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中国抗溴氰菊酯灰飞虱(半翅目:飞虱科)中多个解毒基因的过表达

Overexpression of multiple detoxification genes in deltamethrin resistant Laodelphax striatellus (Hemiptera: Delphacidae) in China.

作者信息

Xu Lu, Wu Min, Han Zhaojun

机构信息

Education Ministry Key Laboratory of Integrated Management of Crop Diseases and Pests, College of Plant Protection, Nanjing Agricultural University, Nanjing, China.

出版信息

PLoS One. 2013 Nov 4;8(11):e79443. doi: 10.1371/journal.pone.0079443. eCollection 2013.

Abstract

BACKGROUND

The small brown planthopper (SBPH), Laodelphax striatellus (Fallén), is one of the major rice pests in Asia and has developed resistance to multiple classes of insecticides. Understanding resistance mechanisms is essential to the management of this pest. Biochemical and molecular assays were performed in this study to systematically characterize deltamethrin resistance mechanisms with laboratory-selected resistant and susceptible strains of SBPH.

METHODOLOGY/PRINCIPAL FINDINGS: Deltamethrin resistant strains of SBPH (JH-del) were derived from a field population by continuously selections (up to 30 generations) in the laboratory, while a susceptible strain (JHS) was obtained from the same population by removing insecticide pressure for 30 generations. The role of detoxification enzymes in the resistance was investigated using synergism and enzyme activity assays with strains of different resistant levels. Furthermore, 71 cytochrome P450, 93 esterases and 12 glutathione-S-transferases cDNAs were cloned based on transcriptome data of a field collected population. Semi-quantitative RT-PCR screening analysis of 176 identified detoxification genes demonstrated that multiple P450 and esterase genes were overexpressed (>2-fold) in JH-del strains (G4 and G30) when compared to that in JHS, and the results of quantitative PCR coincided with the semi-quantitative RT-PCR results. Target mutation at IIS3-IIS6 regions encoded by the voltage-gated sodium channel gene was ruled out for conferring the observed resistance.

CONCLUSION/SIGNIFICANCE: As the first attempt to discover genes potentially involved in SBPH pyrethroid resistance, this study putatively identified several candidate genes of detoxification enzymes that were significantly overexpressed in the resistant strain, which matched the synergism and enzyme activity testing. The biochemical and molecular evidences suggest that the high level pyrethroid resistance in L. striatellus could be due to enhanced detoxification rather than target insensitivity. The findings lay a solid ground for further resistance mechanism elucidation studies.

摘要

背景

灰飞虱(Laodelphax striatellus (Fallén))是亚洲主要的水稻害虫之一,已对多种类型的杀虫剂产生抗性。了解其抗性机制对于该害虫的治理至关重要。本研究通过生化和分子检测,利用实验室选育的抗性和敏感品系的灰飞虱,系统地鉴定溴氰菊酯抗性机制。

方法/主要发现:通过在实验室连续选育(多达30代)从田间种群获得溴氰菊酯抗性品系的灰飞虱(JH-del),而通过去除杀虫剂压力30代从同一田间种群获得敏感品系(JHS)。利用增效作用和酶活性检测,对不同抗性水平品系研究解毒酶在抗性中的作用。此外,基于田间采集种群的转录组数据克隆了71个细胞色素P450、93个酯酶和12个谷胱甘肽-S-转移酶的cDNA。对176个已鉴定的解毒基因进行半定量RT-PCR筛选分析表明,与JHS相比,多个P450和酯酶基因在JH-del品系(G4和G30)中过表达(>2倍),定量PCR结果与半定量RT-PCR结果一致。排除了电压门控钠通道基因编码的IIS3-IIS6区域的靶标突变赋予所观察到的抗性。

结论/意义:作为发现可能参与灰飞虱拟除虫菊酯抗性的基因的首次尝试,本研究初步鉴定了几个在抗性品系中显著过表达的解毒酶候选基因,这与增效作用和酶活性检测结果相符。生化和分子证据表明,灰飞虱对拟除虫菊酯的高水平抗性可能是由于解毒作用增强而非靶标不敏感。这些发现为进一步阐明抗性机制的研究奠定了坚实基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3a/3855578/f7a5c64049d6/pone.0079443.g001.jpg

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