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Sex- and Tissue-Specific Expression Profiles of Odorant Binding Protein and Chemosensory Protein Genes in Bradysia odoriphaga (Diptera: Sciaridae)

机译: Bradysia odoriphaga (Diptera:Sciaridae)的气味结合蛋白和化学感受蛋白基因的性别和组织特异性表达谱

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Bradysia odoriphaga is an agricultural pest insect affecting the production of Chinese chive and other liliaceous vegetables in China, and it is significantly attracted by sex pheromones and the volatiles derived from host plants. Despite verification of this chemosensory behavior, however, it is still unknown how B. odoriphaga recognizes these volatile compounds on the molecular level. Many of odorant binding proteins (OBPs) and chemosensory proteins (CSPs) play crucial roles in olfactory perception. Here, we identified 49 OBP and 5 CSP genes from the antennae and body transcriptomes of female and male adults of B. odoriphaga , respectively. Sequence alignment and phylogenetic analysis among Dipteran OBPs and CSPs were analyzed. The sex- and tissue-specific expression profiles of 54 putative chemosensory genes among different tissues were investigated by quantitative real-time PCR (qRT-PCR). qRT-PCR analysis results suggested that 22 OBP and 3 CSP genes were enriched in the antennae, indicating they might be essential for detection of general odorants and pheromones. Among these antennae-enriched genes, nine OBPs ( BodoOBP2/4/6/8/12/13/20/28/33 ) were enriched in the male antennae and may play crucial roles in the detection of sex pheromones. Moreover, some OBP and CSP genes were enriched in non-antennae tissues, such as in the legs ( BodoOBP3/9/19/21/34/35/38/39/45 and BodoCSP1 ), wings ( BodoOBP17/30/32/37/44 ), abdomens and thoraxes ( BodoOBP29/36 ), and heads ( BodoOBP14/23/31 and BodoCSP2 ), suggesting that these genes might be involved in olfactory, gustatory, or other physiological processes. Our findings provide a starting point to facilitate functional research of these chemosensory genes in B. odoriphaga at the molecular level.
机译:臭味迟缓是一种农业害虫,影响了中国韭菜和其他百合类蔬菜的生产,并且性信息素和寄主植物产生的挥发物会极大地吸引它。尽管已经证实了这种化学感应行为,但是,仍然未知奥多巴布鲁氏菌如何在分子水平上识别这些挥发性化合物。许多气味结合蛋白(OBP)和化学感应蛋白(CSP)在嗅觉感知中都起着至关重要的作用。在这里,我们从B.odoriphaga的雌性和雄性成虫的触角和身体转录组中分别鉴定出49个OBP和5个CSP基因。分析了Dipteran OBP和CSP之间的序列比对和系统发育分析。通过定量实时荧光定量PCR(qRT-PCR)研究了54个假定的化学感觉基因在不同组织之间的性别和组织特异性表达谱。 qRT-PCR分析结果表明,触角中富含22个OBP和3个CSP基因,表明它们可能对于检测一般气味剂和信息素至关重要。在这些富含触角的基因中,有9个OBP(BodoOBP2 / 4/6/8/12/13/20/28/33)富集在雄性触角中,并可能在检测性信息素中起关键作用。此外,一些OBP和CSP基因在非天线组织中富集,例如腿部(BodoOBP3 / 9/19/21/34/35/38/39/45和BodoCSP1),翅膀(BodoOBP17 / 30/32 / 37/44),腹部和胸部(BodoOBP29 / 36)以及头部(BodoOBP14 / 23/31和BodoCSP2),表明这些基因可能与嗅觉,味觉或其他生理过程有关。我们的发现提供了一个起点,以促进在分子水平上对B.odoriphaga中的这些化学感应基因进行功能研究。

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