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De novo assembly of a transcriptome for the cricket Gryllus bimaculatus prothoracic ganglion: An invertebrate model for investigating adult central nervous system compensatory plasticity

机译:De Novo组装Cricket Gryllus Bimaculatus Prothoracic GaNlion:一种用于调查成人中枢神经系统补偿性可塑性的无脊椎动物模型

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摘要

The auditory system of the cricket, Gryllus bimaculatus, demonstrates an unusual amount of anatomical plasticity in response to injury, even in adults. Unilateral removal of the ear causes deafferented auditory neurons in the prothoracic ganglion to sprout dendrites across the midline, a boundary they typically respect, and become synaptically connected to the auditory afferents of the contralateral ear. The molecular basis of this sprouting and novel synaptogenesis in the adult is not understood. We hypothesize that well-conserved developmental guidance cues may recapitulate their guidance functions in the adult in order to facilitate this compensatory growth. As a first step in testing this hypothesis, we have generated a de novo assembly of a prothoracic ganglion transcriptome derived from control and deafferented adult individuals. We have mined this transcriptome for orthologues of guidance molecules from four well-conserved signaling families: Slit, Netrin, Ephrin, and Semaphorin. Here we report that transcripts encoding putative orthologues of most of the candidate developmental ligands and receptors from these signaling families were present in the assembly, indicating expression in the adult G. bimaculatus prothoracic ganglion.
机译:蟋蟀的听觉系统,双斑蟋,表明解剖可塑性的一个不寻常的量损伤反应,即使在成年。单侧去除耳原因deafferented听觉神经元在神经节前胸腺到芽枝晶横跨中线,边界它们通常尊重,并成为突触连接到对侧耳朵的听觉传入。这种发芽和新颖突触在成人的分子基础是不理解。我们假设非常保守发展的指导线索,可以概括在成人的指导作用,以促进这一补涨。由于在测试这个假设的第一步,我们已经产生,从控制和deafferented成年个体获得的前胸腺神经节转录组从头组装。狭缝,导蛋白,肝配和脑信号:我们从四个非常保守的信号家庭开采这个转录为导向分子的同源基因。在这里,我们报告说,编码的大部分来自这些信令家庭候选发育配体和受体的推定同源基因的转录物存在于该组件,这表明在成人G.双斑节前胸腺表达。

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