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References


Abbott WS (1925) A method of computing the effectiveness of an insecticide. Journal of Economic Entomology 18: 265-267.

Adnyani IGAP, Sudarmadja IM (2016) Pengaruh Konsentrasi Ekstrak Etanol Daun Pepaya (Carica papaya L) terhadap Kematian Larva Nyamuk Aedes aegypti. E-Jurnal Medika 5: 1-5.

Ali MS, Fatima S, Pervez MK (2008) Haplotin: A new furanoquinoline from Haplophyllum acutifolium (Rutaceae). Journal of the Chemical Society of Pakistan 30: 775-779.

Andres CCA, Barrera CED, Falla GDS, Murcia DG, Suarez CLE (2011) Seco-limonoids and quinoline alkaloids from Raputia heptaphylla and their antileishmanial activity. Chemical and Pharmaceutical Bulletin 59: 855-859.

Arivoli S, Raveen R, Samuel T (2015) Larvicidal activity of Murraya koenigii (L.) Spreng (Rutaceae) hexane leaf extract isolated fractions against Aedes aegypti Linnaeus, Anopheles stephensi Liston and Culex quinquefasciatus Say (Diptera: Culicidae). Journal of Mosquito Research 5: 1-8.

Arivoli S, Samuel T (2011) Studies on the mosquitocidal activity of Murraya koenigii (L.) Spreng (Rutaceae) leaf extracts against Aedes aegypti, Anopheles stephensi and Culex quinquefasciatus (Diptera: Culicidae). Asian Journal of Experimental Biological Science 2: 721-730.

Armadhani (2014) Keefektifan Ekstrak Etanol Daun Petai Cina (Leucaenaglauca, Benth) sebagai Larvasida Alamiterhadap Kematian Larva Nyamuk Ae. aegypti Instar III. NaskahPublikasi. Semarang: Universitas Negeri Semarang.

Aziz SSSA, Sukari MA, Kitajima M, Aimi N, Ahpandi NJ (2010) Coumarins from Murraya paniculata (Rutaceae). Malaysian Journal of Analytical Sciences 14: 1-5.

Bagavan A, Rahuman AA, Kamaraj C, Geetha K (2008) Larvicidal activity of saponins from Achyranthes aspera against Aedes aegypti and Culex quinquefasciatus (Diptera: Culicidae). Parasitology Research 103: 223-229.

Bilal H, Akram W, Ali-Hassan S (2012) Larvicidal activity of Citrus limonoids against Aedes albopictus larvae. Journal of Arthropod-Borne Diseases 6: 104-111.

Boham A Kocipai AC (1974) Flavonoids and condensed tannins from leaves of Hawaiia vaccinum vaticulatum and V. calyscinium. Pacific Science 48: 458-463.

Borah R, Kalita MC, Kar A, Talukdar AK (2010) Medicinal plants and their applications. African Journal of Biotechnology 9: 25-27.

Boudko DY, Moroz LL, Harvey WR, Linser PJ (2011) Alkalinization by chloride bicarbonate pathway in larval mosquito midgut. Proceedings of the National Academy of Sciences of the United States of America 26: 15355-15359.

Bradford MM (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry 72: 248-254.

Cardoso-Lopes EM, Maier JA, Da Silva MR, Regasini LO, Simote SY, Lopes NP, Pirani JR, Bolzni VS, Young MCM (2010) Alkaloids from stems of Esenbeckia leiocarpa Engl. (Rutaceae) as potential treatment for Alzheimer disease. Molecules 15: 9205-9213.

Chapagain B, Saharan V, Wiesman Z (2008) Larvicidal activity of saponins from Balanites aegyptiaca callus against Aedes aegypti mosquito. Bioresource Technology 99: 1165-1168.

Damerval C, De Vienne C, Zivy M, Thiellement H (1986) The technical improvements in two-dimensional electrophoresis increase the level of genetic variation detected in wheat seedling proteins. Electrophoresis 7: 52-54.

Das NG, Goswami D, Rabha B (2007) Preliminary evaluation of mosquito larvicidal efficacy of plant extracts. Journal of Vector Borne Disease 44: 145-148.

de Souza Wuillda ACJ, Martins RCC, Costa FN (2019) Larvicidal activity of secondary plant metabolites in Aedes aegypti control: An overview of the previous 6 years. Natural Product Communications 1: 1-11.

El-Akhal F, Lalamia AEO, Guemmouh R (2015) Larvicidal activity of essential oils of Citrus sinensis and Citrus aurantium (Rutaceae) cultivated in Morocco against the malaria vector Anopheles labranchiae (Diptera: Culicidae). Asian Pacific Journal of Tropical Disease 5: 458-462.

Elimam AM, Elmalik KH, Ali FS (2009) Efficacy of leaves extract of Calotropis procera Ait. (Asclepiadaceae) in controlling Anopheles arabiensis and Culex quinquefasciatus mosquitoes. Saudi Journal of Biological Sciences 16: 95-100.

Ezeonu FC, Chidume GI, Udedi SC (2001) Insecticidal properties of volatile extracts of orange peels. Bioresource Technology 76: 273-274.

Farooq U, Waseem B, Muzaffar R, Tripathi J, Tharani M, Sharma MA (2014) Comparative study of phytochemical investigation of Xanthium strumarium medicinal plant. International Journal of Research in Pharmacy and Chemistry 4: 96-100.

Galvão JG, Silva VF, Ferreira SG, França FRM, Santos DA, Freitas LS, Alves PB, Araújo AAS, Cavalcanti SCH, Nunes RS (2015) Cyclodextrin inclusion complexes containing Citrus sinensis (L.) Osbeck essential oil: An alternative to control Aedes aegypti larvae. Thermochimica Acta 608: 14-19.

Garcez WS, Garcez FR, Silva L, Sarmento UC (2013) Substâncias de origem vegetal com atividadelarvicida contra Aedes aegypti. Revista Virtual de Química 5: 363-393.

George UI (2019) Environmental control of malaria: Can Citrus sinensis peel be a potent larvicide for household vector control? GSC Biological and Pharmaceutical Sciences 09(03): 085-090.

Ghosh A, Chowdhury N, Chandra G (2012) Plant extracts as potential mosquito larvicides. Indian Journal of Medical Research 135(5): 581-598.

Harborne JB (1998) Phytochemical methods, a guide to modern techniques of plant analysis, 3rd Edition. Chapman and Hill Ltd., London, 279.

Hemingway J, Beaty BJ, Rowland M, Scott TW, Sharp BL (2006) The innovative vector control consortium: Improved control of mosquito-borne diseases. Trends in Parasitology 22: 308-312.

Hostettmann K, Marston A (1995) Saponins (Chemistry and Pharmacology of Natural Products). University Press, Cambridge, 132.

Huang HT, Lin CC, Kuo TC, Chen SJ, Huang RN (2019) Phytochemical composition and larvicidal activity of essential oils from herbal plants. Planta 250: 59-68.

Ileke KD, Ogungbite OC (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: 557-563.

Isman MB (1997) Neem and other botanical insecticides: Barriers to commercialization. Phytoparasitica 25: 339-344.

Ito C (2000) Studies on medicinal resources of rutaceous plants and development to pharmaceutical chemistry. Natural Medicine 54: 117-122.

Kaushik S, Sharma NR, Thomas TG, Sharma AK, Bansal A (2019) Indigenous plants and their larvicidal potential against Indian mosquito vectors: A review. Journal of Communicable Diseases 51: 59-72.

Kumar S, Ray A, Kaur J, Samal R, Wahab N, Warikoo R (2012) Efficacy of the ethanolic leaf extracts of citrus plant, Citrus sinensis as larvicidal and irritant agent against dengue vector Aedes aegypti L. Asian Pacific Journal of Tropical Biomedicine 3: 152-155.

Laemmli UK (1970) Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227: 680-685.

Lee KP, Simpson SJ, Wilson K (2008) Dietary protein-quality influences melanization and immune function in an insect. Functional Ecology 22: 1052-1061.

Lowry OH, Rosebrough NJ, Farr AL, Randall RJ (1951) Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry 193: 265-275.

Mandal S, Nayak A, Kar M, Banerjee SK, Das A, Upadhyay SN, Singh RK, Banerji A, Banerji J (2010) Antidiarrhoeal activity of carbazole alkaloids from Murraya koenigii Spreng (Rutaceae) seeds. Fitoterapia 81: 72-74.

Mann RS, Kaufman PE (2012) Natural product pesticides: their development, delivery and use against insect vectors. Mini-Reviews in Organic Chemistry 9: 185-202.

Mansour SA, Messeha SS, Mohamed SM (1998) Botanical biocides: Mosquitocidal activity of certain Nigella sativa constituents. Journal of Union Arab Biology 10: 45-63.

Marin G, Arivoli S, Samuel T (2020) Synergistic larvicidal action of Citrus limon (L.) Osbeck (Rutaceae) and Bacillus thuringiensis Berliner 1915 (Bacillaceae) against the dengue vector Aedes aegypti Linnaeus 1762 (Diptera: Culicidae). GSC Biological and Pharmaceutical Sciences 10: 25-33.

Murugan K, Kumar PM, Kovendan K, Amerasan D, Subrmaniam J, Hwang JS (2012) Larvicidal, pupicidal, repellent and adulticidal activity of Citrus sinensis orange peel extract against Anopheles stephensi, Aedes aegypti and Culex quinquefasciatus (Diptera: Culicidae). Parasitology Research 111: 1757-1769.

Musau JK, Mbaria JM, Nguta JM, Mathiu M, Kiama SG (2016) Phytochemical composition and larvicidal properties of plants used for mosquito control in Kwale County, Kenya. International Journal of Mosquito Research 3: 12-17.

Nathan SS (2020) A review of resistance mechanisms of synthetic insecticides and botanicals, phytochemicals, and essential oils as alternative larvicidal agents against mosquitoes. Frontiers in Physiology 10: 1591.

Obadoni BO Ochuko PO (2001) Studies and comparative efficacy of the crude extracts of some homostatic plants in Edo and Delta states of Nigeria. Global Journal of Pure and Applied Science 8b: 203-208.

Okwu DE, Okwu ME (2004) Phytochemicals and vitamins content of indigenous plant species of south eastern Nigeria. Journal of Sustainable Agriculture and Environment 6: 30-37.

Palanikumar M, Pravin Y, Navaneethan M, Mahendren S, Mohanraj RS, Dhanakkodi B (2017) Callistemon citrinus (Myrtaceae) methanolic leaf extract: a potent mosquitocidal agent for controlling dengue vector mosquito Aedes aegypti (Diptera: Culicidae). Journal of Entomology and Zoology Studies 5: 1051-1059.

Pathak M, Kumar R, Singh MK, Maurya O, Bharati KA (2018) A review on traditional larvicidal plants. Mintage Journal of Pharmaceutical & Medical Sciences 7: 1-9

Pitasawat B, Champakaew D, Choochote W, Jitpakdi A, Chaithong U, Kanjanapothi D, Rattanachanpichai E, Tippawangkosol P, Riyong D, Tuetun B, Chaiyasit D (2007) Aromatic plant-derived essential oil: an alternative larvicide for mosquito control. Fitoterapia 78: 205-210.

Pollio A, De Natale A, Appetiti E, Aliotta G, Touwaide A (2008) Continuity and change in the Mediterranean medical tradition: Ruta spp. (Rutaceae) in Hippocratic medicine and present practices. Journal of Ethnopharmacology 116: 469-482.

Rajkumar S, Jebanesan A (2008) Bioactivity of flavonoid compounds from Poncirus trifoliata L. (Family: Rutaceae) against the dengue vector, Aedes aegypti L. (Diptera: Culicidae). Parasitology Research 104: 19-25.

Rey D, Pautou MP, Meyran JC (1999) Histopathological effects of tannic acid on the midgut epithelium of some aquatic Diptera larvae. Journal of Invertebrate Pathology 73: 173-181.

Samuel T, Arivoli S, William J (2016) Phytonanopesticides for vector control: A review. Journal of Applied Zoological Researches 27: 1-11.

Samuel T, Kalarani A, Vinodha V, Arivoli S, Selvakumar S, Meeran M, Syedalifathima A (2019) Repellent property of plants against mosquitoes in field conditions by traditional method. International Journal of Zoology and Applied Biosciences 4: 258-263.

Samuel T, William SJ (2014) Potentiality of botanicals in sustainable control of mosquitoes (Diptera: Culicidae). In: Achieving Sustainable Development: Our Vision and Mission, Ed. William, SJ, Loyola College, Chennai, Tamil Nadu, India 204-227.

Sattar M, Iqbal MN, Ashraf A, Ali S, Shahzad MI, Alam S, Ali T, Sheikh R (2016) Larvicidal efficacy of Citrus sinensis extracts against Culex quinquefasciatus. PSM Microbiology 1: 56-61.

Scherer R, Wagner R, Meireles MAA, Godoy HT, Duarte MCT, Filho JT (2010) Biological activity and chemical composition of hydrodistilled and supercritical extracts of Xanthium strumarium L. leaves. Journal of Essential Oil Research 22: 424-429.

Senthilkumar A, Kannathasan K, Venkatesalu V (2008) Chemical constituents and larvicidal property of the essential oil of Blumea mollis (D. Don) Merr. against Culex quinquefasciatus. Parasitology Research 103: 959-962.

Senthilkumar N, Varma P, Gurusubramanian G (2009) Larvicidal and adulticidal activities of some medicinal plants against the malarial vector, Anopheles stephensi Liston. Parasitology Research 104: 237-244.

Severino VG, Cazal CM, Forim MR, da Silva MF, Rodrigues-Filho E, Fernandes JB, Vieira PC (2009) Isolation of secondary metabolites from Hortia oreadica (Rutaceae) leaves through high-speed counter-current chromatography. Journal of Chromatography A 1216: 4275-4281.

Sharma P, Mohan L, Srivastava CN (2006) Phytoextract-induced developmental deformities in malaria vector. Bioresource Technology 97: 1599-1604.

Siddique S, Javed S, Nawaz S, Perveen Z, Khan RA, Khanum R, Shahzad K (2012) Volatile components and antimicrobial activity of Citrus sinensis var. mosammi leaves oil. Journal of Medicinal Plants Research 6: 2184-2187.

SPSS (2010) IBM SPSS Statistics for Windows, Version 22.0. Armonk, NY: IBM Corp.

Sukari MA, Noor HSM, Bakar NHA, Ee GCL, Ismail IS, Rahmani M, Abdul AB (2013) Larvicidal carbazole alkaloids from Murraya koenigii against dengue fever mosquito Aedes aegypti Linnaeus. Asian Journal of Chemistry 25: 7719-7721.

Van Burden TP, Robinson WC (1981) Formation of complexes between protein and tannin acid. Journal of Agricultural Food Chemistry 1: 77.

Visveshwari M, Subbaiyan B, Thangapandian V (2017) Phytochemical analysis, antibacterial activity, FTIR and GCMS analysis of Ceropegia juncea Roxb. International Journal of Pharmacognosy and Phytochemical Research 9: 914-920.

Wansi JD, Wandji J, Meva'a ML, Waffo KAF, Ranjit R, Khan SN, Asma A, Iqbal CM, Lallemand MC, Tillequin F, Tanee FZ (2006) Alpha-glucosidase inhibitory and antioxidant acridone alkaloids from the stem bark of Oriciopsis glaberrima Engl. (Rutaceae). Chemical and Pharmaceutical Bulletin 54(3): 292-296.

Warikoo R, Ray A, Sandhu JK, Samal S, Wahab N, Kumar S (2012) Larvicidal and irritant activities of hexane leaf extracts of Citrus sinensis against dengue vector Aedes aegypti L. Asian Pacific Journal of Tropical Biomedicine 2: 152-155.

Warren M, McGeoch MA, Nicolson SW, Chown SL (2006) Body size patterns in Drosophila inhabiting a mesocosm: interactive effects of spatial variation in temperature and abundance. Oecologia 149: 245-255.

WHO (2005) Guidelines for laboratory and field testing of mosquito larvicides. WHO, Geneva, WHO/CDS/WHOPES/GCDPP/13.

WHO (2014) A global brief on vector-borne diseases. WHO/DCO/WHD/2014.1

Zoubiri S, Baaliouamer A (2014) Potentiality of plants as source of insecticide principles. Journal of Saudi Chemical Society 18: 925-938.

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