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首页> 外文期刊>BMC Genomics >Genome of the webworm Hyphantria cunea unveils genetic adaptations supporting its rapid invasion and spread
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Genome of the webworm Hyphantria cunea unveils genetic adaptations supporting its rapid invasion and spread

机译:WebWorph yphantria Cunea的基因组推出了支持其快速入侵和传播的遗传适应

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The fall webworm Hyphantria cunea is an invasive and polyphagous defoliator pest that feeds on nearly any type of deciduous tree worldwide. The silk web of H. cunea aids its aggregating behavior, provides thermal regulation and is regarded as one of causes for its rapid spread. In addition, both chemosensory and detoxification genes are vital for host adaptation in insects. Here, a high-quality genome of H. cunea was obtained. Silk-web-related genes were identified from the genome, and successful silencing of the silk protein gene HcunFib-H resulted in a significant decrease in silk web shelter production. The CAFE analysis showed that some chemosensory and detoxification gene families, such as CSPs, CCEs, GSTs and UGTs, were expanded. A transcriptome analysis using the newly sequenced H. cunea genome showed that most chemosensory genes were specifically expressed in the antennae, while most detoxification genes were highly expressed during the feeding peak. Moreover, we found that many nutrient-related genes and one detoxification gene, HcunP450 (CYP306A1), were under significant positive selection, suggesting a crucial role of these genes in host adaptation in H. cunea. At the metagenomic level, several microbial communities in H. cunea gut and their metabolic pathways might be beneficial to H. cunea for nutrient metabolism and detoxification, and might also contribute to its host adaptation. These findings explain the host and environmental adaptations of H. cunea at the genetic level and provide partial evidence for the cause of its rapid invasion and potential gene targets for innovative pest management strategies.
机译:Fall WebWorm Hyphantria Cunea是一种侵入性的和多腔散热率害虫,可在全球几乎任何类型的落叶树上喂食。 H. CUNEA的丝网有助于其聚集行为,提供热调节,并被视为其快速扩散的原因之一。此外,化学感官和解毒基因均为昆虫宿主的适应至关重要。这里,获得了H. Cunea的高质量基因组。从基因组中鉴定了与丝网相关的基因,并且丝蛋白基因Hcunfib-H的成功沉默导致丝网遮蔽胶层产生的显着降低。咖啡馆分析表明,一些化学感官和排毒基因家族,如CSP,CCE,GST和UGT,都被扩展。使用新测序的H.Cunea基因组的转录组分析显示,大多数化学感应基因在天线中特异性地表达,而大多数排毒基因在进料峰期间高度表达。此外,我们发现许多营养素相关基因和一种排毒基因HCUNP450(CYP306A1)在显着的阳性选择下,这表明这些基因在H. Cunea中宿主适应中的关键作用。在甲蛋白水平,H. Cunea Gut的几种微生物群体及其代谢途径可能有利于H. Cunea进行营养代谢和排毒,并且可能还有助于其宿主适应。这些发现在遗传水平下解释了H. CUNEA的宿主和环境适应,并为其快速入侵和潜在基因目标的原因提供了部分证据,以获得创新的害虫管理策略。

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