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非洲爪蟾胚胎中的神经源性组织表现出一致的生物电左右不对称性。

Neurally Derived Tissues in Xenopus laevis Embryos Exhibit a Consistent Bioelectrical Left-Right Asymmetry.

机构信息

Department of Biology and Tufts Center for Regenerative and Developmental Biology, Tufts University, Medford, MA 02155, USA.

出版信息

Stem Cells Int. 2012;2012:353491. doi: 10.1155/2012/353491. Epub 2012 Dec 30.

Abstract

Consistent left-right asymmetry in organ morphogenesis is a fascinating aspect of bilaterian development. Although embryonic patterning of asymmetric viscera, heart, and brain is beginning to be understood, less is known about possible subtle asymmetries present in anatomically identical paired structures. We investigated two important developmental events: physiological controls of eye development and specification of neural crest derivatives, in Xenopus laevis embryos. We found that the striking hyperpolarization of transmembrane potential (V(mem)) demarcating eye induction usually occurs in the right eye field first. This asymmetry is randomized by perturbing visceral left-right patterning, suggesting that eye asymmetry is linked to mechanisms establishing primary laterality. Bilateral misexpression of a depolarizing channel mRNA affects primarily the right eye, revealing an additional functional asymmetry in the control of eye patterning by V(mem). The ATP-sensitive K(+) channel subunit transcript, SUR1, is asymmetrically expressed in the eye primordia, thus being a good candidate for the observed physiological asymmetries. Such subtle asymmetries are not only seen in the eye: consistent asymmetry was also observed in the migration of differentiated melanocytes on the left and right sides. These data suggest that even anatomically symmetrical structures may possess subtle but consistent laterality and interact with other developmental left-right patterning pathways.

摘要

左右对称在器官形态发生中是两侧对称动物发育的一个迷人方面。尽管不对称内脏、心脏和大脑的胚胎模式开始被理解,但对于在解剖上相同的成对结构中可能存在的细微不对称性了解较少。我们研究了两个重要的发育事件:在非洲爪蟾胚胎中眼睛发育的生理控制和神经嵴衍生物的特化。我们发现,通常首先在右眼场发生标志眼睛诱导的跨膜电位(V(mem))的显著超极化。这种不对称性通过扰乱内脏左右模式而随机化,表明眼睛不对称性与建立主要左右性的机制有关。双向表达去极化通道 mRNA 主要影响右眼,揭示了 V(mem) 对眼睛模式控制的额外功能不对称性。ATP 敏感性 K(+)通道亚基转录物 SUR1 在眼睛原基中不对称表达,因此是观察到的生理不对称性的良好候选物。这种细微的不对称性不仅在眼睛中可见:在左右两侧分化的黑色素细胞的迁移中也观察到一致的不对称性。这些数据表明,即使是解剖上对称的结构也可能具有细微但一致的左右性,并与其他发育左右模式形成途径相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6ec/3544345/59105cd80d24/SCI2012-353491.001.jpg

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