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New developmental evidence supports a homeotic frameshift of digit identity in the evolution of the bird wing

机译:新的发展证据支持鸟类翅膀进化过程中数字身份的同质异位

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Background The homology of the digits in the bird wing is a high-profile controversy in developmental and evolutionary biology. The embryonic position of the digits cartilages with respect to the primary axis (ulnare and ulna) corresponds to 2, 3, 4, but comparative-evolutionary morphology supports 1, 2, 3. A homeotic frameshift of digit identity in evolution could explain how cells in embryonic positions 2, 3, 4 began developing morphologies 1, 2, 3. Another alternative is that no re-patterning of cell fates occurred, and the primary axis shifted its position by some other mechanism. In the wing, only the anterior digit lacks expression of HoxD10 and HoxD12, resembling digit 1 of other limbs, as predicted by 1, 2, 3. However, upon loss of digit 1 in evolution, the most anterior digit 2 could have lost their expression, deceitfully resembling a digit 1. To test this notion, we observed HoxD10 and HoxD12 in a limb where digit 2 is the most anterior digit: The rabbit foot. We also explored whether early inhibition of Shh signalling in the embryonic wing bud induces an experimental homeotic frameshift, or an experimental axis shift. We tested these hypotheses using DiI injections to study the fate of cells in these experimental wings. Results We found strong transcription of HoxD10 and HoxD12 was present in the most anterior digit 2 of the rabbit foot. Thus, we found no evidence to question the use of HoxD expression as support for 1, 2, 3. When Shh signalling in early wing buds is inhibited, our fate maps demonstrate that an experimental homeotic frameshift is induced. Conclusion Along with comparative morphology, HoxD expression provides strong support for 1, 2, 3 identity of wing digits. As an explanation for the offset 2, 3, 4 embryological position, the homeotic frameshift hypothesis is consistent with known mechanisms of limb development, and further proven to be experimentally possible. In contrast, the underlying mechanisms and experimental plausibility of an axis shift remain unclear.
机译:背景技术鸟翅中数字的同源性在发育和进化生物学中引起了广泛关注。指骨软骨相对于主轴(尺骨和尺骨)的胚胎位置对应于2、3、4,但比较进化形态学支持1、2、3。进化过程中数字身份的同质异位可以解释细胞在胚胎位置2、3、4处开始形成形态1、2、3。另一种选择是,不发生细胞命运的重新模式化,主轴通过其他机制移动其位置。在机翼中,只有前手指缺乏HoxD10和HoxD12的表达,类似于其他四肢的手指1,如1、2、3所预测的。但是,在进化过程中失去手指1时,最前面的手指2可能会失去其表达式,看起来像是数字1。为了验证这一概念,我们在数字2最靠前的肢体中观察到HoxD10和HoxD12:兔子脚。我们还探讨了早期抑制Shh信号在胚胎翼芽中的诱导实验顺应性移码或实验轴移位。我们使用DiI注射测试了这些假设,以研究这些实验翼中细胞的命运。结果我们发现HoxD10和HoxD12的强转录存在于兔脚的最前2位。因此,我们发现没有证据质疑使用HoxD表达来支持1、2、3。当抑制早期翅芽中的Shh信号传导时,我们的命运图证明了诱导了实验性顺势性移码。结论HoxD表达与比较形态学一起为翼位的1、2、3身份提供了有力的支持。作为偏移2、3、4胚胎学位置的解释,顺势移码假说与肢体发育的已知机制一致,并且进一步证明在实验上是可能的。相反,轴移位的潜在机制和实验合理性仍然不清楚。

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