  • Lin CH, Tsai KC, Prior P, Wang JF. 2014. Phylogenetic relationships and population structure of Ralstonia solanacearum isolated from diverse origins in Taiwan. Plant Pathol. 63(2):1395–1403.
  • López A, Garzón W, Rosero-Moreano M, Gonzalo-Taborda O. 2015. Análisis de cocaína en diferentes muestras por cromatografía de gases con detector de ionización de llama (CG-FID). Rev Colomb de Quimica. 44(1):19–22.
  • López-Legarda X, Taramuel-Gallardo A, Arboleda-Echevarría C, Segura-Sanchez F, Restrepo-Betancur L. 2017. Comparación de métodos que utilizan ácido sulfúrico para la determinación de azucares totales. Rev Cuba Quim. 29(2):180–198.
  • Marotti M, Piccaglia R, Biavati B, Marotti I. 2004. Characterization and yield evaluation of essential oils from different Tagetes species. J Essent Oil Res. 16(5):440–444.
  • Marutescu L, Popa M, Saviuc C, Lazar V, Chifiriuc MC. 2017. Botanical pesticides with virucidal, bactericidal, and fungicidal activity. In: Grumezescu AM, editor. New pesticides and soil sensors. Oxford, UK: Academic Press. p. 311–335.
  • Muñoz-Bernal O, Torres-Aguirre G, Nuñez-Gastélum J, Rodrigo-García J, Ayala-Zavala F, Alvarez-Parrila E. 2017. Nuevo acercamiento a la interacción del reactivo de Folin-Ciocalteu con azucares durante la cuantificación de polifenoles totales. Rev Esp Cienc Quím Biol. 20(2):23–28.
  • Pimentel-Ramirez E, Castillo-Andamayo D, Quintana Del Sola M, Maurtua-Torres D, Villegas-Vílchez L, Díaz-Santisteban C. 2015. Efecto antibacteriano de extractos etanólicos de plantas utilizadas en las tradiciones culinarias andinas sobre microorganismos de la cavidad bucal. Rev Estomatol Hered. 25(4):268–277.
  • Rachuonyo HO, Ogola PE, Arika WM, Nyamai DW, Wambani JR. 2016. In vitro antimicrobial activity of crude leaf extracts from Aloe secundiflora, Bulbine frutescens, Vernonia lasiopus and Tagetes minuta against Salmonella typhi. J Tradi Med Clin Natur. 5 (2):187.
  • Shaheen F, Humaira S, Samina B, Aneela N, Lubna Khalida M, et al. 2008. Antibacterial and antifungal activities of different parts of Tagetes patula: preparation of patuletin derivatives. Pharm. Biol. 46(5):309–320.
  • Sood AK, Kumar P. 2015. Evaluation of essential oils against Ralstonia solanacearum causing bacterial wilt in solanaceous crops. Pl Dis Res. 30(1):67–72.
  • Soto-Rueda E, Rodríguez-Ruiz Y, Loango-Chamorro N, Landázuri P. 2018. Extractos de Tagetes patula L. (Asteraceae): un potencial bactericida contra el Moko. Rev Mexicana Cienc Agric. 9(5):949–959.
  • Terblanche J, de Villiers DA. 1998. The Suppression of Ralstonia solanacearum by Marigolds. In: Prior P, Allen C, Elphinstone J, editors. Bacterial wilt disease. Berlin: Springer. p. 326–328.
  • Tofiño A. 2006. Regulación de la biosíntesis del almidón en plantas terrestres: perspectivas de modificación. Acta Agron. 55(1):1–13.
  • Vasudevan P, Kashyap, Sharma S. 1997. Tagetes: a multipurpose plant. Bioresour Technol. 62(1):29–35.
  • Youssef K, Roberto SR, De Olivera AG. 2019. Ultra-structural alterations in botrytis cinerea—the causal agent of gray mold—treated with salt solutions. Biomolecules. 9(10):582.
  • Yuliar N, Yenetri N, Toyota K. 2015. Recent trends in control methods for bacterial wilt diseases caused by Ralstonia solanacearum. Microbios Environ. 30(1):1–11.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.