首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Transgenic planarian lines obtained by electroporation using transposon-derived vectors and an eye-specific GFP marker
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Transgenic planarian lines obtained by electroporation using transposon-derived vectors and an eye-specific GFP marker

机译:通过使用转座子衍生的载体和眼特异性GFP标记物进行电穿孔获得的转基因涡虫系

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To generate transgenic planarians we used a set of versatile vectors for animal transgenesis based on the promiscuous trans-posons, mariner, Hermes and piggyBac, and a universal enhanced GFP (EGFP) marker system with three Pax6 dimeric binding sites, the 3xP3-EGFP developed by Berghammer et al. [Berghammer, A. J., Klinger, M. & Wimmer, E. A. (1999) Nature 402, 370-371]. This marker is expressed specifically in the eyes of various arthropod taxa. Upon microinjection into the parenchyma of adult planarians and subsequent electroporation, these vectors transpose efficiently into the planarian genome. One of the cell types transformed are the totipotent "neoblast" stem cells present in the adults, representing 30% of total cells. The neoblast represents a unique cell type with the capacity to proliferate and to differentiate into all somatic cell types as well as into germ cells. All three transposon vectors have high transformation efficiency, but only Hermes and piggyBac show stable integration. The mariner vector is frequently lost presumably because of the presence of active mariner-type transposons in the genome of the Girardia tigrina. Transformed animals are mosaics containing both transformed and untransformed neoblasts. These differentiate to form EGFP-positive and -negative photoreceptor cells. Such mosaicism is maintained through several cycles of regeneration induced by decapitation or asexual reproduction. Transformed neoblasts also contribute to the germ line, and can give rise to pure transgenic planarian lines in which EGFP is expressed in all photoreceptor cells after sexual reproduction. The presence of the transgenes was confirmed by PCR, plasmid rescue assay, inverse PCR, and Southern blotting. Our results with the 3xP3-EGFP marker confirm the presence of Pax6 activity in the differentiated photoreceptor cells of planarian eyes. Transgenesis will be an important tool to dissect developmental molecular mechanisms in planarian regeneration, development and stem cell biology, and may also be an entry point to analyze the biology of parasitic Platyhelminthes.
机译:为了产生转基因涡虫,我们使用了一组混杂的动物转基因载体,这些载体基于混杂的转座子,mariner,Hermes和piggyBac,以及具有三个Pax6二聚体结合位点的通用增强型GFP(EGFP)标记系统,开发了3xP3-EGFP由Berghammer等人撰写。 [Berghammer,A. J.,Klinger,M.&Wimmer,E. A.(1999)Nature 402,370-371]。此标记在各种节肢动物类群的眼睛中特别表达。在显微注射到成年涡虫的薄壁组织中并随后进行电穿孔后,这些载体有效地转位到涡虫的基因组中。转化的细胞类型之一是成年的全能“成神经细胞”干细胞,占总细胞的30​​%。新生细胞代表一种独特的细胞类型,能够增殖并分化为所有体细胞类型以及生殖细胞。这三种转座子载体都具有很高的转化效率,但是只有爱马仕和piggyBac表现出稳定的整合。水手载体经常丢失,大概是因为虎小鼻猿基因组中存在活性水手型转座子。转化的动物是既包含转化又包含未转化的成胚细胞的镶嵌体。这些细胞分化形成EGFP阳性和阴性的感光细胞。通过断头或无性繁殖诱导的几个再生周期可以维持这种镶嵌性。转化的新胚细胞也有助于生殖细胞系,并且可以产生纯的转基因涡虫系,其中在有性繁殖后,EGFP在所有感光细胞中表达。通过PCR,质粒拯救分析,反向PCR和Southern印迹证实了转基因的存在。我们使用3xP3-EGFP标记的结果证实了Pax6活性存在于平面眼的分化感光细胞中。转基因将是剖析涡虫再生,发育和干细胞生物学中的发育分子机制的重要工具,也可能是分析寄生侧柏生物学的切入点。

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