Advances in Insect Physiology, Volume 25
Academic Press, Oct 26, 1994 - Science - 345 pages
Insect physiology is currently undergoing a revolution with the increased application of molecular biological techniques to investigate the molecular mechanisms underlying the physiological responses to insect cells. Advances in Insect Physiology has instituted a commitment to the publication of high quality reviews on molecular biology and molecular genetics in areas where they provide an increased understanding of physiological processes in insects. Volume 25 contains increased coverage on the molecular biology of insect physiology.
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Chapter 2 Genetic Mechanisms of Early Neurogenesis in Drosophila melanogaster
Chapter 3 Molecular Biology of the Honeybee
Color Plates are located between pages 152 and 153
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AcMNPV activity African allatostatin americana amino acid antennal Apis mellifera Autographa californica nuclear axons baculovirus Biol brain californica nuclear polyhedrosis Campos-Ortega capsid cockroach Comp compound eyes crickets detection dipstatin dorsal dragonfly Drosophila melanogaster encoding entomopoxvirus epidermal function gene promoter genetic genome Goodman haemolymph honeybee immunoreactive inhibition of JH insect insect cells interactions interneurones isolated JH biosynthesis JH synthesis L-neurones larvae light linear locust mitochondrial DNA Mizunami molecular moth mtDNA mutants neuroblasts neurogenesis neurogenic genes neurones neuropil nuclear polyhedrosis virus nucleotides ocellar ocellar nerve ocellar neurones ocellar systems ocellar tract ocelli Pathol pathway peptides photoreceptors Physiol polyhedra polyhedrin gene Possee posterior slope potential Pratt production proneural genes protein protocerebrum punctata allatostatin receptors recombinant region replication response retina second-order neurones sensitivity sequence sexta signals species spike structure studies suggested synapses Tateda third-order neurones transcription virion Virol Virology viruses visual systems vitro Woodhead