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Regulation of Axon Guidance by Slit and Netrin Signaling in the Drosophila Ventral Nerve Cord

机译:果蝇腹侧神经线中的裂隙和网蛋白信号传导对轴突指导的调节。

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摘要

Netrin and Slit signaling systems play opposing roles during the positioning of longitudinal tracts along the midline in the ventral nerve cord of Drosophila embryo. It has been hypothesized that a gradient of Slit from the midline interacts with three different Robo receptors to specify the axon tract positioning. However, no such gradient has been detected. Moreover, overexpression of Slit at the midline has no effect on the positioning of these lateral tracts. In this article, we show that Slit is present outside of the midline along the longitudinal and commissural tracts. Sli from the midline, in a Robo-independent manner, is initially taken up by the commissural axon tracts when they cross the midline and is transported along the commissural tracts into the longitudinal connectives. These results are not consistent with a Sli gradient model. We also find that sli mRNA is maternally deposited and embryos that are genetically null for sli can have weaker guidance defects. Moreover, in robo or robo3 mutants, embryos with normal axon tracts are found and such robo embryos reach pupal stages and die, while robo3 mutant embryos develop into normal individuals and produce eggs. Interestingly, embryos from robo3 homozygous individuals fail to develop but have axon tracts ranging from normal to various defects: robo3 phenotype, robo phenotype, and slit-like phenotype, suggesting a more complex functional role for these genes than what has been proposed. Finally, our previous results indicated that netrin phenotype is epistatic to sli or robo phenotypes. However, it seems likely that this previously reported epistatic relationship might be due to the partial penetrance of the sli, robo, robo3 (or robo2) phenotypes. Our results argue that double mutant epistasis is most definitive only if the penetrance of the phenotypes of the mutants involved is complete.
机译:Netrin和Slit信号系统在果蝇胚胎腹神经索中线沿中线放置纵向束时起相反的作用。假设从中线开始的Slit梯度与三种不同的Robo受体相互作用以指定轴突束的位置。但是,尚未检测到这样的梯度。而且,Slit在中线的过度表达对这些侧向束的位置没有影响。在本文中,我们表明狭缝沿纵向和连合线位于中线之外。来自中线的Sli以独立于Robo的方式首先穿过连合的轴突束,穿过横切中线并沿连合的轴突输送到纵向结缔组织中。这些结果与Sli梯度模型不一致。我们还发现sli mRNA在母体中沉积,而sli遗传无效的胚胎可能具有较弱的引导缺陷。此外,在robo或robo3突变体中,发现具有正常轴突束的胚胎,此类robo胚胎达到p期并死亡,而robo3突变体胚胎发育成正常个体并产生卵。有趣的是,来自robo3纯合体个体的胚胎无法发育,但轴突范围从正常到各种缺陷:robo3表型,robo表型和狭缝状表型,提示这些基因的功能作用比已提出的更为复杂。最后,我们先前的结果表明netrin表型比sli或robo表型上位。但是,以前报道的上位性关系似乎可能是由于sli,robo,robo3(或 robo2 )表型的部分渗透。我们的研究结果表明,只有在所涉及突变体表型的渗透完全完成后,双重突变体上位才是最确定的。

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