Department of Biophysics, Graduate School of Science, Kyoto University, Kitashirakawa-Oiwake, Sakyo-ku, Kyoto 606-8502, Japan.
Dev Growth Differ. 2011 Apr;53(3):300-11. doi: 10.1111/j.1440-169X.2010.01234.x. Epub 2011 Mar 23.
Freshwater planarians can regenerate a brain, including eyes, from the anterior blastema, and coordinately form an optic chiasm during eye and brain regeneration. To investigate the role of the netrin- and slit-signaling systems during optic chiasm formation, we cloned three receptor genes (Djunc5A, Djdcc and DjroboA) expressed in visual neurons and their ligand genes (DjnetB and Djslit) and analyzed their functions by RNA interference (RNAi). Although each of DjroboA(RNAi), Djunc5A(RNAi) and DjnetB(RNAi) showed a weak phenotype and Djslit(RNAi) showed a severe defect of eye formation, we did not observe any defect of crossing of visual axons over the midline among single knockdown planarians. However, among double knockdown planarians, some of DjnetB(RNAi);DjroboA(RNAi) and Djunc5A(RNAi);DjroboA(RNAi) showed complete disconnection between the visual axons from the two sides, suggesting that some combination of netrin- and robo-mediated signals may be required for crossing over the midline. Finally, we carefully investigated the distribution patterns of cells expressing DjNetB protein, DjnetB, and Djslit at the early stage of regeneration, and found that visual axons projected along a path sandwiched between DjNetB protein and Djslit-positive cells. These results suggest that two different collaborative or combinatory signals may be required for midline crossing at the early stage of chiasm formation during eye and brain regeneration.
淡水涡虫可以从前部芽基再生脑,包括眼睛,并在眼睛和脑再生过程中协调形成视神经交叉。为了研究 netrin- 和 slit 信号系统在视神经交叉形成过程中的作用,我们克隆了三个在视觉神经元中表达的受体基因(Djunc5A、Djdcc 和 DjroboA)及其配体基因(DjnetB 和 Djslit),并通过 RNA 干扰(RNAi)分析了它们的功能。尽管 DjroboA(RNAi)、Djunc5A(RNAi)和 DjnetB(RNAi) 中的每一种都表现出微弱的表型,而 Djslit(RNAi)则表现出严重的眼睛形成缺陷,但我们在单个敲低涡虫中没有观察到视觉轴突中线交叉的任何缺陷。然而,在双敲低涡虫中,一些 DjnetB(RNAi);DjroboA(RNAi)和 Djunc5A(RNAi);DjroboA(RNAi)表现出两侧视觉轴突完全断开,表明 netrin- 和 robo 介导的信号的一些组合可能是中线交叉所必需的。最后,我们仔细研究了 DjNetB 蛋白、DjnetB 和 Djslit 在再生早期的表达细胞的分布模式,发现视觉轴突沿着 DjNetB 蛋白和 Djslit 阳性细胞之间夹着的一条路径投射。这些结果表明,在眼睛和脑再生过程中视神经交叉形成的早期阶段,可能需要两种不同的协作或组合信号。