直接发育陆生蝾螈的肢体再生:多齿蝾螈的肢体再生。

Regeneration (Oxford, England) Pub Date : 2017-12-06 eCollection Date: 2017-08-01 DOI:10.1002/reg2.93
Claudia Marcela Arenas Gómez, Andrea Gómez Molina, Juliana D Zapata, Jean Paul Delgado
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引用次数: 25

摘要

附肢再生是再生生物学中最引人注目的现象之一,在蝾螈和蝾螈中得到了广泛的研究。然而,其他蝾螈家族的再生能力仍然缺乏描述。在这里,我们描述了一种直接发育的多齿目陆生蝾螈的肢体再生过程。我们(1)描述了四肢再生不同阶段的主要形态特征;(2)表明陆生蝾螈的附属物再生与其他两栖动物不同;(3)表明陆生蝾螈的肢体再生速度明显慢于蝾螈和蝾螈(截肢后95天完全再生),尽管其基因组大小明显小于蝾螈和蝾螈。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Limb regeneration in a direct-developing terrestrial salamander, <i>Bolitoglossa ramosi</i> (Caudata: Plethodontidae): Limb regeneration in plethodontid salamanders.

Limb regeneration in a direct-developing terrestrial salamander, <i>Bolitoglossa ramosi</i> (Caudata: Plethodontidae): Limb regeneration in plethodontid salamanders.

Limb regeneration in a direct-developing terrestrial salamander, <i>Bolitoglossa ramosi</i> (Caudata: Plethodontidae): Limb regeneration in plethodontid salamanders.

Limb regeneration in a direct-developing terrestrial salamander, Bolitoglossa ramosi (Caudata: Plethodontidae): Limb regeneration in plethodontid salamanders.

Appendage regeneration is one of the most compelling phenomena in regenerative biology and is extensively studied in axolotls and newts. However, the regenerative capacity in other families of salamanders remains poorly described. Here we characterize the limb regeneration process in Bolitoglossa ramosi, a direct-developing terrestrial salamander of the plethodontid family. We (1) describe the major morphological features at different stages of limb regeneration, (2) show that appendage regeneration in a terrestrial salamander varies from other amphibians and (3) show that limb regeneration in this species is considerably slower than in axolotls and newts (95 days post-amputation for complete regeneration) despite having a significantly smaller genome size than axolotls or newts.

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