In this study we discuss why planting non-Bacillus thuringiensis (non-Bt) cotton as a refuge crop in China (and other developing countries) may not be economically optimal. To show this, we develop a bioeconomic model to run simulations that will help find the optimal strategies for managing the joint resistance of pests to the Bt toxin and conventional pesticides. We show that the approach of not requiring non-Bt cotton as a refuge is defensible given initial conditions and parameters calibrated to China's cotton production environment. Of special importance is the existence of natural refuge crops. The nature of transaction costs associated with implementing a refuge policy is also considered. Oxford University Press and Foundation for th...
Refuge requirements for Bt cotton varieties were examined for three cotton-growing regions in India,...
China is one of the major cotton producers globally with small farmers. Lepidopteran pests have alwa...
Economic analysis of chemical pesticide use has shown that the interactions between plants, pests, d...
In this study we discuss why planting non-Bacillus thuringiensis (non-Bt) cotton as a refuge crop in...
The goal of this study is to discuss why China and perhaps other developing countries may not need a...
In the context of genetically modified crops expressing the Bacillus thuringiensis (Bt) toxin, a 're...
This study examined the efficient refuge policies for Bt cotton for three cotton growing regions in ...
The 'high-dose-refuge' (HDR) strategy is widely recommended by the biotechnology industry and regula...
We use a regulatory model with resistance evolution in two pests to insecticidal Bt cotton and pyret...
Modelling is a common tool for evaluating the sustainability of Bt crops. We previously used modelli...
We examine producer behavior, resistance evolution, and returns under alternative refuge requirement...
Abstract Genetically engineered crops expressing Bacillus thuringiensis (Bt) Cry toxins have transfo...
Since cotton producers do not own legal rights to kill insect populations that are susceptible to in...
make verbatim copies of this document for non-commercial purposes by any means, provided that this c...
Transgenic plants producing insecticidal protein derived from Bacillus thuringiensis (Bt) have been ...
Refuge requirements for Bt cotton varieties were examined for three cotton-growing regions in India,...
China is one of the major cotton producers globally with small farmers. Lepidopteran pests have alwa...
Economic analysis of chemical pesticide use has shown that the interactions between plants, pests, d...
In this study we discuss why planting non-Bacillus thuringiensis (non-Bt) cotton as a refuge crop in...
The goal of this study is to discuss why China and perhaps other developing countries may not need a...
In the context of genetically modified crops expressing the Bacillus thuringiensis (Bt) toxin, a 're...
This study examined the efficient refuge policies for Bt cotton for three cotton growing regions in ...
The 'high-dose-refuge' (HDR) strategy is widely recommended by the biotechnology industry and regula...
We use a regulatory model with resistance evolution in two pests to insecticidal Bt cotton and pyret...
Modelling is a common tool for evaluating the sustainability of Bt crops. We previously used modelli...
We examine producer behavior, resistance evolution, and returns under alternative refuge requirement...
Abstract Genetically engineered crops expressing Bacillus thuringiensis (Bt) Cry toxins have transfo...
Since cotton producers do not own legal rights to kill insect populations that are susceptible to in...
make verbatim copies of this document for non-commercial purposes by any means, provided that this c...
Transgenic plants producing insecticidal protein derived from Bacillus thuringiensis (Bt) have been ...
Refuge requirements for Bt cotton varieties were examined for three cotton-growing regions in India,...
China is one of the major cotton producers globally with small farmers. Lepidopteran pests have alwa...
Economic analysis of chemical pesticide use has shown that the interactions between plants, pests, d...