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涡虫中依赖再生的条件性基因敲低(Readyknock):证明大脑中Djsnap - 25表达对负趋光行为的必要性。

Regeneration-dependent conditional gene knockdown (Readyknock) in planarian: demonstration of requirement for Djsnap-25 expression in the brain for negative phototactic behavior.

作者信息

Takano Tomomi, Pulvers Jeremy N, Inoue Takeshi, Tarui Hiroshi, Sakamoto Hiroshi, Agata Kiyokazu, Umesono Yoshihiko

机构信息

Center for Developmental Biology, RIKEN Kobe, 2-2-3 Minatojima-minamimachi, Chuo-ku, Kobe 650-0047, Japan.

出版信息

Dev Growth Differ. 2007 Jun;49(5):383-94. doi: 10.1111/j.1440-169X.2007.00936.x.

Abstract

Freshwater planarians have a simple and evolutionarily primitive brain structure. Here, we identified the Djsnap-25 gene encoding a homolog of the evolutionarily conserved synaptic protein SNAP-25 from the planarian Dugesia japonica and assessed its role in brain function. Djsnap-25 was expressed widely in the nervous system. To investigate the specific role of Djsnap-25 in the brain, we developed a unique technique of RNA interference (RNAi), regeneration-dependent conditional gene knockdown (Readyknock), exploiting the high regenerative capacity of planarians, and succeeded in selectively eliminating the DjSNAP-25 activity in the head region while leaving the DjSNAP-25 activity in the trunk region intact. These knockdown animals showed no effect on brain morphology or on undirected movement of the trunk itself. Light-avoidance behavior or negative phototaxis was used to quantitatively analyze brain function in the knockdown animals. The results suggested that the DjSNAP-25 activity within the head region is required for two independent sensory-processing pathways that regulate locomotive activity and directional movement downstream of distinct primary sensory outputs coming from the head margin and the eyes, respectively, during negative phototaxis. Our approach demonstrates that planarians are a powerful model organism to study the molecular basis of the brain as an information-processing center.

摘要

淡水涡虫具有简单且进化上原始的脑结构。在此,我们从日本三角涡虫中鉴定出编码进化上保守的突触蛋白SNAP - 25同源物的Djsnap - 25基因,并评估了其在脑功能中的作用。Djsnap - 25在神经系统中广泛表达。为了研究Djsnap - 25在脑中的具体作用,我们利用涡虫的高再生能力,开发了一种独特的RNA干扰(RNAi)技术,即依赖再生的条件性基因敲低(Readyknock),并成功地选择性消除了头部区域的DjSNAP - 25活性,而躯干区域的DjSNAP - 25活性保持完整。这些敲低动物的脑形态或躯干自身的无定向运动均未受到影响。利用避光行为或负趋光性对敲低动物的脑功能进行了定量分析。结果表明,在负趋光性过程中,头部区域内的DjSNAP - 25活性对于两条独立的感觉处理通路是必需的,这两条通路分别调节来自头部边缘和眼睛的不同初级感觉输出下游的运动活性和定向运动。我们的方法表明,涡虫是研究作为信息处理中心的脑的分子基础的有力模式生物。

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