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A Novel Tenebrio molitor Cadherin Is a Functional Receptor for Bacillus thuringiensis Cry3Aa Toxin

机译:新型的黄粉虫molad钙黏着蛋白是苏云金芽孢杆菌Cry3Aa毒素的功能性受体。

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摘要

Cry toxins produced by the bacterium Bacillus thuringiensis are effective biological insecticides. Cadherin-like proteins have been reported as functional Cry1A toxin receptors in Lepidoptera. Here we present data that demonstrate that a coleopteran cadherin is a functional Cry3Aa toxin receptor. The Cry3Aa receptor cadherin was cloned from Tenebrio molitor larval midgut mRNA, and the predicted protein, TmCad1, has domain structure and a putative toxin binding region similar to those in lepidopteran cadherin B. thuringiensis receptors. A peptide containing the putative toxin binding region from TmCad1 bound specifically to Cry3Aa and promoted the formation of Cry3Aa toxin oligomers, proposed to be mediators of toxicity in lepidopterans. Injection of TmCad1-specific double-stranded RNA into T. molitor larvae resulted in knockdown of the TmCad1 transcript and conferred resistance to Cry3Aa toxicity. These data demonstrate the functional role of TmCad1 as a Cry3Aa receptor in T. molitor and reveal similarities between the mode of action of Cry toxins in Lepidoptera and Coleoptera.
机译:苏云金芽孢杆菌产生的Cry毒素是有效的生物杀虫剂。钙粘蛋白样蛋白已被报道为鳞翅目中的功能性Cry1A毒素受体。在这里,我们提供的数据表明鞘翅目钙粘蛋白是一种功能性Cry3Aa毒素受体。从黄粉虫幼虫中肠mRNA克隆了Cry3Aa受体钙粘蛋白,预测的蛋白质TmCad1具有与鳞翅目钙粘蛋白苏云金芽孢杆菌受体相似的结构域和推定的毒素结合区。含有来自TmCad1的推定毒素结合区的肽与Cry3Aa特异性结合并促进Cry3Aa毒素寡聚体的形成,被认为是鳞翅目动物毒性的介质。将TmCad1特异性双链RNA注入到T. molitor幼虫中导致TmCad1转录物的敲低并赋予了对Cry3Aa毒性的抗性。这些数据证明了TmCad1作为T. molitor中的Cry3Aa受体的功能,并揭示了鳞翅目和鞘翅目中Cry毒素的作用方式之间的相似性。

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