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Transcriptional heterochrony in talpid mole autopods

机译:mole鼠足足的转录异时性

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Background Talpid moles show many specializations in their adult skeleton linked to fossoriality, including enlarged hands when compared to the feet. Heterochrony in developmental mechanisms is hypothesized to account for morphological evolution in skeletal elements. Methods The temporal and spatial distribution of SOX9 expression, which is an early marker of chondrification, is analyzed in autopods of the fossorial Iberian mole Talpa occidentalis, as well as in shrew (Cryptotis parva) and mouse (Mus musculus) for comparison. Results and discussion SOX9 expression is advanced in the forelimb compared to the hind limb in the talpid mole. In contrast, in the shrew and the mouse, which do not show fossorial specializations in their autopods, it is synchronous. We provide evidence that transcriptional heterochrony affects the development of talpid autopods, an example of developmental penetrance. We discuss our data in the light of earlier reported pattern heterochrony and later morphological variation in talpid limbs. Conclusion Transcriptional heterochrony in SOX9 expression is found in talpid autopods, which is likely to account for pattern heterochrony in chondral limb development as well as size variation in adult fore- and hind limbs.
机译:背景滑石痣在成年骨骼中表现出许多与骨性相关的专长,包括与脚相比手增大。假设发育机制的异时性可以解释骨骼元素的形态演变。方法在软骨伊比利亚mole鼠Talpa occidentalis的自足动物以及sh(隐孢子虫)和小鼠(小家鼠)中分析SOX9表达的时空分布,这是软骨形成的早期标志。结果与讨论与滑石痣中的后肢相比,前肢中的SOX9表达更高。相比之下,在the和鼠标中,它们在其自动脚架中没有表现出专业性,这是同步的。我们提供的证据表明,转录异时性会影响塔皮自足动物的发育,这是发育外显的一个例子。我们根据先前报道的模式异质性和后肢的形态变化讨论我们的数据。结论在滑石足类动物中发现了SOX9表达的转录异时性,这可能解释了软骨肢体发育中的模式异时性以及成年前肢和后肢的大小变异。

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