PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2020 | 30 | 2 |

Tytuł artykułu

Evaluation of botanicals against: mosquito larvae to the extracts Acalypha indica L.

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

30

Numer

2

Opis fizyczny

p.169-177,ref.

Twórcy

autor
  • Post Graduate and Research Department of Zoology, Periyar EVR College, Tiruchirappalli - 620023, Tamil Nadu, India
autor
  • Department of Zoology, St. Joseph University, Virgin Town, Ikishe, Model Village, Dimapur - 797 115 Nagaland, India
autor
  • Center of Advanced Study in Marine Biology, Faculty of Marine Sciences, Annamalai University, Parangipettai, 608 502, Tamil Nadu, India
  • Center of Advanced Study in Marine Biology, Faculty of Marine Sciences, Annamalai University, Parangipettai, 608 502, Tamil Nadu, India
  • Department of Zoology, St. Joseph University, Virgin Town, Ikishe, Model Village, Dimapur - 797 115 Nagaland, India

Bibliografia

  • [1] Sajith U, Rathy MC, Harilal CC, Diversity assessment of mosquito with reference to the occurrence of vector borne diseases in Thalassery municipal area of Malabar Coast, Kerala, India. Intenational Journal of Development Research, 5(6): 4592-4594 (2015).
  • [2] Dohutia C, Bhattacharyya DR, Sharma SK, Mohapatra PK, Hattacharjee BK, Gogoi K, Gogoi P, Mahanta J, Prakash A, Larvicidal activity of few select indigenous plants of North East India against disease vector mosquitoes (Diptera: Culicidae). Tropical Biomedicine, 32(1): 17-23 (2015).
  • [3] Govindarajan M, Mativanan T, Elumalai K, krishnappa K, Anandan A, Mosuitolarvicidal, ovicidal, and repellent properties of botanical extracts against Anopheles stephensi, Aedesaegypti, and Culexquinquefasciatus (Dinptera: Culicidae). Parasitol Res, 109: 353-367 (2011).
  • [4] Service M, Medical entomology for students, 3rd ed. Cambridge University Press, Cambridge, (2004).
  • [5] Hales, S, Wet ND, Maindonald, J, Woodward A. Potential effect of population and climate changes on global distribution of dengue fever: an empirical model. Lancet 360, 830-834 (2002).
  • [6] Bhatt JC, Gething W, Brady OJ, Messina JP, Farlow AW, Moyes CL, Drake JM, Brownstion JS, Hoen AG, Sanko O, Myers MF, George DB, Jacnisch TW, Farrar JJ, Hay SI, Wint GR, The global distribution and burden of dengue. Nature, 496: 504-507 (2013).
  • [7] Guzman MG, Halstead SB, Artsob H, Buchy P, Farrar J, Gubles DJ, Hunsperger E, Kroeger A, Margolis HS, Martinez E, Nathan MB, Pelegrino JL, Simmons C, Yoksan S, Pecling RW, Dengue: a continuing global threat. Nat Rev Microb. 8: S7-S16 (2010).
  • [8] World Health Organization (WHO), “Dengue and severedengue” 2015, http://www.who.int/mediacentre/factsheets/fs117/en/.
  • [9] National Vector Borne Disease Control Programme (NVBDCP), “Dengue Cases and Deaths in the Country, 2015, http://nvbdcp.gov.in/dengue6.html.
  • [10] Sukumar K, Michael JP, Boobar LR. Botanical derivatives in mosquito control: A review. J Am Mosq Control Assoc 7: 210-37 (1991).
  • [11] Rajmohan D, Anbarsasi Sand Kumar KL, Efficacy of Vincarosea (Apocynaneae) against the growth and development of the chikungunya vector, Aedesaegypti L. (Diptera: Culucidae). International Journal of Pharmacy and Pharmaceutical Sciences, vol. 4, no. 4, pp. 50-51, (2012).
  • [12] Ghosh A, Chowdhury N, Chandra G, Plant extracts as potential mosquito larvicdes. Indian Journal of Medical Research, 135(5): 581-598, (2012).
  • [13] Green MM, Singer JM, Sutherland DJ and Hibbon CR, Larvicidal activity of Tagetesminuta (Marigold) towards Aedesaegypti. J Am Mosquito Cont Assoc, 7: 282-286 (1991).
  • [14] Kumar G, Kartik L, Rao KVB, A review on pharmacological and phytochemical profile of Calotropis gigantean Linn. Pharmacologyonline Newsletter 1: 1-8 (2011).
  • [15] Alam MA, Habib MR, Nikkon R, Rahman M, Karim MR, Antimicrobial activity of akanda (Calotropis gigantean L.) on some pathogenic bacteria. Bangladesh Journal of Scientific and Industrial Research 43(3): 397-404 (2008).
  • [16] Alam MA, Habib MR, Nikkon F, Khalequzzamman M, Karim MR, Insecticidal Activity of Root Bank of Calotropis gigantean L. against Tribolium castaneum (Herbst). World Journal of Zoology 4(2): 90-95 (2009).
  • [17] Argal A, Pathak AK, CNS activity of Calotropis gigantean roots. Journal of Ethnopharmacology 106(1): 142-145 (2006).
  • [18] Prabhakar K, Jebanesa A, Larvicidal efficacy of some cucurbitacious plant leaf extracts against Culex quinquefasciatus. Bioresource Tech 95: 113-114 (2004).
  • [19] Shallan EA, Canyon D, Younes MWF, Abdel-Wahab H, Mansour A, A review of botanical phytochemicals with mosquitocidal potential. Environment International, 2005, 31(8): 1149-1166. DOI: 10.1016/j.envint.2005.03.003
  • [20] Arivoli S, Samuel Tennyson, Jesudoss Martin J, Larvicidal efficacy of Vernoniacinerea (L.) (Asterceae) leaf extracts against the filarial vector Culexquinquefasciatus Say ((Diptera: Culicidae). Journal of Biopesticides, 4(1), 7-42 (2011)
  • [21] M. Muni Raj, G. Srikanth, M. Rajikkannu, R. Nandakumar, Evaluation of botanicals against: Mosquito Larvae to the Extracts of Fungus Beauveria Species. World Scientific News 88(2) (2017) 199-210

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-b144fa9c-a02a-4caf-8ab0-398a22bde6a4
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.