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Spatially deranged though temporally correct expression of a Strongylocentrotus purpuratus actin gene fusion in transgenic embryos of a different sea urchin family

机译:在一个不同的海胆家族的转基因胚胎中,尽管存在时间错位,但在时间上正确地表达了紫y肌动蛋白基因融合蛋白

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摘要

We report the unexpected observation that cis-regulatory sequences of a Strongylocentrotus purpuratus actin gene, which direct a particular, lineage-specific pattern of embryonic expression, confer a completely different spatial pattern of expression when introduced into embryos of another sea urchin species. We utilized a fusion gene construct in which the bacterial chloramphenicol acetyl transferase (CAT) reporter gene is driven by CyIIIa actin regulatory sequences. We previously showed that the regulatory region that is included suffices to promote the accumulation of CAT mRNA in transgenic S. purpuratus embryos, on the same developmental schedule and in the same embryonic region, the aboral ectoderm, in which the CyIIIa actin gene is normally expressed (Flytzanis et al. 1987; Hough-Evans et al. 1987). When injected into zygotes of Lytechinus variegatus, which belongs to a different echinoid family, the expected temporal pattern of expression of CAT enzyme was observed. Thus, in both S. purpuratus and L. variegatus embryos, expression is activated at the early blastula stage, although this stage is attained several hours sooner in L. variegatus embryo cultures. Similar kinetics of CAT enzyme accumulation were obtained whether the gene was introduced directly into the L. variegatus zygote nucleus or into the cytoplasm. However, when examined by in situ hybridization, the transgenic L. variegatus embryos were found to display a totally new pattern of CAT mRNA accumulation. Copious CAT transcripts were detected not only in aboral ectoderm cells, but also in skeletogenic mesenchyme cells, gut cells, and oral ectoderm, all cell types that in the transgenic S. purpuratus controls are invariably devoid of detectable CAT transcripts.
机译:我们报告了意想不到的观察结果,即指示一个特定的,特定于谱系的胚胎表达的强支线紫癜肌动蛋白基因的顺式调控序列,当引入另一种海胆物种的胚胎时,会赋予完全不同的表达空间模式。我们利用了一种融合基因构建体,其中的细菌氯霉素乙酰转移酶(CAT)报告基因由CyIIIa肌动蛋白调节序列驱动。我们以前表明,包括的调控区域足以促进转基因紫癜链球菌中CAT mRNA的积累,在相同的发育计划和相同的胚胎区域中,即正常表达CyIIIa肌动蛋白基因的胎盘外胚层。 (Flytzanis等,1987; Hough-Evans等,1987)。当将其注射到属于不同类棘突类动物的百日草(Lytechinus variegatus)的合子中时,观察到了预期的CAT酶表达的时间模式。因此,在紫癜链球菌和变异乳杆菌的胚胎中,表达都在囊胚早期被激活,尽管在变异乳杆菌的胚胎培养中该阶段要早几个小时。无论是将基因直接引入到杂合L. varigotus合子核还是细胞质中,都获得了类似的CAT酶累积动力学。然而,当通过原位杂交检查时,发现转基因的变异乳杆菌胚胎显示出CAT mRNA积累的全新模式。不仅在胎盘外胚层细胞中检测到丰富的CAT转录本,而且在骨骼生成的间充质细胞,肠道细胞和口腔外胚层中也检测到了丰富的CAT转录本,在转基因紫癜链球菌对照中,所有细胞类型都始终缺乏可检测到的CAT转录本。

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