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首页> 外文期刊>Developmental biology >Spatio-temporal expression of Prospero is finely tuned to allow the correct development and function of the nervous system in Drosophila melanogaster.
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Spatio-temporal expression of Prospero is finely tuned to allow the correct development and function of the nervous system in Drosophila melanogaster.

机译:对Prospero的时空表达进行了微调,以使果蝇的神经系统正确发育和发挥功能。

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摘要

Adaptive animal behaviors depend upon the precise development of the nervous system that underlies them. In Drosophila melanogaster, the pan-neural prospero gene (pros), is involved in various aspects of neurogenesis including cell cycle control, axonal outgrowth, neuronal and glial cell differentiation. As these results have been generally obtained with null pros mutants inducing embryonic lethality, the role of pros during later development remains poorly known. Using several pros-Voila (prosV) alleles, that induce multiple developmental and behavioral anomalies in the larva and in adult, we explored the relationship between these phenotypes and the variation of pros expression in 5 different neural regions during pre-imaginal development. We found that the quantity of pros mRNA spliced variants and of Pros protein varied between these alleles in a tissue-specific and developmental way. Moreover, in prosV1 and prosV13 alleles, the respective decrease or increase of pros expression, affected (i) neuronal and glial cell composition, (ii) cell proliferation and death and (iii) axonal-dendritic outgrowth in a stage and cellular context dependant way. The various phenotypic consequences induced during development, related to more or less subtle differences in gene expression, indicate that Pros level needs a precise and specific adjustment in each neural organ to allow its proper function.
机译:适应性动物行为取决于构成其基础的神经系统的精确发育。在果蝇中,泛神经prospero基因(pros)参与神经发生的各个方面,包括细胞周期控制,轴突生长,神经元和神经胶质细胞分化。由于这些结果通常是用无效的pros突变体诱导胚胎致死性获得的,因此对pros在以后的发育中的作用仍然知之甚少。我们使用了几个在幼虫和成年动物中诱发多种发育和行为异常的pros-Voila(prosV)等位基因,我们探讨了这些表型与成像前发育过程中5个不同神经区域中pros表达变化之间的关系。我们发现pros mRNA剪接变体和Pros蛋白的数量在这些等位基因之间以组织特异性和发育方式变化。此外,在prosV1和prosV13等位基因中,pros的表达分别降低或增加,以阶段和细胞背景依赖性方式影响(i)神经元和神经胶质细胞组成,(ii)细胞增殖和死亡,以及(iii)轴突-树突生长。 。与发育过程中或多或少的基因表达细微差异有关的发育过程中诱导的各种表型后果表明,Pros的水平需要在每个神经器官中进行精确而具体的调整,以使其正常工作。

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