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Our laboratory studies the biochemical and molecular basis of insect midgut physiology and interactions of the midgut with host plants and microbial pathogens. The research objectives are multifaceted. Our fundamental research aims at the understanding of important physiological and defensive mechanisms in the midgut and identifying novel target sites for insect control. Current research projects are focused on the identification and functional studies of midgut genes and their protein products, and molecular genetics of resistance to insecticidal toxins in a lepidopteran, Trichoplusia ni, using both biochemical and molecular approaches and genomic and proteomic technologies. Particularly, we are interested in the midgut genes and their products that play important roles in metabolism of and adaptation to plant chemicals, in interaction with microbial pathogens and in resistance to Bacillus thuringiensis toxins.
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BMC Biologyno. 1 (2024): 1-13
George M. Stack, Stephen Snyder,Jacob A. Toth, Michael A. Quade, Jamie L. Crawford, Ohn K. McKay, John Nicholas Jackowetz,Ping Wang,Glenn Philippe,Julie L. Hansen,Virginia M. Moore,Jocelyn K. C. Rose,
Marine drugsno. 6 (2023): 332-332
Yi Chen,Ting Fang,He Su, Sifei Duan,Ruirui Ma,Ping Wang,Lin Wu, Wenbin Sun, Qichen Hu,Meixia Zhao,Lianjun Sun,Xuehui Dong
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