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Construction of Novel Chloroplast Expression Vector and Development of an Efficient Transformation System for the Diatom Phaeodactylum tricornutum

机译:新型硅藻根瘤菌叶绿体表达载体的构建及高效转化系统的开发

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摘要

Plastids are ideal subcellular hosts for the expression of transgenes and have been successfully used for the production of different biopolymers, therapeutic proteins and industrial enzymes. Phaeodactylum tricornutum is a widely used aquatic feed species. In this study, we focused on developing a high-efficiency plastid expression system for P. tricornutum. In the plastid transformation vector, the site selected for integration was the transcriptionally active intergenic region present between the trnI and trnA genes, located in the IR (inverted repeat) regions of the plastid genome. Initially, a CAT reporter gene (encoding chloramphenicol acetyltransferase) was integrated at this site in the plastid genome. The expression of CAT in the transformed microalgae conferred resistance to the antibiotic chloramphenicol, which enabled growth in the selection media. Overall, the plastid transformation efficiency was found to be approximately one transplastomic colony per 1,000 microalgae cells. Subsequently, a heterologous gene expression cassette for high-level expression of the target gene was created and cloned between the homologous recombination elements. A TA cloning strategy based on the designed XcmI-XcmI sites could conveniently clone the heterologous gene. An eGFP (green fluorescent protein) reporter gene was used to test the expression level in the plastid system. The relatively high-level expression of eGFP without codon optimisation in stably transformed microalgae was determined to account for 0.12 % of the total soluble protein. Thus, this study presents the first and convenient plastid gene expression system for diatoms and represents an interesting tool to study diatom plastids.Electronic supplementary materialThe online version of this article (doi:10.1007/s10126-014-9570-3) contains supplementary material, which is available to authorized users.
机译:质体是表达转基因的理想亚细胞宿主,已成功用于生产不同的生物聚合物,治疗性蛋白质和工业酶。三角角兽皮(Phaeodyylum tricornutum)是一种广泛使用的水产饲料种类。在这项研究中,我们致力于开发一种高效的质体表达系统。在质体转化载体中,选择用于整合的位点是存在于质体基因组IR(反向重复)区域中的trnI和trnA基因之间的转录活性基因间区域。最初,CAT报告基因(编码氯霉素乙酰转移酶)整合在质体基因组中的该位点。 CAT在转化的微藻中的表达赋予了对氯霉素抗生素的抗性,从而使选择培养基中的细菌得以生长。总体而言,发现质体转化效率约为每1,000个微藻细胞一个转质体集落。随后,创建了用于高水平表达靶基因的异源基因表达盒,并将其克隆在同源重组元件之间。基于设计的XcmI-XcmI位点的TA克隆策略可以方便地克隆异源基因。使用eGFP(绿色荧光蛋白)报告基因测试质体系统中的表达水平。在稳定转化的微藻中,未经密码子优化的eGFP相对较高水平的表达被确定为占总可溶性蛋白的0.12%。因此,本研究提出了第一个便捷的硅藻质体基因表达系统,是研究硅藻质体的有趣工具。电子补充材料本文的在线版本(doi:10.1007 / s10126-014-9570-3)包含补充材料,可供授权用户使用。

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