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首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Genome-wide identification and expression profiling of odorant-binding proteins in the oriental fruit fly, Bactrocera dorsalis
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Genome-wide identification and expression profiling of odorant-binding proteins in the oriental fruit fly, Bactrocera dorsalis

机译:在东方果蝇中的气味结合蛋白的基因组鉴定和表达剖析,Bactrocera dorsalis

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Olfaction contributes to many crucial behaviors in insects, such as foraging, locating hosts, mating, and avoiding predators. In the first step of the olfaction process in insects, odorant-binding proteins (OBPs) bind with the odorants and transport hydrophobic odorants. OBPs are also believed to accelerate the termination of the odorant response. The oriental fruit fly, Bactrocera dorsalis, is one of the most destructive fruit-eating pests, causing enormous economic losses to the fruit and vegetable industry worldwide. However, information relating to the number, diversity, and expression patterns of OBPs still remains fragmented in this insect pest. Here, we attempted to identify the OBPs in B. dorsalis using genomic and transcriptomic information. In this study, we expanded the repository of B. dorsalis OBPs to 49. Phylogenetic analysis of BdorOBPs with other species revealed that these proteins grouped into four subfamilies. Furthermore, we determined the expression profiles in six body parts (namely, the legs, wings, antenna, cuticles of the head, thorax, and abdomen) and five internal tissues (namely, the fat body, midgut, Malpighian tubule, testis, and ovary). The results indicated that 21 BdorOBPs showed high expression levels in the antenna, legs, and head cuticles and may thus perform olfactory functions, which corroborates previous evidence. Two BdorOBPs were specifically expressed in the abdomen cuticles. Nineteen OBPs were highly expressed in the fat body, while four OBPs were highly expressed in the reproductive organs. This indicated that they may have physiological roles other than in chemoreception. In summary, our results contribute to the knowledge base of insect OBPs and provide a foundation for the further study of the molecular mechanisms of chemoreception in B. dorsalis.
机译:嗅觉有助于昆虫的许多关键行为,例如觅食,定位宿主,交配和避免捕食者。在昆虫的嗅觉过程的第一步中,具有气味结合蛋白(OBP)与气味和疏水性气味结合。还认为obps加速终止气味反应。东方果蝇,Bactrocera Dorsalis是最具破坏性的果实害虫之一,对全球水果和蔬菜行业造成巨大的经济损失。但是,与obps的数量,多样性和表达模式有关的信息仍然在这种昆虫害虫中仍然是裂缝的。在这里,我们试图使用基因组和转录组信息来识别B. dorsalis中的OBP。在这项研究中,扩展了B. dorsalis obps的储存库至49.与其他物种的Bdorobps对Bdorobps的系统发育分析表明,这些蛋白质分为四个亚壳。此外,我们确定了六个身体部位(即腿部,翅膀,天线,头部,头部,腹部的角质层)和五个内部组织(即脂肪体,中肠,Malpighian小管,睾丸和子房)。结果表明,21 bdorobps在天线,腿和头层角质表中显示出高表达水平,因此可以执行嗅觉功能,其证实先前的证据。在腹部有三种Bdorobps被特异性表达。 19个OBP在脂肪体中高度表达,而4个OBP在生殖器官中高度表达。这表明它们可能具有除了化学意义之外的生理角色。总之,我们的结果有助于昆虫对象的知识库,并为进一步研究B. dorsalis的化学密切的分子机制提供了基础。

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