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经典Wnt/Wingless信号通路参与双斑蟋腿部节段位置值的确定。

Involvement of canonical Wnt/Wingless signaling in the determination of the positional values within the leg segment of the cricket Gryllus bimaculatus.

作者信息

Nakamura Taro, Mito Taro, Tanaka Yoshihisa, Bando Tetsuya, Ohuchi Hideyo, Noji Sumihare

机构信息

Department of Life System, Institute of Technology and Science, The University of Tokushima, 2-1 Minami-Jyosanjima-cho, Tolushima City 770-8506, Japan.

出版信息

Dev Growth Differ. 2007 Feb;49(2):79-88. doi: 10.1111/j.1440-169X.2007.00915.x.

Abstract

The cricket Gryllus bimaculatus is a hemimetabolous insect whose nymphs possess the ability to regenerate amputated legs. Previously, we showed that Gryllus orthologues of Drosophila hedgehog (Gb'hh), wingless (Gb'wg) and decapentaplegic (Gb'dpp) are expressed during leg regeneration and play essential roles in the establishment of the proximal-distal axis. Here, we examined their roles during intercalary regeneration: when a distally amputated tibia with disparate positional values is placed next to a proximally amputated host, intercalary growth occurs in order to regenerate the missing part. In this process, we examined expression patterns of Gb'hh and Gb'wg. We found that expressions of Gb'hh and Gb'wg were induced in a regenerate and the host proximal to the amputated region, but not in the grafted donor distal to the regenerate. This directional induction occurs even in the reversed intercalation. Because these results are consistent with a distal-to-proximal respecification of the regenerate, Gb'wg may be involved in the re-establishment of the positional values in the regenerate. Furthermore, we found that no regeneration occurs when Gb'armadillo (the orthologue of beta-catenin) was knocked down by RNA interference. These results indicate that the canonical Wnt/Wingless signaling pathway is involved in the process of leg regeneration and determination of positional information in the leg segment.

摘要

双斑蟋是一种不完全变态昆虫,其若虫具有再生被切断腿部的能力。此前,我们发现果蝇刺猬基因(Gb'hh)、无翅基因(Gb'wg)和果蝇decapentaplegic基因(Gb'dpp)的双斑蟋直系同源基因在腿部再生过程中表达,并在近远轴的建立中发挥重要作用。在此,我们研究了它们在居间再生过程中的作用:当一个位置价值不同的远端切断的胫骨与一个近端切断的宿主相邻放置时,会发生居间生长以再生缺失部分。在这个过程中,我们检测了Gb'hh和Gb'wg的表达模式。我们发现Gb'hh和Gb'wg的表达在再生体以及切断区域近端的宿主中被诱导,但在再生体远端的移植供体中不被诱导。即使在反向居间再生中,这种定向诱导也会发生。因为这些结果与再生体从远端到近端的重新指定一致,所以Gb'wg可能参与了再生体位置价值的重新建立。此外,我们发现当通过RNA干扰敲低Gb'犰狳(β-连环蛋白的直系同源基因)时,不会发生再生。这些结果表明,经典的Wnt/无翅信号通路参与了腿部再生过程以及腿部节段位置信息的确定。

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