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维生素A诱导日本棕蛙蝌蚪断尾再生组织背侧和腹侧出现同源后肢形成。

Vitamin A induced homeotic hindlimb formation on dorsal and ventral sides of regenerating tissue of amputated tails of Japanese brown frog tadpoles.

作者信息

Tazawa Ichiro, Yaoita Yoshio

机构信息

Division of Embryology, Amphibian Research Center, Hiroshima University, Higashihiroshima, 739-8526, Japan.

出版信息

Dev Growth Differ. 2017 Dec;59(9):688-700. doi: 10.1111/dgd.12407. Epub 2017 Nov 1.

Abstract

When anuran tadpoles are treated with vitamin A after tail amputation, hindlimb-like structures can be generated instead of the lost tail part at the amputation site. This homeotic transformation was initially expected to be a key to understanding the body plan of vertebrates. Unfortunately, homeotic limb formation has been reproduced in only some Indian frog species and a European species, but not in experimental anurans such as Xenopus laevis or Rana catesbeiana. Consequently, this fascinating phenomenon has not been well analyzed, especially at the molecular level. In addition, the initial processes of ectopic limb development are also unclear because morphological changes in the early phases have not been analyzed in detail. In this study, we report the induction of homeotic transformation using Japanese brown frogs and present a detailed morphological analysis. Unexpectedly, the ectopic limbs developed not only at the ventral sites, but also at the dorsal sites of the tail regenerates of vitamin A-treated tadpoles. The relationship between position and axial orientation of ectopic limbs suggested the double duplication of positional value order along the rostral-caudal axis and the dorsal-ventral axis of the tail regenerates.

摘要

当无尾两栖类蝌蚪在尾部截肢后用维生素A处理时,截肢部位可以生成类似后肢的结构,而不是缺失的尾部。这种同源异型转化最初被认为是理解脊椎动物身体结构的关键。不幸的是,同源异型肢体形成仅在一些印度蛙类和一种欧洲蛙类中重现,而在非洲爪蟾或牛蛙等实验性无尾两栖类中并未出现。因此,这一迷人的现象尚未得到充分分析,尤其是在分子水平上。此外,异位肢体发育的初始过程也不清楚,因为早期阶段的形态变化尚未得到详细分析。在本研究中,我们报告了使用日本林蛙诱导同源异型转化的情况,并进行了详细的形态学分析。出乎意料的是,异位肢体不仅在维生素A处理的蝌蚪尾部再生的腹侧部位发育,也在背侧部位发育。异位肢体的位置与轴向之间的关系表明,沿着尾部再生的头-尾轴和背-腹轴,位置值顺序出现了双重重复。

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