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通过相关显微镜技术研究圆翅黑蝗(Scudder,1878年)交配期间生殖器的功能形态。

Investigating the functional morphology of genitalia during copulation in the grasshopper Melanoplus rotundipennis (Scudder, 1878) via correlative microscopy.

作者信息

Woller Derek A, Song Hojun

机构信息

Department of Entomology, Texas A&M University, College Station, Texas.

出版信息

J Morphol. 2017 Mar;278(3):334-359. doi: 10.1002/jmor.20642. Epub 2017 Jan 23.

DOI:10.1002/jmor.20642
PMID:28112822
Abstract

We investigated probable functions of the interacting genitalic components of a male and a female of the flightless grasshopper species Melanoplus rotundipennis (Scudder, 1878) (frozen rapidly during copulation) via correlative microscopy; in this case, by synergizing micro-computed tomography (micro-CT) with digital single lens reflex camera photography with focal stacking, and scanning electron microscopy. To assign probable functions, we combined imaging results with observations of live and museum specimens, and function hypotheses from previous studies, the majority of which focused on museum specimens with few investigating hypotheses in a physical framework of copulation. For both sexes, detailed descriptions are given for each of the observed genitalic and other reproductive system components, the majority of which are involved in copulation, and we assigned probable functions to these latter components. The correlative microscopy approach is effective for examining functional morphology in grasshoppers, so we suggest its use for other animals as well, especially when investigating body regions or events that are difficult to access and understand otherwise, as shown here with genitalia and copulation. J. Morphol. 278:334-359, 2017. © 2017 Wiley Periodicals, Inc.

摘要

我们通过相关显微镜技术,研究了不能飞行的圆翅蝗属蝗虫(Melanoplus rotundipennis,Scudder,1878)的雄性和雌性相互作用的生殖器组成部分的可能功能(在交配过程中迅速冷冻);在本研究中,是通过将显微计算机断层扫描(micro-CT)与带焦点堆叠的数码单反相机摄影以及扫描电子显微镜相结合来实现的。为了确定可能的功能,我们将成像结果与对活体和博物馆标本的观察结果以及先前研究中的功能假设相结合,其中大多数研究聚焦于博物馆标本,在交配的物理框架内很少有研究假设。对于两性,我们对观察到的每个生殖器及其他生殖系统组成部分都进行了详细描述,其中大多数都参与交配,并且我们为这些组成部分确定了可能的功能。相关显微镜技术方法在研究蝗虫的功能形态方面是有效的,所以我们建议也将其用于其他动物,特别是在研究难以通过其他方式获取和理解的身体部位或事件时,就像这里对生殖器和交配的研究一样。《形态学杂志》278:334 - 359,2017年。© 2017威利期刊公司

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