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BMP and retinoic acid regulate anterior–posterior patterning of the non-axial mesoderm across the dorsal–ventral axis

机译:BMP和视黄酸调节背-腹轴上的非轴向中胚层的前后模式

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摘要

Despite the fundamental importance of patterning along the dorsal–ventral (DV) and anterior–posterior (AP) axes during embryogenesis, uncertainty exists in the orientation of these axes for the mesoderm. Here we examine the origin and formation of the zebrafish kidney, a ventrolateral mesoderm derivative, and show that AP patterning of the non-axial mesoderm occurs across the classic gastrula stage DV axis while DV patterning aligns along the animal–vegetal pole. We find that BMP signalling acts early to establish broad anterior and posterior territories in the non-axial mesoderm while retinoic acid (RA) functions later, but also across the classic DV axis. Our data support a model in which RA on the dorsal side of the embryo induces anterior kidney fates while posterior kidney progenitors are protected ventrally by the RA-catabolizing enzyme Cyp26a1. This work clarifies our understanding of vertebrate axis orientation and establishes a new paradigm for how the kidney and other mesodermal derivatives arise during embryogenesis.
机译:尽管在胚胎形成过程中沿背-腹(DV)和前-后(AP)轴进行构图具有根本的重要性,但中胚层这些轴的方向仍存在不确定性。在这里,我们检查了斑马鱼肾脏(腹侧中胚层衍生物)的起源和形成,并显示了非轴向中胚层的AP模式发生在经典的胃胚期DV轴上,而DV模式沿着动物-植物极对齐。我们发现BMP信号提早发挥作用,以在非轴向中胚层中建立宽阔的前后领土,而视黄酸(RA)则在以后起作用,但也跨越经典DV轴。我们的数据支持一种模型,其中胚胎背侧的RA诱导前肾命运,而后肾祖细胞受到RA分解酶Cyp26a1的腹侧保护。这项工作澄清了我们对脊椎动物轴取向的理解,并为胚胎发生过程中肾脏和其他中胚层衍生物的产生建立了新的范例。

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