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Multiple pathways in the midline regulate concordant brain, heart and gut left-right asymmetry.

机译:中线的多种途径调节着大脑,心脏和肠道左右不对称的一致性。

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The embryonic midline in vertebrates has been implicated in left-right development, but the mechanisms by which it regulates left-right asymmetric gene expression and organ morphogenesis are unknown. Zebrafish embryos have three domains of left-right asymmetric gene expression that are useful predictors of organ situs. cyclops (nodal), lefty1 and pitx2 are expressed in the left diencephalon; cyclops, lefty2 and pitx2 are expressed in the left heart field; and cyclops and pitx2 are expressed in the left gut primordium. Distinct alterations of these expression patterns in zebrafish midline mutants identify four phenotypic classes that have different degrees of discordance among the brain, heart and gut. These classes help identify two midline domains and several genetic pathways that regulate left-right development. A cyclops-dependent midline domain, associated with the prechordal plate, regulates brain asymmetry but is dispensable for normal heart and gut left-right development. A second midline domain, associated with the anterior notochord, is dependent on no tail, floating head and momo function and is essential for restricting asymmetric gene expression to the left side. Mutants in spadetail or chordino give discordant gene expression among the brain, heart and gut. one-eyed pinhead and schmalspur are necessary for asymmetric gene expression and may mediate signaling from midline domains to lateral tissues. The different phenotypic classes help clarify the apparent disparity of mechanisms proposed to explain left-right development in different vertebrates.
机译:脊椎动物的胚胎中线已牵涉到左右发展,但其调节左右不对称基因表达和器官形态发生的机制尚不清楚。斑马鱼的胚胎具有左右不对称基因表达的三个域,它们是器官位置的有用预测因子。独眼巨人(结节),lefty1和pitx2表示在左中脑。独眼巨人lefty2和pitx2在左心脏场中表达;独眼巨人和pitx2在左侧肠道原基中表达。这些表达方式在斑马鱼中线突变体中的明显改变,鉴定出四种表型类别,它们在大脑,心脏和肠道之间具有不同程度的不一致。这些课程有助于确定两个中线结构域和几个调节左右发育的遗传途径。与前庭板相关的依赖于独眼巨人的中线区域调节大脑的不对称性,但对于正常的心脏和肠道左右发展是必不可少的。与前脊索相关的第二个中线结构域不依赖尾巴,浮头和莫莫功能,并且对于将不对称基因表达限制在左侧至关重要。铁锹或chordino中的突变体在大脑,心脏和肠道之间产生不一致的基因表达。单眼针头和schmalspur是不对称基因表达所必需的,并且可能介导从中线结构域到外侧组织的信号传导。不同的表型类别有助于弄清提出的解释不同脊椎动物左右发育机制的明显差异。

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