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基于下一代测序的鞘翅目昆虫三化螟中与感染性损伤反应相关基因的转录组分析。

Next generation sequencing based transcriptome analysis of septic-injury responsive genes in the beetle Tribolium castaneum.

机构信息

Rheinische Friedrich-Wilhelms-University of Bonn, INRES-Phytomedicine, Nussallee 9, Bonn, Germany.

出版信息

PLoS One. 2013;8(1):e52004. doi: 10.1371/journal.pone.0052004. Epub 2013 Jan 9.

Abstract

Beetles (Coleoptera) are the most diverse animal group on earth and interact with numerous symbiotic or pathogenic microbes in their environments. The red flour beetle Tribolium castaneum is a genetically tractable model beetle species and its whole genome sequence has recently been determined. To advance our understanding of the molecular basis of beetle immunity here we analyzed the whole transcriptome of T. castaneum by high-throughput next generation sequencing technology. Here, we demonstrate that the Illumina/Solexa sequencing approach of cDNA samples from T. castaneum including over 9.7 million reads with 72 base pairs (bp) length (approximately 700 million bp sequence information with about 30× transcriptome coverage) confirms the expression of most predicted genes and enabled subsequent qualitative and quantitative transcriptome analysis. This approach recapitulates our recent quantitative real-time PCR studies of immune-challenged and naïve T. castaneum beetles, validating our approach. Furthermore, this sequencing analysis resulted in the identification of 73 differentially expressed genes upon immune-challenge with statistical significance by comparing expression data to calculated values derived by fitting to generalized linear models. We identified up regulation of diverse immune-related genes (e.g. Toll receptor, serine proteinases, DOPA decarboxylase and thaumatin) and of numerous genes encoding proteins with yet unknown functions. Of note, septic-injury resulted also in the elevated expression of genes encoding heat-shock proteins or cytochrome P450s supporting the view that there is crosstalk between immune and stress responses in T. castaneum. The present study provides a first comprehensive overview of septic-injury responsive genes in T. castaneum beetles. Identified genes advance our understanding of T. castaneum specific gene expression alteration upon immune-challenge in particular and may help to understand beetle immunity in general.

摘要

甲虫(鞘翅目)是地球上最多样化的动物群体,在其环境中与许多共生或致病的微生物相互作用。赤拟谷盗(Tribolium castaneum)是一种遗传上易于处理的模式甲虫物种,其全基因组序列最近已被确定。为了深入了解甲虫免疫的分子基础,我们采用高通量下一代测序技术分析了赤拟谷盗的全转录组。在这里,我们证明了 Illumina/Solexa 测序方法对 T. castaneum cDNA 样本的分析,包括超过 970 万个长度为 72 个碱基(bp)的读段(约 7 亿 bp 的序列信息,转录组覆盖率约为 30×),证实了大多数预测基因的表达,并随后进行了定性和定量转录组分析。这种方法再现了我们最近对免疫挑战和未受挑战的 T. castaneum 甲虫进行的定量实时 PCR 研究,验证了我们的方法。此外,通过将表达数据与广义线性模型拟合得出的计算值进行比较,该测序分析确定了 73 个在免疫挑战下差异表达的基因,具有统计学意义。我们发现了多样化的免疫相关基因(如 Toll 受体、丝氨酸蛋白酶、DOPA 脱羧酶和 thaumatin)和许多编码具有未知功能的蛋白质的基因上调。值得注意的是,感染性损伤还导致编码热休克蛋白或细胞色素 P450 的基因表达升高,这支持了在 T. castaneum 中免疫和应激反应之间存在串扰的观点。本研究提供了赤拟谷盗对感染性损伤的应答基因的全面概述。所鉴定的基因提高了我们对 T. castaneum 免疫挑战后特定基因表达变化的理解,特别是有助于了解甲虫的免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bec5/3541394/07418ba21e32/pone.0052004.g001.jpg

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