首页> 外文期刊>Insect Molecular Biology >RNA-sequencing analysis reveals abundant developmental stage-specific and immunity-related genes in the pollen beetle Meligethes aeneus.
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RNA-sequencing analysis reveals abundant developmental stage-specific and immunity-related genes in the pollen beetle Meligethes aeneus.

机译:RNA序列分析揭示了在花粉甲虫Meligethes aeneus中有大量发育阶段特异性和免疫相关基因。

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The pollen beetle (Meligethes aeneus) is a major pest of oilseed rape (Brassica napus) and other cruciferous crops in Europe. Pesticide-resistant pollen beetle populations are emerging, increasing the economic impact of this species. We isolated total RNA from the larval and adult stages, the latter either naive or immunized by injection with bacteria and yeast. High-throughput RNA sequencing (RNA-Seq) was carried out to establish a comprehensive transcriptome catalogue and to screen for developmental stage-specific and immunity-related transcripts. We assembled the transcriptome de novo by combining sequence tags from all developmental stages and treatments. Gene expression data based on normalized read counts revealed several functional gene categories that were differentially expressed between larvae and adults, particularly genes associated with digestion and detoxification that were induced in larvae, and genes associated with reproduction and environmental signalling that were induced in adults. We also identified many genes associated with microbe recognition, immunity-related signalling and defence effectors, such as antimicrobial peptides (AMPs) and lysozymes. Digital gene expression analysis revealed significant differences in the profile of AMPs expressed in larvae, naive adults and immune-challenged adults, providing insight into the steady-state differences between developmental stages and the complex transcriptional remodelling that occurs following the induction of immunity. Our data provide insight into the adaptive mechanisms used by phytophagous insects and could lead to the development of more effective control strategies for insect pests.
机译:花粉甲虫(Meligethes aeneus)是欧洲油菜(Brassica napus)和其他十字花科作物的主要害虫。耐农药的花粉甲虫种群正在出现,增加了该物种的经济影响。我们从幼虫阶段和成虫阶段分离了总RNA,后者要么是幼稚的,要么是通过细菌和酵母注射免疫的。进行了高通量RNA测序(RNA-Seq),以建立一个完整的转录组目录,并筛选发育阶段特异性和免疫相关的转录本。我们通过结合来自所有发育阶段和治疗方法的序列标签组装了转录组。基于标准化读取计数的基因表达数据揭示了几个功能基因类别,在幼虫和成虫之间差异表达,特别是在幼虫中诱导的与消化和解毒相关的基因,以及在成年诱导的与生殖和环境信号相关的基因。我们还确定了许多与微生物识别,免疫相关的信号传导和防御效应相关的基因,例如抗菌肽(AMPs)和溶菌酶。数字基因表达分析揭示了在幼虫,幼稚成年和免疫激发的成年中表达的AMPs的显着差异,从而洞察了发育阶段与免疫诱导后发生的复杂转录重塑之间的稳态差异。我们的数据提供了对植物吞噬性昆虫使用的适应机制的见解,并可能导致开发更有效的害虫控制策略。

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