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Jabeen, F., and Chaudhry, A.S. 2011. Chemical compositions and fatty acid profiles of three freshwater fish species. Food Chem. 125:991-996
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Jackson, B.D., Morgan, E.D., and Billen, J.P.J. 1990a. Contents of the pygidial gland of the ant Myrmecia nigriceps. Naturwissenschaften. 77:187-188.
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Jackson, L.L. 1972. Cuticular lipids of insects. IV. Hydrocarbons of the cockroaches Periplaneta japonica and Periplaneta americana compared to other cockroach hydrocarbons. Comp. Biochem. Physiol. B. 41:331-336.
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Jackson, L.L. 1983. Cuticular hydrocarbons of the milkweed bug, Oncopeltus fasciatus by age and sex. Insect Biochem. 13:19-25.
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Jackway, R.J., Bowie, J.H., Bilusich, D., Musgrave, I.F., Surinya-Johnson, K.H., Tyler, M.J., and Eichinger, P.C. 2008b. The fallaxidin peptides from the skin secretion of the eastern dwarf tree frog Litoria fallax. Sequence determination by positive and negative ion electrospray mass spectrometry: antimicrobial activity and cDNA cloning of the fallaxidins. Rapid Commun. Mass Spectrom. 22:3207-3216.
Jackway, R.J., Maselli, V.M., Musgrave, I.F., Maclean, M.J., Tyler, M.J., and Bowie, J.H. 2009. Skin peptides from anurans of the Litoria rubella group: sequence determination using electrospray mass spectrometry. Opioid activity of two major peptides. Rapid Commun. Mass Spectrom. 23:1189-1195.
Jackway, R.J., Pukala, T.L., Maselli, V.M., Musgrave, I.F., Bowie, J.H., Liu, Y., Surinya-Johnson, K.H., Donnellan, S.C., Doyle, J.R., Llewellyn, L.E., and Tyler, M.J. 2008a. Disulfide-containing peptides from the glandular skin secretions of froglets of the genus Crinia: structure, activity and evolutionary trends. Regul. Pept. 151:80-87.
Jacob J. 1976. Diester waxes containing 2-hydroxy fatty acids from the uropygial gland secretion of the white stork (Ciconia ciconia). Lipids. 11:816-818.
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Jacob, K.K., Peter, K.J.P., Nair, S.M., and Chandramohanakumar, N. 2019. Cell cycle arrest and apoptosis in human liver cancer cell line and A549 cell lines by turbiconol – a novel sterol isolated from Turbinaria conoides. Pharmacogn. Mag. 15:189-196.
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Jacobs, D.H., Apps, P.J., and Viljoen, H.W. 1989. The composition of the defensive secretions of Thaumastella namaquensis and T. elizabethae with notes on the higher classification of the thaumastellidae (insecta: Hheteroptera). Comp. Biochem. Physiol. B. 93:459-463.
Jacobs, W.P., Falkenstein, K., and Hamilton, R.H. 1985. Nature and amount of auxin in algae: IAA from extracts of Caulerpa paspaloides (Siphonales). Plant Physiol. 78:844-848.
Jacobsen, N., and Madsen, J.O. 1978. Halogenated metabolites including brominated 2-heptanols and 2-heptyl acetates from the tetrasporophyte of the red alga Bonnemaisonia hamifera. Tetrahedron Lett. 19:3065-3068.
Jacobson, M. 1969. Sex pheromone of the pink bollworm moth: biological masking by its geometrical isomer. Science. 163:190-191.
Jacobson, M., Adler, V.E., Kishaba, A.N., and Priesner, E. 1976. 2-phenylethanol, a presumed sexual stimulant produced by the male cabbage looper moth, Trichoplusia ni. Experientia. 32:964-966.
Jacobson, M., and Beroza, M. 1965. American cockroach sex attractant. Science. 147:748-749.
Jacobson, M., and Jennings, D.T. 1978. Attraction of Rhyacionia neomexicana (Dyar) to synthetic pheromones. J. Environ. Sci. Health. A 13:429-443.
Jacobson, M., and Ohinata, K. 1980. Unique occurrence of fenchol in the animal kingdom. Experientia. 36:629-630.
Jacobson, M., Beroza, M., and Jones, W.A. 1960. Isolation, identification, and synthesis of the sex attractant of gypsy moth. Science. 132:1011-1012.
Jacobson, M., Beroza, M., and Jones, W.A. 1961. Insect sex attractants. I. The isolation, identification, and synthesis of the sex attractant of the gypsy moth. J. Am. Chem. Soc. 83:4819-4824.
Jacobson, M., Beroza, M., and Yamamoto, R.T. 1963. Isolation and identification of the sex attractant of the American cockroach. Science. 139:48-49.
Jacobson, M., Keiser, I., Chambers, D.L., Miyashita, D.H., and Harding, C. 1971. Synthetic nonenyl acetates as attractants for female melon flies. J. Med. Chem. 14:236-239.
Jacobson, M., Lilly, C.E., and Harding, C. 1968. Sex attractant of sugar beet wireworm: identification and biological activity. Science. 159:208-210.
Jacobson, M., Ohinata, K., Chambers, D.L., Jones, W.A., Fujimoto, M.S. 1973. Insect sex attractants. 13. Isolation, identification, and synthesis of sex pheromones of the male Mediterranean fruit fly. J. Med. Chem. 16:248-251.
Jacobson, M., Redfern, R.E., Jones, W.A., and Aldridge, M.H. 1970a. Sex pheromones of the southern armyworm moth: isolation, identification, and synthesis. Science. 170:542-544.
Jacobson, M., Schwarz, M., and Waters, R.M. 1970b. Gypsy moth sex attractants: a reinvestigation. J. Econ. Entomol. 63:943-945.
Jacquin, E., Nagnan, P., and Frérot, B. 1991. Identification of hairpencil secretion from male Mamestra brassicae (L.) (Lepidoptera: Noctuidae) and electroantennogram studies. J. Chem. Ecol. 17:239-246.
Jactel, H., Menassieu, P., Lettere, M., Mori, K., and Einhorn, J. 1994. Field response of maritime pine scale, Matsucoccus feytaudi Duc. (Homoptera: Margarodidae), to synthetic sex pheromone stereoisomers. J. Chem. Ecol. 20:2159-2170.
Jaenicke, L., Müller, D.G., and Moore, R.E. 1974. Multifidene and aucantene, C11 hydrocarbons in the male-attracting essential oil from the gynogametes of Cutleria multifida (Smith) Grev. (Phaeophyta). J. Am. Chem. Soc. 96:3324-3325.
Jaenike, J., Bartelt, R.J., Huberty, A.F., Thibault, S., and Libler, J.S. 1992. Aggregations in mycophagous Drosophila (Diptera: Drosophilidae): candidate pheromones and field responses. Ann. Entomol. Soc. Am. 85:696-704.
Jaenson, T.G.T., Barreto-dos-Santos, R.C., and Hall, D.R. 1991. Attraction of Glossina longipalpis (Diptera: Glossinidae) in Guinea-Bissau to odor-baited biconical traps. J. Med. Entomol. 28:284-286.
Jaenson, T.G.T., Lindstrom, A., and Palsson, K. 2003. Repellency of the mosquito repellent MyggA® (N,N-diethyl-3-methyl-benzamide) to the common tick Ixodes ricinus (L.) (Acari: Ixodidae) in the laboratory and field. Entomol. Tidskr. 124:245-251.
Jaffe, H., Huettel, R.N., DeMilo, A.B., Hays, D.K., and Rebois, R.V. 1989. Isolation and identification of a compound from soybean cyst nematode, Heterodera glycines, with sex pheromone activity. J. Chem. Ecol. 15:2031-2043.
Jaffe, K., Sanchez, P., Cerda, H., Hernandez, J.V., Jaffe, R., Urdaneta, N., Guerra, G., Martínez, R., and Miras, B. 1993. Chemical ecology of the palm weevil Rhynchophorus palmarum (L.) (Coleoptera: Curculionidae): attraction to host plants and to a male-produced aggregation pheromone. J. Chem. Ecol. 19:1703-1720.
Jahn, T., König, G.M., and Wright, A.D. 1999. Three new scalarane-based sesterterpenes from the tropical marine sponge Strepsichordaia lendenfeldi. J. Nat. Prod. 62:375-377.
Jaime, E., Gerdts, G., and Luckas, B. 2007. In vitro transformation of PSP toxins by different shellfish tissues. Harmful Algae. 6:308-316.
Jain P., Garraffo, H.M., Spande, T.F., Yeh, H.J., and Daly, J.W. 1995. A new subclass of alkaloids from a dendrobatid poison frog: a structure for deoxypumiliotoxin 251H. J. Nat. Prod. 58:100-104.
Jain P., Spande, T.F., Garraffo, H.M., and Daly, J.W. 1999. The isolation and structure of pumiliotoxin 341A: a novel cyclic ether from the frog Epipedobates tricolor. Heterocycles. 50:903-912.
Jain, P., Garraffo, H.M., Yeh, H.J.C., Spande, T.F., and Daly, J.W. 1996. A 1,4-disubstituted quinolizidine from a Madagascan mantelline frog (Mantella). J. Nat. Prod. 59:1174-1178.
Jain, S., Abraham, I., Carvalho, P., Kuang, Y.-H., Shaala, L.A., Youssef, D.T., Avery, M.A., Chen, Z.-S., and El Sayed, K.A. 2009. Sipholane triterpenoids: chemistry, reversal of ABCB1/P-glycoprotein-mediated multidrug resistance, and pharmacophore modeling. J. Nat. Prod. 72:1291-1298.
Jain, S., Laphookhieo, S., Shi, Z., Fu, L.-W., Akiyama, S.-I., Chen, Z.-S., Youssef, D.T., van Soest, R.W., and El Sayed, K.A. 2007. Reversal of P-glycoprotein-mediated multidrug resistance by sipholane triterpenoids. J. Nat. Prod. 70:928-931.
Jain, S.C., Dussourd, D.E., Conner, W.E., Eisner, T., Guerrero, A., and Meinwald, J. 1983. Polyene pheromone components from an arctiid moth (Utetheisa ornatrix): characterization and synthesis. J. Org. Chem. 48:2266-2270.
Jaisamut, S., Prabpai, S., Tancharoen, C., Yuenyongsawad, S., Hannongbua, S., Kongsaeree, P., and Plubrukarn, A. 2013. Bridged tricyclic sesquiterpenes from the tubercle nudibranch Phyllidia coelestis Bergh. J. Nat. Prod. 76:2158-2161.
Jaja-Chimedza, A., Gantar, M., Gibbs, P.D.L., Schmale, M.C., and Berry, J.P. 2012. Polymethoxy-1-alkenes from Aphanizomenon ovalisporum inhibit vertebrate development in the zebrafish (Danio rerio) embryo model. Mar. Drugs. 10:2322-2336.
Jakobsson, J., Svensson, G.P., Löfstedt, C., and Anderbrant, O. 2016. Antennal and behavioural responses of the spruce seed moth, Cydia strobilella, to floral volatiles of Norway spruce, Picea abies, and temporal variation in emission of active compounds. Entomol. Exp. Appl. 160:209-218.
Jalaluddin, S.M., Natarajan, K., and Sadakathulla, S. 2001. Population fluctuation of the guava fruit fly, Bactrocera correcta (Bezzi) in relation to hosts and abiotic factors. J. Exp. Zool. 4:323-327.
Jaloux, B., Errard, C., Mondy, N., Vannier, F., and Monge, J.P. 2005. Sources of chemical signals which enhance multiparasitism preference by a cleptoparasitoid. J. Chem. Ecol. 31:1325-1337.
James, D.G. 2003a. Synthetic herbivore-induced plant volatiles as field attractants for beneficial insects. Environ. Entomol. 32:977-982.
James, D.G. 2003c. Field evaluation of herbivore-induced plant volatiles as attractants for beneficial insects: methyl salicylate and the green lacewing, Chrysopa nigricornis. J. Chem. Ecol. 29:1601-1609.
James, D.G. 2005a. Further field evaluation of synthetic herbivore-induced plant volatiles as attractants for beneficial insects. J. Chem. Ecol. 31:481-495.
James, D.G. 2006. Methyl salicylate is a field attractant for the goldeneyed lacewing, Chrysopa oculata. Biocontrol Sci. Techn. 16:107-110.
James, D.G., and Grasswitz, T.R. 2005b. Synthetic herbivore-induced plant volatiles increase field captures of parasitic wasps. Biolog. Control. 50:871-800.
James, D.G., and Price, T.S. 2004. Field testing of methyl salicylate for recruitment and retention of beneficial insects in grapes and hops. J. Chem. Ecol. 30:1613-1628.
James, D.G., Cossé, A., Wright, L.C., and Pérez, J. 2001. Pheromone trapping of Synanthedon tipuliformis (Lepidoptera: Sesiidae) in Washington red currants. Environ. Entomol. 30:663-666.
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Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <>.
Ⓒ 2003-2024 The Pherobase - Extensive Database of Pheromones and Semiochemicals. Ashraf M. El-Sayed.
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