Journal of Mosquito Research 2015, Vol.5, No.18, 1-8
7
Howard A.F.B., Zhou G., and Omlin F.X., 2007, Malaria mosquito control
using edible fish in western Kenya: preliminary findings of a controlled
study. BMC Public Health, 7: 199-204
Ileke K.D., and Ogungbite O.C., 2015,
Alstonia boonei
De Wild oil extract
in the management of mosquito (
Anopheles gambiae
), a vector of
malaria disease. Journal of Coastal Life Medicine, 3(7): 557-563
Isman M.B., 2008, Botanical insecticides: For richer, for poorer. Pest
Management Science, 64: 8-11
Khan B.A., Abraham A., and Leelamma S
.,
1996,
Murraya koenigii
and
Brassica
juncea -
alterations on lipid profile in 1-2 dimethylhydrazine
induced colon carcinogenesis. Investigational New Drugs, 14(4):
365-369
Khanum F., Anilakumar K.R., Krishna S.K.R., Viswanathan K.R., and
Santhanam K., 2000, Anticarcinogenic effects of curry leaves in
dimethylhydrazine-treated rats. Plant Foods for Human Nutrition, 55:
347-355
Kirtikar K.R., and Basu B.D., 1993, Indian Medicinal plants. Vol 1, 2
nd
Edition, India, pp. 472-474
Kirtikar K.R., and Basu B.D., 1994, Indian Medicinal Plants. Vol 3, 2
nd
Edition, India, pp. 472-473
Kishore N., Dubey N.K., Tripathi R.D., and Singh S.K., 1982, Fungitoxic
activity of leaves of some higher plants. National Academy Science
Letters
,
5(1): 9-10
Kong Y.C., Ng K.H., But P.P., Yu Q., Li S.X., Zhang H.T., Cheng K.F.,
Soejarto D.D., Kan W.S., and Waterman P.G., 1986, Sources of the
anti-implantation alkaloid yuehchukenein of the Genus
Murraya
.
Journal of Ethnopharmacology, 15: 195
Kostic M., Popovic Z., Brkic D., Milanovic S., Sivcev I., and Stankovic S.,
2008, Larvicidal and antifeedant activity of some plant derived
compounds to
Lymantria
dispar
L. (Lepidoptera: Limantriidae).
Bioresource Technology, 99: 7897-7901
Kovendan K., Arivoli S., Maheshwaran R., Baskar K., and Vincent S., 2012,
Larvicidal efficacy of
Sphaeranthus
indicus
,
Cleistanthus
collinus
and
Murraya
koenigii
leaf extracts against filarial vector,
Culex
quinquefasciatus
Say (Diptera: Culicidae). Parasitology Research,
111(3): 1025-1035
Krishnappa K., Elumalai K., Dhanasekaran S., and Gokulakrishnan J., 2012,
Larvicidal and repellent properties of
Adansonia
digitata
against
medically important human malarial vector mosquito
Anopheles
stephensi
(Diptera: Culicidae). Journal of Vector Borne Diseases, 49: 86-90
Kumar A., Shweta, Neetu, and Giri P., 2015, Advance review on
phytochemistry, pharmacology, antimicrobial, and clinical activities of
an antidiabetic plant (
Murraya
koenigii
). International Journal of
Innovative Research and Review, 3(1): 60-87
Kureel S.P., Kapil R.S., and Popli S.P., 1970, Synthesis of koenine,
koenimbine and girinimbine. Chemistry and Industry, 39: 1262
Lame Y., Nukenine E.N., Pierre D.Y.S., Elijah A.E., and Esimone C.O.,
2015, Laboratory evaluations of the fractions efficacy of
Annona
senegalensis
(Annonaceae) leaf extract on immature stage development
of malarial and filarial mosquito vectors. Journal of Arthropod-Borne
Diseases, 9(2): 226-237
Mann R.S., and Kaufman P.E., 2012, Natural product pesticides: their
development, delivery and use against insect vectors. Mini reviews in
Organic Chemistry, 9: 185-202
Mathur A., Dua V.K., and Prasad G.B.K.S., 2010, Antimicrobial activity of
leaf extracts of
Murraya koenigii
against aerobic bacteria associated
with bovine mastitis. International Journal of Chemical, Environmental
and Pharmaceutical Research, 1(1): 12-16
Mudalungu C.M., Matasyoh J.C., Vulule J.M., and Chepkorir R., 2013,
Larvicidal compounds from
Fagaropsis
angolensis
leaves against
malaria vector (
Anopheles
gambiae
). International Journal of Malaria
Research and Reviews, 1(1): 1-6
Muthu C., Ayyanar M., Raja N., and Ignacimuthu S., 2006, Medicinal plants
used by traditional healers in Kancheepuram District of Tamil Nadu,
India. Journal of Ethnobiology and Ethnomedicine, 2: 43-52
Nakahara K., Trakoontivakorn G., Alzoreky N.S., Ono H., Onishi-
Kaneyama M., and Yoshida M., 2002, Antimutagenicity of some edible
Thai plants, and a bioactive carbazole alkaloid, mahanine, isolated
from
Micromelum
minutum
. Journal of Agricultural and Food
Chemistry, 50: 4796
Nandita C., Anupam G., and Goutam C., 2008, Mosquito larvicidal activities
of
Solanum villosum
berry extract against the dengue vector
Stegomyia
aegypti
. BMC Complementary and Alternative Medicine, 8: 10-17
Narasimhan N.S., 1968, Structures of mahanimbin and koenimbin.
Tetrahedron Letters, 53: 5501-5504
Ningappa M.B., Dinesha R., and Srinivas L., 2008, Antioxidant and free
radical scavenging activities of polyphenol-enriched curry leaf
(
Murraya
koenigii
L.) extracts. Food Chemistry, 106: 720-728
Nyamoita M.G., Mbwambo Z.H., Ochola B.J., Innocent E., Lwande W., and
Hassanali A., 2013, Chemical composition and evaluation of mosquito
larvicidal activity of
Vitex
payos
extracts against
Anopheles
gambiae
Giles S.S larvae. Spatula DD, 3(3): 113-120
Nzelibe H.C., and Chintem D.G.W., 2013, Larvicidal potential of leaf
extracts and purified fraction
Ocimum
gratissimum
against
Culex
quinquefasciatus
mosquito larva. International Journal of Science and
Research, 4(2): 2254-2258
Okwute S.K., 2012, Plants as potential sources of pesticidal agents: A
review. In: Pesticides– advances in chemical and botanical pesticides,
pp. 207-232
Owino J., Hassanali A., and Ndung’u M., 2014, Bio-assay guided
fractionation of anti-mosquito limonoids from
Turraea
abyssinica
and
Turraea
cornucopia
. Biofertilizers and Biopesticides, 5(1): 1-5
Pande M.S., Gupta S.P.B.N., and Pathak A., 2009, Hepatoprotective activity
of
Murraya koenigii
Linn
bark
.
Journal of Herbal Medicine and
Toxicology
,
3(1): 69-71
Peng Z., Li H., and Simons F.E.R., 1998, Immunoblot analysis of salivary
allergens in 10 mosquito species with worldwide distribution and the
human IgE responses to these allergens. Journal of Allergy and Clinical
Immunology, 101: 498-505
Purthi, J.S., 1976, Spices and Condiments, National Book Trust, New Delhi,
India, pp.110
Purthi J.S., 1998, Spices and Condiments, National Book Trust, New Delhi,
India, pp.38
Rathy M.C., Sajith U., and Harilal C.C., 2015a, Plant diversity for mosquito
control: A preliminary study. International Journal of Mosquito
Research, 2(1): 29-33
Rathy M.C., Sajith U., and Harilal C.C., 2015b, Larvicidal efficacy of
medicinal plant extracts against the vector mosquito
Aedes
albopictus
.
International Journal of Mosquito Research, 2(2): 80-82
Rattan R.S., 2010, Mechanism of action of insecticidal secondary metabolites of
plant origin. Crop Protection, 29: 913-920
Raveen R., Dhayanithi P., Dhinamala K., Arivoli, S., and Samuel T.,
2012,
Larvicidal activity of
Pedilanthus
tithymaloides
(L.) Poit (Euphorbiaceae) leaf
against the dengue vector
Aedes
aegypti
(L.) (Diptera: Culicidae).
International Journal of Environmental Biology, 2(2): 36-40