By J.E. Treherne, M.J. Berridge, V.B. Wigglesworth (Eds.)
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Extra info for Advances in Insect Physiology, Vol. 13
WHITE shows measurements taken from an ocellus mounted in insect Ringer in the microspectrophotometer. Traces 1 and 2 are dark scans; curve 3 was recorded after irradiation with yellow light. As a result of irradiation, absorbance dropped at longer wavelengths and rose at somewhat shorter wavelengths with an isosbestic point at 500 nm. As will be later proven, the decline in absorbance was due to loss of rhodopsin, the increase resulted from the formation of a metarhodopsin photoproduct absorbing at shorter wavelengths, and curve 3 represents the photoequilibrium established by the yellow light.
Avigan, J. and Blumer, M. (1968). On the origin of pristane in marine organisms. J. Lipid Res. 9, 350-352. , Milne, G. A. and Highet, R. J. (1967). The Occurrence of pristane and phytane in man and animals. Biochim. Biophys. Acta, 144, 127-131. Baker, E. A. (1974). The influence of environment on leaf wax development in Brassica oleracea var. gemmi4era. New Phytol. 73,955-966. Baker, G. , Vroman, H. E. and Padmore, J. (1963). Hydrocarbons of the American cockroach. Biochem. Biophys. Res. Commun.
Biosynthesis of 2-methylalkanes in the crickets Nemobius fasciarus and Gryllus pennsylvanicus. Biochem. Biophys. Res. Commun. -84 1-849. Blomquist, G. , BlailOck, T. , Scheetz, R. W. and Jackson, L. L. (1976). Cuticular lipids of Insects, VII. Cuticular hydrocarbons of the crickets, Acheta domesticus, Gryllus pennsylvanicus, and Nemobiusfasciatus. Comp. Biochem. Physiol. 54B,38 1-386. LONG-CHAIN METHYL-BRANCHED HYDROCARBONS 27 Blomquist, G. J. and Jackson, L. L. (1973). Incorporation of labelled dietary n-alkanes into cuticular lipids of the grasshopper Melanoplus sanguinipes.