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果蝇中胚层的分割与特化

Segmentation and specification of the Drosophila mesoderm.

作者信息

Azpiazu N, Lawrence P A, Vincent J P, Frasch M

机构信息

Brookdale Center for Molecular Biology, Mount Sinai School of Medicine, New York, New York 10029, USA.

出版信息

Genes Dev. 1996 Dec 15;10(24):3183-94. doi: 10.1101/gad.10.24.3183.

Abstract

Patterning of the developing mesoderm establishes primordia of the visceral, somatic, and cardiac tissues at defined anteroposterior and dorsoventral positions in each segment. Here we examine the mechanisms that locate and determine these primordia. We focus on the regulation of two mesodermal genes: bagpipe (bap), which defines the anlagen of the visceral musculature of the midgut, and serpent (srp), which marks the anlagen of the fat body. These two genes are activated in specific groups of mesodermal cells in the anterior portions of each parasegment. Other genes mark the anlagen of the cardiac and somatic mesoderm and these are expressed mainly in cells derived from posterior portions of each parasegment. Thus the parasegments appear to be subdivided, at least with respect to these genes, a subdivision that depends on pair-rule genes such as even-skipped (eve). We show with genetic mosaics that eve acts autonomously within the mesoderm. We also show that hedgehog (hh) and wingless (wg) mediate pair-rule gene functions in the mesoderm, probably partly by acting within the mesoderm and partly by inductive signaling from the ectoderm. hh is required for the normal activation of bap and srp in anterior portions of each parasegment, whereas wg is required to suppress bap and srp expression in posterior portions. Hence, hh and wg play opposing roles in mesoderm segmentation.

摘要

发育中胚层的模式形成在每个体节的特定前后和背腹位置建立了内脏、体壁和心脏组织的原基。在这里,我们研究定位和确定这些原基的机制。我们聚焦于两个中胚层基因的调控:风笛基因(bap),它定义了中肠内脏肌肉组织的原基;以及蛇形基因(srp),它标记了脂肪体的原基。这两个基因在每个副体节前部的特定中胚层细胞群中被激活。其他基因标记了心脏和体壁中胚层的原基,它们主要在源自每个副体节后部的细胞中表达。因此,至少就这些基因而言,副体节似乎被细分了,这种细分依赖于成对规则基因,如偶数缺口基因(eve)。我们通过基因镶嵌实验表明,eve在中胚层内自主发挥作用。我们还表明,刺猬基因(hh)和无翅基因(wg)介导中胚层中的成对规则基因功能,可能部分是通过在中胚层内起作用,部分是通过外胚层的诱导信号传导。hh是每个副体节前部bap和srp正常激活所必需的,而wg是抑制bap和srp在后部表达所必需的。因此,hh和wg在中胚层分割中发挥相反的作用。

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