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The dorsal diencephalic conduction system of zebrafish as a model of vertebrate brain lateralisation

机译:斑马鱼的背脑脑传导系统作为脊椎动物脑侧化的模型

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摘要

Lateralisation is an attractive and intriguing feature of the vertebrate CNS studied for decades in the different disciplines of the neurosciences. Due to the complexity of the phenomena and intrinsic limitations of the approaches used to date, it has been difficult to establish useful links between the different, and usually distant, levels of lateralisation e.g. between genetics, morphology, physiology and behaviour. Recently, the dorsal diencephalon of the teleost zebrafish has emerged as a valuable model to begin addressing this issue and as a result unravel the role of vertebrate CNS lateralisation. Zebrafish is a well-established genetic system that allows a ‘bottom up’ (‘gene to behaviour’) approach to the study of lateralisation. In fact, it is the single vertebrate system to date in which asymmetric gene expression in the brain has been directly linked to asymmetric morphology. Zebrafish offers several experimental advantages that allow the study of brain lateralisation using a wide range of experimental tools, from study of gene function through in vivo analysis of morphology and physiology to behavioural assessments. Altogether, these features will allow the establishment of operational links between lower (genetics and morphology) and upper (physiology and behaviour) levels of brain lateralisation.
机译:侧向化是在神经科学的不同学科中研究了数十年的脊椎动物CNS的一个吸引人和吸引人的特征。由于现象的复杂性和迄今为止所用方法的固有局限性,很难在不同的,通常是遥远的横向化水平之间建立有用的联系。在遗传学,形态学,生理学和行为之间。最近,硬骨斑马鱼的背脑中脑已经成为开始解决这个问题的有价值的模型,并因此揭示了脊椎动物CNS侧向化的作用。斑马鱼是一个完善的遗传系统,可以采用“自下而上”(“从基因到行为”的方法)进行侧向化研究。实际上,这是迄今为止的单个脊椎动物系统,其中大脑中的不对称基因表达已直接与不对称形态联系在一起。斑马鱼具有多种实验优势,可以使用广泛的实验工具来研究大脑偏侧化,从基因功能研究到体内形态学和生理学分析再到行为评估。总而言之,这些特征将允许在较低水平(遗传学和形态学)与较高水平(生理学和行为)的脑侧化之间建立操作联系。

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