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首页> 外文期刊>The Journal of Biochemistry >Molecular characterization and expression pattern of four chemosensory proteins from diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae).
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Molecular characterization and expression pattern of four chemosensory proteins from diamondback moth, Plutella xylostella (Lepidoptera: Plutellidae).

机译:小菜蛾(Plutella xylostella)(鳞翅目:Plutellidae)中四种化学感应蛋白的分子表征和表达模式。

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Some chemosensory proteins (CSPs) expressed in insect sensory appendages are thought to be involved in chemical signaling in moths. We cloned and characterized four CSP genes from Plutella xylostella. The deduced amino acid sequences of PxylCSP1, PxylCSP2, PxylCSP3 and PxylCSP4 revealed open reading frames of 152, 128, 126 and 126 amino acids, respectively, with four conserved cysteine residues. The expression patterns of the four PxylCSP genes were further investigated by reverse transcription (RT) PCR and real-time PCR. PxylCSP1 and PxylCSP2 genes were expressed in all the tested tissues with the highest expression level in the antennae and heads (without antennae) whereas PxylCSP3 and PxylCSP4 mRNA were distributed extensively in all the tested tissues without apparent quantitative differences. The transcription levels of these CSP genes depended on sex, age, mating and the genes. Fluorescence quenching with Rhodojaponin-III (R-III) and homology modelling studies indicated that PxylCSP1 was able to bind non-volatile oviposition deterrents, such as R-III. These ubiquitous proteins might have the role of extracting non-volatile compounds (oviposition deterrents or antifeedants) dispersed in the environment and transporting them to their receptor.
机译:昆虫感觉附件中表达的一些化学感觉蛋白(CSP)被认为与飞蛾的化学信号有关。我们从小菜蛾(Plutella xylostella)克隆并表征了四个CSP基因。推导的PxylCSP1,PxylCSP2,PxylCSP3和PxylCSP4氨基酸序列揭示了分别具有152个,128个,126个和126个氨基酸的开放阅读框,带有四个保守的半胱氨酸残基。通过逆转录(RT)PCR和实时PCR进一步研究了四个PxylCSP基因的表达模式。 PxylCSP1和PxylCSP2基因在所有被测组织中均有表达,在触角和头部(无触角)中表达水平最高,而PxylCSP3和PxylCSP4 mRNA广泛分布在所有被测组织中,没有明显的定量差异。这些CSP基因的转录水平取决于性别,年龄,交配和基因。用Rhodojaponin-III(R-III)进行的荧光猝灭和同源性模型研究表明,PxylCSP1能够结合非挥发性产卵抑制剂,例如R-III。这些普遍存在的蛋白质可能具有提取分散在环境中的非挥发性化合物(产卵抑制剂或抗饲料)并将其转运至受体的作用。

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