Phytochemical Screening and Larvicidal Assessment of Bellyache Bush (Jatropha gossypiifolia) Leaf Extracts Against Culex quinquefasciatus Larvae

https://dx.doi.org/10.4314/njpar.v42i1.3

Authors

  • Buduwara, J. H. Department of Zoology, Modibbo Adama University of Technology, Yola, Nigeria.
  • Adiel, T. Department of Zoology, Modibbo Adama University of Technology, Yola, Nigeria.
  • Sami, R. Department of Zoology, Modibbo Adama University of Technology, Yola, Nigeria.
  • Tafem, M . L. Department of Zoology, Modibbo Adama University of Technology, Yola, Nigeria.

Keywords:

Jatropha gossypiifolia, Phytochemicals, Culex larvae

Abstract

The development of resistance by Culex mosquitoes to synthetic insecticides has necessitated the continued search for alternative  ones from plants. This study screened the preliminary qualitative phytochemicals and assessed the larvicidal efficacy of extracts of J.  gossypiifolia leaf against third and fourth stage Culex quinquefasciatus larvae. The J. gossypiifolia was screened for the presence of  phytochemicals using standard methods.After twenty-four (24) hours post exposure of both third and fourth stage C. quinquefasciatus  larvae against different concentrations, (2.0mg/ml, 4.0mg/ml, 6.0mg/ml, 8.0mg/ml and 10 mg/ml) of various  extracts. It showed that larval mortality increases significantly (p<0.05) with increase in  extracts concentration. Acetone leaf extract  showed highest mortality at 10mg/ml with 85% third stage Culex larvae mortality, followed by ethanolic leaf extract. However, least  mortality was observed in n-Hexane leaf extract with 15% larval mortality against fourth stage Culex larvae. Low LC50 and LC90 values  (3.715mg/ml and 12.490mg/ml) were noticed in acetone leaf extract of J. gossypiifolia. The study observed that the highest LC50 and  LC90 values (9.104mg/ml and 22.877mg/ml) were noticed in hexane leaf extracts. Conclusively, acetone leaf extract of J. gossypiifolia  can be harnessed to control Culex larvae. However, there is a need to ascertain the quantities of bioactive components of J.  gossypiifolia and its toxicity to non-target organisms.

Purchase

 

         Views | Download: 26 / 0

References

Geovanni, R.M. (2016). Diversity and distribution in the world of Megalopodidae Latreille (Coleoptera: Chrysomeloidea). International Congress of Entomology, pp 25-30.

World Health Organization. (2019). Guidelines for malaria vector control, Geneva. pp 4-9

Lima, G.A., Almeida, W.R., Hurd, H. and Alhuquerque, C.M. (2003). Reproductive aspects of the mosquito aspects of the mosquito Culex quinquefasciatus (Dipteria: culicidine) infected with Wucheria bancrofti (Spiruvida: Onchercercidae). Member Institute Oswaldo Cruz, 98:217- 222.

Thomass, B. and Nutman, M.D. (2013). Insight pathogenesis of diseases in Human Lymphatic Filariasis. Lymphatic Research and Biology Journal, 13(3):144-148.

Fenwick, A. (2012). The global burden of neglected tropical diseases. Journal of Public Health, 126(3): 233-236.

Kalu, I.G., Ofoegbu, U., Eroegbusi, J., Nwachukwu, C.U. and Ibeh, B. (2010). Larvicidal activities of Ethanol extracts of Allium sativum (garlic bulb) against the filarial vector, Culex quinquefasciantus. Journal of Medicinal Plants Research, 4(6): 496-498.

Velu, K., Elumalai, D., Hemalatha, P., Babu, M., Janaki, A. and Kaleena P.K. (2015). Phytochemical screening and larvicidal activity of peel extracts of Arachis hypogea against Chikungunya and malaria vector. International Journal of Mosquito Research, 2(1):1-8.

Arivoli, S., Ranindran, J. and Tennyson, S. (2012). Larvicidal Efficacy of Plant Extracts against the Malarial Vector Anopheles stephensi Liston (Diptera: Culicidae). World Journal of Medical Sciences, 7(2): 77-80.

Bhat RB, Etejere EO and Oladipo VT (1990). Economic Botany. 44(3), pp. 382- 390.

Yerramsetty N, Valluri k, Shaik R, Ramados S (2013). Anti-inflammatory activity of leaves of Jatropha gossypiifolia L.by hrbc membrane stabilization method, pp.156- 158.

Sachin CD, Ruchi K and Santosh S (2012). In-vitro evaluation of proteinase, phospholipase and haemolysin activities of Candida species isolated from clinical specimens. International Journal Medicine and Biomedical Research.1:153-157.

Adewumi, CO and Marquis VO. (1983). A rapid in-vitro screening method for detecting schistosomicidal activity of some Nigerian medicinal plants. Pharmacology; 3(1):1-5.

Gosh, A., Chowdhury, N. and Chandra, G. (2012). Plant extracts as Mosquitoes Larvicides. Indian Journal of Medical Research, 135:581-598.

Evans, W.C. (2008). Trease and Evans' Pharmacognosy, 15th Edition., W.B. Sonders Co. Ltd., London. Pp. 304 -313.

Sofowora, A. (2008). Medicinal plants and Traditional Medicine in Africa. Third Edition. Spectrum Books Limited, Ibadan Nigeria; pp 199- 203.

Hopkins, G.H.E. (1952). Mosquitoes of the Ethiopian region: Larvicidal bionomics of mosquitoes and taxonomy of culicine Larvae. British museum (National History), London; pp 1-35.

Abbott, W.S. (1952).Amethod of computing the effectiveness of an insecticide. Journal Economic Entomology, 18: 265-267.

Finney, D.J. (1971). Probit analysis, Cambridge University Press, London.

Govindarin, M. (2010). Chemical composition and larvicidal activity of leaf essential oil from Clausena ansita (wild) Hook.f.ex Benth (Rutaceae) against three mosquito species. Asian Journal of Tropical Medicine, 3(11):874-877

Abdullahi, A.I. Amina, S., Ibrahim, A., K. and Hadiza, A. (2017). Photochemistry and in-vitro antiplasmodial properties of aqueous and ethanol stem bark extracts of Jatropha curcas. Bayero Journal of Pure and Applied Sciences, 10(2): 2006-6996.

Mshelia, E. H., Hassan, Z., Troy, M. S., Musa, Y. D., Ladi, M. U., Shehu, I. B. B. and Hassan, A. (2018). Comparative Phytochemical and Antibacterial Studies of the Leaves of Jatropha gossypiifolia and its Mistletoe (Tapinanthus globiferus). Nigerian Journal of Pharmaceutical and Biomedical Research, 3 (1): 2579-1419

Phowichit, S., Buatippawan, S., Bullangpoti, V. (2008). Insecticidal activity of Jatropha gossypiifolia L (Euphorbiaceae) and Cleoma viscosa L (Capparidaceae) on Spodoptera litura (Lepidoptera: Noctuidae). Toxicity and carboxylesterase and glutathione-stransferase activity studies. Community Agriculture and Applied Biological Sciences, 7: 611-619

Olayemi, I.K., Busari, J., Adeniyi, K. A. and Ukubuiwe, A.C (2014). Comparative larvicidal efficacy of leaf and stem bark extract of Jatropha curcas against Culex pipien pipien. Malaya Journal of Bioscience, 1(2):104-108

Zewdneh, T.T. (2012). Larvicidal and Adult Inhibition Effect of crude aqueous leaf extract of Jatropha curcas against Anopheles arabiensis (Diptera: Culicidea).

Bhattacharyya, P., Chakrabarti, K., Chakraborty, A., Tripathy, S. and Powell, M . A . ( 2 0 0 8 ) . Fractionation and bioavailability of lead (Pb) in municipal solid waste compost and lead (Pb) uptake by rice straw and grain under submerged condition in amended soil. Geosciences Journal, 12 (1):41 –45.

Published

2021-03-01

How to Cite

H., B. J., T., A., R., S., & . L., T. M. (2021). Phytochemical Screening and Larvicidal Assessment of Bellyache Bush (Jatropha gossypiifolia) Leaf Extracts Against Culex quinquefasciatus Larvae: https://dx.doi.org/10.4314/njpar.v42i1.3. Nigerian Journal of Parasitology, 42(1), 19–24. Retrieved from https://njpar.com.ng/index.php/home/article/view/93

Similar Articles

<< < 1 2 3 > >> 

You may also start an advanced similarity search for this article.