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Identification of differential expression genes associated with host selection and adaptation between two sibling insect species by transcriptional profile analysis

机译:通过转录谱分析鉴定与宿主选择和两个兄弟昆虫种类之间的适应有关的差异表达基因

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Background Cotton bollworm (Helicoverpa armigera) and oriental tobacco budworm (Helicoverpa assulta) are noctuid sibling species. Under artificial manipulation, they can mate and produce fertile offspring. As serious agricultural insect pests, cotton bollworms are euryphagous insects, but oriental tobacco budworms are oligophagous insects. To identify the differentially expressed genes that affect host recognition and host adaptation between the two species, we constructed digital gene expression tag profiles for four developmental stages of the two species. High-throughput sequencing results indicated that we have got more than 23 million 17nt clean tags from both species, respectively. The number of unique clean tags was nearly same in both species (approximately 357,000). Results According to the gene annotation results, we identified 83 and 68 olfaction related transcripts from H. armigera and H. assulta, respectively. At the same time, 1137 and 1138 transcripts of digestion enzymes were identified from the two species. Among the olfaction related transcripts, more odorant binding protein and G protein-coupled receptor were identified in H. armigera than in H. assulta. Among the digestion enzymes, there are more detoxification enzyme, e.g. P450, carboxypeptidase and ATPase in H. assulta than in H. armigera. These differences partially explain that because of the narrow host plant range of H. assulta, more detoxification enzymes would help them increase the food detoxification and utilization efficiency. Conclusions This study supplied some differentially expressed genes affecting host selection and adaptation between the two sibling species. These genes will be useful information for studying on the evolution of host plant selection. It also provides some important target genes for insect species-specific control by RNAi technology.
机译:背景技术棉铃虫(Helicoverpa armigera)和东方烟草芽虫(Helicoverpa assulta)是夜蛾类的同胞种。在人工操纵下,它们可以交配并繁殖出可育的后代。棉铃虫作为严重的农业害虫,是食虫性昆虫,而东方烟草芽虫是少食性昆虫。为了鉴定影响两个物种之间宿主识别和宿主适应的差异表达基因,我们构建了两个物种四个发育阶段的数字基因表达标签概况。高通量测序结果表明,我们从这两个物种中分别获得了超过2300万个17nt干净标签。两种物种中唯一清洁标签的数量几乎相同(约357,000)。结果根据基因注释结果,我们从棉铃虫和棉铃虫中分别鉴定出83个和68个嗅觉相关转录本。同时,从这两个物种中鉴定出1137和1138个消化酶转录物。在嗅觉相关的转录本中,棉铃虫中鉴定出的气味结合蛋白和G蛋白偶联受体多于棉铃虫。在消化酶中,有更多的解毒酶,例如。棉铃虫中的P450,羧肽酶和ATP酶比棉铃虫中的高。这些差异部分地解释了由于棉铃虫寄主植物范围狭窄,更多的解毒酶将帮助它们提高食物的解毒和利用效率。结论本研究提供了一些差异表达的基因,这些基因影响了两个兄弟姐妹物种之间的寄主选择和适应。这些基因将为研究寄主植物选择的进化提供有用的信息。它还为通过RNAi技术进行昆虫物种特异性控制提供了一些重要的靶基因。

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