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Cover Caption     
《Insect Science》2021,28(5):N/A-N/A
Cotesia vestalis has been used as a good biological control agent for management the pest of global cruciferous plants, Plutella xylostella. The successful parasitization strictly relies on C. vestalis olfactory perception, and odorant binding protein (OBP) play a key role in searching for hosts (see pages 1354-1368). The cover photo shows C. vestalis is parasitizing the host with the help of three OBP genes expressed in C. vestalis antennae for locating P. xylostalla larva. Photo provided by Xi-Qian Ye.  相似文献   

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Two high-quality cDNA libraries were constructed from female and male antennae of the cotton bollworm Helicoverpa armigera (Hübner). The titers were approximately 2.0 × 106 pfu/ml for females and 2.3 × 106 pfu/ml for males, and this complies with the test requirement. From the libraries, 1750 male ESTs and 1640 female ESTs were sequenced and further analyzed. We identified 15 olfactory genes (12 are new), and 14 of them have the characteristic six conserved cysteine residues. With the exception of OBP9, all the genes were classified as classical OBP genes. By alignment and cluster analysis, the 14 classical OBPs were divided into pheromone binding protein (PBP) genes, odorant binding protein (OBP) genes, general odorant binding protein 1 (GOBP1) genes, general odorant binding protein 2 (GOBP2) genes and antennae binding protein (ABP) genes. Among these genes, we obtained three PBP genes (PBP1–PBP3) including two new PBP genes, one new ABP gene, nine new OBP genes (OBP1–OBP9), one known GOBP1 gene and one known GOBP2 gene. Furthermore, the expression patterns of these 14 classical OBP genes were investigated in various tissues by real-time quantitative polymerase chain reaction (qPCR). The results indicated that some OBP genes are expressed differently in different sexes and tissues, but most of them are highly expressed in antennae.  相似文献   

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【目的】对绿豆象Callosobruchus chinensis气味结合蛋白(odorant binding proteins, OBPs)基因进行克隆、鉴定和组织表达分析,为研究OBPs在绿豆象嗅觉感受过程中的功能奠定基础。【方法】基于绿豆象触角转录组数据,通过RT-PCR克隆绿豆象6个OBP基因并进行生物信息学分析;通过qRT-PCR分析OBP基因在绿豆象雌雄成虫头(不含触角)、触角、腹、足和翅各组织中的表达情况。【结果】获得了6个绿豆象OBP基因的开放阅读框,命名为CchiOBP1-CchiOBP6(GenBank登录号: MN832700-MN832703, MN901841-MN901842);CchiOBP5为一段C端不完整的Minus-C OBP,其余均属于完整的Classical OBPs,预测6个CchiOBPs均含有信号肽。系统发育分析表明CchiOBP1, CchiOBP2和CchiOBP5与叶甲科(Chrysomelidae)昆虫OBPs的亲缘关系较近,CchiOBP3, CchiOBP4和CchiOBP6与天牛科(Cerambycidae)昆虫OBPs的亲缘关系较近。qRT-PCR结果表明,6个CchiOBPs基因在绿豆象成虫的触角、头(不含触角)、腹、翅和足部均有不同的表达量,CchiOBP1-4和CchiOBP6在雌雄成虫触角中均呈现高表达,且极显著高于在其他组织中的。CchiOBP5在雌成虫触角和头部(不含触角)中呈现高表达,但在雄成虫中表现为在足部的表达量显著高于在其他组织中的,在触角中的表达量最低。【结论】确定了绿豆象6个CchiOBPs基因的核苷酸和氨基酸序列组成,其中有5个CchiOBPs基因在绿豆象雌雄成虫触角中高表达,推测其在绿豆象嗅觉识别寄主植物过程中发挥重要作用。  相似文献   

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【目的】桃小食心虫Carposina sasakii是我国北方落叶果树的重要蛀果害虫,一旦幼虫蛀入果内,便会对果实的品质产生影响。成虫期是控制此害虫发生为害的关键时期。气味结合蛋白(odorant binding protein, OBP)作为昆虫嗅觉感受系统中与气味分子结合的重要气味运转蛋白,在成虫寄主植物定位及交配行为中具有重要作用。本研究对桃小食心虫气味结合蛋白基因进行克隆、鉴定和成虫组织表达分析,以期为OBPs在桃小食心虫嗅觉感受过程中的功能研究奠定基础。【方法】基于前期获得的桃小食心虫转录组测序数据,选择在其雌雄成虫触角中相对高表达的5个OBP基因(CsasOBP7, CsasOBP12, CsasOBP15, CsasOBP19和CsasOBP21)。采用RACE技术克隆出这5个OBP基因cDNA全长序列,进行生物信息学分析;通过qRT-PCR技术检测这5个OBP基因在桃小食心虫不同发育阶段(1和5日龄卵、初孵幼虫、老熟幼虫和蛹)以及在刚羽化、交配高峰期的和交配后6 h的雌雄成虫不同组织[触角、头(不含触角)、胸、腹、足和翅]中表达量。【结果】获得桃小食心虫5个OBP基因CsasOBP7, CsasOBP12, CsasOBP15, CsasOBP19和CsasOBP21的全长cDNA序列(GenBank登录号: MZ476786-MZ476790)。其中CsasOBP19为一段C端不完整的Minus-C OBP,其余均属于完整的Classical OBPs,且均含有信号肽。系统发育分析表明,在桃小食心虫5个CsasOBPs中, CsasOBP7和CsasOBP19的亲缘关系最近。qRT-PCR结果表明,CsasOBP7和CsasOBP19均在桃小食心虫蛹期高表达,而CsasOBP12, CsasOBP15和CsasOBP21均在卵期高表达。从桃小食心虫成虫刚羽化、交配高峰直至交配后6 h,5个CsasOBP基因表达量总体呈下降趋势。在成虫刚羽化时,这5个CsasOBP基因在各组织中均有表达,且主要在雄虫组织中高表达;在成虫交配高峰期,这5个CsasOBP基因在雄虫触角中高表达,特别是CsasOBP7和CsasOBP15只在雄虫触角中特异性表达;在成虫交配后6 h,每个CsasOBP基因只特异性地高表达于1或2个组织中。【结论】桃小食心虫的这5个CsasOBP基因在成虫交配高峰期雄虫触角中高表达,意味着这些CsasOBP基因可能在雄虫寻找雌虫过程中发挥着重要作用。  相似文献   

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Insect odorant-binding proteins (OBPs) are thought to play a crucial role in the chemosensation of hydrophobic molecules such as pheromones and host chemicals. The onion fly, Delia antiqua, is a specialist feeder of Allium plants, and utilizes a host odorant n-dipropyl disulfide as a cue for its oviposition. Because n-dipropyl disulfide is a highly hydrophobic compound, some OBPs might be indispensable for perception of it. However, no OBP gene has been identified in D. antiqua. Here, to obtain the DNA sequences of D. antiqua OBPs, we performed an analysis of antennal expressed sequence tags (ESTs). Among 288 EST clones, eight D. antiqua OBP genes were identified for the first time. Phylogenetic analysis revealed that each D. antiqua OBP gene is more closely related to its Drosophila orthologs than to the other D. antiqua OBP genes, suggesting that these OBP genes had emerged before the divergence of Delia and Drosophila species. All of the eight D. antiqua OBPs are expressed not only in the antennae but also in the legs, suggesting additional roles in the taste perception of non-volatile compounds. These findings serve as an important basis for understanding the molecular mechanisms underlying the host adaptations of D. antiqua.  相似文献   

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Odorant-binding proteins (OBPs) and chemosensory proteins (CSPs) are small soluble polypeptides that bind semiochemicals in the lymph of insect chemosensilla. In the genome of Anopheles gambiae, 66 genes encode OBPs and 8 encode CSPs. Here we monitored their expression through classical proteomics (2D gel-MS analysis) and a shotgun approach. The latter method proved much more sensitive and therefore more suitable for tiny biological samples as mosquitoes antennae and eggs. Females express a larger number and higher quantities of OBPs in their antennae than males (24 vs 19). OBP9 is the most abundant in the antennae of both sexes, as well as in larvae, pupae and eggs. Of the 8 CSPs, 4 were detected in antennae, while SAP3 was the only one expressed in larvae. Our proteomic results are in fairly good agreement with data of RNA expression reported in the literature, except for OBP4 and OBP5, that we could not identify in our analysis, nor could we detect in Western Blot experiments. The relatively limited number of soluble olfactory proteins expressed at relatively high levels in mosquitoes makes further studies on the coding of chemical messages at the OBP level more accessible, providing for few specific targets. Identification of such proteins in Anopheles gambiae might facilitate future studies on host finding behavior in this important disease vector.  相似文献   

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Two high-quality cDNA libraries were constructed from female and male antennae of the cotton bollworm Helicoverpa armigera (Hübner). The titers were approximately 2.0 × 10? pfu/ml for females and 2.3 × 10? pfu/ml for males, and this complies with the test requirement. From the libraries, 1750 male ESTs and 1640 female ESTs were sequenced and further analyzed. We identified 15 olfactory genes (12 are new), and 14 of them have the characteristic six conserved cysteine residues. With the exception of OBP9, all the genes were classified as classical OBP genes. By alignment and cluster analysis, the 14 classical OBPs were divided into pheromone binding protein (PBP) genes, odorant binding protein (OBP) genes, general odorant binding protein 1 (GOBP1) genes, general odorant binding protein 2 (GOBP2) genes and antennae binding protein (ABP) genes. Among these genes, we obtained three PBP genes (PBP1-PBP3) including two new PBP genes, one new ABP gene, nine new OBP genes (OBP1-OBP9), one known GOBP1 gene and one known GOBP2 gene. Furthermore, the expression patterns of these 14 classical OBP genes were investigated in various tissues by real-time quantitative polymerase chain reaction (qPCR). The results indicated that some OBP genes are expressed differently in different sexes and tissues, but most of them are highly expressed in antennae.  相似文献   

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~~Identification and expression profiling of putative odorant-binding proteins in the malaria mosquitoes, Anopheles gambiae and A. arabiensis1. Curtis, C. F., Introduction 1: An overview of mosquito biology, behaviour and importance, in Olfaction in Mosquito-Host Interactions (eds. Bock, G. R.. Cardew, G.), New York: Wiley, 1996, 3-7. 2. Nighom, A., Hildebrand. J. G.. Dissecting the molecular mechanisms of olfaction in a malaria-vector mosquito, PNAS, 2002, 99(3): 1113-…  相似文献   

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