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首页> 外文期刊>Insect Biochemistry and Molecular Biology >The mitogen-activated protein kinase p38 is involved in insect defense against Cry toxins from Bacillus thuringiensis
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The mitogen-activated protein kinase p38 is involved in insect defense against Cry toxins from Bacillus thuringiensis

机译:丝裂原激活的蛋白激酶p38参与了对苏云金芽孢杆菌Cry毒素的昆虫防御

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摘要

The insecticidal Cry toxins are pore-forming toxins produced by the bacteria Bacillus thuringiensis that disrupt insect-midgut cells. In this work we analyzed the response of two different insect orders, the Lepidopteran Manduca sexta and Dipteran Aedes aegypti to highly specific Cry toxins, Cry1Ab and Cry11Aa, respectively. One pathway activated in different organisms in response to a variety of pore-forming toxins is the mitogen-activated protein kinase p38 pathway (MAPK p38) that activates a complex defense response. We analyzed the MAPK p38 activation by immunodetection of its phosphorylated isoform, and the induction of p38 by RT-PCR, real-time PCR quantitative assays and immunodetection. We show that MAPK p38 is activated at postraductional level after Cry toxin intoxication in both insect orders. We detected the p38 induction at the transcriptional and traductional level, and observed a different response. In these three levels, we found that both insects respond to Cry toxin action but M. sexta responses more strongly than A. aegypti. Gene silencing of MAPK p38 in vivo, resulted in both insect species becoming hypersensitive to Cry toxin action, suggesting that the MAPK p38 pathway is involved in insect defense against Bt Cry toxins. This finding may have biotechnological applications for enhancing the activity of some Bt Cry toxins against specific insect pests.
机译:杀虫性Cry毒素是由苏云金芽孢杆菌产生的成孔毒素,可破坏昆虫中肠细胞。在这项工作中,我们分析了两种不同的昆虫纲,鳞翅目曼杜卡六倍体和埃及伊蚊,对高度特异性的Cry毒素Cry1Ab和Cry11Aa的响应。响应多种成孔毒素而在不同生物中激活的途径之一是激活复杂防御反应的促分裂原活化蛋白激酶p38途径(MAPK p38)。我们通过免疫检测其磷酸化同工型分析了MAPK p38的活化,并通过RT-PCR,实时PCR定量测定和免疫检测对p38的诱导进行了分析。我们表明在两个昆虫订单中Cry毒素中毒后,在诱捕后水平激活MAPK p38。我们在转录和转导水平检测到p38诱导,并观察到不同的反应。在这三个级别中,我们发现两种昆虫均对Cry毒素的反应有反应,但对性分枝杆菌的反应比埃及伊蚊更为强烈。体内MAPK p38的基因沉默导致两种昆虫对Cry毒素的作用变得高度敏感,这表明MAPK p38途径参与了昆虫对Bt Cry毒素的防御。这一发现可能具有生物技术应用,可增强某些Bt Cry毒素对特定害虫的活性。

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