Juvenile Hormones and Juvenoids: Modeling Biological Effects and Environmental Fate: QSAR in Environmental and Health Sciences
Editat de James Devillersen Limba Engleză Paperback – 21 noi 2018
Juvenile Hormones and Juvenoids: Modeling Biological Effects and Environmental Fate discusses the various modeling approaches that can be used to study the mechanism of action of JHs in insects and to estimate the adverse effects and the environmental fate of the juvenoids that mimic their activity. This book is the third of the QSAR in Environmental and Health Sciences series, but the first dedicated to the use of QSAR and other in silico techniques to provide these insights into JHs and their analogs.
With contributions by an international team of scientists, the book begins with a historical survey of JHs and juvenoids. It then discusses biosynthesis of sesquiterpenoids followed by chapters covering JH activity such as morph-specific JH titers in crickets, and JH analog activity including soldier-specific organ development in termites and the role of methoprene in gene transcription. The book examines modeling approaches applied to resistance to JH analogs, to population dynamics of nontarget species in the presence of juvenoids, and to SAR and QSAR of JH mimics. The book concludes with a discussion on the use of multicriteria analysis for selecting insecticides for vector control.
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Specificații
ISBN-13: 9781138382206
ISBN-10: 1138382205
Pagini: 401
Ilustrații: 225
Dimensiuni: 156 x 234 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria QSAR in Environmental and Health Sciences
Locul publicării:Boca Raton, United States
ISBN-10: 1138382205
Pagini: 401
Ilustrații: 225
Dimensiuni: 156 x 234 mm
Greutate: 0.45 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria QSAR in Environmental and Health Sciences
Locul publicării:Boca Raton, United States
Cuprins
Juvenile Hormones and Juvenoids: A Historical Survey. Future Perspectives for Research on the Biosynthesis of Juvenile Hormones and Related Sesquiterpenoids in Arthropod Endocrinology and Ecotoxicology. Morph-Specific JH Titer Regulation in Wing-Polymorphic Gryllus Crickets: Proximate Mechanisms Underlying Adaptive Genetic Modification of JH Regulation. Soldier-Specific Organ Developments Induced by a Juvenile Hormone Analog in a Nasute Termite. Roles of Juvenile Hormone Analog Methoprene in Gene Transcription. Modeling Resistance to Juvenile Hormone Analogs: Linking Evolution, Ecology, and Management. Population Dynamics Models for Assessing the Endocrine Disruption Potential of Juvenile Hormone Analogues on Nontarget Species. SAR and QSAR Modeling of Juvenile Hormone Mimics. Using CoMFA and CoMSIA as Tools in a 3D QSAR Analysis of Juvenile Hormone Agonist Action in Drosophila. Predicting Highly Potent Juvenile Hormone Esterase Inhibitors from 2D QSAR Modeling. Receptor-Guided Structure–Activity Modeling of Inhibitors of Juvenile Hormone Epoxide Hydrolases. Structural Studies of Juvenile Hormone-Binding Proteins. In Silico Stereoelectronic Profile and Pharmacophore Similarity Analysis of Juvenile Hormone, Juvenile Hormone Mimics (IGRs), and Insect Repellents May Aid Discovery and Design of Novel Arthropod Repellents. Use of Multicriteria Analysis for Selecting Candidate Insecticides for Vector Control. Index.
Notă biografică
James Devillers has authored/edited 13 books and published more than 200 peer-reviewed papers and book chapters in QSAR and (eco)toxicology modeling. He is editor-in-chief of the journal SAR and QSAR in Environmental Research (Taylor & Francis) and editor of the series of books QSAR in Environmental and Health Sciences (CRC Press). James Devillers is also member of the editorial boards of Ecological Modelling (Elsevier), Xenobiotica (Taylor & Francis), and Current Bioactive Compounds (Bentham Science).
Descriere
Juvenile hormones (JHs) affect most stages of the insect life-cycle as well as their physiological functions. Juvenoids, manmade chemicals that mimic the actions of JHs, can be used to disrupt the endocrine system of insects, making them particularly suited as larvicides for the control of pest and disease vectoring insects. This book presents various modeling approaches and computational methods that can be used to study the mechanism of action of JHs in insects and to estimate the adverse effects and the environmental fate of juvenoids.