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A Neurotransmitter Atlas of the Caenorhabditis elegans Male Nervous System Reveals Sexually Dimorphic Neurotransmitter Usage

机译:秀丽隐杆线虫男性神经系统的神经递质图集揭示了性二态性神经递质的用法。

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摘要

The nervous system of most animals is sexually dimorphic but such dimorphisms are generally poorly mapped on an anatomical, cellular, and molecular level. The adult nervous system of the nematode Caenorhabditis elegans displays a number of clearly defined anatomical sexual dimorphisms, but molecular features of sexually dimorphic neurons remain sparse. In this resource paper, we provide a comprehensive atlas of neurotransmitters used in the nervous system of the male and compare it to that of the hermaphrodite. Among the three major neurotransmitter systems, acetylcholine (ACh) is the most frequently used, followed by glutamate (Glu), and lastly γ-aminobutyric acid (GABA). Many male-specific neurons utilize multiple neurotransmitter systems. Interestingly, we find that neurons that are present in both sexes alter their neurotransmitter usage depending on the sex of the animal. One neuron scales up its usage of ACh, another becomes serotonergic in males, and another one adds a new neurotransmitter (glutamate) to its nonsex-specific transmitter (ACh). In all these cases, neurotransmitter changes are correlated with substantial changes in synaptic connectivity. We assembled the neurotransmitter maps of the male-specific nervous system into a comprehensive atlas that describes the anatomical position of all the neurons of the male-specific nervous system relative to the sex-shared nervous system. We exemplify the usefulness of the neurotransmitter atlas by using it as a tool to define the expression pattern of a synaptic organizer molecule in the male tail. Taken together, the male neurotransmitter atlas provides an entry point for future functional and developmental analysis of the male nervous system.
机译:大多数动物的神经系统具有性二态性,但这种二态性通常在解剖,细胞和分子水平上的定位较差。线虫秀丽隐杆线虫的成年神经系统显示出许多明确定义的解剖学性二态性,但是性二态性神经元的分子特征仍然稀疏。在本参考资料中,我们提供了男性神经系统中使用的神经递质综合图集,并将其与雌雄同体进行比较。在三个主要的神经递质系统中,乙酰胆碱(ACh)是最常用的,其次是谷氨酸(Glu),最后是γ-氨基丁酸(GABA)。许多男性特异性神经元利用多种神经递质系统。有趣的是,我们发现存在于两种性别中的神经元会根据动物的性别而改变其神经递质的使用。一种神经元扩大了其对ACh的使用,另一种神经元在男性中变成了血清素能,另一种神经元在其非性别特异性递质(ACh)中添加了一种新的神经递质(谷氨酸)。在所有这些情况下,神经递质的变化与突触连接的实质性变化相关。我们将雄性特定神经系统的神经递质图组装成一个全面的图册,该图集描述了雄性特定神经系统的所有神经元相对于性别共享神经系统的解剖位置。我们通过将其用作定义雄性尾巴中突触组织分子的表达模式的工具,来举例说明神经递质图谱的有用性。总之,男性神经递质图谱为男性神经系统的未来功能和发育分析提供了切入点。

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