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工程改造产油海洋微藻的叶绿体基因组

Engineering the Chloroplast Genome of Oleaginous Marine Microalga .

作者信息

Gan Qinhua, Jiang Jiaoyun, Han Xiao, Wang Shifan, Lu Yandu

机构信息

State Key Laboratory of Marine Resource Utilization in South China Sea, College of Oceanology, Hainan University, Haikou, China.

Key Laboratory of Tropical Biological Resources, Ministry of Education, Hainan University, Haikou, China.

出版信息

Front Plant Sci. 2018 Apr 11;9:439. doi: 10.3389/fpls.2018.00439. eCollection 2018.

Abstract

Plastid engineering offers an important tool to fill the gap between the technical and the enormous potential of microalgal photosynthetic cell factory. However, to date, few reports on plastid engineering in industrial microalgae have been documented. This is largely due to the small cell sizes and complex cell-wall structures which make these species intractable to current plastid transformation methods (i.e., biolistic transformation and polyethylene glycol-mediated transformation). Here, employing the industrial oleaginous microalga as a model, an electroporation-mediated chloroplast transformation approach was established. Fluorescent microscopy and laser confocal scanning microscopy confirmed the expression of the green fluorescence protein, driven by the endogenous plastid promoter and terminator. Zeocin-resistance selection led to an acquisition of homoplasmic strains of which a stable and site-specific recombination within the chloroplast genome was revealed by sequencing and DNA gel blotting. This demonstration of electroporation-mediated chloroplast transformation opens many doors for plastid genome editing in industrial microalgae, particularly species of which the chloroplasts are recalcitrant to chemical and microparticle bombardment transformation.

摘要

质体工程提供了一个重要工具,以填补微藻光合细胞工厂在技术与巨大潜力之间的差距。然而,迄今为止,关于工业微藻质体工程的报道很少。这主要是由于细胞体积小和细胞壁结构复杂,使得这些物种难以采用当前的质体转化方法(即基因枪转化和聚乙二醇介导的转化)。在此,以工业产油微藻为模型,建立了一种电穿孔介导的叶绿体转化方法。荧光显微镜和激光共聚焦扫描显微镜证实了由内源性质体启动子和终止子驱动的绿色荧光蛋白的表达。博来霉素抗性选择导致获得了同质性菌株,通过测序和DNA凝胶印迹揭示了叶绿体基因组内稳定且位点特异性的重组。这种电穿孔介导的叶绿体转化的证明为工业微藻的质体基因组编辑打开了许多大门,特别是对于那些叶绿体对化学和微粒轰击转化具有抗性的物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f97c/5904192/8ef338500bdb/fpls-09-00439-g0001.jpg

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