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基于大规模平行焦磷酸测序的小褐飞虱(Laodelphax striatellus)转录组分析,小褐飞虱是一种传播水稻条纹病毒(RSV)的媒介昆虫。

Massively parallel pyrosequencing-based transcriptome analyses of small brown planthopper (Laodelphax striatellus), a vector insect transmitting rice stripe virus (RSV).

机构信息

State Key Laboratory of Plant Genomics, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

出版信息

BMC Genomics. 2010 May 13;11:303. doi: 10.1186/1471-2164-11-303.

Abstract

BACKGROUND

The small brown planthopper (Laodelphax striatellus) is an important agricultural pest that not only damages rice plants by sap-sucking, but also acts as a vector that transmits rice stripe virus (RSV), which can cause even more serious yield loss. Despite being a model organism for studying entomology, population biology, plant protection, molecular interactions among plants, viruses and insects, only a few genomic sequences are available for this species. To investigate its transcriptome and determine the differences between viruliferous and naïve L. striatellus, we employed 454-FLX high-throughput pyrosequencing to generate EST databases of this insect.

RESULTS

We obtained 201,281 and 218,681 high-quality reads from viruliferous and naïve L. striatellus, respectively, with an average read length as 230 bp. These reads were assembled into contigs and two EST databases were generated. When all reads were combined, 16,885 contigs and 24,607 singletons (a total of 41,492 unigenes) were obtained, which represents a transcriptome of the insect. BlastX search against the NCBI-NR database revealed that only 6,873 (16.6%) of these unigenes have significant matches. Comparison of the distribution of GO classification among viruliferous, naïve, and combined EST databases indicated that these libraries are broadly representative of the L. striatellus transcriptomes. Functionally diverse transcripts from RSV, endosymbiotic bacteria Wolbachia and yeast-like symbiotes were identified, which reflects the possible lifestyles of these microbial symbionts that live in the cells of the host insect. Comparative genomic analysis revealed that L. striatellus encodes similar innate immunity regulatory systems as other insects, such as RNA interference, JAK/STAT and partial Imd cascades, which might be involved in defense against viral infection. In addition, we determined the differences in gene expression between vector and naïve samples, which generated a list of candidate genes that are potentially involved in the symbiosis of L. striatellus and RSV.

CONCLUSIONS

To our knowledge, the present study is the first description of a genomic project for L. striatellus. The identification of transcripts from RSV, Wolbachia, yeast-like symbiotes and genes abundantly expressed in viruliferous insect, provided a starting-point for investigating the molecular basis of symbiosis among these organisms.

摘要

背景

小褐飞虱(Laodelphax striatellus)是一种重要的农业害虫,不仅通过吸食汁液损害水稻植株,还充当传播水稻条纹病毒(RSV)的媒介,这可能导致更严重的产量损失。尽管它是研究昆虫学、种群生物学、植物保护、植物-病毒-昆虫分子相互作用的模式生物,但该物种只有少数基因组序列可用。为了研究其转录组并确定带毒和未带毒小褐飞虱之间的差异,我们采用 454-FLX 高通量焦磷酸测序技术生成了该昆虫的 EST 数据库。

结果

我们从带毒和未带毒的小褐飞虱中分别获得了 201281 和 218681 条高质量reads,平均读长为 230bp。这些reads 被组装成 contigs,并生成了两个 EST 数据库。当所有 reads 组合在一起时,共获得了 16885 个 contigs 和 24607 个 singletons(共计 41492 个 unigenes),这代表了昆虫的转录组。BlastX 搜索 NCBI-NR 数据库显示,这些 unigenes中只有 6873 个(16.6%)具有显著匹配。对带毒、未带毒和组合 EST 数据库中 GO 分类分布的比较表明,这些文库广泛代表了小褐飞虱的转录组。从 RSV、共生细菌沃尔巴克氏体和酵母样共生体中鉴定出功能多样的转录本,反映了这些微生物共生体在宿主昆虫细胞中可能的生活方式。比较基因组分析表明,小褐飞虱编码的先天免疫调节系统与其他昆虫相似,如 RNA 干扰、JAK/STAT 和部分 Imd 级联,这可能参与了抗病毒感染的防御。此外,我们确定了媒介和未带毒样本之间基因表达的差异,生成了一组可能参与小褐飞虱与 RSV 共生的候选基因。

结论

据我们所知,本研究是小褐飞虱基因组项目的首次描述。从 RSV、沃尔巴克氏体、酵母样共生体和在带毒昆虫中大量表达的基因中鉴定出的转录本,为研究这些生物之间的共生关系的分子基础提供了起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/790a/2885366/4f04d9be37b1/1471-2164-11-303-1.jpg

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