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首页> 外文期刊>Developmental biology >I-SceI Meganuclease-mediated transgenesis in the acorn worm, Saccoglossus kowalevskii
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I-SceI Meganuclease-mediated transgenesis in the acorn worm, Saccoglossus kowalevskii

机译:i-scei meganuclease介导的橡子蠕虫的转发器,Saccoglossus kowalevskii

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Hemichordates are a phylum of marine invertebrate deuterostomes that are closely related to chordates, and represent one of the most promising models to provide insights into early deuterostome evolution. The genome of the hemichordate, Saccoglossus kowalevskii, reveals an extensive set of non-coding elements conserved across all three deuterostome phyla. Functional characterization and cross-phyla comparisons of these putative regulatory elements will enable a better understanding of enhancer evolution, and subsequently how changes in gene regulation give rise to morphological innovation. Here, we describe an efficient method of transgenesis for the characterization of non-coding elements in S. kowalevskii. We first test the capacity of an I-SceI transgenesis system to drive ubiquitous or regionalized gene expression, and to label specific cell types. Finally, we identified a minimal promoter that can be used to test the capacity of putative enhancers in S. kowalevskii. This work demonstrates that this I-SceI transgenesis technique, when coupled with an understanding of chromatin accessibility, can be a powerful tool for studying how evolutionary changes in gene regulatory mechanisms contributed to the diversification of body plans in deuterostomes.
机译:Hemichordates是海洋无脊椎动物的门,与弦密切相关,并且代表最有前途的模型之一,以便在早期的氘核演变中提供见解。 Hemichordate的基因组Saccoglossus kowalevskii揭示了一系列广泛的非编码元素,在所有三个氘核中保守。这些推定的调节元件的功能性表征和交叉培养比较将更好地了解增强剂演化,随后基因调节的变化引起形态创新。在这里,我们描述了在S. Kowalevskii中的非编码元素表征的有效转基因的转基因方法。我们首先测试I-Scei转基因系统的能力,以驱动普遍存存或区域化的基因表达,并标记特定的细胞类型。最后,我们确定了一种最小的启动子,可用于测试S. Kowalevskii的推定增强剂的能力。这项工作表明,这种I-Scei转基因技术在与染色质可访问性的理解结合时,可以是研究基因监管机制的进化变化如何导致氘前源的多样化。

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