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对烟粉虱地中海(MED)种群中新型烟碱类抗性的转录分析揭示了新的细胞色素P450,但没有发现与该表型相关的烟碱型乙酰胆碱受体突变。

Transcription analysis of neonicotinoid resistance in Mediterranean (MED) populations of B. tabaci reveal novel cytochrome P450s, but no nAChR mutations associated with the phenotype.

作者信息

Ilias Aris, Lagnel Jacques, Kapantaidaki Despoina E, Roditakis Emmanouil, Tsigenopoulos Costas S, Vontas John, Tsagkarakou Anastasia

机构信息

Hellenic Agricultural Organisation - "DΕMETER", NAGREF - Institute of Olive Tree, Subtropical Crops and Viticulture, Heraklion, Greece.

Institute of Marine Biology, Biotechnology and Aquaculture (IMBBC), Hellenic Centre for Marine Research (HCMR), Heraklion, Greece.

出版信息

BMC Genomics. 2015 Nov 14;16:939. doi: 10.1186/s12864-015-2161-5.

Abstract

BACKGROUND

Bemisia tabaci is one of the most damaging agricultural pests world-wide. Although its control is based on insecticides, B. tabaci has developed resistance against almost all classes of insecticides, including neonicotinoids.

RESULTS

We employed an RNA-seq approach to generate genome wide expression data and identify genes associated with neonicotinoid resistance in Mediterranean (MED) B. tabaci (Q1 biotype). Twelve libraries from insecticide resistant and susceptible whitefly populations were sequenced on an Illumina Next-generation sequencing platform, and genomic sequence information of approximately 73 Gbp was generated. A reference transcriptome was built by de novo assembly and functionally annotated. A total of 146 P450s, 18 GSTs and 23 CCEs enzymes (unigenes) potentially involved in the detoxification of xenobiotics were identified, along with 78 contigs encoding putative target proteins of six different insecticide classes. Ten unigenes encoding nicotinic Acetylcholine Receptors (nAChR), the target of neoinicotinoids, were identified and phylogenetically classified. No nAChR polymorphism potentially related with the resistant phenotypes, was observed among the studied strains. DE analysis revealed that among the 550 differentially (logFC > 1) over-transcribed unigenes, 52 detoxification enzymes were over expressed including unigenes with orthologues in P450s, GSTs, CCE and UDP-glucuronosyltransferases. Eight P450 unigenes belonging to clades CYP2, CYP3 and CYP4 were highly up-regulated (logFC > 2) including CYP6CM1, a gene already known to confer imidacloprid resistance in B. tabaci. Using quantitative qPCRs, a larger screening of field MED B. tabaci from Crete with known neonicotinoid phenotype was performed to associate expression levels of P450s with resistance levels. Expression levels of five P450s, including CYP6CM1, were found associated with neonicotinoid resistance. However, a significant correlation was found only in CYP303 and CYP6CX3, with imidacloprid and acetamiprid respectively.

CONCLUSION

Our work has generated new toxicological data and genomic resources which will significantly enrich the available dataset and substantially facilitate the molecular studies in MED B. tabaci. No evidence of target site neonicotinoid resistance has been found. Eight P450 unigenes, including CYP6CM1, were found significantly over-expressed in resistant B. tabaci. This study suggests at least two novel P450s (CYP303 and CYP6CX3) as candidates for their functional characterization as detoxification mechanisms of neonicotinoid resistance in B. tabaci.

摘要

背景

烟粉虱是全球最具危害性的农业害虫之一。尽管对其防治主要依赖杀虫剂,但烟粉虱已对几乎所有种类的杀虫剂产生了抗性,包括新烟碱类杀虫剂。

结果

我们采用RNA测序方法来生成全基因组表达数据,并鉴定与地中海烟粉虱(Q1生物型)对新烟碱类杀虫剂抗性相关的基因。在Illumina下一代测序平台上对来自抗杀虫剂和敏感粉虱种群的12个文库进行了测序,生成了约73 Gbp的基因组序列信息。通过从头组装构建了一个参考转录组并进行了功能注释。共鉴定出146个可能参与异生物质解毒的细胞色素P450、18个谷胱甘肽S-转移酶和23个羧酸酯酶(单基因),以及78个编码六种不同杀虫剂类别的假定靶蛋白的重叠群。鉴定出10个编码烟碱型乙酰胆碱受体(nAChR)的单基因,烟碱型乙酰胆碱受体是新烟碱类杀虫剂的作用靶标,并进行了系统发育分类。在所研究的品系中未观察到与抗性表型潜在相关的nAChR多态性。差异表达分析显示,在550个差异(logFC>1)过度转录的单基因中,有52个解毒酶过度表达,包括在细胞色素P450、谷胱甘肽S-转移酶、羧酸酯酶和UDP-葡萄糖醛酸基转移酶中有直系同源物的单基因。属于CYP2、CYP3和CYP4亚家族的8个细胞色素P450单基因高度上调(logFC>2),包括CYP6CM1,该基因已知赋予烟粉虱对吡虫啉的抗性。使用定量qPCR,对来自克里特岛具有已知新烟碱类杀虫剂表型的田间地中海烟粉虱进行了更大规模的筛选,以将细胞色素P450的表达水平与抗性水平相关联。发现包括CYP6CM1在内的5个细胞色素P450的表达水平与新烟碱类杀虫剂抗性相关。然而,仅在CYP303和CYP6CX3中分别与吡虫啉和啶虫脒存在显著相关性。

结论

我们的工作产生了新的毒理学数据和基因组资源,这将显著丰富现有数据集,并极大地促进对地中海烟粉虱的分子研究。未发现靶标位点对新烟碱类杀虫剂产生抗性的证据。发现包括CYP6CM1在内的8个细胞色素P450单基因在抗性烟粉虱中显著过度表达。本研究表明至少有两个新的细胞色素P450(CYP303和CYP6CX3)作为其功能表征的候选基因,作为烟粉虱对新烟碱类杀虫剂抗性的解毒机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbc8/4647701/7f614accfabe/12864_2015_2161_Fig1_HTML.jpg

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