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新型门户双元载体用于快速进行三方 DNA 组装,并在叶苔纲植物中分析具有各种报告基因和标签的启动子。

Novel gateway binary vectors for rapid tripartite DNA assembly and promoter analysis with various reporters and tags in the liverwort Marchantia polymorpha.

机构信息

Department of Cell Biology, National Institute for Basic Biology, Okazaki, Japan.

Department of Basic Biology, School of Life Science, SOKENDAI (The Graduate University for Advanced Studies), Okazaki, Japan.

出版信息

PLoS One. 2018 Oct 4;13(10):e0204964. doi: 10.1371/journal.pone.0204964. eCollection 2018.

Abstract

The liverwort Marchantia polymorpha is an emerging model species for basal lineage plant research. In this study, two Gateway cloning-compatible binary vector series, R4pMpGWB and R4L1pMpGWB, were generated to facilitate production of transgenic M. polymorpha. The R4pMpGWB series allows tripartite recombination of any promoter and any coding sequence with a specific reporter or tag. Reporters/tags for the R4pMpGWB series are GUS, ELuc(PEST), FLAG, 3×HA, 4×Myc, mRFP1, Citrine, mCitrine, ER-targeted mCitrine and nucleus-targeted mCitrine. The R4L1pMpGWB series is suitable for promoter analysis. R4L1pMpGWB vector structure is the same as that of R4pMpGWB vectors, except that the attR2 site is replaced with attL1, enabling bipartite recombination of any promoter with a reporter or tag. Reporters/tags for the R4L1pMpGWB series are GUS, G3GFP-GUS, LUC, ELuc(PEST), Citrine, mCitrine, ER-targeted mCitrine and mCitrine-NLS. Both vector series were functional in M. polymorpha cells. These vectors will facilitate the design and assembly of plasmid constructs and generation of transgenic M. polymorpha.

摘要

地钱是一种新兴的基生植物模式物种,适用于基础植物研究。本研究生成了两个 Gateway 克隆兼容的双元载体系列,R4pMpGWB 和 R4L1pMpGWB,以方便转化地钱。R4pMpGWB 系列允许任何启动子和任何编码序列与特定报告基因或标签进行三分重组。R4pMpGWB 系列的报告基因/标签有 GUS、ELuc(PEST)、FLAG、3×HA、4×Myc、mRFP1、Citrine、mCitrine、ER 靶向 mCitrine 和核靶向 mCitrine。R4L1pMpGWB 系列适用于启动子分析。R4L1pMpGWB 载体结构与 R4pMpGWB 载体相同,只是 attR2 位点被 attL1 取代,从而使任何启动子与报告基因或标签进行二分重组。R4L1pMpGWB 系列的报告基因/标签有 GUS、G3GFP-GUS、LUC、ELuc(PEST)、Citrine、mCitrine、ER 靶向 mCitrine 和 mCitrine-NLS。这两个载体系列在地钱细胞中都有功能。这些载体将有助于质粒构建体的设计和组装,以及转化地钱的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0852/6171868/b35b6d1c2cde/pone.0204964.g001.jpg

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