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首页> 外文期刊>Frontiers in zoology >Evolutionary transformation of mouthparts from particle-feeding to piercing carnivory in Viper copepods: Review and?3D analyses of a key innovation using advanced imaging techniques
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Evolutionary transformation of mouthparts from particle-feeding to piercing carnivory in Viper copepods: Review and?3D analyses of a key innovation using advanced imaging techniques

机译:从vipopods刺激筛选到刺激肉体的进化转化:审查和使用先进的成像技术对关键创新的3D分析

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摘要

Novel feeding adaptations often facilitate adaptive radiation and diversification. But the evolutionary origins of such feeding adaptations can be puzzling if they require concordant change in multiple component parts. Pelagic, heterorhabdid copepods (Calanoida) exhibit diverse feeding behaviors that range from simple particle feeding to a highly specialized form of carnivory involving piercing mouthparts that likely inject venom. We review the evolutionary history of heterorhabdid copepods and add new high-resolution, 3D anatomical analyses of the muscular system, glands and gland openings associated with this remarkable evolutionary transformation. We examined four heterorhabdid copepods with different feeding modes: one primitive particle-feeder (Disseta palumbii), one derived and specialized carnivore (Heterorhabdus subspinifrons), and two intermediate taxa (Mesorhabdus gracilis and Heterostylites longicornis). We used two advanced, high-resolution microscopic techniques - serial block-face scanning electron microscopy and two-photon excitation microscopy - to visualize mouthpart form and internal anatomy at unprecedented nanometer resolution. Interactive 3D graphical visualizations allowed putative homologues of muscles and gland cells to be identified with confidence and traced across the evolutionary transformation from particle feeding to piercing carnivory. Notable changes included: a) addition of new gland cells, b) enlargement of some (venom producing?) glands, c) repositioning of gland openings associated with hollow piercing fangs on the mandibles, d) repurposing of some mandibular-muscle function to include gland-squeezing, and e) addition of new muscles that may aid venom injection exclusively in the most specialized piercing species. In addition, live video recording of all four species revealed mandibular blade movements coupled to cyclic contraction of some muscles connected to the esophagus. These behavioral and 3D morphological observations revealed a novel injection system in H. subspinifrons associated with piercing (envenomating?) carnivory. Collectively, these results suggest that subtle changes in mandibular tooth form, and muscle and gland form and location, facilitated the evolution of a novel, piercing mode of feeding that accelerated diversification of the genus Heterorhabdus. They also highlight the value of interactive 3D animations for understanding evolutionary transformations of complex, multicomponent morphological systems.
机译:新颖的喂养适应往往有助于自适应辐射和多样化。但如果需要在多个组件部件中需要相应的变化,这种饲养适应的进化起源可能是令人费解的。 Pelagic,Heterorhabdid Copepods(Calanoida)表现出各种饲养行为,这些行为范围从简单的颗粒饲喂到涉及可能注射毒液的刺穿口的刺激物的高度专用的肉食病变。我们审查了异端杂草癌的进化历史,并增加了与这种显着进化转化相关的肌肉系统,腺体和腺体开口的新高分辨率,3D解剖分析。我们用不同的饲养模式检查了四种异素酚醛蛋白酶:一种原始颗粒饲养者(抗病术术症),一种衍生和专门的肉食病(Heterorhabdus subspinifrons)和两个中间分类基因群(Mesorhabdus Gracilis和Heterostylites Longicordornis)。我们使用了两种先进的高分辨率微观技术 - 连续块面扫描电子显微镜和双光子激发显微镜 - 以前所未有的纳米分辨率可视化口腔形状和内部解剖学。交互式3D图形可视化允许肌肉和腺体细胞的推定同源物,以置信地识别并追溯到从筛选到刺激的颗粒的进化转化。值得注意的变化包括:a)添加新的腺体细胞,b)放大一些(毒液产生ω)腺体,c)与空心刺穿的颌骨刺耳的腺体开口的重新定位,d)重新扫描一些下颌肌肉作用腺体挤压,e)添加新的肌肉,可以专门在最专业的刺穿物种中提供毒液。此外,所有四种物种的实况视频录制揭示了与食管连接的一些肌肉的循环收缩的下颌叶片运动。这些行为和3D形态学观察揭示了与刺穿(encenomating?)肉类植物相关的H. subspinifrons中的新型注射系统。这些结果表明,下颌牙齿形式的微妙变化,肌肉和腺体形式和位置,促进了一种新的刺穿喂养模式的进化,其加速了异血管属的多样化。它们还突出了交互式3D动画的价值,以了解复杂的多组分形态系统的进化变换。

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