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Lateral line placodes of aquatic vertebrates are evolutionarily conserved in mammals

机译:在哺乳动物中,水生脊椎动物的侧线标本在进化上是保守的

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Placodes are focal thickenings of the surface ectoderm which, together with neural crest, generate the peripheral nervous system of the vertebrate head. Here we examine how, in embryonic mice, apoptosis contributes to the remodelling of the primordial posterior placodal area (PPA) into physically separated otic and epibranchial placodes. Using pharmacological inhibition of apoptosis-associated caspases, we find evidence that apoptosis eliminates hitherto undiscovered rudiments of the lateral line sensory system which, in fish and aquatic amphibia, serves to detect movements, pressure changes or electric fields in the surrounding water. Our results refute the evolutionary theory, valid for more than a century that the whole lateral line was completely lost in amniotes. Instead, those parts of the PPA which, under experimental conditions, escape apoptosis have retained the developmental potential to produce lateral line placodes and the primordia of neuromasts that represent the major functional units of the mechanosensory lateral line system.
机译:Placodes是表面外胚层的局部增厚,与神经c一起形成脊椎动物头部的周围神经系统。在这里,我们研究了在胚胎小鼠中,细胞凋亡如何将原始后pl区(PPA)重构为物理分离的耳和支气管前斑。使用药理学抑制凋亡相关的胱天蛋白酶,我们发现证据表明,凋亡消除了迄今未发现的侧向线感觉系统的基础,在鱼和水陆两栖动物中,其用于检测周围水中的运动,压力变化或电场。我们的研究结果驳斥了进化论,该论证在一个多世纪的历史中一直有效,即整个侧线在羊膜动物中完全消失了。取而代之的是,在实验条件下,PPA的那些逃避凋亡的部分保留了产生侧向线斑和表示神经机械侧向线系统主要功能单元的神经质原基的发展潜力。

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