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Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 8/2011, Volume 108, Issue 34, pp. 14037 - 14042
The soil bacterium Bacillus thuringiensis (Bt) is the most successfully used biopesticide in agriculture, and its insecticidal protein genes are the primary... 
Larvae | Midgut | Bacillus thuringiensis | Genes | Proteomics | Cadherins | Toxins | Transgenic insects | Insect genetics | Microvilli | HELICOVERPA-ARMIGERA | HELIOTHIS-VIRESCENS LARVAE | GENE | PLUTELLA-XYLOSTELLA | FIELD | MULTIDISCIPLINARY SCIENCES | INSECT RESISTANCE | DELTA-ENDOTOXIN | LEPIDOPTERA | BINDING | BT CROPS | Gene Expression Regulation, Enzymologic - drug effects | Transcription, Genetic - drug effects | Bacillus thuringiensis - chemistry | Molecular Weight | Genes, Insect - genetics | Insecticide Resistance - genetics | Molecular Sequence Data | Gene Expression Profiling | RNA, Messenger - metabolism | Moths - genetics | Bacterial Proteins - toxicity | Digestive System - drug effects | Larva - drug effects | Protein Binding - drug effects | Hemolysin Proteins - toxicity | Insecticide Resistance - drug effects | Larva - genetics | Insect Proteins - metabolism | Genetic Linkage | Digestive System - metabolism | Electrophoresis, Polyacrylamide Gel | RNA, Messenger - genetics | Insect Proteins - genetics | CD13 Antigens - metabolism | Microvilli - drug effects | Animals | CD13 Antigens - genetics | Microvilli - metabolism | Brassica - parasitology | Moths - enzymology | Endotoxins - toxicity | Moths - drug effects | Evolutionary biology | Aminopeptidases | Physiological aspects | Genetic aspects | Research | Moths | Biological Sciences
Journal Article
PLoS ONE, ISSN 1932-6203, 01/2012, Volume 7, Issue 1, p. e29975
Transgenic crops producing insecticidal proteins from Bacillus thuringiensis (Bt) kill some key insect pests, but evolution of resistance by pests can reduce... 
BACILLUS-THURINGIENSIS | YANGTZE-RIVER VALLEY | HELICOVERPA-ARMIGERA LEPIDOPTERA | MULTIDISCIPLINARY SCIENCES | INSECT RESISTANCE | TRANSGENIC COTTON | PEST-MANAGEMENT | FIELD-EVOLVED RESISTANCE | PECTINOPHORA-GOSSYPIELLA | SUPPRESSION | NOCTUIDAE | Geography | Gossypium - metabolism | Gossypium - toxicity | Hemolysin Proteins - genetics | Humans | Insecticide Resistance - genetics | Insect Control - statistics & numerical data | Incidence | Bacterial Proteins - toxicity | Bacillus thuringiensis - genetics | Larva - drug effects | China | Plants, Genetically Modified | Hemolysin Proteins - toxicity | Moths - physiology | Insecticide Resistance - drug effects | Insect Control - methods | Endotoxins - metabolism | Endotoxins - genetics | Larva - metabolism | Bacterial Proteins - genetics | Survival | Moths - growth & development | Animals | Insecticides - metabolism | Gossypium - genetics | Bacterial Proteins - metabolism | Larva - physiology | Insecticides - toxicity | Endotoxins - toxicity | Hemolysin Proteins - metabolism | Cotton industry | Genetically modified crops | Genetic engineering | Tactics | Economic models | Crops | Bioassays | Cry1Ac toxin | Science | Rivers | Pests | Cotton | Transgenic plants | Proteins | Plant diseases | Insecticide resistance | Insects | Host plants | Evolution | Pest resistance | Toxins | Diagnostic systems | Refuges
Journal Article
Insect Biochemistry and Molecular Biology, ISSN 0965-1748, 03/2020, Volume 118, p. 103306
Journal Article
Pest Management Science, ISSN 1526-498X, 01/2020, Volume 76, Issue 1, pp. 67 - 74
BACKGROUND Better understanding of the molecular basis of resistance is needed to improve management of pest resistance to transgenic crops that produce... 
cotton | transcription | Bacillus thuringiensis | resistance | Cry toxin
Journal Article
International Journal of Biochemistry and Cell Biology, ISSN 1357-2725, 09/2016, Volume 78, pp. 106 - 115
Journal Article
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