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首页> 外文期刊>Journal of Neuroscience Methods >Pygmy squids and giant brains: Mapping the complex cephalopod CNS by phalloidin staining of vibratome sections and whole-mount preparations
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Pygmy squids and giant brains: Mapping the complex cephalopod CNS by phalloidin staining of vibratome sections and whole-mount preparations

机译:侏儒鱿鱼和巨脑:通过对鞭毛虫切片和整装制剂的鬼笔环肽染色来绘制复杂的头足类中枢神经系统

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摘要

Among bilaterian invertebrates, cephalopod molluscs (e.g., squids, cuttlefish and octopuses) have a central nervous system (CNS) that rivals in complexity that of the phylogenetically distant vertebrates (e.g., mouse and human). However, this prime example of convergent evolution has rarely been the subject of recent developmental and evolutionary studies, which may partly be due to the lack of suitable neural markers and the large size of cephalopod brains. Here, we demonstrate the usefulness of fluorescence-coupled phalloidin to characterize the CNS of cephalopods using histochemistry combined with confocal laser scanning microscopy. Whole-mount preparations of developmental stages as well as vibratome sections of embryonic and adult brains were analyzed and the benefits of this technique are illustrated. Compared to classical neuroanatomical and antibody-based studies, phalloidin labeling experiments are less time-consuming and allow a high throughput of samples. Besides other advantages summarized here, phalloidin reliably labels the entire neuropil of the CNS of all squids, cuttlefish and octopuses investigated. This facilitates high-resolution in toto reconstructions of the CNS and contributes to a better understanding of the organization of neural networks. Amenable for multi-labeling experiments employing antibodies against neurotransmitters, proteins and enzymes, phalloidin constitutes an excellent neuropil marker for the complex cephalopod CNS
机译:在双侧无脊椎动物中,头足类软体动物(例如鱿鱼,乌贼和章鱼)的中枢神经系统(CNS)的复杂性可与系统发育较远的脊椎动物(例如小鼠和人类)相媲美。但是,这种融合进化的主要例子很少是最近的发展和进化研究的主题,这可能部分是由于缺乏合适的神经标记和头足类大脑的大尺寸。在这里,我们证明了使用组织化学结合共聚焦激光扫描显微镜,荧光偶联鬼笔环肽表征头足类动物中枢神经系统的有用性。分析了发育阶段的完整制剂以及胚胎和成年大脑的玻璃纤维切片,并说明了该技术的好处。与经典的神经解剖学和基于抗体的研究相比,鬼笔环肽标记实验耗时少且样品通量高。除了这里总结的其他优点之外,鬼笔环肽还可以可靠地标记所研究的所有鱿鱼,乌贼和章鱼的中枢神经系统的整个神经纤维。这促进了CNS重建的高分辨率,并有助于更好地理解神经网络的组织。鬼笔环肽适合使用抗神经递质,蛋白质和酶的抗体进行多标记实验,构成复杂头足类中枢神经系统的极佳神经纤维标记物

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