In vitro and in vivo control of yam dry rot nematodes using pyroligneous extracts from palm trees

Authors

  • Sara Padilha de Farias UFAL
  • Alison Van Der Linden de Almeida UFAL
  • Everton Sebastião do Nascimento UFAL
  • João Inácio Soletti UFAL
  • Tatiane Luciano Balliano UFAL
  • Gilson Moura Filho UFAL
  • Maria de Fatima Silva Muniz UFAL

Keywords:

alternative control, Arecaceae, Dioscorea spp., Scutellonema bradys, Pratylenchus sp.

Abstract

Dry rot of yam (Dioscorea spp.) caused by Scutellonema bradys and Pratylenchus spp. has restricted yam production in Brazil. Plant-based products can be useful reducing nematode damages. The objectives of this study were to evaluate the nematostatic and nematicidal in vitro activities of pyroligneous extracts from Cocos nucifera, Syagrus cearensis, S. coronata, and Wodetia bifurcata palms against S. bradys and to evaluate the effect of C. nucifera pyroligneous extract in the treatment of yam tubers infected by S. bradys and Pratylenchus sp. under greenhouse conditions. The pyroligneous extracts obtained at pyrolysis temperatures of 400, 500, 600, and 700 oC, and at different concentrations, were tested for nematode immobility and mortality in Kline slides. Cocos nucifera
pyroligneous extract obtained at 400 °C and 1% concentration was tested on yam tubers, under different immersion periods. Six months after yam planting the nematode populations were evaluated. All pyroligneous extracts inhibited the mobility and caused mortality to S. bradys, however 100% inhibition of both variables was achieved at concentrations varying from 0.75 to 2%, depending on the pyrolysis temperatures. The reproduction factor was reduced in 43% by treating infected yam tubers with pyroligneous extract from C. nucifera.

References

Abdel-Rahman FH, Alaniz N & Saleh MA (2013) Nematicidal activity of terpenoids. Journal of Environmental Science and Health, 48:16-22.

AGROFIT (2020) Sistemas de Agrotóxicos Fitossanitários. Produtos formulados. Available at: http://agrofit.agricultura.gov.br/agrofit_cons/principal_agrofit_cons. Accessed on: February 20th, 2020.

Almeida TM, Bispo MD, Cardoso ART, Migliorini MV, Schena T, Campos MCV, Machado ME, Loìpez JÁ, Krause LC & CaramaÞo EB (2013) Preliminary studies of bio-oil from fast pyrolysis of coconut fibers. Journal of Agricultural and Food Chemistry, 61:6812-6821.

Alves TCU, Silva RA, Borges DC, Motta LCC & Kobayast L (2011) Reação de cultivares de soja ao nematoide das lesões radiculares Pratylenchus brachyurus. Revista Biodiversidade, 10:73-79.

Aoudia H, Ntalli N, Aissani N, Yahiaoui-Zaidi R & Caboni P (2012) Nematotoxic phenolic compounds from Melia azedarach against Meloidogyne incognita. Journal of Agricultural and Food Chemistry, 60:11675-11680.

Azevedo FR, Santos CAM, Nere DR, Moura ES & Gurgel LS (2013) Inseticidas vegetais no controle de Anastrepha spp. (Diptera: Tephritidae) em pomar de goiaba. Holos, 4:77-86.

Basu P (2010) Biomass gasification and pyrolysis: practical design and theory. Burlington, Academic Press. 376p.

Bessa CMAS, Nascimento RS, Alves RCC, Anselmo JM, Silva APSA, Silva AG, Lima VLM, Tavares JF, Silva LCN, Silva MV & Correia MTS (2016) Syagrus coronata seed oils have antimicrobial action against multidrug-resistant Staphylococcus aureus. Journal of Medicinal Plants Research, 10:310-317.

Booker CJ, Bedmutha R, Vogel T, Gloor A, Xu R, Ferrante L, Yeung KK-C, Scott IM, Conn KL, Berruti F & Briens C (2010) Experimental investigations into the insecticidal, fungicidal, and bactericidal properties of pyrolysis bio-oil from tobacco leaves using a fluidized bed pilot plant. Industrial & Engineering Chemistry Research, 49:10074-10079.

Bridgwater AV (2012) Review of fast pyrolysis of biomass and product upgrading. Biomass and Bioenergy, 38:68-94.

Caboni P, Aissani N, Cabras T, Falqui A, Marotta R, Liori B, Ntalli N, Sarais G, Sasanelli N & Tocco G (2013) Potent nematicidal activity of phthalaldehyde, salicylaldehyde, and cinnamic aldehyde against Meloidogyne incognita. Journal of Agricultural and Food Chemistry, 61:1794-803.

Campos AD (2018) Informação técnica sobre extrato pirolenhoso. Pelotas, Embrapa Clima Temperado. 9p. (Circular Técnica, 177).

Campos AD (2007) Técnicas para produção de extrato pirolenhoso para uso agrícola. Pelotas, Embrapa Clima Temperado. 8p. (Circular Técnica, 65).

Coimbra JL, Soares ACF, Garrido MS, Sousa CS & Ribeiro FLB (2006) Toxicidade de extratos vegetais a Scutellonema bradys. Pesquisa Agropecuária Brasileira, 41:1209-1211.

Coolen WA & D’Herde CJ (1972) A method for the quantitative extraction of nematodes from plant tissue. Ghent, State Agricultural Research Center. 77p.

Corbani RZ (2008) Estudo do extrato pirolenhoso Biopirol® no manejo de nematoides em cana-de-açúcar, olerícolas e citros, em diferentes ambientes. Tese de Doutorado. Universidade Estadual Paulista ”Júlio de Mesquita Filho”, Jaboticabal. 55p.

Costa CTC, Bevilaqua CML, Morais SM, Camurça-Vasconcelos ALF, Maciel MV, Braga RR & Oliveira LMB (2010) Anthelmintic activity of Cocos nucifera L. on intestinal nematodes of mice.

Research in Veterinary Science, 88:101-103 Czernik S & Bridgwater AV (2004) Overview of applications of biomass fast pyrolysis oil. Energy & Fuels, 18:590-598.

Faizi S, Fayyaz S, Bano S, Iqbal EY, Ahmed L, Siddiqi H & Naz A (2011) Isolation of nematicidal compounds from Tagetes patula L. yellow flowers: structure-activity relationship studies against cyst nematode Heterodera zeae infective stage larvae. Journal of Agricultural and Food Chemistry, 59:9080-9093.

Gao Y, Yang Y, Qin Z & Sun Y (2016) Factors affecting the yield of bio oil from the pyrolysis of coconut shell. SpringerPlus, 5:333.

Guedes CLB, Adão DC, Quessada TP, Borsato D, Galão OF, Mauro ED, Pérez JMM & Rocha JD (2010) Avaliação de biocombustível derivado do bio-óleo obtido por pirólise rápida de biomassa lignocelulósica como aditivo para gasolina. Química Nova, 33:781-786.

Hadanu R & Apituley DAN (2016) Volatile compounds detected in coconut shell liquid smoke through pyrolysis at a fractioning temperature of 350-420 oC. Makara Journal of Science, 20:95- 100.

Hughes AFS, Lima FG, Lucchese AM, Neto AG & Uetanabaro APT (2013) Antimicrobial activity of Syagrus coronata (Martius) Beccari. Brazilian Archives of Biology Technology, 56:269-274.

Igwe OU & Ugwunnaji IP (2016) Phytochemistry, antioxidant and antimicrobial studies of endosperm tissues of Cocos nucifera L. International Journal of Chemical, Material and Environmental Research, 3:78-83.

Jenkins WRA (1964) A rapid centrifugal-flotation technique for separating nematodes from soil. Plant Disease Reporter, 48:692.

Li G-H, Dang L-Z, Hong L-J, Zheng L-J, Liu F-F, Li L, Liu Y-J & Zhang K-Q (2009) Nematicidal activity of honokiol and magnolol isolated from Magnolia tripetala. Journal of Phytopathology, 157:390-392.

Lima RS, Muniz MFS, Costa JG, Silva KB, Behling A (2019) Extratos aquosos de Annona spp. e Croton heliotropiifolius sobre Scutellonema bradys e prospecção química dos compostos. Summa Phytopathologica, 45:223-224.

Mai WF & Mullin PG (1996) Plant-parasitic nematodes: a pictorial key to genera. 5th edition. New York, Cornell University. 288p.

Melo TA, Serra IMRS, Silva GS & Sousa RMS (2012) Produtos naturais aplicados para manejo de Meloidogyne incognita em tomateiros. Summa Phytopathologica, 38:223-227.

Mohan D, Pittman CU & Steele PH (2006) Pyrolysis of wood/biomass for bio-oil: a critical review. Energy & Fuels, 20:848- 889.

Moura RM (2016) Doenças do inhame–da–costa (Dioscorea cayennensis). In: Amorim L, Rezende JAM, Bergamin Filho A & Camargo LEA (Eds). Manual de fitopatologia - doenças das plantas cultivadas. 5th edition. Ouro Fino, Agronômica Ceres. p. 477-483.

Oliveira LMB, Bevilaqua CML, Costa CTC, Macedo ITF, Barros RS, Rodrigues ACM, Camurça-Vasconcelos ALF, Morais SM, Lima YC, Vieira LS & Navarro AMC (2009) Anthelmintic activity of Cocos nucifera L. against sheep gastrointestinal nematodes. Veterinary Parasitology, 159:55-59.

Pieta S (2017) Eficácia de extratos pirolenhosos de cana-de-açúcar (Saccharum officinarum L.) e eucalipto (Eucalyptus spp.) no controle in vitro de patógenos da soja. Dissertação de Mestrado. Universidade Federal da Grande Dourados, Dourados. 59p.

Rossi CE & Lima CB (2007). Controle alternativo de nematoides em cultura orgânica de cana-de-açúcar. Revista Brasileira de Agroecologia, 2:1545-1548.

Santos AM, Almeida FA, Fonseca WL, Leite MLT, Pereira FF & Carvalho RM (2017) Ácido pirolenhoso no manejo de nematoides das galhas na cultura da alface. Espacios, 38:01-09.

Seo Y & Kim YH (2014) Control of Meloidogyne incognita using mixtures of organic acids. Plant Pathology Journal, 30:450- 455.

Shaw M (2006) Pyrolysis of lignocellulosic biomass to maximize bio-oil yield: an overview. In: 2006 ASABE Annual Meeting. Edmonton, ASAB. p 1-14.

Togoro AH, Silva JAS & Cazetta JO (2014) Chemical changes in an oxisol treated with pyroligneous acid. Ciência e Agrotecnologia, 38:113-121.

Trindade RCP, Palmeira LH, Sant’ana AEG, Sousa RS, Costa APA & Amorim EPR (2014) Atividade do extrato pirolenhoso sobre lagartas de Spodoptera frugiperda (J.E. Smith) (Lepidoptera: Noctuidae). Revista Brasileira de Agroecologia, 9:84-89.

Vieira WT (2019) Caracterização cromatográfica e avaliação da atividade antimicrobiana do extrato pirolenhoso obtido a partir de biomassas residuais. Dissertação de Mestrado. Universidade Federal de Alagoas, Maceió. 138p.

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Published

2025-05-15

How to Cite

Padilha de Farias, S., Van Der Linden de Almeida, A., do Nascimento, E. S., Soletti, J. I., Luciano Balliano, T., Moura Filho, G., & Silva Muniz, M. de F. (2025). In vitro and in vivo control of yam dry rot nematodes using pyroligneous extracts from palm trees. Revista Ceres, 67(6), 482–490. Retrieved from https://ojs.ceres.ufv.br/ceres/article/view/7839

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Section

PLANT HEALTH

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