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首页> 外文期刊>Pesticide Biochemistry and Physiology >Comprehensive analysis of Cry1Ac protoxin activation mediated by midgut proteases in susceptible and resistant Plutella xylostella (L.)
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Comprehensive analysis of Cry1Ac protoxin activation mediated by midgut proteases in susceptible and resistant Plutella xylostella (L.)

机译:中肠蛋白酶介导的Cry1Ac protoxin激活综合分析,易受抗性抗菌菌(L.)(L.)介导

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摘要

Insecticidal Cry toxins produced by Bacillus thuringiensis (Bt) have been widely used to control agricultural pests in both foliage sprays and transgenic crops. Nevertheless, rapid evolution of insect resistance to Cry toxins requires elucidation of the molecular mechanisms involved in Cry resistance. Two proposed models have been described to explain the toxicity of Cry proteins, the classic model states that Cry protoxin is activated by midgut proteases resulting in activated toxin that binds to receptors and forms a pore in the midgut cells triggering larval death, and the newly proposed dual model of the mode of action of Bt Cry toxins states that protoxin and activated toxins may have different mechanisms of action since several resistant strains to activated Cry toxins are still susceptible to the same Cry-protoxin. Protoxin activation by midgut proteases is a key step in both models. Herein, we evaluated Cry1Ac protoxin activation in a susceptible Plutella xylostella (L.) strain (DBM1AcS) and in the near-isogenic strain (NIL-R) with high field-evolved Cry1Ac resistance. Previous work showed that Cry1Ac resistance in NIL-R correlates with reduced binding to midgut receptors due to enhanced MAPK signaling pathway and down regulation of ABCC2 receptor. However, reduced midgut trypsin levels and altered midgut protease gene transcription were also observed in the Cry1Ac-resistant field isolated strain that is parent of the NIL-R strain. Therefore, we analyzed the midgut protease activities in both DBM1Ac-S and NIL-R strains. Detection of enzymatic activities showed that caseinolytic protease, trypsin and chymotrypsin activities were not significantly different between the susceptible and resistant strains. Furthermore, treatment with different trypsin or chymotrypsin inhibitors, such as N alpha-tosyl-L-lysine chloromethyl ketone (TLCK) or N alpha-tosyl-L-phenylalanine chloromethyl ketone (TPCK) did not affect the susceptibility to Cry1Ac protoxin of the DBM1Ac-S and NIL-R larvae. Bioassay results indicated that the NIL-R larvae showed similar resistant levels to both CrylAc protoxin and trypsin-activated toxin. Taken together, our results demonstrated that high-level field-evolved Cry1Ac resistance in the NIL-R strain is independent of Cry1Ac protoxin activation and the specific protoxin mechanism of action. This discovery will strengthen our comprehensive understanding of the complex mechanistic basis of Bt resistance in different insects.
机译:由芽孢杆菌(BT)产生的杀虫剂哭泣毒素已被广泛用于控制两种叶子喷雾和转基因作物中的农业害虫。然而,抗虫毒素的快速演变需要阐明抑制抗致性的分子机制。已经描述了两种提出的模型来解释乳胶蛋白的毒性,经典模型指出,乳胶蛋毒由中肠蛋白激活,得到的活性毒素与受体结合并在引发幼虫死亡中形成孔隙中的孔,并在引发幼虫死亡中形成孔隙,以及新提出的BT哭泣毒素的作用方式的双模型指出,原生素和活化毒素可能具有不同的作用机制,因为对活化咔氏毒素的几种抗性菌株仍然易于相同的乳蛋白酶。 Midgut蛋白酶的预毒激活是两种模型的关键步骤。在此,我们在易感Plutella Xylostella(L.)菌株(DBM1Ac)中的Cry1Ac预毒激活和具有高场进化的Cry1Ac抗性的近似同学菌株(NIL-R)中的Cry1Ac预毒素活化。以前的工作表明,由于增强的MAPK信号传导途径和ABCC2受体的下调调节,NIL-R中的Cry1Ac抗性与与中小肠受体的结合减少相关。然而,在Cry1Ac抗磁场分离的菌株中也观察到降低的中脑胰蛋白酶水平和改变的中间蛋白酶基因转录,其是NIL-R菌株的父母。因此,我们分析了DBM1AC-S和NIL-R菌株中的中肠蛋白酶活性。酶活性的检测显示,敏感和抗性菌株之间的酪蛋白溶液和胰蛋白酶活性没有显着差异。此外,用不同的胰蛋白酶或胰蛋白酶素抑制剂处理,例如Nα-酪蛋白-1-赖氨酸氯甲基酮(Tlck)或Nα-甲酰基-1-苯丙氨酸氯甲基酮(TPCK)并未影响DBM1AC的Cry1Ac protoxin的敏感性-s和nil-r幼虫。生物测定结果表明,尼尔-R幼虫显示出类似的抗蛋白激素和胰蛋白酶活化毒素的抗性水平。我们的结果表明,NIL-R菌株中的高级现场演化的Cry1Ac抗性与Cry1Ac protoxin活化和特定的产毒素作用机制无关。这一发现将加强对不同昆虫中BT抗性的复杂机制基础的全面理解。

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  • 作者单位

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

    Univ Nacl Autonoma Mexico Inst Biotecnol Dept Microbiol Mol Apdo Postal 510-3 Cuernavaca 62250 Morelos Mexico;

    Univ Nacl Autonoma Mexico Inst Biotecnol Dept Microbiol Mol Apdo Postal 510-3 Cuernavaca 62250 Morelos Mexico;

    Chinese Acad Agr Sci Inst Vegetables &

    Flowers Dept Plant Protect 12 Zhongguancun South St Beijing 100081 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护 ;
  • 关键词

    Bacillus thuringiensis; Plutella xylostella; Cry1Ac resistance; Proteolytic activation; Midgut proteases;

    机译:芽孢杆菌毛茛属植物;Plutella Xylostella;Cry1Ac抗性;蛋白水解活化;中肠蛋白酶;

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