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阿维菌素处理会影响柑橘全爪螨体内谷氨酸脱羧酶的表达,并诱导其体内γ-氨基丁酸水平升高。

Abamectin treatment affects glutamate decarboxylase expression and induces higher GABA levels in the citrus red mite, Panonychus citri.

作者信息

Dou Wei, Xia Wen-Kai, Niu Jin-Zhi, Wang Jin-Jun

机构信息

Key Laboratory of Entomology and Pest Control Engineering, College of Plant Protection, Southwest University, Chongqing, 400716, China.

Zhaotong City Branch of Yunnan Provincial Tobacco Corporation, Zhaotong, 657000, China.

出版信息

Exp Appl Acarol. 2017 Jul;72(3):229-244. doi: 10.1007/s10493-017-0150-x. Epub 2017 Jun 27.

Abstract

The citrus red mite, Panonychus citri, is one of the most economically and globally destructive mite pests of citrus. Acaricide resistance has been a growing problem in controlling this pest. As the main inhibitory neurotransmitter in organisms, γ-aminobutyric acid (GABA) is synthesized from the amino acid glutamate by the action of glutamate decarboxylases (GADs). In the present study, one novel GAD gene, PcGAD, was identified and characterized from P. citri. The opening reading frame of PcGAD contained 1548 nucleotides that encode 515 amino acids. The subsequent spatiotemporal expression pattern by RT-qPCR revealed that the expression levels of PcGAD were significantly higher in larvae than in adults. Challenging with various concentrations of abamectin resulted in the upregulation of PcGAD transcript levels. Furthermore, biochemical characterization indicated that changes in GAD activity coincided with its mRNA levels. High-performance liquid chromatography confirmed that the GABA contents of P. citri increased upon abamectin treatment. The application of abamectin induces PcGAD expression and activates GAD activity, thereby resulting in an increase in GABA content in P. citri, which contributes to the adaptability of the mite to abamectin challenge.

摘要

柑橘全爪螨(Panonychus citri)是柑橘类作物在经济和全球范围内最具破坏性的螨类害虫之一。杀螨剂抗性一直是控制这种害虫过程中日益严重的问题。γ-氨基丁酸(GABA)作为生物体中的主要抑制性神经递质,由谷氨酸脱羧酶(GADs)作用于氨基酸谷氨酸合成。在本研究中,从柑橘全爪螨中鉴定并表征了一个新的GAD基因PcGAD。PcGAD的开放阅读框包含1548个核苷酸,编码515个氨基酸。随后通过RT-qPCR进行的时空表达模式分析表明,PcGAD在幼虫中的表达水平显著高于成虫。用不同浓度的阿维菌素处理后,PcGAD转录水平上调。此外,生化特性表明GAD活性的变化与其mRNA水平一致。高效液相色谱法证实,阿维菌素处理后柑橘全爪螨的GABA含量增加。阿维菌素的施用诱导了PcGAD的表达并激活了GAD活性,从而导致柑橘全爪螨中GABA含量增加,这有助于螨对阿维菌素挑战的适应性。

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