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Identification and Expression Analysis of Candidate Odorant-Binding Protein and Chemosensory Protein Genes by Antennal Transcriptome of Sitobion avenae

机译:燕麦Sitobion转录组的候选气味结合蛋白和化学感应蛋白基因的鉴定和表达分析

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摘要

Odorant-binding proteins (OBPs) and chemosensory proteins (CSPs) of aphids are thought to be responsible for the initial molecular interactions during olfaction that mediate detection of chemical signals. Analysis of the diversity of proteins involved comprises critical basic research work that will facilitate the development of sustainable pest control strategies. To help us better understand differences in the olfactory system between winged and wingless grain aphids, we constructed an antennal transcriptome from winged and wingless Sitobion avenae (Fabricius), one of the most serious pests of cereal fields worldwide. Among the 133,331 unigenes in the antennal assembly, 13 OBP and 5 CSP putative transcripts were identified with 6 OBP and 3 CSP sequences representing new S. avenae annotations. We used qPCR to examine the expression profile of these genes sets across S. avenae development and in various tissues. We found 7 SaveOBPs and 1 SaveCSP were specifically or significantly elevated in antennae compared with other tissues, and that some transcripts (SaveOBP8, SaveCSP2 and SaveCSP5) were abundantly expressed in the legs of winged or wingless aphids. The expression levels of the SaveOBPs and SaveCSPs varied depending on the developmental stage. Possible physiological functions of these genes are discussed. Further molecular and functional studies of these olfactory related genes will explore their potential as novel targets for controlling S. avenae.
机译:蚜虫的气味结合蛋白(OBP)和化学感应蛋白(CSP)被认为是导致嗅觉过程中介导化学信号检测的初始分子相互作用的原因。对涉及的蛋白质多样性的分析包括关键的基础研究工作,这将促进可持续虫害控制策略的发展。为了帮助我们更好地理解有翅和无翅谷物蚜虫嗅觉系统的差异,我们从有翅和无翅的Sitobion avenae(Fabricius)(全世界谷物田中最严重的害虫之一)构建了触角转录组。在触角装配体的133,331个单基因中,鉴定出13个OBP和5个CSP转录本,其中6个OBP和3个CSP序列代表新的葡萄球菌注释。我们使用qPCR来检查这些基因在整个葡萄球菌发育过程中以及在各种组织中的表达情况。我们发现与其他组织相比,触角上有7个SaveOBP和1个SaveCSP特异性地或显着升高,并且一些转录本(SaveOBP8,SaveCSP2和SaveCSP5)在有翅或无翅蚜虫的腿中大量表达。 SaveOBP和SaveCSP的表达水平取决于开发阶段。这些基因可能的生理功能进行了讨论。这些嗅觉相关基因的进一步分子和功能研究将探索它们作为控制葡萄球菌的新靶标的潜力。

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