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肢体模式基因与鸸鹋翅芽的异时发育

Limb patterning genes and heterochronic development of the emu wing bud.

作者信息

Smith Craig A, Farlie Peter G, Davidson Nadia M, Roeszler Kelly N, Hirst Claire, Oshlack Alicia, Lambert David M

机构信息

Department of Anatomy and Developmental Biology, Monash University, Clayton, VIC 3800 Australia.

Murdoch Childrens Research Institute, Royal Children's Hospital, Parkville, VIC 3052 Australia.

出版信息

Evodevo. 2016 Dec 20;7:26. doi: 10.1186/s13227-016-0063-5. eCollection 2016.

Abstract

BACKGROUND

The forelimb of the flightless emu is a vestigial structure, with greatly reduced wing elements and digit loss. To explore the molecular and cellular mechanisms associated with the evolution of vestigial wings and loss of flight in the emu, key limb patterning genes were examined in developing embryos.

METHODS

Limb development was compared in emu versus chicken embryos. Immunostaining for cell proliferation markers was used to analyze growth of the emu forelimb and hindlimb buds. Expression patterns of limb patterning genes were studied, using whole-mount in situ hybridization (for mRNA localization) and RNA-seq (for mRNA expression levels).

RESULTS

The forelimb of the emu embryo showed heterochronic development compared to that in the chicken, with the forelimb bud being retarded in its development. Early outgrowth of the emu forelimb bud is characterized by a lower level of cell proliferation compared the hindlimb bud, as assessed by PH3 immunostaining. In contrast, there were no obvious differences in apoptosis in forelimb versus hindlimb buds (cleaved caspase 3 staining). Most key patterning genes were expressed in emu forelimb buds similarly to that observed in the chicken, but with smaller expression domains. However, expression of () mRNA, which is central to anterior-posterior axis development, was delayed in the emu forelimb bud relative to other patterning genes. Regulators of Shh expression, and , also showed altered expression levels in the emu forelimb bud.

CONCLUSIONS

These data reveal heterochronic but otherwise normal expression of most patterning genes in the emu vestigial forelimb. Delayed expression may be related to the small and vestigial structure of the emu forelimb bud. However, the genetic mechanism driving retarded emu wing development is likely to rest within the forelimb field of the lateral plate mesoderm, predating the expression of patterning genes.

摘要

背景

不会飞的鸸鹋的前肢是一种退化结构,其翅膀元素大幅减少且指骨缺失。为了探究与鸸鹋退化翅膀的进化及飞行能力丧失相关的分子和细胞机制,在发育中的胚胎中检测了关键的肢体模式基因。

方法

比较了鸸鹋胚胎与鸡胚胎的肢体发育情况。使用细胞增殖标志物的免疫染色来分析鸸鹋前肢和后肢芽的生长。利用全胚胎原位杂交(用于mRNA定位)和RNA测序(用于mRNA表达水平)研究了肢体模式基因的表达模式。

结果

与鸡相比,鸸鹋胚胎的前肢表现出异时发育,前肢芽的发育延迟。通过PH3免疫染色评估,鸸鹋前肢芽的早期生长特征是细胞增殖水平低于后肢芽。相比之下,前肢芽与后肢芽的细胞凋亡没有明显差异(裂解的半胱天冬酶3染色)。大多数关键的模式基因在鸸鹋前肢芽中的表达与在鸡中观察到的相似,但表达域较小。然而,对于前后轴发育至关重要的()mRNA在鸸鹋前肢芽中的表达相对于其他模式基因延迟。Shh表达的调节因子和在鸸鹋前肢芽中的表达水平也发生了改变。

结论

这些数据揭示了鸸鹋退化前肢中大多数模式基因的异时但正常表达。表达延迟可能与鸸鹋前肢芽的小而退化的结构有关。然而,驱动鸸鹋翅膀发育迟缓的遗传机制可能存在于侧板中胚层的前肢区域,早于模式基因的表达。

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