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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Towards an Understanding of Molecule Capture by the Antennae of Male Beetles Belonging to the Genus Rhipicera (Coleoptera, Rhipiceridae)
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Towards an Understanding of Molecule Capture by the Antennae of Male Beetles Belonging to the Genus Rhipicera (Coleoptera, Rhipiceridae)

机译:理解属于Rhipicera(鞘翅目,Rhipiceridae)属的甲虫的触角对分子的捕获。

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Working on the hypothesis that an important function of the lamellate antennae of adult male beetles belonging to the genus Rhipicera is to detect scent associated with female conspecifics, and using field observations, anatomical models derived from X-ray microcomputed tomography, and scanning electron microscopy, we have investigated the behavioral, morphological, and morphometric factors that may influence molecule capture by these antennae. We found that male beetles fly upwind in a zigzag manner, or face upwind when perching, behavior consistent with an animal that is tracking scent. Furthermore, the ultrastructure of the male and female antennae, like their gross morphology, is sexually dimorphic, with male antennae possessing many more of a particular type of receptor-the sensillum placodeum-than their female counterparts (approximately 30,000 vs. 100 per antenna, respectively). Based on this disparity, we assume that the sensilla placodea on the male antennae are responsible for detecting scent associated with female Rhipicera beetles. Molecule capture by male antennae in their alert, fanned states is likely to be favoured by: (a) male beetles adopting prominent, upright positions on high points when searching for scent; (b) the partitioning of antennae into many small segments; (c) antennal morphometry (height, width, outline area, total surface area, leakiness, and narrow channels); (d) the location of the sensilla placodea where they are most likely to encounter odorant molecules; and (e) well dispersed sensilla placodea. The molecule-capturing ability of male Rhipicera antennaemay be similar to that of the pectinate antennae of certain male moths. (C) 2015 Wiley Periodicals, Inc.
机译:研究假说,属于Rhipicera属的成年雄性甲虫的层状触角的重要功能是检测与雌性特定物种相关的气味,并使用野外观察,X射线计算机断层摄影术得出的解剖模型和扫描电子显微镜,我们研究了可能影响这些触角捕获分子的行为,形态和形态计量因素。我们发现,雄性甲虫以锯齿形的方式飞向上风,或在栖息时面对上风,其行为与追踪气味的动物一致。此外,雄性和雌性触角的超微结构,就像它们的总体形态一样,是两性的,雄性触角比雌性触角拥有更多的一种特殊类型的受体-扁担膜(每个天线约30,000比100),分别)。基于此差异,我们假设雄性触角上的感触斑负责检测与雌性Rhipicera甲虫相关的气味。雄性触角呈扇形呈扇形的状态可能被雄性触角捕获:(a)雄性甲虫在寻找气味时在高点上采取突出的直立姿势; (b)将触角划分为许多小段; (c)触角形态学(高度,宽度,轮廓区域,总表面积,泄漏和狭窄通道); (d)最有可能碰到气味分子的感触斑的位置; (e)分布良好的感官扁肠。雄性Rhipicera触角感的分子捕获能力与某些雄蛾的果胶状触角的相似。 (C)2015威利期刊公司

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