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首页> 外文期刊>The Journal of Experimental Biology >A comparative study of odorant binding protein genes: differential expression of the PBP1-GOBP2 gene cluster in Manduca sexta (Lepidoptera) and the organization of OBP genes in Drosophila melanogaster (Diptera) [Review]
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A comparative study of odorant binding protein genes: differential expression of the PBP1-GOBP2 gene cluster in Manduca sexta (Lepidoptera) and the organization of OBP genes in Drosophila melanogaster (Diptera) [Review]

机译:香气结合蛋白基因的比较研究:六头蝠(鳞翅目)中PBP1-GOBP2基因簇的差异表达和果蝇(双翅目)中OBP基因的组织[综述]

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摘要

Insects discriminate odors using sensory organs called olfactory sensilla, which display a wide range of phenotypes. Sensilla express ensembles of proteins, including odorant binding proteins (OBPs), olfactory receptors (ORs) and odor degrading enzymes (ODES); odors are thought to be transported to ORs by OBPs and subsequently degraded by ODES. These proteins belong to multigene families. The unique combinatorial expression of specific members of each of these gene families determines, in part, the phenotype of a sensillum and what odors it can detect. Furthermore, OBPs, ORs and ODEs are expressed in different cell types, suggesting the need for cell-cell communication to coordinate their expression. This report examines the OBP gene family. In Manduca sexta, the genes encoding PBPIMsex and GOBP2Msex are sequenced, shown to be adjacent to one another, and characterized together with OBP gene structures of other lepidoptera and Drosophila melanogaster. Expression of PBP1Msex, GOBP1Msex and GOBP2Msex is characterized in adult male and female antenna and in larval antenna and maxilla. The genomic organization of 25 D. melanogaster OBPs are characterized with respect to gene locus, gene cluster, amino acid sequence similarity, exon conservation and proximity to OR loci, and their sequences are compared with 14 M. sexta OBPs. Sensilla serve as portals of important behavioral information, and genes supporting sensilla function are presumably under significant evolutionary selective pressures. This study provides a basis for studying the evolution of the OBP gene family, the regulatory mechanisms governing the coordinated expression of OBPs, ORs and ODES, and the processes that determine specific sensillum phenotypes.
机译:昆虫使用称为嗅觉感官的感觉器官来区分气味,该感觉器官表现出广泛的表型。 Sensilla表达蛋白质的集合体,包括气味结合蛋白(OBP),嗅觉受体(OR)和气味降解酶(ODES);气味被认为是由OBPs转移到ORs,然后由ODES降解。这些蛋白质属于多基因家族。这些基因家族的每个特定成员的独特组合表达部分决定了sensillum的表型以及它可以检测到的气味。此外,OBP,OR和ODE在不同的细胞类型中表达,这表明需要细胞间通信来协调其表达。本报告研究了OBP基因家族。在番荔枝中,对编码PBPIMsex和GOBP2Msex的基因进行测序,显示彼此相邻,并与其他鳞翅目和果蝇的OBP基因结构一起表征。 PBP1Msex,GOBP1Msex和GOBP2Msex的表达在成年男性和女性触角以及幼体触角和上颌骨中都有特征。在基因座,基因簇,氨基酸序列相似性,外显子保守性和与OR基因座的接近性方面,对25个黑腹果蝇OBP的基因组组织进行了表征,并将其序列与14个M. sexta OBP进行了比较。感官充当重要行为信息的门户,并且支持感官功能的基因可能处于显着的进化选择压力之下。该研究为研究OBP基因家族的进化,调控OBP,OR和ODES的协同表达的调控机制以及确定特定的sensillum表型的过程提供了基础。

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