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首页> 外文期刊>BMC Genomics >Host plant adaptation in the polyphagous whitefly, Trialeurodes vaporariorum, is associated with transcriptional plasticity and altered sensitivity to insecticides
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Host plant adaptation in the polyphagous whitefly, Trialeurodes vaporariorum, is associated with transcriptional plasticity and altered sensitivity to insecticides

机译:复合粉虱的宿主植物适应,Tri rurodes vaporariorum,与转录可塑性相关,并改变对杀虫剂的敏感性

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BACKGROUND:The glasshouse whitefly, Trialeurodes vaporariorum, is a damaging crop pest and an invasive generalist capable of feeding on a broad range of host plants. As such this species has evolved mechanisms to circumvent the wide spectrum of anti-herbivore allelochemicals produced by its host range. T. vaporariorum has also demonstrated a remarkable ability to evolve resistance to many of the synthetic insecticides used for control.RESULTS:To gain insight into the molecular mechanisms that underpin the polyphagy of T. vaporariorum and its resistance to natural and synthetic xenobiotics, we sequenced and assembled a reference genome for this species. Curation of genes putatively involved in the detoxification of natural and synthetic xenobiotics revealed a marked reduction in specific gene families between this species and another generalist whitefly, Bemisia tabaci. Transcriptome profiling of T. vaporariorum upon transfer to a range of different host plants revealed profound differences in the transcriptional response to more or less challenging hosts. Large scale changes in gene expression (?20% of genes) were observed during adaptation to challenging hosts with a range of genes involved in gene regulation, signalling, and detoxification differentially expressed. Remarkably, these changes in gene expression were associated with significant shifts in the tolerance of host-adapted T. vaporariorum lines to natural and synthetic insecticides.CONCLUSIONS:Our findings provide further insights into the ability of polyphagous insects to extensively reprogram gene expression during host adaptation and illustrate the potential implications of this on their sensitivity to synthetic insecticides.
机译:背景:Glasshouse Whitefly,Trialurodes Vaporiorum,是一种破坏性的作物害虫和能够喂养广泛寄主植物的侵入式通用。因此,这种物种具有发展机制,以规避通过其宿主范围产生的广谱的抗脱胶等化学的宽频谱。 T.Vaporariorum还表明了对用于控制的许多合成杀虫剂的抗性的显着能力并为此物种组装了参考基因组。涉及自然和合成的异卵虫的排毒的基因的策析揭示了该物种与另一个通用粉虱,Bemisia Tabaci之间的特定基因家族的显着减少。转移到一系列不同宿主植物时T.Vaporariorum的转录组谱分析显示出对或多或少具有挑战性的宿主的转录反应的深刻差异。在适应过程中观察到基因表达的大规模变化(>?20%的基因),以挑战基因调节,信号传导和解毒的一系列基因的攻击宿主。值得注意的是,基因表达的这些变化与宿主适应的T.Vaporiorum系耐受性的显着变化与天然和合成杀虫剂的耐受性有关。结论:我们的研究结果提供了进一步的见解,对多功能昆虫在宿主适应期间广泛重新编程基因表达的进一步见解并说明这对它们对合成杀虫剂的敏感性的潜在影响。

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