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首页> 外文期刊>EvoDevo >Retinoic acid-independent expression of Meis2 during autopod patterning in the developing bat and mouse limb
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Retinoic acid-independent expression of Meis2 during autopod patterning in the developing bat and mouse limb

机译:在发育中的蝙蝠和小鼠肢体自足足形成过程中,视黄酸非依赖性表达Meis2

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Background The bat has strikingly divergent forelimbs (long digits supporting wing membranes) and hindlimbs (short, typically free digits) due to the distinct requirements of both aerial and terrestrial locomotion. During embryonic development, the morphology of the bat forelimb deviates dramatically from the mouse and chick, offering an alternative paradigm for identifying genes that play an important role in limb patterning. Results Using transcriptome analysis of developing Natal long-fingered bat (Miniopterus natalensis) fore- and hindlimbs, we demonstrate that the transcription factor Meis2 has a significantly higher expression in bat forelimb autopods compared to hindlimbs. Validation by reverse transcriptase and quantitative polymerase chain reaction (RT-qPCR) and whole mount in situ hybridisation shows that Meis2, conventionally known as a marker of the early proximal limb bud, is upregulated in the bat forelimb autopod from CS16. Meis2 expression is localised to the expanding interdigital webbing and the membranes linking the wing to the hindlimb and tail. In mice, Meis2 is also expressed in the interdigital region prior to tissue regression. This interdigital Meis2 expression is not activated by retinoic acid (RA) signalling as it is present in the retained interdigital tissue of Rdh10trex/trex mice, which lack RA. Additionally, genes encoding RA-synthesising enzymes, Rdh10 and Aldh1a2, and the RA nuclear receptor Rarβ are robustly expressed in bat fore- and hindlimb interdigital tissues indicating that the mechanism that retains interdigital tissue in bats also occurs independently of RA signalling. Conclusions Mammalian interdigital Meis2 expression, and upregulation in the interdigital webbing of bat wings, suggests an important role for Meis2 in autopod development. Interdigital Meis2 expression is RA-independent, and retention of interdigital webbing in bat wings is not due to the suppression of RA-induced cell death. Rather, RA signalling may play a role in the thinning (rather than complete loss) of the interdigital tissue in the bat forelimb, while Meis2 may interact with other factors during both bat and mouse autopod development to maintain a pool of interdigital cells that contribute to digit patterning and growth.
机译:背景技术由于空中和地面运动的独特要求,蝙蝠具有惊人的前肢(支撑翼膜的长指)和后肢(短,通常是自由指)。在胚胎发育过程中,蝙蝠前肢的形态与小鼠和小鸡大相径庭,为鉴定在肢体模式中起重要作用的基因提供了另一种范例。结果使用转录组分析发育中的纳塔尔长指蝙蝠(前翅幼体)的前肢和后肢,我们证明转录因子Meis2在蝙蝠前肢自足动物中的表达明显高于后肢。通过逆转录酶和定量聚合酶链反应(RT-qPCR)以及整个安装原位杂交的验证表明,Meis2(通常被称为早期近端肢芽的标记)在来自CS16的蝙蝠前肢足中被上调。 Meis2的表达局限于扩大的叉指状织带和将机翼连接到后肢和尾巴的膜。在小鼠中,在组织退化之前,Meis2也在指间区域表达。由于存在于缺乏RA的Rdh10trex / trex小鼠的保留叉指组织中,这种叉指Meis2表达并未被视黄酸(RA)信号激活。此外,在蝙蝠的前肢和后肢叉指间组织中强烈表达了编码RA合成酶Rdh10和Aldh1a2以及RA核受体Rarβ的基因,这表明在蝙蝠中保留叉指间组织的机制也与RA信号无关。结论哺乳动物叉指间Meis2表达以及在蝙蝠翼的叉指间织带中的上调表明Meis2在自足动物发育中具有重要作用。叉指间Meis2的表达与RA无关,并且蝙蝠翼内叉指网的保留不是由于抑制RA诱导的细胞死亡。相反,RA信号可能在蝙蝠前肢的趾间组织变薄(而不是完全丧失)中起作用,而Meis2可能在蝙蝠和小鼠自足发育过程中与其他因素相互作用,以维持有助于数字模式和增长。

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