Hormonal regulation in insects: facts, gaps, and future directions

Гормональная регуляция у насекомых: факты, пробелы и перспективные направления
Gerd GÄde, Klaus H. Hoffmann, Jeffrey H. Spring
1997-10-01

ecdysteroidsinsect hormonesinsect pest managementjuvenile hormonesneuropeptide hormones
There are two main classes of hormones in insects: 1) the true hormones produced by epithelial glands and belonging to the ecdysteroids or juvenile hormones and 2) the neuropeptide hormones produced by neurosecretory cells. Members of these classes regulate physiological, developmental, and behavioral events in insects. Detailed accounts are given on isolation, identification, structure-activity relationships, mode of action, biological function, biosynthesis, inactivation, metabolism, and feedback for hormones involved in 1) metabolic regulation such as the adipokinetic/hypertrehalosemic peptides and the diuretic and antidiuretic peptides; 2) stimulation or inhibition of muscle activity such as the myotropic peptides; 3) control of reproduction, growth, and development such as allatotropins, allatostatins, juvenile hormones, ecdysteroids, folliculostimulins and folliculostatins, ecdysis-triggering and eclosion hormones, pheromone biosynthesis activating neuropeptides, and diapause hormones; and 4) regulation of tanning and of color change. Because of the improvements in techniques for isolation and structure elucidation, there has been rapid progress in our knowledge of the chemistry of certain neuropeptide families. With the employment of molecular biological techniques, the genes of some neuropeptides have been successfully characterized. There are, however, areas that are still quite underdeveloped. These are, for example, 1) receptor studies, which are still in their infancy; 2) the hormonal status of certain sequenced peptides is not clarified; and 3) functional studies are lacking even for established hormones. The authors plead for a concerted effort to continue research in this field, which will also advance our knowledge into the use of insect hormones as safer and species-specific molecules for insect pest management.
1
Concerted research could support the development of safer, species-specific insect hormones for pest management.
2
Improved isolation, structural-analysis, and molecular-biology techniques have rapidly expanded knowledge of neuropeptide chemistry and enabled characterization of some neuropeptide genes.
3
Insect hormones comprise gland-derived ecdysteroids and juvenile hormones, plus neuropeptides produced by neurosecretory cells.
4
Major knowledge gaps remain in hormone-receptor studies, confirmation of hormonal activity for sequenced peptides, and functional analysis of even established hormones.
5
These hormone classes regulate insect metabolism, muscle activity, reproduction, growth, development, ecdysis, tanning, and color change.

Insect hormones, including ecdysteroids, juvenile hormones, and neuropeptide hormones

Their regulation of physiological, developmental, and behavioral processes, including mechanisms of action, biosynthesis, metabolism, feedback, receptor activity, and biological functions

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1997-10-01
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Gerd GÄde
Klaus H. Hoffmann
Jeffrey H. Spring
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