Global Pesticide Resistance in Arthropods

Global Pesticide Resistance in Arthropods PDF

Author: Mark Edward Whalon

Publisher: CABI

Published: 2008

Total Pages: 177

ISBN-13: 1845933532

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Pesticide resistance has had a substantial impact on crop production and has been an important driver of change in modern agriculture, animal production and human health. Due to increased selection pressure, this resistance can be linked to export/import health and phytosanitary standards, invasive species eradication projects and global pandemics. However, the development of new biological and chemical products and the use of integrated pest management strategies have been successful in reducing pesticide resistance. Focusing specifically on arthropods, this book provides a comprehensive review of relevant issues in pesticide resistance. Detailed listings and references to all documented reports of resistance from around the world are included as well as discussions on the mechanisms and evolution of resistance and management techniques.

Pesticide Resistance in Arthropods

Pesticide Resistance in Arthropods PDF

Author: Richard Roush

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 312

ISBN-13: 1468464299

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Bruce E. Tabashnik and Richard T. Roush Pesticide resistance is an increasingly urgent worldwide problem. Resistance to one or more pesticides has been documented in more than 440 species of insects and mites. Resistance in vectors of human dise8se, particularly malaria-transmit ting mosquitoes, is a serious threat to public health in many nations. Agricultural productivity is jeopardized because of widespread resistance in crop and livestock pests. Serious resistance problems are also evident in pests of the urban environ ment, most notably cockroaches. Better understanding of pesticide resistance is needed to devise techniques for managing resistance (Le. , slowing, preventing, or reversing development of resistance in pests and promoting it in beneficial natural enemies). At the same time, resistance is a dramatic example of evolution. Knowledge of resistance can thus provide fundamental insights into evolution, genetics, physiology, and ecology. Resistance management can help to reduce the harmful effects of pesticides by decreasing rates of pesticide use and prolonging the efficacy of environmentally safe pesticides. In response to resistance problems, the concentration or frequency of pesticide applications is often increased. Effective resistance management would reduce this type of increased pesticide use. Improved monitoring of resis tance would also decrease the number of ineffective pesticide applications that are made when a resistance problem exists but has not been diagnosed. Resistance often leads to replacement of one pesticide with another that is more expensive and less compatible with alternative controls.

Global Pesticide Resistance in Arthropods

Global Pesticide Resistance in Arthropods PDF

Author: Mark Edward Whalon

Publisher: CABI

Published: 2008

Total Pages: 179

ISBN-13: 1845933796

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Focusing specifically on arthropods, this book provides a comprehensive review of relevant issues in pesticide resistance. It includes listings and references to documented reports of resistance from around the world, as well as discussions on the mechanisms and evolution of resistance and management techniques.

The Future Role of Pesticides in US Agriculture

The Future Role of Pesticides in US Agriculture PDF

Author: National Research Council

Publisher: National Academies Press

Published: 2000-11-02

Total Pages: 325

ISBN-13: 0309172942

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Although chemical pesticides safeguard crops and improve farm productivity, they are increasingly feared for their potentially dangerous residues and their effects on ecosystems. The Future Role of Pesticides explores the role of chemical pesticides in the decade ahead and identifies the most promising opportunities for increasing the benefits and reducing the risks of pesticide use. The committee recommends R&D, program, and policy initiatives for federal agriculture authorities and other stakeholders in the public and private sectors. This book presents clear overviews of key factors in chemical pesticide use, including: Advances in genetic engineering not only of pest-resistant crops but also of pests themselves. Problems in pesticide useâ€"concerns about the health of agricultural workers, the ability of pests to develop resistance, issues of public perception, and more. Impending shifts in agricultureâ€"globalization of the economy, biological "invasions" of organisms, rising sensitivity toward cross-border environmental issues, and other trends. With a model and working examples, this book offers guidance on how to assess various pest control strategies available to today's agriculturist.

Ecological and Evolutionary Aspects of Insecticide Resistance

Ecological and Evolutionary Aspects of Insecticide Resistance PDF

Author: John A. McKenzie

Publisher:

Published: 1996

Total Pages: 204

ISBN-13:

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This comprehensive book addresses the ecological & evolutionary forces that shape the response of insect populations to attempted control by chemical insecticides. Through broad coverage of the literature, the author investigates phenotypic basis of the change from susceptibility to resistance at genetic, molecular, & biochemical levels, & then relates the results to the most effective strategies for managing resistance. Within this framework, this book critically analyzes areas of current research, & identifies areas of future research. Dr. McKenzie emphasizes the necessity of a pure research approach to understanding the evolution of resistance & he asserts that resistance systems are ideal models for tackling questions of general ecological & evolutionary interest.

The Resistance Phenomenon in Microbes and Infectious Disease Vectors

The Resistance Phenomenon in Microbes and Infectious Disease Vectors PDF

Author: Institute of Medicine

Publisher: National Academies Press

Published: 2003-03-26

Total Pages: 333

ISBN-13: 0309168309

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The resistance topic is timely given current events. The emergence of mysterious new diseases, such as SARS, and the looming threat of bioterrorist attacks remind us of how vulnerable we can be to infectious agents. With advances in medical technologies, we have tamed many former microbial foes, yet with few new antimicrobial agents and vaccines in the pipeline, and rapidly increasing drug resistance among infectious microbes, we teeter on the brink of loosing the upperhand in our ongoing struggle against these foes, old and new. The Resistance Phenomenon in Microbes and Infectious Disease Vectors examines our understanding of the relationships among microbes, disease vectors, and human hosts, and explores possible new strategies for meeting the challenge of resistance.

Pest Resistance to Pesticides

Pest Resistance to Pesticides PDF

Author: G. P. Georghiou

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 804

ISBN-13: 1468444662

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The development of resistance to pesticides is generally acknowledged as one of the most serious obstacles to effective pest control today. Since house flies first developed resistance to DDT in 1946, more than 428 species of arthropods, at least 91 species of plant pathogens, five species of noxious weeds and two species of nematodes were reported to have developed strains resistant to on~ or more pesticides. A seminar of U. S. and Japanese scientists was held in Palm Springs, California, during December 3-7, 1979, under the U. S. -Japan Cooperative Science Program, in order to evaluate the status of research on resistance and to discuss directions for future emphasis. A total of 32 papers were presented under three principal topics: Origins and Dynamics of Resistance (6), Mechanisms of Resistance (18), and Suppression and Management of Resistance (8). The seminar was unique in that it brought together for the first time researchers from the disciplines of entomology, plant pathology and weed science for a comprehensive discussion of this common problem. Significant advances have been identified in (a) the development of methods for detection and monitoring of resistance in arthropods (electrophoresis, diagnostic dosage tests) and plant pathogens, (b) research on biochemical and physiological mechanisms of resis tance (cytochrome p450, sensitivity of target site, gene regulation), (c) the identification and quantification of biotic, genetic and operational factors influencing the evolution of resistance, and (d) the exploration of pest management approaches incorporating resis tance-delaying measures.