首页> 美国卫生研究院文献>Toxins >Reduced Expression of a Novel Midgut Trypsin Gene Involved in Protoxin Activation Correlates with Cry1Ac Resistance in a Laboratory-Selected Strain of Plutella xylostella (L.)
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Reduced Expression of a Novel Midgut Trypsin Gene Involved in Protoxin Activation Correlates with Cry1Ac Resistance in a Laboratory-Selected Strain of Plutella xylostella (L.)

机译:在实验室选择的小菜蛾(Plutella xylostella)(L.)菌株中涉及毒素激活的新型中肠胰蛋白酶基因的表达降低与Cry1Ac抗性相关。

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摘要

(Bt) produce diverse insecticidal proteins to kill insect pests. Nevertheless, evolution of resistance to Bt toxins hampers the sustainable use of this technology. Previously, we identified down-regulation of a trypsin-like serine protease gene in the midgut transcriptome and RNA-Seq data of a laboratory-selected Cry1Ac-resistant strain, SZ-R. We show here that reduced expression significantly reduced caseinolytic and trypsin protease activities affecting Cry1Ac protoxin activation, thereby conferring higher resistance to Cry1Ac protoxin than activated toxin in SZ-R strain. Herein, the full-length cDNA sequence of gene was cloned, and we found that it was mainly expressed in midgut tissue in all larval instars. Subsequently, we confirmed that the gene was significantly decreased in SZ-R larval midgut and was further reduced when selected with high dose of Cry1Ac protoxin. Moreover, down-regulation of the gene was genetically linked to resistance to Cry1Ac in the SZ-R strain. Finally, RNAi-mediated silencing of gene expression decreased larval susceptibility to Cry1Ac protoxin in the susceptible DBM1Ac-S strain, supporting that low expression of gene is involved in Cry1Ac resistance in . These findings contribute to understanding the role of midgut proteases in the mechanisms underlying insect resistance to Bt toxins.
机译:(Bt)产生多种杀虫蛋白以杀死害虫。然而,对Bt毒素的抗性进化阻碍了该技术的可持续使用。以前,我们确定了中肠转录组中胰蛋白酶样丝氨酸蛋白酶基因的下调和实验室选择的Cry1Ac抗性菌株SZ-R的RNA-Seq数据。我们在这里显示降低的表达显着降低酪蛋白水解酶和胰蛋白酶蛋白酶的活性,影响Cry1Ac毒素的活化,从而赋予Sry-R菌株比活化毒素更高的Cry1Ac毒素抗性。在此,克隆了该基因的全长cDNA序列,我们发现它主要在所有幼虫的中肠组织中表达。随后,我们证实该基因在SZ-R幼虫中肠中显着减少,并在选择高剂量Cry1Ac毒素时进一步减少。此外,基因的下调与SZ-R菌株对Cry1Ac的抗性遗传相关。最后,RNAi介导的基因表达沉默降低了易感DBM1Ac-S菌株对Cry1Ac毒素的幼虫敏感性,支持该基因的低表达与Cry1Ac耐药有关。这些发现有助于理解中肠蛋白酶在昆虫对Bt毒素的抗性中的作用。

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