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果蝇胚胎中的背侧梯度网络。

Dorsal gradient networks in the Drosophila embryo.

作者信息

Stathopoulos Angelike, Levine Michael

机构信息

Department of Molecular and Cellular Biology, Division of Genetics and Development, University of California, Berkeley 94720-3204, USA.

出版信息

Dev Biol. 2002 Jun 1;246(1):57-67. doi: 10.1006/dbio.2002.0652.

Abstract

Here, we describe one of the major maternal regulatory gradients, Dorsal, and threshold outputs of gene expression that result from the graded distribution of this transcription factor. The analysis of a large number of authentic and synthetic target genes suggests that the Dorsal gradient directly specifies at least four, and possibly as many as seven, different thresholds of gene activity and tissue differentiation. These thresholds initiate the differentiation of the three primary embryonic tissues: the mesoderm, neurogenic ectoderm, and dorsal ectoderm. Moreover, primary readouts of the Dorsal gradient create asymmetries that subdivide each tissue into multiple cell types during gastrulation. Dorsal patterning thresholds represent the culmination of one of the most complete gene regulation network known in development, which begins with the asymmetric positioning of the oocyte nucleus within the egg chamber and leads to the localized activation of the Toll-Dorsal signaling pathway in ventral regions of the early embryo.

摘要

在此,我们描述了一种主要的母体调控梯度——背腹信号通路,以及由这种转录因子的梯度分布所导致的基因表达阈值输出。对大量真实和合成靶基因的分析表明,背腹信号通路梯度直接指定了至少四个,可能多达七个不同的基因活性和组织分化阈值。这些阈值启动了三种主要胚胎组织的分化:中胚层、神经外胚层和背侧外胚层。此外,背腹信号通路梯度的主要读数产生了不对称性,在原肠胚形成过程中将每个组织细分为多种细胞类型。背腹信号通路模式形成阈值代表了发育过程中已知的最完整的基因调控网络之一的最终结果,该网络始于卵母细胞核在卵室中的不对称定位,并导致早期胚胎腹侧区域Toll-背腹信号通路的局部激活。

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