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Next-generation sequencing-based transcriptome analysis of Cryptolaemus montrouzieri under insecticide stress reveals resistance-relevant genes in ladybirds

机译:在杀虫剂胁迫下基于隐孢子虫的下一代测序的转录组分析揭示了瓢虫中与抗性相关的基因

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摘要

As the most efficient natural enemy of mealybugs, the ladybird Cryptolaemus montrouzieri Mulsant plays an important role in integrated pest management. We report here a profiling analysis of C. montrouzieri under insecticide stress to gain a deeper view of insecticide resistance in ladybirds. For transcriptome sequencing, more than 26. million sequencing reads were produced. These reads were assembled into 38,369 non-redundant transcripts (mean size = 453 nt). 23,248 transcripts were annotated with their gene description. Using a tag-based DGE (Digital gene expression) system, over 5.7. million tags were sequenced in both the insecticide stress group and the control group, and mapped to 38,369 transcripts. We obtained 993 genes that were significantly up- or down-regulated under insecticide stress in the ladybird transcriptome. These results can contribute to in-depth research into the molecular mechanisms of resistance and enhance our current understanding of the effects of insecticides on natural enemies.
机译:作为粉虱最有效的天敌,瓢虫Cryptolaemus montrouzieri Mulsant在害虫综合治理中发挥着重要作用。我们在此报告对杀虫剂胁迫下的C. montrouzieri的分析,以更深入地了解瓢虫的杀虫剂抗性。对于转录组测序,产生了超过2600万个测序读段。这些读段被组装成38,369个非冗余的转录本(平均大小= 453 nt)。注释了23,248个转录物的基因描述。使用基于标签的DGE(数字基因表达)系统,超过5.7。在杀虫剂胁迫组和对照组中均对100万个标签进行了测序,并定位到38,369个转录本上。我们获得了在瓢虫转录组中在杀虫剂胁迫下显着上调或下调的993个基因。这些结果有助于深入研究抗药性的分子机制,并增强我们目前对杀虫剂对天敌的作用的了解。

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