作者
David I Schlipalius, Nicholas Valmas, Andrew G Tuck, Rajeswaran Jagadeesan, Li Ma, Ramandeep Kaur, Anita Goldinger, Cameron Anderson, Jujiao Kuang, Steven Zuryn, Yosep S Mau, Qiang Cheng, Patrick J Collins, Manoj K Nayak, Horst Joachim Schirra, Massimo A Hilliard, Paul R Ebert
发表日期
2012/11/9
期刊
Science
卷号
338
期号
6108
页码范围
807-810
出版商
American Association for the Advancement of Science
简介
Phosphine is a small redox-active gas that is used to protect global grain reserves, which are threatened by the emergence of phosphine resistance in pest insects. We find that polymorphisms responsible for genetic resistance cluster around the redox-active catalytic disulfide or the dimerization interface of dihydrolipoamide dehydrogenase (DLD) in insects (Rhyzopertha dominica and Tribolium castaneum) and nematodes (Caenorhabditis elegans). DLD is a core metabolic enzyme representing a new class of resistance factor for a redox-active metabolic toxin. It participates in four key steps of core metabolism, and metabolite profiles indicate that phosphine exposure in mutant and wild-type animals affects these steps differently. Mutation of DLD in C. elegans increases arsenite sensitivity. This specific vulnerability may be exploited to control phosphine-resistant insects and safeguard food security.
 
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