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一种植食性造瘿果蝇(双翅目:瘿蚊科)化学感应基因表达的性别和组织特异性图谱

Sex- and tissue-specific profiles of chemosensory gene expression in a herbivorous gall-inducing fly (Diptera: Cecidomyiidae).

作者信息

Andersson Martin N, Videvall Elin, Walden Kimberly K O, Harris Marion O, Robertson Hugh M, Löfstedt Christer

机构信息

Department of Biology, Lund University, Lund SE-223 62, Sweden.

出版信息

BMC Genomics. 2014 Jun 20;15:501. doi: 10.1186/1471-2164-15-501.

Abstract

BACKGROUND

The chemical senses of insects mediate behaviors that are closely linked to survival and reproduction. The order Diptera contains two model organisms, the vinegar fly Drosophila melanogaster and the mosquito Anopheles gambiae, whose chemosensory genes have been extensively studied. Representing a third dipteran lineage with an interesting phylogenetic position, and being ecologically distinct by feeding on plants, the Hessian fly (Mayetiola destructor Say, Diptera: Cecidomyiidae) genome sequence has recently become available. Among plant-feeding insects, the Hessian fly is unusual in 'reprogramming' the plant to create a superior food and in being the target of plant resistance genes, a feature shared by plant pathogens. Chemoreception is essential for reproductive success, including detection of sex pheromone and plant-produced chemicals by males and females, respectively.

RESULTS

We identified genes encoding 122 odorant receptors (OR), 28 gustatory receptors (GR), 39 ionotropic receptors (IR), 32 odorant binding proteins, and 7 sensory neuron membrane proteins in the Hessian fly genome. We then mapped Illumina-sequenced transcriptome reads to the genome to explore gene expression in male and female antennae and terminal abdominal segments. Our results reveal that a large number of chemosensory genes have up-regulated expression in the antennae, and the expression is in many cases sex-specific. Sex-specific expression is particularly evident among the Or genes, consistent with the sex-divergent olfactory-mediated behaviors of the adults. In addition, the large number of Ors in the genome but the reduced set of Grs and divergent Irs suggest that the short-lived adults rely more on long-range olfaction than on short-range gustation. We also report up-regulated expression of some genes from all chemosensory gene families in the terminal segments of the abdomen, which play important roles in reproduction.

CONCLUSIONS

We show that a large number of the chemosensory genes in the Hessian fly genome have sex- and tissue-specific expression profiles. Our findings provide the first insights into the molecular basis of chemoreception in plant-feeding flies, representing an important advance toward a more complete understanding of olfaction in Diptera and its links to ecological specialization.

摘要

背景

昆虫的化学感官介导着与生存和繁殖密切相关的行为。双翅目包含两种模式生物,即果蝇黑腹果蝇和冈比亚按蚊,其化学感应基因已得到广泛研究。麦红吸浆虫(Mayetiola destructor Say,双翅目:瘿蚊科)代表了具有有趣系统发育位置的第三个双翅目谱系,并且通过以植物为食在生态上具有独特性,其基因组序列最近已公布。在以植物为食的昆虫中,麦红吸浆虫在“重新编程”植物以创造优质食物以及成为植物抗性基因的靶点方面很不寻常,这一特征与植物病原体相同。化学感受对于繁殖成功至关重要,包括分别由雄性和雌性检测性信息素和植物产生的化学物质。

结果

我们在麦红吸浆虫基因组中鉴定出编码122个气味受体(OR)、28个味觉受体(GR)、39个离子型受体(IR)、32个气味结合蛋白和7个感觉神经元膜蛋白的基因。然后,我们将Illumina测序的转录组读数映射到基因组,以探索雄性和雌性触角以及腹部末端节段中的基因表达。我们的结果表明,大量化学感应基因在触角中表达上调,并且在许多情况下表达具有性别特异性。性别特异性表达在Or基因中尤为明显,这与成虫性别不同的嗅觉介导行为一致。此外,基因组中大量的Or基因,但Grs基因集减少且Irs基因不同,这表明寿命较短的成虫更多地依赖远距离嗅觉而非近距离味觉。我们还报告了所有化学感应基因家族的一些基因在腹部末端节段中表达上调,这些节段在繁殖中起重要作用。

结论

我们表明,麦红吸浆虫基因组中的大量化学感应基因具有性别和组织特异性表达谱。我们的发现首次揭示了以植物为食的苍蝇化学感受的分子基础,代表了在更全面理解双翅目嗅觉及其与生态特化的联系方面的重要进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d002/4230025/4f3991e2cd60/1471-2164-15-501-1.jpg

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