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Journal of Invertebrate Pathology
|
December 6, 2011
Characterization of a new highly mosquitocidal isolate of Bacillusthuringiensis--an alternative to Bti?
Wenfei Zhang, Neil Crickmore, Zenas George, et al.
Journal of Agricultural and Food Chemistry
|
January 2, 2025
Characterization of an Ecdysone Oxidase from <i>Plutella xylostella</i> (L.) and Its Role in Bt Cry1Ac Resistance
Lina Dong, Liuhong Zhu, Zhouqiang Cheng, et al.
Pest Management Science
|
April 21, 2026
Down-regulation of the PxJHE2 gene elevates juvenile hormone titers and compensates for fitness costs of Bt Cry1Ac resistance in Plutella xylostella (L.)
Zhouqiang Cheng, Yang Bai, Liuhong Zhu, et al.
Journal of Advanced Research
|
September 19, 2024
Expression reduction and a variant of a P450 gene mediate chlorpyrifos resistance in Tetranychus urticae Koch
Dandan Xu, Haojie Liao, Chao He, et al.
Pesticide Biochemistry and Physiology
|
December 4, 2022
Cyclosporin A acts as a novel insecticide against Cry1Ac-susceptible and -resistant Helicoverpa armigera
Jizhen Wei, Shaokai Liu, Kai Wang, et al.
Genetics
|
August 16, 2011
Parallel evolution of Bacillus thuringiensis toxin resistance in lepidoptera
Simon W Baxter, Francisco R Badenes-Pérez, Anna Morrison, et al.
Environmental Toxicology and Pharmacology
|
February 5, 2013
Effects of glutathione-S-transferase polymorphisms on the risk of breast cancer: a population-based case-control study in Pakistan
Asma Sohail, Nazia Kanwal, Muhammad Ali, et al.
Fundamental Research
|
April 17, 2025
The role of GPI-anchored membrane-bound alkaline phosphatase in the mode of action of Bt Cry1A toxins in the diamondback moth
Dan Sun, Qiuchen Xu, Le Guo, et al.
Plos Genetics
|
February 3, 2022
MAPK-mediated transcription factor GATAd contributes to Cry1Ac resistance in diamondback moth by reducing PxmALP expression
Le Guo, Zhouqiang Cheng, Jianying Qin, et al.
Nature Communications
|
October 12, 2022
A single transcription factor facilitates an insect host combating Bacillus thuringiensis infection while maintaining fitness
Zhaojiang Guo, Le Guo, Jianying Qin, et al.
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of 9
Search research articles
Search
Showing results (71-80 of 90) with videos related to
Sort By:
Page
of 9
Journal of Invertebrate Pathology
|
December 6, 2011
Characterization of a new highly mosquitocidal isolate of Bacillusthuringiensis--an alternative to Bti?
Wenfei Zhang, Neil Crickmore, Zenas George, et al.
Journal of Agricultural and Food Chemistry
|
January 2, 2025
Characterization of an Ecdysone Oxidase from <i>Plutella xylostella</i> (L.) and Its Role in Bt Cry1Ac Resistance
Lina Dong, Liuhong Zhu, Zhouqiang Cheng, et al.
Pest Management Science
|
April 21, 2026
Down-regulation of the PxJHE2 gene elevates juvenile hormone titers and compensates for fitness costs of Bt Cry1Ac resistance in Plutella xylostella (L.)
Zhouqiang Cheng, Yang Bai, Liuhong Zhu, et al.
Journal of Advanced Research
|
September 19, 2024
Expression reduction and a variant of a P450 gene mediate chlorpyrifos resistance in Tetranychus urticae Koch
Dandan Xu, Haojie Liao, Chao He, et al.
Pesticide Biochemistry and Physiology
|
December 4, 2022
Cyclosporin A acts as a novel insecticide against Cry1Ac-susceptible and -resistant Helicoverpa armigera
Jizhen Wei, Shaokai Liu, Kai Wang, et al.
Genetics
|
August 16, 2011
Parallel evolution of Bacillus thuringiensis toxin resistance in lepidoptera
Simon W Baxter, Francisco R Badenes-Pérez, Anna Morrison, et al.
Environmental Toxicology and Pharmacology
|
February 5, 2013
Effects of glutathione-S-transferase polymorphisms on the risk of breast cancer: a population-based case-control study in Pakistan
Asma Sohail, Nazia Kanwal, Muhammad Ali, et al.
Fundamental Research
|
April 17, 2025
The role of GPI-anchored membrane-bound alkaline phosphatase in the mode of action of Bt Cry1A toxins in the diamondback moth
Dan Sun, Qiuchen Xu, Le Guo, et al.
Plos Genetics
|
February 3, 2022
MAPK-mediated transcription factor GATAd contributes to Cry1Ac resistance in diamondback moth by reducing PxmALP expression
Le Guo, Zhouqiang Cheng, Jianying Qin, et al.
Nature Communications
|
October 12, 2022
A single transcription factor facilitates an insect host combating Bacillus thuringiensis infection while maintaining fitness
Zhaojiang Guo, Le Guo, Jianying Qin, et al.
Page
of 9