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RESEARCH ARTICLE

Toxicity of pure compounds isolated from Tagetes minuta oil to Meloidogyne incognita

O. K. Adekunle A C D , Ruchi Acharya B and Bikram Singh B
+ Author Affiliations
- Author Affiliations

A Floriculture Division, Institute of Himalayan Bioresource Technology, Palampur, HP 176 061, India.

B Natural Plant Products Division, Institute of Himalayan Bioresource Technology, Palampur, HP 176 061, India.

C Present address: Plant Nematology Laboratory, Department of Plant Science, Obafemi Awolowo University, Ile-Ife, Nigeria.

D Corresponding author. Email: kolaade2002@yahoo.co.uk

Australasian Plant Disease Notes 2(1) 101-104 https://doi.org/10.1071/DN07042
Submitted: 9 October 2006  Accepted: 21 June 2007   Published: 3 July 2007

Abstract

Essential oils are natural volatile substances found in a variety of plants. The toxicity of z-β-ocimene and dihydrotagetone (isolated from the oil of Tagetes minuta) to eggs and juveniles of Meloidogyne incognita was investigated in vitro. Tagetes minuta oil at 4%, 3%, 2% and 1% was strongly toxic to eggs and juveniles of M. incognita. Further studies revealed that dihydrotagetone and z-β-ocimene isolated from the oil showed strong nematicidal activity against M. incognita, with dihydrotagetone showing a higher level of toxicity than z-β-ocimene. The results of this study suggest that dihydrotagetone and z-β-ocimene isolated from T. minuta oil are potential sources of botanicals for control of the root-knot nematode M. incognita.

Additional keywords: root-knot nematode, characterisation.


Acknowledgements

Dr O. K. Adekunle acknowledges award of a postdoctoral fellowship from Third World Academy of Sciences (TWAS), Trieste, Italy. Authors are thankful to the Director, Institute of Himalayan Bioresource Technology for encouragement and providing necessary research facilities. Professor Akhtar Hasseb of the Institute of Agriculture, Aligarh Muslim University, India is gratefully acknowledged for providing cultures of Meloidogyne incognita. Drs Sandeep Manuja and Raja Ram, IHBT, Palampur are thanked for running statistical analysis. IHBT Comm. No. is 0503.


References


Adams RP (1989) ‘Identification of essential oils by ion trap mass spectroscopy.’ (San Diego Press: New York)

Chang ST, Cheng SS (2002) Antitermitic activity of leaf essential oils and components from Cinnamomum osmophleum. Journal of Agricultural and Food Chemistry 50, 1389–1392.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

Chang ST, Wang SY, Wu CL, Chen PF, Kuo YH (2000a) Comparisons of the antifungal activities of cadinane skeletal sesquiterpenoids from Taiwania (Taiwania cryptomerioides Hayata) heart-wood. Holzforschung 54, 241–245.
Crossref | GoogleScholarGoogle Scholar | open url image1

Chang ST, Chen PF, Chang SC (2000b) Antibacterial activity of essential oils and extracts from Taiwania (Taiwania cryptomerioides Hayata). Quarterly Journal of Chinese Forest 33, 119–125. open url image1

Chang ST, Chen PF, Wang SY, Wu HH (2001a) Antimite activity of essential oils and their constituents from Taiwania cryptomerioides. Journal of Medical Entomology 38, 455–457.
PubMed |
open url image1

Chang ST, Chen PF, Chang SC (2001b) Antibacterial activity of leaf essential oils and their constituents from Cinnamomum osmophleum. Journal of Ethnopharmacology 77, 123–127.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

Chang ST, Cheng SS, Wang SY (2001c) Antitermitic activity of essential oils and components from Taiwania (Taiwania cryptomerioides). Journal of Chemical Ecology 27, 717–724.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

Cheng SS, Chung HT, Chang ST, Tsai KH, Chen WJ (2003) Bioactivity of selected plant essential oils against the yellow fever mosquito, Aedes aegypti larvae. Bioresource Technology 89, 99–102.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

Clevenger JF (1928) Apparatus for the determination of volatile oil. Journal of the American Pharmaceutical Association 17, 346. open url image1

Franzios G, Morotson M, Hatziapostolou E, Kral J, Scouras ZG, Mavragani TP (1997) Insecticidal and genotoxic activities of mint essential oils. Journal of Agricultural and Food Chemistry 45, 2690–2694.
Crossref | GoogleScholarGoogle Scholar | open url image1

Hussey RS, Barker KR (1973) A comparison of methods of collecting inocula of Meloidogyne spp. including a new technique. Plant Disease Reporter 57, 1025–1028. open url image1

Jennings W , Shibamoto T (1988) ‘Qualitative analysis of flavour and fragrance volatiles by glass capillary gas chromatography.’ (Academic Press: New York)

Kimpinski J, Arsenault WJ (1994) Nematodes in annual ryegrass, marigold, mustard, red clover and soybean. Forage Notes 37, 52–53. open url image1

Mohamed MAH, Harris PJC, Handerson J (2000) In vitro selection and characterization of a drought tolerant clone of Tagetes minuta. Plant Science 159, 213–222.
Crossref | GoogleScholarGoogle Scholar | PubMed | open url image1

SAS (1985) Statistics. In ‘User’s guide’. pp. 891–996. (SAS Institute Inc.: Cary, NC)

Sasser JN , Freckman DW (1987) A world perspective on nematology, the role of the society. In ‘Vistas on nematology’. (Eds JA Veech, DW Dickson) pp. 7–14. (Society of Nematologists: Hyattsville, MD)

Scrivanti LR, Sunino MP, Zygadlo JO (2003) Tagetes minuta and Schinus areira essential oils as allelopathic agents. Biochemical Systematics and Ecology 31, 563–572.
Crossref | GoogleScholarGoogle Scholar | open url image1

Sijmons PC, Atkinson HJ, Wyes U (1994) Parasitic strategies of root nematodes and associated host cell responses. Annual Review of Phytopathology 32, 235–259.
Crossref | GoogleScholarGoogle Scholar | open url image1

Stein SE (1990) National institute of standards and technology (NIST) mass spectral data base and software, ver. 3.02.