Duman-Scheel Molly, Pirkl Nicole, Patel Nipam H
Deparment of Molecular Genetics and Cell Biology, University of Chicago, 920 E. 58th Street, Chicago, IL 60637, USA.
Dev Genes Evol. 2002 Apr;212(3):114-23. doi: 10.1007/s00427-002-0215-6. Epub 2002 Mar 1.
The Wnt family includes a number of genes, such as wingless ( wg), which encode secreted glycoproteins that function in numerous developmental patterning processes. In order to gain a better understanding of crustacean pattern formation, a wg orthologue was cloned from the malacostracan crustacean Mysidium columbiae(mysid), and the expression pattern of this gene was compared with that of Drosophila wg. Although Drosophila wg is expressed in many developing tissues, such as the ventral neuroectoderm, M. columbiae wg (mcowg)expression is detected within only a subset of these tissues. mcowg is expressed in the dorsal part of each developing segment and within the developing eye, but not within the ventral neuroectoderm. Dorsal wg expression in Drosophila is required for heart and muscle development, and conservation of this dorsal wgexpression pattern suggests that mcowgmay function to pattern these tissues in mysids. Consistent with this, expression of Even-skipped (Eve) protein in heart precursor and muscle cells, which is dependent on Wg signaling in Drosophila, is also conserved in mysids. Within the developing mysid eye, mcowg is expressed in a pattern that is similar to the expression pattern of Drosophila wg in the fly eye disc. In Drosophila,Wg inhibits neural differentiation at the anterior margin of the eye disc and patterns the dorsal/ventral axis of the eye. These data indicate that mcowg may function similarly during mysid eye development. Analysis of mcowgexpression provides molecular evidence suggesting that the processes of heart, muscle, and eye patterning are likely to be conserved among insects and crustaceans.
Wnt家族包含许多基因,如无翅基因(wg),这些基因编码的分泌型糖蛋白在众多发育模式形成过程中发挥作用。为了更好地理解甲壳动物的模式形成,从软甲亚纲甲壳动物哥伦比亚糠虾(糠虾)中克隆了一个wg同源基因,并将该基因的表达模式与果蝇的wg进行了比较。尽管果蝇的wg在许多发育组织中表达,如腹侧神经外胚层,但在哥伦比亚糠虾中,仅在这些组织的一个子集中检测到wg(mcowg)的表达。mcowg在每个发育节段的背侧部分和发育中的眼睛中表达,但不在腹侧神经外胚层中表达。果蝇中背侧wg的表达是心脏和肌肉发育所必需的,这种背侧wg表达模式的保守性表明,mcowg可能在糠虾中对这些组织的模式形成起作用。与此一致的是,在心脏前体和肌肉细胞中表达的Even-skipped(Eve)蛋白(其在果蝇中依赖于Wg信号传导)在糠虾中也具有保守性。在发育中的糠虾眼睛内,mcowg的表达模式与果蝇眼睛盘中wg的表达模式相似。在果蝇中,Wg抑制眼盘前缘的神经分化并形成眼睛的背/腹轴。这些数据表明,mcowg在糠虾眼睛发育过程中可能发挥类似的作用。对mcowg表达的分析提供了分子证据,表明心脏、肌肉和眼睛模式形成过程在昆虫和甲壳动物中可能是保守的。