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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Embryonic chirality and the evolution of spiralian left-right asymmetries
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Embryonic chirality and the evolution of spiralian left-right asymmetries

机译:胚胎手性与螺旋形左右不对称性的演变

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摘要

The group Spiralia includes species with one of the most significant cases of left-right asymmetries in animals: the coiling of the shell of gastropod molluscs (snails). In this animal group, an early event of embryonic chirality controlled by cytoskeleton dynamics and the subsequent differential activation of the genes nodal and Pitx determine the left-right axis of snails, and thus the direction of coiling of the shell. Despite progressive advances in our understanding of left-right axis specification in molluscs, little is known about left-right development in other spiralian taxa. Here, we identify and characterize the expression of nodal and Pitx orthologues in three different spiralian animals-the brachiopod Novocrania anomala, the annelid Owenia fusiformis and the nemertean Lineus ruber- and demonstrate embryonic chirality in the biradial-cleaving spiralian embryo of the bryozoan Membranipora membranacea. We show asymmetric expression of nodal and Pitx in the brachiopod and annelid, respectively, and symmetric expression of Pitx in the nemertean. Our findings indicate that early embryonic chirality is widespread and independent of the cleavage programme in the Spiralia. Additionally, our study illuminates the evolution of nodal and Pitx signalling by demonstrating embryonic asymmetric expression in lineages without obvious adult left-right asymmetries.
机译:Spiralia组包括动物中左右不对称最严重的情况之一:腹足纲软体动物(蜗牛)壳的盘旋。在这个动物群中,受细胞骨架动力学控制的胚胎手性的早期事件以及随后的节点和皮特克斯基因的差异激活决定了蜗牛的左右轴,进而决定了螺壳的缠绕方向。尽管我们对软体动物左右轴规格的理解有了进步,但对其他螺旋类群中左右发展的了解却很少。在这里,我们确定并表征了结节动物和Pitx直系同源物在三种不同的螺旋动物中的表达-腕足动物Novocrania anomala,无核小卵菌Ofunia fusiformis和nemertean Lineus ruber-并显示了在手足动物的双径向裂开螺旋状胚胎中的手性。我们分别在腕足动物和腕足动物中显示了节点和Pitx的不对称表达,在nemertean中显示了Pitx的对称表达。我们的研究结果表明,早期的手性是广泛存在的,并且独立于Spiralia中的卵裂程序。此外,我们的研究通过证明谱系中的胚胎不对称表达而没有明显的成年左右对称性,阐明了节点和Pitx信号的进化。

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