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首页> 外文期刊>BMC Genomics >Identification of the genes involved in odorant reception and detection in the palm weevil Rhynchophorus ferrugineus , an important quarantine pest, by antennal transcriptome analysis
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Identification of the genes involved in odorant reception and detection in the palm weevil Rhynchophorus ferrugineus , an important quarantine pest, by antennal transcriptome analysis

机译:通过触角转录组分析鉴定重要的检疫性有害生物棕榈象鼻象鼻(Rhychophorus ferrugineus)中与气味接收和检测有关的基因

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The Red Palm Weevil (RPW) Rhynchophorus ferrugineus (Oliver) is one of the most damaging invasive insect species in the world. This weevil is highly specialized to thrive in adverse desert climates, and it causes major economic losses due to its effects on palm trees around the world. RPWs locate palm trees by means of plant volatile cues and use an aggregation pheromone to coordinate a mass-attack. Here we report on the high throughput sequencing of the RPW antennal transcriptome and present a description of the highly expressed chemosensory gene families. Deep sequencing and assembly of the RPW antennal transcriptome yielded 35,667 transcripts with an average length of 857?bp and identified a large number of highly expressed transcripts of odorant binding proteins (OBPs), chemosensory proteins (CSPs), odorant receptors/co-receptors (ORs/Orcos), sensory neuron membrane proteins (SNMPs), gustatory receptors (GRs) and ionotropic receptors (IRs). In total, 38 OBPs, 12 CSPs, 76 ORs, 1 Orco, 6 SNMPs, 15 GRs and 10 IRs were annotated in the R. ferrugineus antennal transcriptome. A comparative transcriptome analysis with the bark beetle showed that 25?% of the blast hits were unique to R. ferrugineus, indicating a higher, more complete transcript coverage for R. ferrugineus. We categorized the RPW ORs into seven subfamilies of coleopteran ORs and predicted two new subfamilies of ORs. The OR protein sequences were compared with those of the flour beetle, the cerambycid beetle and the bark beetle, and we identified coleopteran-specific, highly conserved ORs as well as unique ORs that are putatively involved in RPW aggregation pheromone detection. We identified 26 Minus-C OBPs and 8 Plus-C OBPs and grouped R. ferrugineus OBPs into different OBP-subfamilies according to phylogeny, which indicated significant species-specific expansion and divergence in R. ferrugineus. We also identified a diverse family of CSP proteins, as well as a coleopteran-specific CSP lineage that diverged from Diptera and Lepidoptera. We identified several extremely diverged IR orthologues as well as highly conserved insect IR co-receptor orthologous transcripts in R. ferrugineus. Notably, GR orthologous transcripts for CO2-sensing and sweet tastants were identified in R. ferrugineus, and we found a great diversity of GRs within the coleopteran family. With respect to SNMP-1 and SNMP-2 orthologous transcripts, one SNMP-1 orthologue was found to be strikingly highly expressed in the R. ferrugineus antennal transcriptome. Our study presents the first comprehensive catalogue of olfactory gene families involved in pheromone and general odorant detection in R. ferrugineus, which are potential novel targets for pest control strategies.
机译:红棕榈象鼻虫(RPW)Rhynchophorus ferrugineus(Oliver)是世界上最具破坏性的入侵昆虫之一。这种象鼻虫非常擅长在恶劣的沙漠气候中壮成长,由于其对全世界棕榈树的影响,它造成了重大的经济损失。 RPW通过植物易失性线索定位棕榈树,并使用聚集信息素来协调大规模攻击。在这里我们报告的RPW触角转录组的高通量测序,并介绍了高度表达的化学感觉基因家族的描述。 RPW触角转录组的深度测序和组装产生了35,667个转录本,平均长度为857?bp,并鉴定出大量的气味结合蛋白(OBP),化学感应蛋白(CSP),气味受体/共受体的高表达转录本( ORs / Orcos),感觉神经元膜蛋白(SNMPs),味觉受体(GRs)和离子型受体(IRs)。在R. ferrugineus触角转录组中总共注释了38个OBP,12个CSP,76个OR,1个Orco,6个SNMP,15个GR和10个IR。用树皮甲虫进行的转录组比较分析表明,25.%的blast命中是R. ferrugineus特有的,表明R. ferrugineus的转录本覆盖率更高,更完整。我们将RPW ORs归类为鞘翅目ORs的七个亚家族,并预测了ORs的两个新亚家族。将OR蛋白序列与面粉甲虫,cerambycid甲虫和树皮甲虫的OR蛋白质序列进行比较,我们鉴定了鞘翅目特异性,高度保守的OR以及可能参与RPW聚集信息素检测的独特OR。我们根据系统发育鉴定了26个负C OBP和8个正C OBP,并将ferrugineus OBP分为不同的OBP子家族,这表明ferrugineus中存在明显的物种特异性扩增和分化。我们还鉴定了多样化的CSP蛋白家族,以及从双翅目和鳞翅目分支的鞘翅目特异性CSP谱系。我们在R. ferrugineus中鉴定了几种极不相同的红外直系同源物以及高度保守的昆虫红外共受体直系同源转录本。值得注意的是,在R. ferrugineus中鉴定了用于CO2感应和甜味的GR直系同源转录本,我们发现鞘翅目家族中的GR差异很大。关于SNMP-1和SNMP-2直系转录物,发现一个SNMP-1直系同源物在R. ferrugineus触角转录组中显着表达。我们的研究提出了第一个完整的嗅觉基因家族目录,涉及嗅球菌的信息素和一般气味检测,这是有害生物控制策略的潜在新目标。

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